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WordPress has made it easy for everyone to launch a blog, but even though launching a blog isn’t a difficult task any longer, driving traffic to your blog certainly is!

In this article, I’ll share some tried and tested strategies that have worked well for my clients’ blogs. You do not have to be an expert or a marketing guru to get traffic to your WordPress website. Follow the helpful tips I share in this article and watch the visitors start pouring in.

Tip 1: Use Powerful Headlines

The first thing related to your blog that a user reads in the search engine results is your article headlines. Of course, nobody wants to click on a boring article title. But a powerful headline stands out from the rest and gets you more clicks. 

In most themes, your article headlines are translated into meta titles for the pages. Meta titles indicate the topic of your articles to Google and other search engines. 

Tip 2: Build an Email List

Consider offering your visitors a newsletter signup form through which they can subscribe and get notified about new posts on your blog. You can offer them an incentive for free to persuade them to subscribe to your blog. It can be anything from an e-book, membership, useful templates, or an e-course. 

Building an email list gives access to the inboxes of your visitors. You can share your blog content with this prospective audience every time you post a new article. This will help you get consistent traffic to your WordPress blog.

Tip 3: Use Free Giveaways and Contests

Free giveaways work as an incentive for your WordPress blog visitors. To offer an entry to your blog’s free giveaway, you can ask your visitors for an email subscription, comment on your blog posts, share it on their social media channels, and ask for other such things. 

The trick is to think about the actions of your visitors that will increase traffic to your blog and provide them with one or multiple giveaway entries for such actions. 

Tip 4: Optimize For Keywords

All successful bloggers optimize their content for keywords. You need to perform proper keyword research to find sentences and words that your target audience is typing in Google and other top search engines. 

Instead of guessing the keywords for your articles, consider using some helpful tools like SEMrush’s Keyword Magic Tool and Google Ads Keyword Planner. This way, you can find the terms people are genuinely interested in and the keywords that do not have too much competition.

You must ensure to choose the keywords that have some excellent traffic volume but, at the same time, have less competition. Such keywords will help in the better ranking of each of your articles.

Tip 5: Optimize WordPress Site Speed

It has been proven that loading time is a ranking factor for SEO, as Google tends to assume that fast sites are high-quality sites.

Signing up for a hosting provider specializing in WordPress guarantees you get the best optimization features for your WordPress site. However, that alone is not enough because you need a hosting provider that can also handle a high volume of visitors.

Optimizing your WordPress website will help in the faster loading of your blog pages. Images are generally the biggest culprit in slowing down your website. So you must first optimize them through an image optimization plugin like Smush, Imagify, or Optimus. 

Enabling caching on your WordPress blog will considerably improve its speed. You can store your website data locally with caching, thereby reducing your server load to a large extent. Your website will, therefore, load faster on your visitors’ end, especially when they are repeat visitors.

Tip 6: Take Advantage of Social Media

Try building your presence on some of the top platforms like Facebook, Instagram, Twitter, LinkedIn, and Pinterest. Post multiple times a day on these websites and share your blog articles.

You must also include social sharing buttons with your blog posts to make sharing easier for your audience. It will allow your blog visitors to share your post on different social platforms. This dramatically increases the chances of your blog post going viral.

Tip 7: Internal Linking Strategy

The only key here is to link articles that are closely related to each other. Your visitors might be interested in such related content and read more of your blog posts, thereby increasing your page views. It also increases the chances of visitors sharing your blog content since they find it valuable.

Tip 8: Be a Guest Blogger

Guest blogging involves creating content for other websites for mutual benefits. It helps you establish your authority in the blogging world while attracting more visitors to your WordPress website. 

Becoming a guest blogger allows you to spread the word about your blog to a new set of audiences and bring in organic traffic. It expands your work portfolio and helps build or enhance your online reputation.

Tip 9: Pay for Traffic

Consider using Google Ads, Facebook Ads, Microsoft advertising, and other top advertising platforms when paying to bring traffic to your blog. Be aware of your blog audience and use the most suitable criteria to target it. 

I’d recommend setting a weekly budget for paid ads and tracking the ad performance at the end of the week.

If you are satisfied with the traffic results, use the same criteria for the next week. On the other hand, if the ad performance is not as per your expectations, try different criteria to reach your target audience.

Conclusion

Getting traffic to your WordPress blog is an incentive for all the hard work that you do in creating content and managing your website. It builds a name for your blog and improves its search engine ranking. All this leads to better user engagement and revenue.

 

Featured image via Pexels.

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Kubernetes is an open-source container orchestration tool developed by Google and is also known as K8s. It is used in managing the complete lifecycle of containerized applications. Kubernetes provides high availability, scalability, and predictability to the containerized application. It automates the deployment, management, and scaling of containerized applications. Kubernetes also supports automated rollout and rollbacks,  service discovery, storage orchestration, scaling, batch execution, and more. Kubernetes provides the cluster where containerized applications can be deployed. Kubernetes is not the only container orchestration tool, but various “Kubernetes Alternatives” are available in the market.

Before we talk about the “Alternatives to Kubernetