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  • To Ignite a Personalization Practice, Run this Prepersonalization Workshop

    To Ignite a Personalization Practice, Run this Prepersonalization Workshop

    Image this. You’ve joined a club at your business that’s designing innovative product features with an focus on technology or AI. Or perhaps your business only started using a personalization website. Either way, you’re designing with information. What’s next? When it comes to designing for personalization, there are many warning stories, no immediately achievement, and some guidelines for the baffled.

    The personalization space is real, between the dream of getting it right and the fear of it going wrong ( like when we encounter “persofails” in the spirit of a company that regularly asks regular people to buy more toilet seats ). It’s an particularly confusing place to be a modern professional without a map, a map, or a strategy.

    There are no Lonely Planet and some tour guides for those of you who want to personalize because powerful personalization depends so much on each group’s talent, technology, and market position.

    But you can ensure that your group has packed its bags rationally.

    There’s a DIY method to increase your chances for victory. You’ll at least at least disarm your boss ‘ irrational exuberance. Before the group you’ll need to properly plan.

    It’s known as prepersonalization.

    Behind the audio

    Take into account Spotify’s DJ feature, which was introduced last season.

    We’re used to seeing the polished final outcome of a personalization function. A personal have had to be conceived, budgeted, and prioritized before the year-end prize, the making-of-backstory, or the behind-the-scenes success chest. Before any customisation have goes live in your product or service, it lives amid a delay of valuable ideas for expressing consumer experiences more automatically.

    How do you decide where to position personalization wagers? How do you design regular interactions that hasn’t journey up users or—worse—breed mistrust? We’ve discovered that several budgeted programs foremost needed one or more workshops to join key stakeholders and domestic customers of the technology to justify their continuing investments. Make it count.

    We’ve closely observed the same evolution with our consumers, from major software to young companies. In our experience with working on small and large customisation efforts, a program’s best monitor record—and its capacity to weather tough questions, work steadily toward shared answers, and manage its design and engineering efforts—turns on how successfully these prepersonalization activities play out.

    Effective workshops consistently save time, money, and overall well-being by separating successful future endeavors from unsuccessful ones.

    A personalization practice involves a multiyear effort of testing and feature development. It’s not a tech stack switch-flip. It’s best managed as a backlog that often evolves through three steps:

    1. customer experience optimization ( CXO, also known as A/B testing or experimentation )
    2. always-on automations ( whether rules-based or machine-generated )
    3. mature features or standalone product development ( such as Spotify’s DJ experience )?

    This is why we created our progressive personalization framework and why we’re field-testing an accompanying deck of cards: we believe that there’s a base grammar, a set of “nouns and verbs” that your organization can use to design experiences that are customized, personalized, or automated. These cards are not necessary for you. But we strongly recommend that you create something similar, whether that might be digital or physical.

    Set the timer for your kitchen.

    How long does it take to cook up a prepersonalization workshop? The evaluation activities that we suggest include can last for a number of weeks ( and frequently do ). For the core workshop, we recommend aiming for two to three days. Details on the essential first-day activities are included in a summary of our broad approach.

    The full arc of the wider workshop is threefold:

      Kickstart: This specifies the terms of your engagement as you concentrate on both your team’s and your team’s readiness and drive.
    1. Plan your work: This is the heart of the card-based workshop activities where you specify a plan of attack and the scope of work.
    2. Work your plan: This stage consists of making it possible for team members to individually pitch their own pilots that each include a proof-of-concept project, business case, and operating model.

    Give yourself at least a day, split into two large time blocks, to power through a concentrated version of those first two phases.

    Kickstart: Apt your appetite

    We call the first lesson the “landscape of connected experience“. It looks at the possibilities for personalization at your company. A connected experience, in our parlance, is any UX requiring the orchestration of multiple systems of record on the backend. A marketing-automation platform and a content-management system could be used together. It could be a digital-asset manager combined with a customer-data platform.

    Give examples of connected experience interactions that you admire, find familiar, or even dislike, as examples of consumer and business-to-business examples. This should cover a representative range of personalization patterns, including automated app-based interactions ( such as onboarding sequences or wizards ), notifications, and recommenders. These cards contain a catalog, which we have. Here’s a list of 142 different interactions to jog your thinking.

    It’s all about setting the tone. What are the possible paths for the practice in your organization? Here’s a long-form primer and a strategic framework for a broader view.

    Assess each example that you discuss for its complexity and the level of effort that you estimate that it would take for your team to deliver that feature ( or something similar ). We categorize connected experiences in our cards according to their functions, features, experiences, complete products, and portfolios. Size your own build here. This will help to draw attention to the benefits of ongoing investment as well as the difference between what you deliver right now and what you want to deliver in the future.

    Next, have your team plot each idea on the following 2×2 grid, which lays out the four enduring arguments for a personalized experience. This is crucial because it emphasizes how personalization can affect your own methods of working as well as your external customers. It’s also a reminder ( which is why we used the word argument earlier ) of the broader effort beyond these tactical interventions.

    Each team member should decide where they would like to place your company’s emphasis on your product or service. Naturally, you can’t prioritize all of them. Here, the goal is to demonstrate how various departments may view their own advantages over the effort, which can be different from one department to the next. Documenting your desired outcomes lets you know how the team internally aligns across representatives from different departments or functional areas.

    The third and final kickstart activity is about filling in the personalization gap. Is your customer journey well documented? Will ensuring data and privacy is a major challenge too much? Do you have content metadata needs that you have to address? It’s just a matter of acknowledging the magnitude of that need and finding a solution ( we’re fairly certain that you do ). In our cards, we’ve noted a number of program risks, including common team dispositions. For instance, our Detractor card lists six intractable stakeholder attitudes that prevent progress.

    Effectively collaborating and managing expectations is critical to your success. Consider the potential obstacles to your progress in the future. Press the participants to name specific steps to overcome or mitigate those barriers in your organization. According to research, personalization initiatives face a number of common obstacles.

    At this point, you’ve hopefully discussed sample interactions, emphasized a key area of benefit, and flagged key gaps? You’re all set to go on, good.

    Hit that test kitchen

    Next, let’s take a look at what you’ll need to create personalization recipes. Personalization engines, which are robust software suites for automating and expressing dynamic content, can intimidate new customers. Their capabilities are broad and potent, and they give you a variety of ways to organize your company. This presents the question: Where do you begin when you’re configuring a connected experience?

    The key here is to avoid treating the installed software like some imagined kitchen from a fantasy remodeling project ( as one of our client executives humorously put it ). These software engines are more like test kitchens where your team can begin devising, tasting, and refining the snacks and meals that will become a part of your personalization program’s regularly evolving menu.

    Over the course of the workshop, the ultimate menu of the prioritized backlog will come together. And creating “dishes” is the way that you’ll have individual team stakeholders construct personalized interactions that serve their needs or the needs of others.

    The dishes will be made using recipes that have predetermined ingredients.

    Verify your ingredients

    Like a good product manager, you’ll make sure you have everything ready to cook up your desired interaction ( or figure out what needs to be added to your pantry ) and that you validate with the right stakeholders present. These ingredients include the audience that you’re targeting, content and design elements, the context for the interaction, and your measure for how it’ll come together.

    This is not just about identifying needs. Documenting your personalizations as a series of if-then statements lets the team:

    1. compare findings to a common strategy for developing features, similar to how artists paint with the same color palette,
    2. specify a consistent set of interactions that users find uniform or familiar,
    3. and establish parity between all important performance indicators and performance metrics.

    This helps you streamline your designs and your technical efforts while you deliver a shared palette of core motifs of your personalized or automated experience.

    Create a recipe.

    What ingredients are important to you? Consider the construct of a who-what-when-why

    • Who are your key audience segments or groups?
    • What content, what design elements, and under what circumstances will you give them?
    • And for which business and user benefits?

    Five years ago, we created these cards and card categories. We regularly play-test their fit with conference audiences and clients. And there are still fresh possibilities. But they all follow an underlying who-what-when-why logic.

    In the cards in the accompanying photo below, you can typically follow along with right to left in three examples of subscription-based reading apps.

    1. Nurture personalization: When a guest or an unknown visitor interacts with a product title, a banner or alert bar appears that makes it easier for them to encounter a related title they may want to read, saving them time.
    2. Welcome automation: An email is sent when a newly registered user is a subscriber and is able to highlight the breadth of the content catalog.
    3. Winback automation: Before their subscription lapses or after a recent failed renewal, a user is sent an email that gives them a promotional offer to suggest that they reconsider renewing or to remind them to renew.

    We’ve also found that sometimes this process comes together more effectively by cocreating the recipes themselves, so a good preworkshop activity might be to think about what these cards might be for your organization. Start with a set of blank cards, and begin labeling and grouping them through the design process, eventually distilling them to a refined subset of highly useful candidate cards.

    The workshop’s later stages could be characterized as shifting from focusing on a cookbook to a more nuanced customer-journey mapping. Individual” cooks” will pitch their recipes to the team, using a common jobs-to-be-done format so that measurability and results are baked in, and from there, the resulting collection will be prioritized for finished design and delivery to production.

    Better architecture is required for better kitchens.

    Simplifying a customer experience is a complicated effort for those who are inside delivering it. Avoid those who make up their mind. With that being said,” Complicated problems can be hard to solve, but they are addressable with rules and recipes“.

    When a team overfits: they aren’t designing with their best data, personalization turns into a laughing line. Like a sparse pantry, every organization has metadata debt to go along with its technical debt, and this creates a drag on personalization effectiveness. For instance, your AI’s output quality is in fact impacted by your IA. Spotify’s poster-child prowess today was unfathomable before they acquired a seemingly modest metadata startup that now powers its underlying information architecture.

    You can’t stand the heat, in fact…

    Personalization technology opens a doorway into a confounding ocean of possible designs. Only a disciplined and highly collaborative approach will produce the necessary concentration and intention for success. So banish the dream kitchen. Instead, head to the test kitchen to burn off the fantastical ideas that the doers in your organization have in store for time, to preserve job satisfaction and security, and to avoid unnecessary distractions. There are meals to serve and mouths to feed.

    You have a better chance of lasting success and sound beginnings with this workshop framework. Wiring up your information layer isn’t an overnight affair. However, if you use the same cookbook and the same recipes, you’ll have solid ground for success. We designed these activities to make your organization’s needs concrete and clear, long before the hazards pile up.

    Although there are costs associated with purchasing this type of technology and product design, time well spent on sizing up and confronting your unique situation and digital skills. Don’t squander it. The pudding is the proof, as they say.

  • User Research Is Storytelling

    User Research Is Storytelling

    I’ve been fascinated by movies since I was a child. I loved the figures and the excitement—but most of all the reports. I aspired to be an artist. And I believed that I’d get to do the things that Indiana Jones did and go on interesting activities. Perhaps my friends and I had movie ideas to make and sun in. But they never went any farther. However, I did end up in the user experience ( UX) field. Today, I realize that there’s an element of drama to UX— I hadn’t actually considered it before, but consumer research is story. And you must show a compelling story to entice stakeholders, such as the product team and decision-makers, to learn more in order to get the most out of consumer research.

    Think of your favourite film. It more than likely follows a three-act narrative construction: the installation, the turmoil, and the resolution. The second act shows what exists now, and it helps you get to understand the characters and the challenges and problems that they face. Act two sets the scene for the fight and the activity begins. Here, difficulties grow or get worse. The solution comes in the third and final action. This is where the issues are resolved and the figures learn and change. This architecture, in my opinion, is also a fantastic way to think about consumer research, and it might be particularly useful for introducing user research to others.

    Use story as a framework when conducting research.

    It’s sad to say, but many have come to see studies as being dispensable. Research is typically one of the first things to go when finances or deadlines are tight. Instead of investing in study, some goods professionals rely on manufacturers or—worse—their personal judgment to make the “right” options for users based on their experience or accepted best practices. That may get groups a little bit out of the way, but that approach is therefore easily miss out on resolving people ‘ real issues. To be user-centered, this is something we really avoid. User study improves pattern. It keeps it on record, pointing to problems and opportunities. You can keep back of your competition by being aware of the problems with your goods and fixing them.

    In the three-act structure, each action corresponds to a part of the process, and each part is important to telling the whole story. Let’s examine the various functions and how they relate to consumer study.

    Act one: layout

    The rig consists entirely in comprehending the history, and that’s where basic research comes in. Basic research ( also called relational, discovery, or preliminary research ) helps you understand people and identify their problems. Like in the movies, you’re learning about the difficulties users face, what options are available, and how they are affected by them. To do basic research, you may conduct cultural inquiries or journal studies ( or both! ), which may assist you in identifying both challenges and options. It doesn’t need to get a great investment in time or money.

    What is the least feasible ethnography that Erika Hall can do is spend fifteen minutes with a consumer and say,” Walk me through your day yesterday. That’s it. Provide that one ask. Locked up and listen to them for 15 days. Do everything in your power to protect both your objectives and yourself. Bam, you’re doing ethnography”. Hall predicts that “[This ] will probably prove quite fascinating. In the very unlikely event that you didn’t learn anything new or helpful, carry on with increased confidence in your way”.

    This makes perfect sense to me. And I love that this makes consumer studies so visible. You can simply attract participants and carry out the recruitment process without having to create a lot of paperwork! This can offer a wealth of knowledge about your customers, and it’ll help you better understand them and what’s going on in their life. Understanding where people are coming from is what action one is really all about.

    Maybe Spool talks about the importance of basic research and how it may type the bulk of your research. If you can complement what you’ve heard in the fundamental studies by using any more user data that you can obtain, such as surveys or analytics, or if you can identify areas that need more investigation. Together, all this information creates a clearer picture of the state of things and all its deficiencies. And that’s the start of a gripping tale. It’s the place in the story where you realize that the principal characters—or the people in this case—are facing issues that they need to conquer. This is where you begin to develop compassion for the characters and support their success, much like in films. And finally partners are now doing the same. Their concern may be with their company, which may be losing money because consumers are unable to complete specific tasks. Or probably they do connect with people ‘ problems. In either case, action one serves as your main strategy for piqueing interest and investment from the participants.

    When partners begin to understand the value of basic research, that is open doors to more opportunities that involve users in the decision-making approach. And that can influence product team ‘ focus on improving. This gains everyone—users, the goods, and partners. It’s similar to winning an Oscar for a film because it frequently results in a favorable and successful outcome for your item. And this can be an opportunity for participants to repeat this process with different products. The secret to this method is storytelling, and knowing how to tell a compelling story is the only way to entice partners to do more research.

    This brings us to work two, where you incrementally examine a design or idea to see whether it addresses the problems.

    Act two: issue

    Act two is all about digging deeper into the issues that you identified in operate one. This typically involves conducting vertical study, such as accessibility tests, where you evaluate a potential solution ( such as a design ) to see if it addresses the problems you identified. The issues may include unfulfilled needs or problems with a circulation or procedure that’s tripping users away. More issues may come up in the process, much like in action two of a movie. It’s here that you learn more about the figures as they grow and develop through this work.

    Usability tests should generally consist of five participants, according to Jakob Nielsen, who found that that number of users can usually identify the majority of the issues:” As you add more and more users, you learn less and less because you will keep seeing the same things again and again… After the second user, you are wasting your time by observing the same findings regularly but hardly learning much new.”

    There are parallels with storytelling here too, if you try to tell a story with too many characters, the plot may get lost. With fewer participants, each user’s struggles will be more memorable and accessible to other parties when presenting the research. This can help convey the issues that need to be addressed while also highlighting the value of doing the research in the first place.

    Usability tests have been conducted in person for tens of thousands of years, but remote testing can also be done using software like Microsoft Teams, Zoom, or other teleconferencing tools. This approach has become increasingly popular since the beginning of the pandemic, and it works well. You might consider in-person usability tests like watching a movie as opposed to remote testing like attending a play. There are advantages and disadvantages to each. Usability research in person is a much more extensive experience. Stakeholders can experience the sessions with other stakeholders. Additionally, you’ll also hear their reactions in real-time, including surprises, disagreements, and discussions of what they’re seeing. Much like going to a play, where audiences get to take in the stage, the costumes, the lighting, and the actors ‘ interactions, in-person research lets you see users up close, including their body language, how they interact with the moderator, and how the scene is set up.

    If conducting usability testing in the field is like watching a play that is staged and controlled, where any two sessions may be very different from one another. You can take usability testing into the field by creating a replica of the space where users interact with the product and then conduct your research there. Or you can meet users at their location to conduct your research. With either option, you get to see how things work in context, things come up that wouldn’t have in a lab environment—and conversion can shift in entirely different directions. You have less control over how these sessions end as researchers, but this can occasionally help you understand users even better. Meeting users where they are can provide clues to the external forces that could be affecting how they use your product. Usability tests in person offer a level of detail that is frequently absent from remote testing.

    That’s not to say that the “movies” —remote sessions—aren’t a good option. A wider audience can be obtained from remote sessions. They allow a lot more stakeholders to be involved in the research and to see what’s going on. And they make access to a much wider range of users in their own country. But with any remote session there is the potential of time wasted if participants can’t log in or get their microphone working.

    The advantage of usability testing, whether conducted remotely or in person, is that you can ask real users questions to understand their reasoning and understanding of the problem. This can help you not only identify problems but also glean why they’re problems in the first place. You can also test your own ideas and determine whether they are true. By the end of the sessions, you’ll have a much clearer picture of how usable the designs are and whether they work for their intended purposes. Act two is where the excitement is at the heart of the narrative, but there are also potential surprises. This is equally true of usability tests. Unexpected things that participants say frequently alter the way you look at things, and these unexpected revelations can lead to unexpected turns in the narrative.

    Unfortunately, user research is sometimes seen as expendable. Usability testing is often the only method of research that some stakeholders believe they ever need, especially in this regard. In fact, if the designs that you’re evaluating in the usability test aren’t grounded in a solid understanding of your users ( foundational research ), there’s not much to be gained by doing usability testing in the first place. Because you narrow down the subject matter of your feedback without understanding the needs of the users. As a result, there’s no way of knowing whether the designs might solve a problem that users have. In the context of a usability test, it’s only feedback on a particular design.

    On the other hand, if you only do foundational research, while you might have set out to solve the right problem, you won’t know whether the thing that you’re building will actually solve that. This demonstrates the value of conducting both directional and foundational research.

    In act two, stakeholders will—hopefully—get to watch the story unfold in the user sessions, which creates the conflict and tension in the current design by surfacing their highs and lows. And in turn, this can encourage stakeholders to take action on the issues raised.

    Act three: resolution

    The third act is about resolving the issues raised by the first two acts, whereas the first two are about comprehending the context and the tensions that can compel action. While it’s important to have an audience for the first two acts, it’s crucial that they stick around for the final act. That includes all members of the product team, including developers, UX experts, business analysts, delivery managers, product managers, and any other interested parties. It allows the whole team to hear users ‘ feedback together, ask questions, and discuss what’s possible within the project’s constraints. Additionally, it enables the UX design and research teams to clarify, suggest alternatives, or provide more context for their choices. So you can get everyone on the same page and get agreement on the way forward.

    Voiceover narration of this act is typically used with audience input. The researcher is the narrator, who paints a picture of the issues and what the future of the product could look like given the things that the team has learned. They offer the stakeholders their suggestions and suggestions for how to create this vision.

    Nancy Duarte in the Harvard Business Review offers an approach to structuring presentations that follow a persuasive story. The most effective presenters employ the same methods as great storytellers: By reaffirming the status quo and then revealing a better way, they create a conflict that needs to be resolved, writes Duarte. ” That tension helps them persuade the audience to adopt a new mindset or behave differently”.

    This type of structure aligns well with research results, and particularly results from usability tests. It provides proof for “what is “—the issues you’ve identified. And “what could be “—your recommendations on how to address them. And so forth.

    You can reinforce your recommendations with examples of things that competitors are doing that could address these issues or with examples where competitors are gaining an edge. Or they can be visual, like quick sketches of how a new design could function to solve a problem. These can help generate conversation and momentum. And this continues until the session is over when you’ve concluded everything by summarizing the key points and offering suggestions for a solution. This is the part where you reiterate the main themes or problems and what they mean for the product—the denouement of the story. This stage provides stakeholders with the next steps and, hoped, the motivation to take those steps!

    While we are nearly at the end of this story, let’s reflect on the idea that user research is storytelling. The three-act structure of user research contains all the components of a good story:

      Act one: You meet the protagonists ( the users ) and the antagonists ( the problems affecting users ). This is the plot’s beginning. In act one, researchers might use methods including contextual inquiry, ethnography, diary studies, surveys, and analytics. These techniques can produce personas, empathy maps, user journeys, and analytics dashboards.
      Act two: Next, there’s character development. The protagonists face problems and difficulties, which they must overcome, and there is conflict and tension. In act two, researchers might use methods including usability testing, competitive benchmarking, and heuristics evaluation. Usability findings reports, UX strategy documents, usability guidelines, and best practices can be included in the output of these.
      Act three: The protagonists triumph and you see what a better future looks like. Researchers may use techniques like presentation decks, storytelling, and digital media in act three. The output of these can be: presentation decks, video clips, audio clips, and pictures.

    The researcher plays a variety of roles, including producer, director, and storyteller. The participants have a small role, but they are significant characters ( in the research ). And the audience is the audience, as well. But the most important thing is to get the story right and to use storytelling to tell users ‘ stories through research. By the end, the parties should have a goal and a desire to solve the product’s flaws.

    So the next time that you’re planning research with clients or you’re speaking to stakeholders about research that you’ve done, think about how you can weave in some storytelling. In the end, user research is beneficial for everyone, and all you need to do is pique stakeholders ‘ interest in how the story ends.

  • From Beta to Bedrock: Build Products that Stick.

    From Beta to Bedrock: Build Products that Stick.

    As a solution builder for too many times, I can’t recall how many times I’ve seen promising ideas go from being heroes in a few weeks to being useless within months.

    Financial items, which is my area of expertise, are no exception. It’s tempting to put as many features at the ceiling as possible and expect something sticks because people’s true, hard-earned money is on the line, user expectations are high, and crowded market. However, this strategy is a formula for disaster. Why, please:

    The drawbacks of feature-first growth

    It’s easy to get swept up in the enthusiasm of developing innovative features when you start developing a financial product from scratch or are migrating existing user journeys from papers or telephony channels to online bank or mobile applications. They may believe,” If I may only add one more thing that solves this particular person problem, they’ll enjoy me”! But what happens if you eventually encounter a roadblock as a result of your safety team’s negligence? not like it? When a difficult-fought film fails to win over viewers or fails owing to unanticipated difficulty?

    The concept of Minimum Viable Product ( MVP ) comes into play in this context. Even if Jason Fried doesn’t usually refer to this concept, his book Getting Real and his audio Redo frequently discuss it. An MVP is a product that offers only enough value to your users to keep them interested, but not so much that it becomes difficult to keep up. Although it seems like an easy idea, it requires a razor-sharp eye, a ruthless edge, and the courage to stand up for your position because it is easy to fall for” the Columbo Effect” when there is always” just one more thing …” to add.

    The issue with most fund apps is that they frequently turn out to be reflections of the company’s internal politics rather than an experience created purely for the customer. Instead of offering a distinct value statement that is focused on what people in the real world want, the focus should be on delivering as some features and functionalities as possible to satisfy the needs and wants of competing inside sections. These products may therefore quickly become a muddled mess of confusing, related, and finally unlovable client experiences—a feature salad, you might say.

    The significance of the foundation

    What is a better strategy, then? How may we create products that are user-friendly, firm, and, most importantly, stick?

    The concept of “bedrock” comes into play here. Rock is the main feature of your solution that really matters to customers. The foundation of worth and relevance over time is built upon it.

    The core must be in and around the standard servicing journeys in the retail banking industry, which is where I work. People only look at their existing account once every blue moon, but they do so daily. They purchase a credit card every year or two, but they at least once a month examine their stability and pay their bills.

    The key is in identifying the main tasks that people want to complete and working relentlessly to render them simple, reliable, and trustworthy.

    How can you reach the foundation, though? By focusing on the” MVP” strategy, giving ease precedence, and working incrementally toward a clear value proposition. This entails removing needless functions and putting the emphasis on providing genuine value to your users.

    It also requires having some nerve, as your coworkers might not always agree with you immediately. And dubiously, occasionally it can even suggest making it clear to customers that you won’t be coming to their house and making their breakfast. Sometimes you need to use the sporadic “opinionated user interface design” ( i .e. clunky workaround for edge cases ) to test a concept or to give yourself some more time to work on something more crucial.

    Functional methods for creating reliable economic items

    What are the main learnings I’ve made from my own research and practice, then?

    1. What trouble are you trying to solve first and foremost with a distinct “why”? Whom? Before beginning any construction, make sure your goal is completely clear. Make certain it also aligns with the goals of your business.
    2. Avoid putting too many features on the list at again; instead, focus on getting that right first. Choose one that actually adds price, and work from that.
    3. When it comes to financial items, clarity is often over richness. Eliminate unwanted details and concentrate on what matters most.
    4. Accept constant iteration: Bedrock is not a fixed destination; it is a fluid process. Continuously collect customer feedback, improve your product, and work toward that foundational position.
    5. Stop, look, and listen: Don’t just go through with testing your product as part of the delivery process; test it consistently in the field. Use it for yourself. A/B tests are run. User comments on Gear. Speak to users and make adjustments accordingly.

    The core dilemma

    This is an intriguing conundrum: sacrificing some of the potential for short-term growth in favor of long-term stability is at play. But the payoff is worthwhile because products built with a emphasis on bedrock will outlive and surpass their rivals over time and provide users with long-term value.

    How do you begin your quest to rock, then? Taking it one step at a time. Start by identifying the underlying factors that your customers actually care about. Concentrate on developing and improving a second, potent function that delivers real value. And most importantly, make an obsessive effort because, whatever you think, Abraham Lincoln, Alan Kay, or Peter Drucker, you can’t deny it! The best way to foretell the future is to build it, he said.

  • An Holistic Framework for Shared Design Leadership

    An Holistic Framework for Shared Design Leadership

    Picture this: Two people are conversing in what appears to be the same talk about the same pattern issue in a conference room at your tech company. One is talking about whether the staff has the proper skills to handle it. The other is examining whether the solution truly addresses the user’s issue. Similar room, the same issue, and entirely various perspectives.

    This is the lovely, sometimes messy fact of having both a Design Manager and a Guide Designer on the same group. And you’re asking the right question if you’re wondering how to make this job without creating confusion, coincide, or the feared” to some cooks” situation.

    Fresh lines on an organizational chart have always been the standard solution. The Design Manager handles persons, the Lead Designer handles art. Problem is fixed, isn’t it? Except that fresh organizational charts are fantasy. In fact, both roles care greatly about crew health, style quality, and shipping great work.

    When you start thinking of your style organization as a pattern organism, the magic happens when you embrace the collide rather than fighting it.

    A Healthy Design Team’s Biology

    Here’s what I’ve learned from years of being on both flanks of this formula: think of your design team as a living organism. The style manager is guided by the group dynamics, internal security, and career growth. The Lead Designer concentrates on the body ( the handiwork, the design standards, the hands-on projects that are delivered to users ).

    But just like mind and body aren’t totally separate systems, but, also, do these tasks overlap in significant ways. Without working in harmony with one another, you didn’t have a healthier person. The technique is to recognize those overlaps and how to manage them gently.

    When we look at how good team really function, three critical devices emerge. Each role must be combined, but one has to assume the lead role in keeping that system sturdy.

    Folks & Psychology: The Nervous System

    Major custodian: Design Manager
    Supporting position: Direct Artist

    The anxious system is all about mental health, comments, and signals. When this technique is good, information flows easily, people feel safe to take risks, and the staff may react quickly to new problems.

    The main caregiver is around, the Design Manager. They are keeping track of the team’s emotional signal, making sure feedback rings are good, and creating the conditions for people to develop. They’re hosting job meetings, managing task, and making sure no single burns out.

    However, the Lead Designer has a significant supporting position. They’re offering visual feedback on build development needs, identifying stagnant design skills in someone, and pointing out potential growth opportunities that the Design Manager might overlook.

    Design Manager tends to:

    • discussions about careers and career development
    • internal security and dynamics of the team
    • Job management and resource allocation
    • Systematic evaluations and opinions
    • Providing opportunities for learning

    Direct Custom supports by:

    • Providing craft-specific evaluation of team member growth
    • identifying opportunities for growth and style talent gaps
    • Giving design mentoring and assistance
    • indicating when staff people are prepared for more challenging problems.

    The Muscular System: Design, Design, and Execution

    Major custodian: Lead Designer
    Supporting duties: Design Manager

    Strength, cooperation, and skill development are the hallmarks of the skeletal system. When this technique is healthy, the team can do complicated design work with precision, maintain regular quality, and adjust their craft to fresh challenges.

    The Lead Designer is the main caregiver at this place. They are establishing design standards, offering craft instruction, and making sure that shipping work meets the required standards. They’re the ones who can tell you if a design decision is sound or if we’re solving the right problem.

    However, the Design Manager has a significant supporting role. They’re making sure the team has the resources and support they need to perform their best work, such as proper nutrition and time for an athlete recovering.

    Lead Designer tends to:

    • Definition of system requirements and design standards
    • Feedback on design work that meets the required standards
    • Experience direction for the product
    • Design choices and product-wide alignment are at stake.
    • advancement of craft and innovation

    Design Manager supports by:

    • ensuring that design standards are understood and accepted by all members of the team
    • Confirming that the right direction is being used is being done
    • Supporting practices and systems that scale without bottlenecking
    • facilitating team-wide design alignment
    • Providing resources and removing obstacles to outstanding craft work

    The Circulatory System: Strategy &amp, Flow

    Shared caretakers: Lead Designer and Design Manager, respectively.

    The circulatory system is concerned with how the team’s decisions and energy are distributed. When this system is healthy, strategic direction is clear, priorities are aligned, and the team can respond quickly to new opportunities or challenges.

    This is the true partnership that occurs. Although both roles are responsible for maintaining the circulation, they both have unique perspectives to offer.

    Lead Designer contributes:

    • The product fulfills the user’s needs.
    • overall experience and product quality
    • Strategic design initiatives
    • User needs for each initiative are based on research.

    Contributes the design manager:

    • Communication to team and stakeholders
    • Stakeholder management and alignment
    • Team accountability across all levels
    • Strategic business initiatives

    Both parties work together:

    • Co-creation of strategy and leadership
    • Team goals and prioritization approach
    • organizational structure decisions
    • Success frameworks and measures

    Keeping the Organism Healthy

    Understanding that all three systems must work together is the key to making this partnership sing. A team will eventually lose their way despite excellent craftmanship and poor psychological safety. A team with great culture but weak craft execution will ship mediocre work. A team that has both but poor strategic planning will concentrate on the wrong things.

    Be Specific About the System You’re Defending.

    When you’re in a meeting about a design problem, it helps to acknowledge which system you’re primarily focused on. Everyone has context for their input.” I’m thinking about this from a team capacity perspective” ( nervous system ) or” I’m looking at this through the lens of user needs” ( muscular system ).

    This is not about staying in your path. It’s about being transparent as to which lens you’re using, so the other person knows how to best add their perspective.

    Create Positive Feedback Loops

    The partnerships that I’ve seen have the most effective partnerships that create clear feedback loops between the systems:

    Nervous system signals to muscular system:” The team is struggling with confidence in their design skills” → Lead Designer provides more craft coaching and clearer standards.

    The nervous system receives the message” The team’s craft skills are progressing more quickly than their project complexity.”

    We’re seeing patterns in team health and craft development that suggest we need to adjust our strategic priorities, both systems say to the circulatory system.

    Handle Handoffs Gracefully

    When something switches from one system to another, this partnership’s most crucial moments occur. This might occur when a design standard ( muscular system ) needs to be implemented across the team ( nervous system ) or when a tactical initiative ( circulatory system ) requires specific craft execution ( muscular system ).

    Make these transitions explicit. The new component standards have been defined. Can you give me some ideas on how to get the team up to speed? or” We’ve agreed on this strategic direction. From here, I’ll concentrate on the particular user experience approach.

    Stay curious and not territorial.

    The Design Manager who never thinks about craft, or the Lead Designer who never considers team dynamics, is like a doctor who only looks at one body system. Even when they aren’t the primary caretaker, great design leadership requires both people to be as concerned with the entire organism.

    This entails asking questions rather than making assumptions. ” What do you think about the team’s craft development in this area”? or” How do you think this is affecting team morale and workload”? keeps both viewpoints present in every choice.

    When the Organism Gets Sick

    This partnership can go wrong even with clear roles. What are the most typical failure modes I’ve seen:

    System Isolation

    The Design Manager ignores craft development and concentrates solely on the nervous system. The Lead Designer ignores team dynamics and only concentrates on the muscular system. Both people retreat to their comfort zones and stop collaborating.

    The signs: Team members receive conflicting messages, poor morale, and poor communication.

    Reconnect with other people and discuss shared outcomes. What are you both trying to achieve? Great design work typically arrives on time from a strong team. Discover how both systems accomplish that goal.

    Poor Circulation

    There is no clear strategic direction, shifting priorities, or accepting responsibility for the flow of information.

    The signs are: Team members are unsure of their priorities, work is duplicated or dropped, and deadlines are missed.

    The treatment: Explicitly assign responsibility for circulation. Who is communicating with whom? When? What’s the feedback loop?

    Autoimmune Response

    One person feels threatened by the other’s skill set. The Design Manager thinks the Lead Designer is undermining their authority. The Design Manager is allegedly misunderstanding the craft, according to the Lead Designer.

    The symptoms: defensive behavior, territorial disputes, middle-class teammates, etc.

    The treatment: Remember that you’re both caretakers of the same organism. The entire team suffers when one system fails. The team thrives when both systems are healthy.

    The Payoff

    Yes, communication is required for this model. Yes, it requires that both parties be confident enough to assume full responsibility for team health. But the payoff is worth it: better decisions, stronger teams, and design work that’s both excellent and sustainable.

    The best of both worlds can be found in strong people leadership and deep craft expertise when both roles are healthy and effective together. When one person is overly sick, on vacation, or overworked, the other can help keep the team’s health. When a decision requires both the people perspective and the craft perspective, you’ve got both right there in the room.

    The framework scales, which is most important. You can use the same system thinking to new challenges as your team grows. Need to launch a design system? Both the muscular system ( standards and implementation ), the nervous system (team adoption and change management ), and both have a tendency to circulate ( communication and stakeholder alignment ).

    The End result

    The relationship between a Design Manager and Lead Designer isn’t about dividing territories. It’s about multiplying impact. Magic occurs when both roles are aware that they are promoting various aspects of a healthy organism.

    The mind and body work together. The team benefits from both strategic thinking and craftmanship. And most importantly, the work that is distributed to users benefits both sides.

    So the next time you’re in that meeting room, wondering why two people are talking about the same problem from different angles, remember: you’re watching shared leadership in action. And if it’s functioning well, your design team’s mind and body will both become stronger.

  • Star Trek Crews Ranked from Worst to the Real Number Ones

    Star Trek Crews Ranked from Worst to the Real Number Ones

    The last border is the focus of Star Trek. But its also about how you didn’t investigate it alone. Star Trek offers a fundamentally collective vision, a description of the future in which society has overcome its minor differences, from the marine trappings that tell its spaceship setting to the futuristic United Federation of Planets.

    The article Star Trek Crews Ranked from Worst to the Actual Number Ones appeared first on Den of Geek.

    Star Trek is all about exploring the last border. But its also about how you can&#8217, t examine it only. Star Trek offers a fundamentally collective vision, a description of the future in which society has overcome its trivial differences and worked together, from the marine trappings that tell its spaceship setting to the futuristic United Federation of Planets.

    That vision begins on the gate of each ship in the particular Star Trek series. However, not all crew are created equal, as anyone who has ever visited a Trek-centric webpage is aware of. But these &#8217, s our try to position the ten key personnel across the Star Trek franchise.

    10. Sirena ( Picard )

    The staff of the Sirena would be in last place even if Star Trek: Picard‘s third and final season failed to bring the TNG crew back together on a reconstructed Enterprise-D. How could they not be? The first two months of Picard didn’t have a suitable crew due to Patrick Stewart‘s reticence to repeat too much of what he did before as Jean-Luc Picard. Otherwise, he gathered a rag-tag party to go on an illicit vision.

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    Some of those people did have interesting figures. Jeri Ryan has made Seven of Nine just more nuanced over the years, Santiago Cabrera is continuously entertaining as Chris Rios, and Alison Pill manages to find someone powerful in the disastrously-written Agnes Jurati. However, Picard shows that rag-tag team don&#8217, t labor when people don&#8217, and t enjoy watching the outcasts interact with duds like Raffi and Elnor on board. If only the current Trek producers learned that lesson before making Section 31&#8230,

    The cast of Star Trek: Enterprise

    9. NX-01 ( Enterprise )

    Some will undoubtedly argue that other, more recent shows deserve to be inferior to the team on the NX-01, because Enterprise gave each member of its bridge crew at least one character trait. However, this writer contends that it would be better to know nothing about a character than to know that they &#8217, re insufferable jerks, which is too often the case aboard the NX-01.

    This is not to say that Enterprise was completely devoid of interesting characters. Trip Tucker managed to embody the fighter-pilot mentality that the series wanted to harness, T&#8217, Pol&#8217, s arc showed just how hard it was to build the alliance between Earth and Vulcan, and Phlox is the best doctor on the show. However, Mayweather becomes one of the best characters on the show because we can’t hate someone we know nothing about because of Archer&#8217, s confused belligerence and Reed &#8217, s constant whining or creepiness.

    Star Trek Discovery Season 5 Cast

    8. Discovery ( Discovery )

    Discovery belongs toward the bottom because it eschews the ensemble approach that became the franchise&#8217, s trademark. Michael Burnham is a stand-in for Star Trek since TOS ( even though Shatner had his way when he was able to get his way ). One episode reveals that that Owosekun comes from a planet of space Luddites, another shows that Detmer is mad a Michael for a while about the hunk of mettle in her face, and one of the other guys says he likes to surf&#8230, I don&#8217, t remember which.

    Despite this, Discovery‘s crew has some gems, even in its unusual structure. Sonequa Martin-Green&#8217, s considerable charisma is n&#8217, t quite enough to make Michael someone worth so much attention, but Mary Wiseman&#8217, s earnest and annoying Tilly helped bring out the best in the eventual captain. The voice acting in his remarkable-as-usual physical acting is incredible, thanks to Doug Jones ‘ incredible performance as Saru. Stamets and Culber sometimes suffered from uneven writing, but they managed to show how a marriage could work on a starship. Tig Notaro is great, and she killed every line, even though she may have only been playing herself in space.

    Star Trek: Voyager Cast

    7. Voyager ( Voyager )

    Voyager very much wanted to return to Next Generation-style storytelling after the more experimental Deep Space Nine. That initially included a return to episodic storytelling as well as a focus on the ensemble crew. Even better, the series &#8217, premise gave Voyager a great storytelling engine with which to work, as getting stranded in the Delta Quadrant required members of the Maquis, ex-Starfleet officers who rebelled against the organization, to fall in under Janeway &#8217, s command.

    The producers of Voyager made the decision to ignore the potential stories in such a conflict in an incredibly frustrating move. Outside of a handful of episodes here and there, the former Maquis and the Starfleet officers had no issues. Sadly, missed opportunities became the hallmark of the show’s approach to the ensemble, especially once Seven of Nine. From that point on, Harry Kim, B&#8217, Elanna Torres, and Tuvok took a back seat to Janeway, Seven, and the Doctor. That trio had a lot of excellent episodes, and it was always nice when some of the other crew members were the focus. But it &#8217, s hard to give Voyager special condemnation for its ensemble work.

    Star Trek: Prodigy

    6. Protostar ( Prodigy )

    All of the Star Trek shows do a good job with their ensembles from this point on, and all of the crews are good. The only thing that remains to be desired is how good they are. And, for certain, the group of alien children who escape the confines of an alien overlord from the Delta Quadrant and become Starfleet cadets are very good. <a href=””>Prodigy manages to be a kid’s show, a Star Trek sequel, and a great Star Trek show all at once.

    That said, the narrative of Prodigy demands that they aren&#8217, t quite on the level of the other more professional and seasoned crews on this list. Dal has everything you need to be a great captain, Gwyndala will be a great linguist, Jankom Pog will be a great engineer, and so on. But they aren&#8217, t there quite yet, because they &#8217, re still kids learning about how Starfleet works. That makes for fantastic viewing, and we need to watch Prodigy at least one more season to see how they develop. But it also puts the crew at the bottom of the good groups on this list.

    L to R Gillian Vigman as Doctor T'Ana, Dawnn Lewis as Captain Carol Freeman, Jerry O'Connell as Jack Ransom, Paul F. Tompkins as Dr. Migleemo and Paul Scheer as Andy Billups in episode 8, season 5 of Lower Decks streaming on Paramount+, 2024. Photo credit: Paramount+.
    Photo: Paramount+.

    5. Cerritos ( Lower Decks )

    At first, it seemed like Lower Decks would be a two-hander with a couple supporting characters, surrounded by thinly-sketched others. Everyone else was just for jokes, including Ensigns Rutherford and Tendi, Mariner and Boimler, and their friends. But as Lower Decks developed, it became about more than just laughing about horga&#8217, hns and Spock Helmets. It evolved into a true Star Trek episode about discovery and exploration.

    As it did so, the characters developed and the crew became more distinct. Similar to Rutherford and Tendi’s development into good Starfleet officers, Mariner and Boimler also became more than just players in the leads &#8217, adventures. Even better were the rest of the Cerritos&#8216, s crew, especially Mariner&#8217, s mother Carol Freeman. Captain Freeman is only trying to do her job, and she succeeds, not a once-in-a-generation adventurer like Kirk or a flawless diplomat like Picard. It&#8217, s Freeman&#8217, s no-nonsense watch over the Cerritos that allows her crew of goofballs to shine.

    Star Trek: Strange New Worlds Season 2 Poster

    4. Enterprise ( Strange New Worlds )

    It’s entertaining to watch the Strange New Worlds crew on the pre-Kirk Enterprise. Beginning with Anson Mount&#8217, s take on Captain Pike as a cool, supportive older brother, Strange New Worlds feels less like the return to exploration suggested by its title and more of a romp across space starring familiar characters. No one can help but smile as the cast interacts, even though the individual episodes may not be to everyone’s tastes, such as the notorious musical episode or the self-parodying proto-holodeck episode.

    Some of that fun comes from the compelling new characters added to the series, the security officer La&#8217, an or the cooky engineer Pelia. Additionally, the prequel to the show does remarkably well acting, giving us adorably younger versions of Uhura, Scotty, and Spock. But the real pleasure of Strange New Worlds has been the way it develops characters we knew only by name. Number One, M&#8217, Benga, and Chapel have all since been fully developed characters that merit mention alongside their more well-known counterparts.

    Star Trek: The Original Series Cast
    On the set of the TV series Star Trek ( Photo by Sunset Boulevard/Corbis via Getty Images )

    3. Enterprise ( The Original Series )

    I am aware of this. The Original Series set the stage! Without Scotty, Uhura, Sulu, and Chekov, Star Trek wouldn’t be Star Trek. While this is true, it &#8217, s also true that everyone who was n&#8217, t in the central trio of Kirk, Spock, and McCoy never got much character development, even in films that purported to give them more to do. In Star Trek IV: The Voyage Home, Leonard Nimoy made a point of getting the attention of his co-stars, but the result was a bunch of single bits: Scotty talking to a mouse, Chekov looking for nuclear &#8216, Wessels, &#8217, and Sulu checking out a chopper.

    However, the fact that the crew is so beloved despite their relatively small amount of screentime makes them all the more impressive. Although none of the supporting characters replace the main three, Nichelle Nichols, James Doohan, Walter Koenig, and George Takei make the most of the attention, giving them a much more in-depth understanding than they actually are. Thanks to the supporting cast &#8217, s work, TOS set the stage for the crews to come.

    2. Deep Space Nine ( Deep Space Nine )

    Deep Space Nine has a slight unfair advantage because its main cast isn’t the crew of a starship; instead, they are the staff on a space station. That difference allows us to include barkeep Quark and constable Odo, characters that otherwise might not fit on the main crew. However, Benjamin Sisko, the real key to DS9&#8216’s success, is ultimately due to its commander-turned-captain. From the very beginning, Sisko was a different type of character than the other leads, a single father who was skeptical of Starfleet and thrust into the position of religious figure.

    Due to this distinction, Sisko was able to interact with people differently depending on how they felt, creating unique interactions with the crew. He saw Dax as both a subordinate and a mentor, thanks to the symbiote she carried. He and O&#8217, Brien became friends while acknowledging Garak as a necessary evil. From the top down, DS9 offered new team dynamics, all part of its groundbreaking approach to the franchise.

    Star Trek: The Next Generation

    1. Enterprise ( The Next Generation )

    The Original Series cast appeared to be a group of compelling characters who coexisted and worked together. The Next Generation crew was a a group of compelling characters who worked and lived together. Well, they eventually turned into that. Part of the problem in the famously uneven first two seasons of TNG is that it tries to replicate the focus on three characters—originally, Picard, Data, and Geordi. However, as the series progressed and Stewart started to play along with his co-stars, the Enterprise-D came to be a true ensemble.

    Several episodes demonstrate these dynamics, from the delightful holodeck romps to the gripping two-parters. The series finale, &#8220, All Good Things &#8230, and &#8221, Watching Picard check in with the crew all over time before finally joining them in a card game at the end, puts the perfect capper on the show. These are explorers and scientists and military personnel, yes. These are friends, after all, though.

    The article Star Trek Crews Ranked from Worst to the Actual Number Ones appeared first on Den of Geek.

  • Asynchronous Design Critique: Giving Feedback

    Asynchronous Design Critique: Giving Feedback

    One of the most powerful smooth abilities we have at our disposal is the ability to work together to improve our designs while developing our own abilities and perspectives, regardless of how it is used or what it might be called.

    Feedback is also one of the most underestimated equipment, and generally by assuming that we’re now great at it, we settle, forgetting that it’s a skill that can be trained, grown, and improved. Bad opinions can lead to conflict on projects, lower morale, and long-term, undermine trust and teamwork. Quality opinions can be a revolutionary force.

    Practicing our knowledge is absolutely a good way to enhance, but the learning gets yet faster when it’s paired with a good base that programs and focuses the exercise. What are some fundamental components of providing effective opinions? And how can comments be adjusted for isolated and distributed job settings?

    On the web, we may find a long history of sequential suggestions: code was written and discussed on mailing lists since the beginning of open source. Currently, engineers engage on pull calls, developers post in their favourite design tools, project managers and sprint masters exchange ideas on tickets, and so on.

    Design analysis is often the label used for a type of input that’s provided to make our job better, jointly. It generally shares many of the principles with comments, but it also has some differences.

    The information

    The content of the feedback is the basis of every effective criticism, so where do we need to begin? There are many versions that you can use to design your content. The one that I personally like best—because it’s obvious and actionable—is this one from Lara Hogan.

    This calculation, which is typically used to provide feedback to users, even fits really well in a design critique because it finally addresses one of the main issues that we address: What? Where? Why? How? Imagine that you’re giving some comments about some pattern function that spans several screens, like an onboard movement: there are some pages shown, a stream blueprint, and an outline of the decisions made. You notice anything that needs to be improved. If you keep the three components of the equation in mind, you’ll have a mental unit that can help you become more precise and effective.

    A comment that appears to be acceptable at first glance could be included in some feedback, as it only appears to partially fulfill the requirements. But does it?

    Not confident about the keys ‘ patterns and hierarchy—it feels off. Does you alter them?

    Observation for style feedback doesn’t only mean pointing out which part of the software your input refers to, but it also refers to offering a viewpoint that’s as specific as possible. Do you offer the user’s viewpoint? Your expert perspective? A business perspective? The perspective of the project manager A first-time user’s perspective?

    When I see these two buttons, I anticipate one to go forward and the other to go back.

    Impact is about the why. Just pointing out a UI element might sometimes be enough if the issue may be obvious, but more often than not, you should add an explanation of what you’re pointing out.

    When I see these two buttons, I anticipate one to go forward and the other to go back. But this is the only screen where this happens, as before we just used a single button and an “×” to close. This seems to be breaking the consistency in the flow.

    The question approach is meant to provide open guidance by eliciting the critical thinking in the designer receiving the feedback. Notably, in Lara’s equation she provides a second approach: request, which instead provides guidance toward a specific solution. While that’s generally a viable option for feedback, I’ve found that going back to the question approach typically leads to the best solutions for design critiques because designers are generally more open to experiment in a space.

    The difference between the two can be exemplified with, for the question approach:

    When I see these two buttons, I anticipate one to go forward and the other to go back. But this is the only screen where this happens, as before we just used a single button and an “×” to close. This seems to be breaking the consistency in the flow. Would it make sense to unify them?

    Or, for the request approach:

    When I see these two buttons, I anticipate one to go forward and the other to go back. But this is the only screen where this happens, as before we just used a single button and an “×” to close. This seems to be breaking the consistency in the flow. Let’s make sure that all screens have the same pair of forward and back buttons.

    At this point in some situations, it might be useful to integrate with an extra why: why you consider the given suggestion to be better.

    When I see these two buttons, I anticipate one to go forward and the other to go back. But this is the only screen where this happens, as before we just used a single button and an “×” to close. This seems to be breaking the consistency in the flow. Let’s make sure that all screens have the same two forward and back buttons so that users don’t get confused.

    Choosing the question approach or the request approach can also at times be a matter of personal preference. I did rounds of anonymous feedback and I reviewed feedback with other people a while back when I was putting a lot of effort into improving my feedback. After a few rounds of this work and a year later, I got a positive response: my feedback came across as effective and grounded. Until I changed teams. Surprise surprise, one particular person gave me a lot of negative feedback. The reason is that I had previously tried not to be prescriptive in my advice—because the people who I was previously working with preferred the open-ended question format over the request style of suggestions. However, there was a person in this other team who had always preferred specific guidance. So I adapted my feedback for them to include requests.

    One comment that I heard come up a few times is that this kind of feedback is quite long, and it doesn’t seem very efficient. Yes, but also no. Let’s explore both sides.

    No, this kind of feedback is actually effective because the length is a byproduct of clarity, and giving this kind of feedback can provide precisely enough information for a sound fix. Also if we zoom out, it can reduce future back-and-forth conversations and misunderstandings, improving the overall efficiency and effectiveness of collaboration beyond the single comment. Imagine that in the example above the feedback were instead just,” Let’s make sure that all screens have the same two forward and back buttons”. Since the designer receiving this feedback wouldn’t have much to go by, they might just make the change. In later iterations, the interface might change or they might introduce new features—and maybe that change might not make sense anymore. Without explaining the why, the designer might assume that the change is one of consistency, but what if it wasn’t? So there could now be an underlying concern that changing the buttons would be perceived as a regression.

    Yes, this style of feedback is not always efficient because the points in some comments don’t always need to be exhaustive, sometimes because certain changes may be obvious (” The font used doesn’t follow our guidelines” ) and sometimes because the team may have a lot of internal knowledge such that some of the whys may be implied.

    The equation above is not intended to provide a predetermined template for feedback, but rather a mnemonic to reflect and enhance the practice. Even after years of active work on my critiques, I still from time to time go back to this formula and reflect on whether what I just wrote is effective.

    The atmosphere

    Well-grounded content is the foundation of feedback, but that’s not really enough. The soft skills of the person who’s providing the critique can multiply the likelihood that the feedback will be well received and understood. It has been demonstrated that only positive feedback can lead to sustained change in people, and tone alone can determine whether content is rejected or welcomed.

    Since our goal is to be understood and to have a positive working environment, tone is essential to work on. I’ve tried to summarize the necessary soft skills over the years using a formula that resembles the one for content: the receptivity equation.

    Respectful feedback comes across as grounded, solid, and constructive. It’s the kind of feedback that, whether it’s positive or negative, is perceived as useful and fair.

    The term “timing” describes the moment when the feedback occurs. To-the-point feedback doesn’t have much hope of being well received if it’s given at the wrong time. When a new feature’s entire high-level information architecture is about to go on sale, it might still be relevant if the questioning raises a significant blocker that no one saw, but those concerns are much more likely to have to wait for a later revision. So in general, attune your feedback to the stage of the project. Early iteration? Iteration that was later? Polishing work in progress? Each of these has unique needs. The right timing will make it more likely that your feedback will be well received.

    Attitude is the equivalent of intent, and in the context of person-to-person feedback, it can be referred to as radical candor. That entails checking whether what we have in mind will actually help the person and improve the overall project before writing. This might be a hard reflection at times because maybe we don’t want to admit that we don’t really appreciate that person. Hopefully that’s not the case, but it can happen, which is fine. Acknowledging and owning that can help you make up for that: how would I write if I really cared about them? How can I avoid being passive aggressive? How can I encourage constructive behavior?

    Form is relevant especially in a diverse and cross-cultural work environments because having great content, perfect timing, and the right attitude might not come across if the way that we write creates misunderstandings. There could be many reasons for this, including the fact that occasionally certain words may cause specific reactions, that nonnative speakers may not be able to comprehend all thenuances of some sentences, that our brains may be different and that our world may be perceived differently; hence, neurodiversity must be taken into account. Whatever the reason, it’s important to review not just what we write but how.

    A few years back, I was asking for some feedback on how I give feedback. I was given some sound advice, but I also got a surprise comment. They pointed out that when I wrote” Oh, ]… ]”, I made them feel stupid. That’s not what I meant to say! I felt really bad, and I just realized that I provided feedback to them for months, and every time I might have made them feel stupid. I was horrified … but also thankful. I quickly changed my situation by adding “oh” to my list of replaced words (your choice between aText, TextExpander, or others ) so that when I typed “oh,” it was immediately deleted.

    Something to highlight because it’s quite frequent—especially in teams that have a strong group spirit—is that people tend to beat around the bush. A positive attitude doesn’t necessarily mean giving in to criticism; it just means that you give it in a respectful and constructive manner, whether it be in the form of criticism or criticism. The nicest thing that you can do for someone is to help them grow.

    We have a great advantage in giving feedback in written form: it can be reviewed by another person who isn’t directly involved, which can help to reduce or remove any bias that might be there. When I shared a comment with someone I knew,” How does this sound,”” How can I do it better,” or even” How would you have written it,” I discovered that the two versions had different meanings.

    The format

    Asynchronous feedback also has a significant inherent benefit: we can devote more time to making sure that the suggestions ‘ clarity of communication and actionability meet two main objectives.

    Let’s imagine that someone shared a design iteration for a project. You are reviewing it and leaving a comment. Let’s try to think about some factors that might be helpful to consider, as there are many ways to accomplish this, and context is of course a factor.

    In terms of clarity, start by grounding the critique that you’re about to give by providing context. This includes specifically describing where you’re coming from: do you have a thorough understanding of the project, or is this your first encounter with it? Are you coming from a high-level perspective, or are you figuring out the details? Are there regressions? Which user’s point of view are you addressing when offering feedback? Is the design iteration at a point where it would be okay to ship this, or are there major things that need to be addressed first?

    Even if you’re giving feedback to a team that already has some background information on the project, providing context is helpful. And context is absolutely essential when giving cross-team feedback. If I were to review a design that might be indirectly related to my work, and if I had no knowledge about how the project arrived at that point, I would say so, highlighting my take as external.

    We frequently concentrate on the negatives and attempt to list every improvement that could be made. That’s of course important, but it’s just as important—if not more—to focus on the positives, especially if you saw progress from the previous iteration. Although this may seem superfluous, it’s important to keep in mind that design is a field with hundreds of possible solutions to each problem. So pointing out that the design solution that was chosen is good and explaining why it’s good has two major benefits: it confirms that the approach taken was solid, and it helps to ground your negative feedback. In the longer term, sharing positive feedback can help prevent regressions on things that are going well because those things will have been highlighted as important. Positive feedback can also help to lessen impostor syndrome as an added bonus.

    There’s one powerful approach that combines both context and a focus on the positives: frame how the design is better than the status quo ( compared to a previous iteration, competitors, or benchmarks ) and why, and then on that foundation, you can add what could be improved. There is a significant difference between a critique of a design that is already in good shape and one that isn’t quite there yet.

    Another way that you can improve your feedback is to depersonalize the feedback: the comments should always be about the work, never about the person who made it. It’s” This button isn’t well aligned” versus” You haven’t aligned this button well”. Just before sending, review your writing to make changes to this.

    In terms of actionability, one of the best approaches to help the designer who’s reading through your feedback is to split it into bullet points or paragraphs, which are easier to review and analyze one by one. You might also consider breaking up the feedback into sections or even across multiple comments if it is longer. Of course, adding screenshots or signifying markers of the specific part of the interface you’re referring to can also be especially useful.

    One approach that I’ve personally used effectively in some contexts is to enhance the bullet points with four markers using emojis. A red square indicates that it is something I consider blocking, a yellow diamond indicates that it should be changed, and a green circle indicates that it is fully confirmed. I also use a blue spiral � � for either something that I’m not sure about, an exploration, an open alternative, or just a note. However, I’d only use this strategy on teams where I’ve already established a high level of trust because it might turn out to be quite demoralizing if I deliver a lot of red squares and change how I communicate that.

    Let’s see how this would work by reusing the example that we used earlier as the first bullet point in this list:

    • 🔶 Navigation—When I see these two buttons, I anticipate one to go forward and the other to go back. But this is the only screen where this happens, as before we just used a single button and an “×” to close. This seems to be breaking the consistency in the flow. Let’s make sure that all screens have the same two forward and back buttons so that users don’t get confused.
    • � � Overall— I think the page is solid, and this is good enough to be our release candidate for a version 1.0.
    • � � Metrics—Good improvement in the buttons on the metrics area, the improved contrast and new focus style make them more accessible.
    • Button Style: Using the green accent in this context gives the impression that it’s a positive action because green is typically seen as a confirmation color. Do we need to explore a different color?
    • Given the number of items on the page and the overall page hierarchy, it seems to me that the tiles should use Subtitle 2 instead of Subtitle 1. This will keep the visual hierarchy more consistent.
    • � � Background—Using a light texture works well, but I wonder whether it adds too much noise in this kind of page. What is the purpose of using that?

    What about giving feedback directly in Figma or another design tool that allows in-place feedback? These are generally difficult to use because they conceal discussions and are harder to follow, but in the right setting, they can be very effective. Just make sure that each of the comments is separate so that it’s easier to match each discussion to a single task, similar to the idea of splitting mentioned above.

    One final note: say the obvious. Sometimes we might feel good or bad about something, so we don’t say it. Or sometimes we might have a doubt that we don’t express because the question might sound stupid. Say it, that’s fine. You might have to reword it a little bit to make the reader feel more comfortable, but don’t hold it back. Good feedback is transparent, even when it may be obvious.

    Asynchronous feedback also has the benefit of automatically guiding decisions, according to writing. Especially in large projects,” Why did we do this”? There’s nothing better than open, transparent discussions that can be reviewed at any time, which could be a question that arises from time to time. For this reason, I recommend using software that saves these discussions, without hiding them once they are resolved.

    Content, tone, and format. Although each of these subjects offers a useful model, focusing on eight areas, including observation, impact, question, timing, attitude, form, clarity, and actionability, is a lot of work at once. One effective approach is to take them one by one: first identify the area that you lack the most (either from your perspective or from feedback from others ) and start there. Then the third, the third, and so on. At first you’ll have to put in extra time for every piece of feedback that you give, but after a while, it’ll become second nature, and your impact on the work will multiply.

    Thanks to Brie Anne Demkiw and Mike Shelton for reviewing the first draft of this article.

  • Asynchronous Design Critique: Getting Feedback

    Asynchronous Design Critique: Getting Feedback

    ” Any remark”? is perhaps one of the worst ways to ask for opinions. It’s obscure and empty ended, and it doesn’t give any indication of what we’re looking for. Getting good opinions starts sooner than we might hope: it starts with the demand.

    It might seem contradictory to start the process of receiving feedback with a problem, but that makes sense if we realize that getting feedback can be thought of as a form of pattern research. In the same way that we wouldn’t perform any studies without the correct questions to get the insight that we need, the best way to ask for feedback is also to build strong issues.

    Design criticism is never a one-shot process. Sure, any great comments process continues until the project is finished, but this is especially true for layout because architecture work continues iteration after iteration, from a high level to the finest details. Each stage needs its unique set of questions.

    And suddenly, as with any great research, we need to examine what we got up, get to the base of its perspectives, and take action. Problem, generation, and evaluation. This look at each of those.

    The problem

    Being available to input is important, but we need to be specific about what we’re looking for. Just saying” Any opinion”?,” What do you think”?, or” I’d like to get your mind” at the end of a presentation—whether it’s in person, over videos, or through a written post—is likely to get a variety of different ideas or, even worse, get everyone to follow the direction of the first person who speaks up. And then… we get frustrated because vague questions like those can turn a high-level flows review into people instead commenting on the borders of buttons. Which might be a hearty topic, so it might be hard at that point to redirect the team to the subject that you had wanted to focus on.

    But how do we get into this situation? It’s a mix of factors. One is that we don’t usually consider asking as a part of the feedback process. Another is how natural it is to just leave the question implied, expecting the others to be on the same page. Another is that in nonprofessional discussions, there’s often no need to be that precise. In short, we tend to underestimate the importance of the questions, so we don’t work on improving them.

    The act of asking good questions guides and focuses the critique. It’s also a form of consent: it makes it clear that you’re open to comments and what kind of comments you’d like to get. It puts people in the right mental state, especially in situations when they weren’t expecting to give feedback.

    There isn’t a single best way to ask for feedback. It just needs to be specific, and specificity can take many shapes. A model for design critique that I’ve found particularly useful in my coaching is the one of stage versus depth.

    Stage” refers to each of the steps of the process—in our case, the design process. In progressing from user research to the final design, the kind of feedback evolves. But within a single step, one might still review whether some assumptions are correct and whether there’s been a proper translation of the amassed feedback into updated designs as the project has evolved. A starting point for potential questions could derive from the layers of user experience. What do you want to know: Project objectives? User needs? Functionality? Content? Interaction design? Information architecture? UI design? Navigation planning? Visual design? Branding?

    Here’re a few example questions that are precise and to the point that refer to different layers:

    • Functionality: Is it desirable to automate account creation?
    • Interaction design: Take a look through the updated flow and let me know whether you see any steps or error states that I might’ve missed.
    • Information architecture: This page contains two competing pieces of information. Is the structure effective in communicating them both?
    • User interface design: What do you think about the top-most error counter, which ensures that you can see the next error even when the error is outside the viewport?
    • Navigation design: From research, we identified these second-level navigation items, but once you’re on the page, the list feels too long and hard to navigate. Are there any ways to deal with this?
    • Visual design: Are the sticky notifications in the bottom-right corner visible enough?

    How much of a presentation’s depth would be on the other axis of specificity. For example, we might have introduced a new end-to-end flow, but there was a specific view that you found particularly challenging and you’d like a detailed review of that. This can be especially helpful when switching between iterations because it’s crucial to highlight the changes made.

    There are other things that we can consider when we want to achieve more specific—and more effective—questions.

    Eliminating generic qualifiers from your questions like “good,” “well,” “nice,” “bad,” “okay,” and” cool” is a simple trick. For example, asking,” When the block opens and the buttons appear, is this interaction good”? is it possible to look specific, but you can spot the “good” qualifier and make the question” When the block opens and the buttons appear, is it clear what the next action is” look like?

    Sometimes we actually do want broad feedback. That’s uncommon, but it can occur. In that sense, you might still make it explicit that you’re looking for a wide range of opinions, whether at a high level or with details. Or perhaps just say,” At first glance, what do you think”? so that it’s clear that what you’re asking is open ended but focused on someone’s impression after their first five seconds of looking at it.

    Sometimes the project is particularly broad, and some areas may have already been thoroughly explored. In these situations, it might be useful to explicitly say that some parts are already locked in and aren’t open to feedback. Although it’s not something I’d recommend in general, I’ve found it helpful in avoiding getting back into rabbit holes like those that could lead to further refinement but aren’t currently what matters most.

    Asking specific questions can completely change the quality of the feedback that you receive. People with less refined criticism will now be able to provide more actionable feedback, and even expert designers will appreciate the clarity and effectiveness gained from concentrating solely on what’s needed. It can save a lot of time and frustration.

    The iteration

    Design iterations are probably the most visible part of the design work, and they provide a natural checkpoint for feedback. Many design tools have inline commenting, but many of them only display changes as a single fluid stream in the same file. These types of design tools cause conversations to end after they are resolved, update shared UI components automatically, and require designers to always display the most recent version unless these would-be useful features were manually disabled. The implied goal that these design tools seem to have is to arrive at just one final copy with all discussions closed, probably because they inherited patterns from how written documents are collaboratively edited. That approach to design critiques is probably not the best approach, but some teams might benefit from it even if I don’t want to be too prescriptive.

    The asynchronous design-critique approach that I find most effective is to create explicit checkpoints for discussion. I’m going to use the term iteration post for this. It refers to a write-up or presentation of the design iteration followed by a discussion thread of some kind. This can be used on any platform that can accommodate this structure. By the way, when I refer to a “write-up or presentation“, I’m including video recordings or other media too: as long as it’s asynchronous, it works.

    There are many benefits to using iteration posts:

    • It creates a rhythm in the design work so that the designer can review feedback from each iteration and prepare for the next.
    • Decisions are always available, and conversations are also made accessible for future review.
    • It creates a record of how the design changed over time.
    • It might also make it simpler to collect and act on feedback depending on the tool.

    These posts of course don’t mean that no other feedback approach should be used, just that iteration posts could be the primary rhythm for a remote design team to use. From there, there can be additional feedback techniques ( such as live critique, pair designing, or inline comments ).

    I don’t think there’s a standard format for iteration posts. However, there are a few high-level elements that make sense to include as a baseline:

    1. The goal
    2. The layout
    3. The list of changes
    4. The problems

    Each project is likely to have a goal, and hopefully it’s something that’s already been summarized in a single sentence somewhere else, such as the client brief, the product manager’s outline, or the project owner’s request. Therefore, I would repeat this in every iteration post, literally copy and pasting it. The idea is to provide context and to repeat what’s essential to make each iteration post complete so that there’s no need to find information spread across multiple posts. The most recent iteration post will have everything I need if I want to know about the most recent design.

    This copy-and-paste part introduces another relevant concept: alignment comes from repetition. Therefore, repeating information in posts helps to ensure that everyone is on the same page.

    The design is then the actual series of information-architecture outlines, diagrams, flows, maps, wireframes, screens, visuals, and any other kind of design work that’s been done. It’s any design object, to put it briefly. For the final stages of work, I prefer the term blueprint to emphasize that I’ll be showing full flows instead of individual screens to make it easier to understand the bigger picture.

    It might also be helpful to have clear names on the objects since it makes them look better to refer to. Write the post in a way that helps people understand the work. It’s not much different from creating a strong live presentation.

    For an efficient discussion, you should also include a bullet list of the changes from the previous iteration to let people focus on what’s new, which can be especially useful for larger pieces of work where keeping track, iteration after iteration, could become a challenge.

    Finally, as mentioned earlier, a list of the questions must be included in order to help you guide the design critique. Doing this as a numbered list can also help make it easier to refer to each question by its number.

    Not every iteration is the same. Earlier iterations don’t need to be as tightly focused—they can be more exploratory and experimental, maybe even breaking some of the design-language guidelines to see what’s possible. Then, later, the iterations begin coming to a decision and improving it until the design process is complete and the feature is ready.

    I want to highlight that even if these iteration posts are written and conceived as checkpoints, by no means do they need to be exhaustive. A post might be just a concept to start a conversation, or it might be a cumulative list of all the features that have been added gradually over the course of each iteration until the full picture is achieved.

    Over time, I also started using specific labels for incremental iterations: i1, i2, i3, and so on. Although this may seem like a minor labeling tip, it can be useful in many ways:

    • Unique—It’s a clear unique marker. Everyone knows where to go to review things, and it’s simple to say” This was discussed in i4″ with each project.
    • Unassuming—It works like versions ( such as v1, v2, and v3 ) but in contrast, versions create the impression of something that’s big, exhaustive, and complete. Attempts must be exploratory, incomplete, or partial.
    • Future proof—It resolves the “final” naming problem that you can run into with versions. No more files with the title “final final complete no-really-its-done” Within each project, the largest number always represents the latest iteration.

    The wording release candidate (RC ) could be used to indicate when a design is finished enough to be worked on, even if there are some areas that still need improvement and, in turn, require more iterations, such as” with i8 we reached RC” or “i12 is an RC” to indicate when it is finished.

    The review

    What typically occurs during a design critique is an open discussion that can be very productive between two people. This approach is particularly effective during live, synchronous feedback. However, when we work asynchronously, it is more effective to adopt a different strategy: we can adopt a user-research mindset. Written feedback from teammates, stakeholders, or others can be treated as if it were the result of user interviews and surveys, and we can analyze it accordingly.

    Asynchronous feedback is particularly effective around these friction points because of this shift’s significant benefits:

    1. It removes the pressure to reply to everyone.
    2. It lessens the annoyance of snoop-by comments.
    3. It lessens our personal stake.

    The first friction point is having to feel pressured to respond to each and every comment. Sometimes we write the iteration post, and we get replies from our team. It’s simple, straightforward, and doesn’t cause any issues. But other times, some solutions might require more in-depth discussions, and the amount of replies can quickly increase, which can create a tension between trying to be a good team player by replying to everyone and doing the next design iteration. If the respondent is a stakeholder or a person directly involved in the project, this might be especially true. We need to accept that this pressure is absolutely normal, and it’s human nature to try to accommodate people who we care about. When responding to all comments, it can be effective, but when we consider a design critique more like user research, we realize that we don’t need to respond to every comment, and there are alternatives in asynchronous spaces:

      One is to let the next iteration speak for itself. That is the response when the design changes and we publish a follow-up iteration. You might tag all the people who were involved in the previous discussion, but even that’s a choice, not a requirement.
    • Another tactic is to formally acknowledge each comment in a brief response, such as” Understood. Thank you”,” Good points— I’ll review”, or” Thanks. These will be included in the upcoming iteration. In some cases, this could also be just a single top-level comment along the lines of” Thanks for all the feedback everyone—the next iteration is coming soon”!
    • One more thing is to quickly summarize the comments before proceeding. Depending on your workflow, this can be particularly useful as it can provide a simplified checklist that you can then use for the next iteration.

    The swoop-by comment, which is the kind of feedback that comes from a member of a team or non-project who might not be aware of the context, restrictions, decisions, or requirements, or of the discussions from earlier iterations, is the second friction point. On their side, there’s something that one can hope that they might learn: they could start to acknowledge that they’re doing this and they could be more conscious in outlining where they’re coming from. It can be annoying to have to repeat the same response repeatedly in swoop-by comments.

    Let’s begin by acknowledging again that there’s no need to reply to every comment. However, a brief response with a link to the previous discussion for additional information is typically sufficient if responding to a previously litigated point might be helpful. Remember, alignment comes from repetition, so it’s okay to repeat things sometimes!

    Swoop-by commenting has two benefits: first, they might point out something that isn’t clear, and second, they might serve as a reference point for someone who is first viewing the design. Sure, you’ll still be frustrated, but that might at least help in dealing with it.

    The personal stake we might have in the design could be the third friction point, which might cause us to feel defensive if the review turned into a discussion. Treating feedback as user research helps us create a healthy distance between the people giving us feedback and our ego ( because yes, even if we don’t want to admit it, it’s there ). And in the end, presenting everything in aggregated form helps us to prioritize our work more.

    Always remember that while you need to listen to stakeholders, project owners, and specific advice, you don’t have to accept every piece of feedback. You must examine it and come up with a conclusion that you can support, but sometimes “no” is the best choice.

    As the designer leading the project, you’re in charge of that decision. In the end, everyone has their area of expertise, and as a designer, you are the one with the most background and knowledge to make the right choice. And by listening to the feedback that you’ve received, you’re making sure that it’s also the best and most balanced decision.

    Thanks to Mike Shelton and Brie Anne Demkiw for their contributions to the initial draft of this article.

  • Designing for the Unexpected

    Designing for the Unexpected

    Although I’m not certain when I first heard this statement, it has stuck with me over the centuries. How do you generate solutions for scenarios you can’t think? Or create items that function on products that have not yet been created?

    Flash, Photoshop, and flexible pattern

    When I first started designing sites, my go-to technology was Photoshop. I set about making a layout that I would eventually fall content into a 960px cloth. The growth phase was about attaining pixel-perfect precision using set widths, fixed levels, and absolute setting.

    All of this was altered by Ethan Marcotte’s speak at An Event Apart and the subsequent article in A Checklist Off in 2010. I was sold on responsive pattern as soon as I heard about it, but I was even terrified. The pixel-perfect models full of special figures that I had formerly prided myself on producing were no longer good enough.

    My first encounter with flexible style didn’t help my fear. My second project was to get an active fixed-width website and make it reactive. You can’t really put responsiveness at the end of a job, which I learned the hard way. To make smooth design, you need to prepare throughout the style phase.

    A new way to style

    Making flexible or liquid websites has always been about removing restrictions and creating content that can be viewed on any system. It relies on the use of percentage-based design, which I immediately achieved with local CSS and power groups:

    .column-span-6 { width: 49%; float: left; margin-right: 0.5%; margin-left: 0.5%;}.column-span-4 { width: 32%; float: left; margin-right: 0.5%; margin-left: 0.5%;}.column-span-3 { width: 24%; float: left; margin-right: 0.5%; margin-left: 0.5%;}

    Therefore with Sass but that I could use @includes to re-use repeated blocks of code and transition to more semantic html:

    .logo { @include colSpan(6);}.search { @include colSpan(3);}.social-share { @include colSpan(3);}

    Media concerns

    The next ingredient for reactive design is press queries. Without them, regardless of whether the content remained readable, would shrink to fit the available space. ( The exact opposite issue developed with the introduction of a mobile-first approach. )

    Media concerns prevented this by allowing us to add breakpoints where the design could adapt. Like most people, I started out with three breakpoints: one for desktop, one for tablets, and one for mobile. Over the years, I added more and more for phablets, wide screens, and so on. 

    For years, I happily worked this way and improved both my design and front-end skills in the process. The only problem I encountered was making changes to content, since with our Sass grid system in place, there was no way for the site owners to add content without amending the markup—something a small business owner might struggle with. This is because each row in the grid was defined using a div as a container. Adding content meant creating new row markup, which requires a level of HTML knowledge.

    String premium was a mainstay of early flexible design, present in all the frequently used systems like Bootstrap and Skeleton.

    1 of 7
    2 of 7
    3 of 7
    4 of 7
    5 of 7
    6 of 7
    7 of 7

    Another difficulty arose as I moved from a design firm building websites for little- to medium-sized companies, to larger in-house teams where I worked across a collection of related sites. In those positions, I began to work more frequently with reusable components.

    Our reliance on media queries resulted in components that were tied to common viewport sizes. If the goal of component libraries is reuse, then this is a real problem because you can only use these components if the devices you’re designing for correspond to the viewport sizes used in the pattern library—in the process not really hitting that “devices that don’t yet exist” goal.

    Then there’s the problem of space. Media concerns allow components to adapt based on the viewport size, but what if I put a component into a sidebar, like in the figure below?

    Container queries: our savior or a false dawn?

    Container queries have long been touted as an improvement upon media queries, but at the time of writing are unsupported in most browsers. Workarounds for JavaScript exist, but they can lead to dependencies and compatibility issues. The basic theory underlying container queries is that elements should change based on the size of their parent container and not the viewport width, as seen in the following illustrations.

    One of the biggest arguments in favor of container queries is that they help us create components or design patterns that are truly reusable because they can be picked up and placed anywhere in a layout. This is an important step in moving toward a form of component-based design that works at any size on any device.

    In other words, responsive layouts are to be replaced by responsive components.

    Container queries will help us move from designing pages that respond to the browser or device size to designing components that can be placed in a sidebar or in the main content, and respond accordingly.

    My issue is that layout is still used to determine when a design needs to adapt. This approach will always be restrictive, as we will still need pre-defined breakpoints. For this reason, my main question with container queries is, How would we decide when to change the CSS used by a component?

    The best place to make that choice is probably a component library that is disconnected from context and real content.

    As the diagrams below illustrate, we can use container queries to create designs for specific container widths, but what if I want to change the design based on the image size or ratio?

    In this example, the dimensions of the container are not what should dictate the design, rather, the image is.

    Without reliable cross-browser support for them, it’s difficult to say for certain whether container queries will be successful. Responsive component libraries would definitely evolve how we design and would improve the possibilities for reuse and design at scale. However, we might always need to modify these elements to fit our content.

    CSS is changing

    Whilst the container query debate rumbles on, there have been numerous advances in CSS that change the way we think about design. The days of fixed-width elements measured in pixels and floated div elements used to cobble layouts together are long gone, consigned to history along with table layouts. Flexbox and CSS Grid have revolutionized layouts for the web. We can now create elements that wrap onto new rows when they run out of space, not when the device changes.

    .wrapper { display: grid; grid-template-columns: repeat(auto-fit, 450px); gap: 10px;}

    The repeat() function paired with auto-fit or auto-fill allows us to specify how much space each column should use while leaving it up to the browser to decide when to spill the columns onto a new line. Similar things can be achieved with Flexbox, as elements can wrap over multiple rows and “flex” to fill available space. 

    .wrapper { display: flex; flex-wrap: wrap; justify-content: space-between;}.child { flex-basis: 32%; margin-bottom: 20px;}

    You don’t need to wrap elements in container rows, which is the biggest benefit of all of this. Without rows, content isn’t tied to page markup in quite the same way, allowing for removals or additions of content without additional development.

    This is a big step forward when it comes to creating designs that allow for evolving content, but the real game changer for flexible designs is CSS Subgrid.

    Remember the days of crafting perfectly aligned interfaces, only for the customer to add an unbelievably long header almost as soon as they’re given CMS access, like the illustration below?

    Subgrid allows elements to respond to adjustments in their own content and in the content of sibling elements, helping us create designs more resilient to change.

    .wrapper { display: grid; grid-template-columns: repeat(auto-fit, minmax(150px, 1fr)); grid-template-rows: auto 1fr auto; gap: 10px;}.sub-grid { display: grid; grid-row: span 3; grid-template-rows: subgrid; /* sets rows to parent grid */}

    CSS Grid allows us to separate layout and content, thereby enabling flexible designs. Meanwhile, Subgrid allows us to create designs that can adapt in order to suit morphing content. Subgrid is only supported in Firefox at the time of writing, but the above code can be implemented behind an @supports feature query.

    Intrinsic layouts

    I’d be remiss not to mention intrinsic layouts, a term used by Jen Simmons to describe a mix of contemporary and traditional CSS features used to create layouts that respond to available space.

    Responsive layouts have flexible columns using percentages. Intrinsic layouts, on the other hand, use the fr unit to create flexible columns that won’t ever shrink so much that they render the content illegible.

    frunits is a statement that says,” I want you to distribute the extra space in this way, but never make it smaller than the content that is inside.”

    —Jen Simmons,” Designing Intrinsic Layouts”

    Additionally, intrinsic layouts can mix and match both fixed and flexible units, letting the content choose how much space is taken up.

    What makes intrinsic design stand out is that it not only creates designs that can withstand future devices but also helps scale design without losing flexibility. Without the requirement of having the same breakpoints or the same amount of content as in the previous implementation, components and patterns can be lifted and reused.

    We can now create designs that adapt to the space they have, the content within them, and the content around them. We can create responsive components without relying on container queries using an intrinsic approach.

    Another 2010 moment?

    This intrinsic approach should in my view be every bit as groundbreaking as responsive web design was ten years ago. It’s another “everything changed” moment for me.

    But it doesn’t seem to be moving quite as fast, I haven’t yet had that same career-changing moment I had with responsive design, despite the widely shared and brilliant talk that brought it to my attention.

    One possible explanation for that is that I now work for a sizable company, which is quite different from the role I held as a design agency in 2010! In my agency days, every new project was a clean slate, a chance to try something new. Nowadays, projects use existing tools and frameworks and are often improvements to existing websites with an existing codebase.

    Another possibility is that I’m now more prepared for change. In 2010 I was new to design in general, the shift was frightening and required a lot of learning. Additionally, an intrinsic approach isn’t exactly new; it’s a different way to use existing skills and CSS knowledge.

    You can’t framework your way out of a content problem

    Another reason for the slightly slower adoption of intrinsic design could be the lack of quick-fix framework solutions available to kick-start the change.

    Ten years ago, responsive grid systems were everywhere. With a framework like Bootstrap or Skeleton, you had a responsive design template at your fingertips.

    Because having a selection of units is a hindrance when creating layout templates, intrinsic design and frameworks do not work together quite as well. The beauty of intrinsic design is combining different units and experimenting with techniques to get the best for your content.

    And then there are design tools. We probably all used Photoshop templates for desktop, tablet, and mobile devices to drop designs into and show how the site would appear throughout our careers at some point.

    How do you do that now, with each component responding to content and layouts flexing as and when they need to? This kind of design must take place in the browser, which is something I’m very fond of.

    The debate about “whether designers should code” is another that has rumbled on for years. When designing a digital product, we should, at the very least, design for a best- and worst-case scenario when it comes to content. It’s not ideal to do this in a graphics-based software package. In code, we can add longer sentences, more radio buttons, and extra tabs, and watch in real time as the design adapts. Does it continue to function? Is the design too reliant on the current content?

    Personally, I look forward to the day intrinsic design is the standard for design, when a design component can be truly flexible and adapt to both its space and content with no reliance on device or container dimensions.

    First, the content

    Content is not constant. After all, to design for the unanticipated or unexpected, we must take into account changes in content, like in our earlier Subgrid card illustration, which allowed the cards to modify both their own content and that of their sibling components.

    Thankfully, there’s more to CSS than layout, and plenty of properties and values can help us put content first. Subgrid and pseudo-elements like ::first-line and ::first-letter help to separate design from markup so we can create designs that allow for changes.

    This is not the same as previous markup hacks like this.

    First line of text with different styling...

    —we can target content based on where it appears.

    .element::first-line { font-size: 1.4em;}.element::first-letter { color: red;}

    Much bigger additions to CSS include logical properties, which change the way we construct designs using logical dimensions (start and end) instead of physical ones (left and right), something CSS Grid also does with functions like min(), max(), and clamp().

    This flexibility allows for directional changes according to content, a common requirement when we need to present content in multiple languages. In the past, this was often achieved with Sass mixins but was often limited to switching from left-to-right to right-to-left orientation.

    Directional variables must be set in the Sass version.

    $direction: rtl;$opposite-direction: ltr;$start-direction: right;$end-direction: left;

    These variables can be used as values—

    body { direction: $direction; text-align: $start-direction;}

    —or as real estate.

    margin-#{$end-direction}: 10px;padding-#{$start-direction}: 10px;

    However, now we have native logical properties, removing the reliance on both Sass ( or a similar tool ) and pre-planning that necessitated using variables throughout a codebase. These properties also start to break apart the tight coupling between a design and strict physical dimensions, creating more flexibility for changes in language and in direction.

    margin-block-end: 10px;padding-block-start: 10px;

    There are also native start and end values for properties like text-align, which means we can replace text-align: right with text-align: start.

    Like the earlier examples, these properties help to build out designs that aren’t constrained to one language, the design will reflect the content’s needs.

    Fluid and fixed

    We briefly covered the power of combining fixed widths with fluid widths with intrinsic layouts. The min() and max() functions are a similar concept, allowing you to specify a fixed value with a flexible alternative. 

    For min() this means setting a fluid minimum value and a maximum fixed value.

    .element { width: min(50%, 300px);}

    The element in the figure above will be 50 % of its container as long as the element’s width doesn’t exceed 300px.

    For max() we can set a flexible max value and a minimum fixed value.

    .element { width: max(50%, 300px);}

    Now the element will be 50 % of its container as long as the element’s width is at least 300px. This means we can set limits but allow content to react to the available space.

    The clamp() function builds on this by allowing us to set a preferred value with a third parameter. Now we can allow the element to shrink or grow if it needs to without getting to a point where it becomes unusable.

    .element { width: clamp(300px, 50%, 600px);}

    This time, the element’s width will be 50 % of its container’s preferred value, with no exceptions for 300px and 600px.

    With these techniques, we have a content-first approach to responsive design. We can separate content from markup, meaning the changes users make will not affect the design. By making plans for unanticipated changes in language or direction, we can begin to future-proof designs. And we can increase flexibility by setting desired dimensions alongside flexible alternatives, allowing for more or less content to be displayed correctly.

    First, the situation

    Thanks to what we’ve discussed so far, we can cover device flexibility by changing our approach, designing around content and space instead of catering to devices. But what about that last bit of Jeffrey Zeldman’s quote,”… situations you haven’t imagined”?

    It’s a very different thing to design for someone seated at a desktop computer as opposed to someone using a mobile phone and moving through a crowded street in glaring sunshine. Situations and environments are hard to plan for or predict because they change as people react to their own unique challenges and tasks.

    This is why choice is so important. One size never fits all, so we need to design for multiple scenarios to create equal experiences for all our users.

    Thankfully, there is a lot we can do to provide choice.

    Responsible design

    ” There are parts of the world where mobile data is prohibitively expensive, and where there is little or no broadband infrastructure”.

    I Used the Web for a Day on a 50 MB Budget

    Chris Ashton

    One of the biggest assumptions we make is that people interacting with our designs have a good wifi connection and a wide screen monitor. But in the real world, our users may be commuters traveling on trains or other forms of transport using smaller mobile devices that can experience drops in connectivity. There is nothing more frustrating than a web page that won’t load, but there are ways we can help users use less data or deal with sporadic connectivity.

    The srcset attribute allows the browser to decide which image to serve. This means we can create smaller ‘cropped’ images to display on mobile devices in turn using less bandwidth and less data.

    Image alt text

    The preload attribute can also help us to think about how and when media is downloaded. It can be used to tell a browser about any critical assets that need to be downloaded with high priority, improving perceived performance and the user experience. 

      

    There’s also native lazy loading, which indicates assets that should only be downloaded when they are needed.

    …

    With srcset, preload, and lazy loading, we can start to tailor a user’s experience based on the situation they find themselves in. What none of this does, however, is allow the user themselves to decide what they want downloaded, as the decision is usually the browser’s to make. 

    So how can we put users in control?

    The return of media queries

    Media concerns have always been about much more than device sizes. They allow content to adapt to different situations, with screen size being just one of them.

    We’ve long been able to check for media types like print and speech and features such as hover, resolution, and color. These checks allow us to provide options that suit more than one scenario, it’s less about one-size-fits-all and more about serving adaptable content.

    As of this writing, the Media Queries Level 5 spec is still under development. It introduces some really exciting queries that in the future will help us design for multiple other unexpected situations.

    For example, there’s a light-level feature that allows you to modify styles if a user is in sunlight or darkness. Paired with custom properties, these features allow us to quickly create designs or themes for specific environments.

    @media (light-level: normal) { --background-color: #fff; --text-color: #0b0c0c; }@media (light-level: dim) { --background-color: #efd226; --text-color: #0b0c0c;}

    Another key feature of the Level 5 spec is personalization. Instead of creating designs that are the same for everyone, users can choose what works for them. This is achieved by using features like prefers-reduced-data, prefers-color-scheme, and prefers-reduced-motion, the latter two of which already enjoy broad browser support. These features tap into preferences set via the operating system or browser so people don’t have to spend time making each site they visit more usable. 

    Media concerns like this go beyond choices made by a browser to grant more control to the user.

    Expect the unexpected

    In the end, the one thing we should always expect is for things to change. Devices in particular change faster than we can keep up, with foldable screens already on the market.

    We can’t design the same way we have for this ever-changing landscape, but we can design for content. By putting content first and allowing that content to adapt to whatever space surrounds it, we can create more robust, flexible designs that increase the longevity of our products.

    A lot of the CSS discussed here is about moving away from layouts and putting content at the heart of design. From responsive components to fixed and fluid units, there is so much more we can do to take a more intrinsic approach. Even better, we can test these techniques during the design phase by designing in-browser and watching how our designs adapt in real-time.

    When it comes to unexpected situations, we need to make sure our products are usable when people need them, whenever and wherever that might be. We can move closer to achieving this by involving users in our design decisions, by creating choice via browsers, and by giving control to our users with user-preference-based media queries.

    Good design for the unexpected should allow for change, provide choice, and give control to those we serve: our users themselves.

  • Voice Content and Usability

    Voice Content and Usability

    We’ve been having meetings for thousands of years. Whether to present information, perform transactions, or just to check in on one another, people have yammered aside, chattering and gesticulating, through spoken discussion for many generations. Only in the last few millennia have we begun to undertake our conversations to reading, and only in the last few decades have we begun to export them to the system, a device that shows much more affection for written letter than for the vernacular vagaries of spoken language.

    Computers have trouble because between spoken and written language, speech is more primordial. To have successful conversations with us, machines must grapple with the messiness of human speech: the disfluencies and pauses, the gestures and body language, and the variations in word choice and spoken dialect that can stymie even the most carefully crafted human-computer interaction. In the human-to-human scenario, spoken language also has the privilege of face-to-face contact, where we can readily interpret nonverbal social cues.

    In contrast, written language immediately concretizes as we commit it to record and retains usages long after they become obsolete in spoken communication ( the salutation” To whom it may concern”, for example ), generating its own fossil record of outdated terms and phrases. Because it tends to be more consistent, polished, and formal, written text is fundamentally much easier for machines to parse and understand.

    Spoken language has no such luxury. Besides the nonverbal cues that decorate conversations with emphasis and emotional context, there are also verbal cues and vocal behaviors that modulate conversation in nuanced ways: how something is said, not what. Whether rapid-fire, low-pitched, or high-decibel, whether sarcastic, stilted, or sighing, our spoken language conveys much more than the written word could ever muster. So when it comes to voice interfaces—the machines we conduct spoken conversations with—we face exciting challenges as designers and content strategists.

    Voice Interactions

    We interact with voice interfaces for a variety of reasons, but according to Michael McTear, Zoraida Callejas, and David Griol in The Conversational Interface, those motivations by and large mirror the reasons we initiate conversations with other people, too ( ). Generally, we start up a conversation because:

    • we need something done ( such as a transaction ),
    • we want to know something ( information of some sort ), or
    • we are social beings and want someone to talk to ( conversation for conversation’s sake ).

    These three categories—which I call transactional, informational, and prosocial—also characterize essentially every voice interaction: a single conversation from beginning to end that realizes some outcome for the user, starting with the voice interface’s first greeting and ending with the user exiting the interface. Note here that a conversation in our human sense—a chat between people that leads to some result and lasts an arbitrary length of time—could encompass multiple transactional, informational, and prosocial voice interactions in succession. In other words, a voice interaction is a conversation, but a conversation is not necessarily a single voice interaction.

    Purely prosocial conversations are more gimmicky than captivating in most voice interfaces, because machines don’t yet have the capacity to really want to know how we’re doing and to do the sort of glad-handing humans crave. There’s also ongoing debate as to whether users actually prefer the sort of organic human conversation that begins with a prosocial voice interaction and shifts seamlessly into other types. In fact, in Voice User Interface Design, Michael Cohen, James Giangola, and Jennifer Balogh recommend sticking to users ‘ expectations by mimicking how they interact with other voice interfaces rather than trying too hard to be human—potentially alienating them in the process ( ).

    That leaves two genres of conversations we can have with one another that a voice interface can easily have with us, too: a transactional voice interaction realizing some outcome ( “buy iced tea” ) and an informational voice interaction teaching us something new ( “discuss a musical” ).

    Transactional voice interactions

    Unless you’re tapping buttons on a food delivery app, you’re generally having a conversation—and therefore a voice interaction—when you order a Hawaiian pizza with extra pineapple. Even when we walk up to the counter and place an order, the conversation quickly pivots from an initial smattering of neighborly small talk to the real mission at hand: ordering a pizza ( generously topped with pineapple, as it should be ).

    Alison: Hey, how’s it going?

    Burhan: Hi, welcome to Crust Deluxe! It’s cold out there. How can I help you?

    Alison: Can I get a Hawaiian pizza with extra pineapple?

    Burhan: Sure, what size?

    Alison: Large.

    Burhan: Anything else?

    Alison: No thanks, that’s it.

    Burhan: Something to drink?

    Alison: I’ll have a bottle of Coke.

    Burhan: You got it. That’ll be$ 13.55 and about fifteen minutes.

    Each progressive disclosure in this transactional conversation reveals more and more of the desired outcome of the transaction: a service rendered or a product delivered. Transactional conversations have certain key traits: they’re direct, to the point, and economical. They quickly dispense with pleasantries.

    Informational voice interactions

    Meanwhile, some conversations are primarily about obtaining information. Though Alison might visit Crust Deluxe with the sole purpose of placing an order, she might not actually want to walk out with a pizza at all. She might be just as interested in whether they serve halal or kosher dishes, gluten-free options, or something else. Here, though we again have a prosocial mini-conversation at the beginning to establish politeness, we’re after much more.

    Alison: Hey, how’s it going?

    Burhan: Hi, welcome to Crust Deluxe! It’s cold out there. How can I help you?

    Alison: Can I ask a few questions?

    Burhan: Of course! Go right ahead.

    Alison: Do you have any halal options on the menu?

    Burhan: Absolutely! We can make any pie halal by request. We also have lots of vegetarian, ovo-lacto, and vegan options. Are you thinking about any other dietary restrictions?

    Alison: What about gluten-free pizzas?

    Burhan: We can definitely do a gluten-free crust for you, no problem, for both our deep-dish and thin-crust pizzas. Anything else I can answer for you?

    Alison: That’s it for now. Good to know. Thanks!

    Burhan: Anytime, come back soon!

    This is a very different dialogue. Here, the goal is to get a certain set of facts. Informational conversations are investigative quests for the truth—research expeditions to gather data, news, or facts. Voice interactions that are informational might be more long-winded than transactional conversations by necessity. Responses tend to be lengthier, more informative, and carefully communicated so the customer understands the key takeaways.

    Voice Interfaces

    At their core, voice interfaces employ speech to support users in reaching their goals. But simply because an interface has a voice component doesn’t mean that every user interaction with it is mediated through voice. Because multimodal voice interfaces can lean on visual components like screens as crutches, we’re most concerned in this book with pure voice interfaces, which depend entirely on spoken conversation, lack any visual component whatsoever, and are therefore much more nuanced and challenging to tackle.

    Though voice interfaces have long been integral to the imagined future of humanity in science fiction, only recently have those lofty visions become fully realized in genuine voice interfaces.

    Interactive voice response ( IVR ) systems

    Though written conversational interfaces have been fixtures of computing for many decades, voice interfaces first emerged in the early 1990s with text-to-speech ( TTS ) dictation programs that recited written text aloud, as well as speech-enabled in-car systems that gave directions to a user-provided address. With the advent of interactive voice response ( IVR ) systems, intended as an alternative to overburdened customer service representatives, we became acquainted with the first true voice interfaces that engaged in authentic conversation.

    IVR systems allowed organizations to reduce their reliance on call centers but soon became notorious for their clunkiness. Commonplace in the corporate world, these systems were primarily designed as metaphorical switchboards to guide customers to a real phone agent (” Say Reservations to book a flight or check an itinerary” ), chances are you will enter a conversation with one when you call an airline or hotel conglomerate. Despite their functional issues and users ‘ frustration with their inability to speak to an actual human right away, IVR systems proliferated in the early 1990s across a variety of industries (, PDF).

    While IVR systems are great for highly repetitive, monotonous conversations that generally don’t veer from a single format, they have a reputation for less scintillating conversation than we’re used to in real life ( or even in science fiction ).

    Screen readers

    Parallel to the evolution of IVR systems was the invention of the screen reader, a tool that transcribes visual content into synthesized speech. For Blind or visually impaired website users, it’s the predominant method of interacting with text, multimedia, or form elements. Screen readers represent perhaps the closest equivalent we have today to an out-of-the-box implementation of content delivered through voice.

    Among the first screen readers known by that moniker was the Screen Reader for the BBC Micro and NEEC Portable developed by the Research Centre for the Education of the Visually Handicapped (RCEVH) at the University of Birmingham in 1986 ( ). That same year, Jim Thatcher created the first IBM Screen Reader for text-based computers, later recreated for computers with graphical user interfaces ( GUIs ) ( ).

    With the rapid growth of the web in the 1990s, the demand for accessible tools for websites exploded. Thanks to the introduction of semantic HTML and especially ARIA roles beginning in 2008, screen readers started facilitating speedy interactions with web pages that ostensibly allow disabled users to traverse the page as an aural and temporal space rather than a visual and physical one. In other words, screen readers for the web “provide mechanisms that translate visual design constructs—proximity, proportion, etc. —into useful information”, writes Aaron Gustafson in A List Apart. ” At least they do when documents are authored thoughtfully” ( ).

    Though deeply instructive for voice interface designers, there’s one significant problem with screen readers: they’re difficult to use and unremittingly verbose. The visual structures of websites and web navigation don’t translate well to screen readers, sometimes resulting in unwieldy pronouncements that name every manipulable HTML element and announce every formatting change. For many screen reader users, working with web-based interfaces exacts a cognitive toll.

    In Wired, accessibility advocate and voice engineer Chris Maury considers why the screen reader experience is ill-suited to users relying on voice:

    From the beginning, I hated the way that Screen Readers work. Why are they designed the way they are? It makes no sense to present information visually and then, and only then, translate that into audio. All of the time and energy that goes into creating the perfect user experience for an app is wasted, or even worse, adversely impacting the experience for blind users. ( )

    In many cases, well-designed voice interfaces can speed users to their destination better than long-winded screen reader monologues. After all, visual interface users have the benefit of darting around the viewport freely to find information, ignoring areas irrelevant to them. Blind users, meanwhile, are obligated to listen to every utterance synthesized into speech and therefore prize brevity and efficiency. Disabled users who have long had no choice but to employ clunky screen readers may find that voice interfaces, particularly more modern voice assistants, offer a more streamlined experience.

    Voice assistants

    When we think of voice assistants ( the subset of voice interfaces now commonplace in living rooms, smart homes, and offices ), many of us immediately picture HAL from 2001: A Space Odyssey or hear Majel Barrett’s voice as the omniscient computer in Star Trek. Voice assistants are akin to personal concierges that can answer questions, schedule appointments, conduct searches, and perform other common day-to-day tasks. And they’re rapidly gaining more attention from accessibility advocates for their assistive potential.

    Before the earliest IVR systems found success in the enterprise, Apple published a demonstration video in 1987 depicting the Knowledge Navigator, a voice assistant that could transcribe spoken words and recognize human speech to a great degree of accuracy. Then, in 2001, Tim Berners-Lee and others formulated their vision for a Semantic Web “agent” that would perform typical errands like” checking calendars, making appointments, and finding locations” (, behind paywall ). It wasn’t until 2011 that Apple’s Siri finally entered the picture, making voice assistants a tangible reality for consumers.

    Thanks to the plethora of voice assistants available today, there is considerable variation in how programmable and customizable certain voice assistants are over others ( Fig 1.1 ). At one extreme, everything except vendor-provided features is locked down, for example, at the time of their release, the core functionality of Apple’s Siri and Microsoft’s Cortana couldn’t be extended beyond their existing capabilities. Even today, it isn’t possible to program Siri to perform arbitrary functions, because there’s no means by which developers can interact with Siri at a low level, apart from predefined categories of tasks like sending messages, hailing rideshares, making restaurant reservations, and certain others.

    At the opposite end of the spectrum, voice assistants like Amazon Alexa and Google Home offer a core foundation on which developers can build custom voice interfaces. For this reason, programmable voice assistants that lend themselves to customization and extensibility are becoming increasingly popular for developers who feel stifled by the limitations of Siri and Cortana. Amazon offers the Alexa Skills Kit, a developer framework for building custom voice interfaces for Amazon Alexa, while Google Home offers the ability to program arbitrary Google Assistant skills. Today, users can choose from among thousands of custom-built skills within both the Amazon Alexa and Google Assistant ecosystems.

    As corporations like Amazon, Apple, Microsoft, and Google continue to stake their territory, they’re also selling and open-sourcing an unprecedented array of tools and frameworks for designers and developers that aim to make building voice interfaces as easy as possible, even without code.

    Often by necessity, voice assistants like Amazon Alexa tend to be monochannel—they’re tightly coupled to a device and can’t be accessed on a computer or smartphone instead. By contrast, many development platforms like Google’s Dialogflow have introduced omnichannel capabilities so users can build a single conversational interface that then manifests as a voice interface, textual chatbot, and IVR system upon deployment. I don’t prescribe any specific implementation approaches in this design-focused book, but in Chapter 4 we’ll get into some of the implications these variables might have on the way you build out your design artifacts.

    Voice Content

    Simply put, voice content is content delivered through voice. To preserve what makes human conversation so compelling in the first place, voice content needs to be free-flowing and organic, contextless and concise—everything written content isn’t.

    Our world is replete with voice content in various forms: screen readers reciting website content, voice assistants rattling off a weather forecast, and automated phone hotline responses governed by IVR systems. In this book, we’re most concerned with content delivered auditorily—not as an option, but as a necessity.

    For many of us, our first foray into informational voice interfaces will be to deliver content to users. There’s only one problem: any content we already have isn’t in any way ready for this new habitat. So how do we make the content trapped on our websites more conversational? And how do we write new copy that lends itself to voice interactions?

    Lately, we’ve begun slicing and dicing our content in unprecedented ways. Websites are, in many respects, colossal vaults of what I call macrocontent: lengthy prose that can extend for infinitely scrollable miles in a browser window, like microfilm viewers of newspaper archives. Back in 2002, well before the present-day ubiquity of voice assistants, technologist Anil Dash defined microcontent as permalinked pieces of content that stay legible regardless of environment, such as email or text messages:

    A day’s weather forcast]sic], the arrival and departure times for an airplane flight, an abstract from a long publication, or a single instant message can all be examples of microcontent. ( )

    I’d update Dash’s definition of microcontent to include all examples of bite-sized content that go well beyond written communiqués. After all, today we encounter microcontent in interfaces where a small snippet of copy is displayed alone, unmoored from the browser, like a textbot confirmation of a restaurant reservation. Microcontent offers the best opportunity to gauge how your content can be stretched to the very edges of its capabilities, informing delivery channels both established and novel.

    As microcontent, voice content is unique because it’s an example of how content is experienced in time rather than in space. We can glance at a digital sign underground for an instant and know when the next train is arriving, but voice interfaces hold our attention captive for periods of time that we can’t easily escape or skip, something screen reader users are all too familiar with.

    Because microcontent is fundamentally made up of isolated blobs with no relation to the channels where they’ll eventually end up, we need to ensure that our microcontent truly performs well as voice content—and that means focusing on the two most important traits of robust voice content: voice content legibility and voice content discoverability.

    Fundamentally, the legibility and discoverability of our voice content both have to do with how voice content manifests in perceived time and space.

  • Sustainable Web Design, An Excerpt

    Sustainable Web Design, An Excerpt

    In the 1950s, many in the elite running community had begun to believe it wasn’t possible to run a mile in less than four minutes. Runners had been attempting it since the late 19th century and were beginning to draw the conclusion that the human body simply wasn’t built for the task. 

    But on May 6, 1956, Roger Bannister took everyone by surprise. It was a cold, wet day in Oxford, England—conditions no one expected to lend themselves to record-setting—and yet Bannister did just that, running a mile in 3:59.4 and becoming the first person in the record books to run a mile in under four minutes. 

    This shift in the benchmark had profound effects; the world now knew that the four-minute mile was possible. Bannister’s record lasted only forty-six days, when it was snatched away by Australian runner John Landy. Then a year later, three runners all beat the four-minute barrier together in the same race. Since then, over 1,400 runners have officially run a mile in under four minutes; the current record is 3:43.13, held by Moroccan athlete Hicham El Guerrouj.

    We achieve far more when we believe that something is possible, and we will believe it’s possible only when we see someone else has already done it—and as with human running speed, so it is with what we believe are the hard limits for how a website needs to perform.

    Establishing standards for a sustainable web

    In most major industries, the key metrics of environmental performance are fairly well established, such as miles per gallon for cars or energy per square meter for homes. The tools and methods for calculating those metrics are standardized as well, which keeps everyone on the same page when doing environmental assessments. In the world of websites and apps, however, we aren’t held to any particular environmental standards, and only recently have gained the tools and methods we need to even make an environmental assessment.

    The primary goal in sustainable web design is to reduce carbon emissions. However, it’s almost impossible to actually measure the amount of CO2 produced by a web product. We can’t measure the fumes coming out of the exhaust pipes on our laptops. The emissions of our websites are far away, out of sight and out of mind, coming out of power stations burning coal and gas. We have no way to trace the electrons from a website or app back to the power station where the electricity is being generated and actually know the exact amount of greenhouse gas produced. So what do we do? 

    If we can’t measure the actual carbon emissions, then we need to find what we can measure. The primary factors that could be used as indicators of carbon emissions are:

    1. Data transfer 
    2. Carbon intensity of electricity

    Let’s take a look at how we can use these metrics to quantify the energy consumption, and in turn the carbon footprint, of the websites and web apps we create.

    Data transfer

    Most researchers use kilowatt-hours per gigabyte (kWh/GB) as a metric of energy efficiency when measuring the amount of data transferred over the internet when a website or application is used. This provides a great reference point for energy consumption and carbon emissions. As a rule of thumb, the more data transferred, the more energy used in the data center, telecoms networks, and end user devices.

    For web pages, data transfer for a single visit can be most easily estimated by measuring the page weight, meaning the transfer size of the page in kilobytes the first time someone visits the page. It’s fairly easy to measure using the developer tools in any modern web browser. Often your web hosting account will include statistics for the total data transfer of any web application (Fig 2.1).

    The nice thing about page weight as a metric is that it allows us to compare the efficiency of web pages on a level playing field without confusing the issue with constantly changing traffic volumes. 

    Reducing page weight requires a large scope. By early 2020, the median page weight was 1.97 MB for setups the HTTP Archive classifies as “desktop” and 1.77 MB for “mobile,” with desktop increasing 36 percent since January 2016 and mobile page weights nearly doubling in the same period (Fig 2.2). Roughly half of this data transfer is image files, making images the single biggest source of carbon emissions on the average website. 

    History clearly shows us that our web pages can be smaller, if only we set our minds to it. While most technologies become ever more energy efficient, including the underlying technology of the web such as data centers and transmission networks, websites themselves are a technology that becomes less efficient as time goes on.

    You might be familiar with the concept of performance budgeting as a way of focusing a project team on creating faster user experiences. For example, we might specify that the website must load in a maximum of one second on a broadband connection and three seconds on a 3G connection. Much like speed limits while driving, performance budgets are upper limits rather than vague suggestions, so the goal should always be to come in under budget.

    Designing for fast performance does often lead to reduced data transfer and emissions, but it isn’t always the case. Web performance is often more about the subjective perception of load times than it is about the true efficiency of the underlying system, whereas page weight and transfer size are more objective measures and more reliable benchmarks for sustainable web design. 

    We can set a page weight budget in reference to a benchmark of industry averages, using data from sources like HTTP Archive. We can also benchmark page weight against competitors or the old version of the website we’re replacing. For example, we might set a maximum page weight budget as equal to our most efficient competitor, or we could set the benchmark lower to guarantee we are best in class. 

    If we want to take it to the next level, then we could also start looking at the transfer size of our web pages for repeat visitors. Although page weight for the first time someone visits is the easiest thing to measure, and easy to compare on a like-for-like basis, we can learn even more if we start looking at transfer size in other scenarios too. For example, visitors who load the same page multiple times will likely have a high percentage of the files cached in their browser, meaning they don’t need to transfer all of the files on subsequent visits. Likewise, a visitor who navigates to new pages on the same website will likely not need to load the full page each time, as some global assets from areas like the header and footer may already be cached in their browser. Measuring transfer size at this next level of detail can help us learn even more about how we can optimize efficiency for users who regularly visit our pages, and enable us to set page weight budgets for additional scenarios beyond the first visit.

    Page weight budgets are easy to track throughout a design and development process. Although they don’t actually tell us carbon emission and energy consumption analytics directly, they give us a clear indication of efficiency relative to other websites. And as transfer size is an effective analog for energy consumption, we can actually use it to estimate energy consumption too.

    In summary, reduced data transfer translates to energy efficiency, a key factor to reducing carbon emissions of web products. The more efficient our products, the less electricity they use, and the less fossil fuels need to be burned to produce the electricity to power them. But as we’ll see next, since all web products demand some power, it’s important to consider the source of that electricity, too.

    Carbon intensity of electricity

    Regardless of energy efficiency, the level of pollution caused by digital products depends on the carbon intensity of the energy being used to power them. Carbon intensity is a term used to define the grams of CO2 produced for every kilowatt-hour of electricity (gCO2/kWh). This varies widely, with renewable energy sources and nuclear having an extremely low carbon intensity of less than 10 gCO2/kWh (even when factoring in their construction); whereas fossil fuels have very high carbon intensity of approximately 200–400 gCO2/kWh. 

    Most electricity comes from national or state grids, where energy from a variety of different sources is mixed together with varying levels of carbon intensity. The distributed nature of the internet means that a single user of a website or app might be using energy from multiple different grids simultaneously; a website user in Paris uses electricity from the French national grid to power their home internet and devices, but the website’s data center could be in Dallas, USA, pulling electricity from the Texas grid, while the telecoms networks use energy from everywhere between Dallas and Paris.

    We don’t have control over the full energy supply of web services, but we do have some control over where we host our projects. With a data center using a significant proportion of the energy of any website, locating the data center in an area with low carbon energy will tangibly reduce its carbon emissions. Danish startup Tomorrow reports and maps this user-contributed data, and a glance at their map shows how, for example, choosing a data center in France will have significantly lower carbon emissions than a data center in the Netherlands (Fig 2.3).

    That said, we don’t want to locate our servers too far away from our users; it takes energy to transmit data through the telecom’s networks, and the further the data travels, the more energy is consumed. Just like food miles, we can think of the distance from the data center to the website’s core user base as “megabyte miles”—and we want it to be as small as possible.

    Using the distance itself as a benchmark, we can use website analytics to identify the country, state, or even city where our core user group is located and measure the distance from that location to the data center used by our hosting company. This will be a somewhat fuzzy metric as we don’t know the precise center of mass of our users or the exact location of a data center, but we can at least get a rough idea. 

    For example, if a website is hosted in London but the primary user base is on the West Coast of the USA, then we could look up the distance from London to San Francisco, which is 5,300 miles. That’s a long way! We can see that hosting it somewhere in North America, ideally on the West Coast, would significantly reduce the distance and thus the energy used to transmit the data. In addition, locating our servers closer to our visitors helps reduce latency and delivers better user experience, so it’s a win-win.

    Converting it back to carbon emissions

    If we combine carbon intensity with a calculation for energy consumption, we can calculate the carbon emissions of our websites and apps. A tool my team created does this by measuring the data transfer over the wire when loading a web page, calculating the amount of electricity associated, and then converting that into a figure for CO2 (Fig 2.4). It also factors in whether or not the web hosting is powered by renewable energy.

    If you want to take it to the next level and tailor the data more accurately to the unique aspects of your project, the Energy and Emissions Worksheet accompanying this book shows you how.

    With the ability to calculate carbon emissions for our projects, we could actually take a page weight budget one step further and set carbon budgets as well. CO2 is not a metric commonly used in web projects; we’re more familiar with kilobytes and megabytes, and can fairly easily look at design options and files to assess how big they are. Translating that into carbon adds a layer of abstraction that isn’t as intuitive—but carbon budgets do focus our minds on the primary thing we’re trying to reduce, and support the core objective of sustainable web design: reducing carbon emissions.

    Browser Energy

    Data transfer might be the simplest and most complete analog for energy consumption in our digital projects, but by giving us one number to represent the energy used in the data center, the telecoms networks, and the end user’s devices, it can’t offer us insights into the efficiency in any specific part of the system.

    One part of the system we can look at in more detail is the energy used by end users’ devices. As front-end web technologies become more advanced, the computational load is increasingly moving from the data center to users’ devices, whether they be phones, tablets, laptops, desktops, or even smart TVs. Modern web browsers allow us to implement more complex styling and animation on the fly using CSS and JavaScript. Furthermore, JavaScript libraries such as Angular and React allow us to create applications where the “thinking” work is done partly or entirely in the browser. 

    All of these advances are exciting and open up new possibilities for what the web can do to serve society and create positive experiences. However, more computation in the user’s web browser means more energy used by their devices. This has implications not just environmentally, but also for user experience and inclusivity. Applications that put a heavy processing load on the user’s device can inadvertently exclude users with older, slower devices and cause batteries on phones and laptops to drain faster. Furthermore, if we build web applications that require the user to have up-to-date, powerful devices, people throw away old devices much more frequently. This isn’t just bad for the environment, but it puts a disproportionate financial burden on the poorest in society.

    In part because the tools are limited, and partly because there are so many different models of devices, it’s difficult to measure website energy consumption on end users’ devices. One tool we do currently have is the Energy Impact monitor inside the developer console of the Safari browser (Fig 2.5).

    You know when you load a website and your computer’s cooling fans start spinning so frantically you think it might actually take off? That’s essentially what this tool is measuring. 

    It shows us the percentage of CPU used and the duration of CPU usage when loading the web page, and uses these figures to generate an energy impact rating. It doesn’t give us precise data for the amount of electricity used in kilowatts, but the information it does provide can be used to benchmark how efficiently your websites use energy and set targets for improvement.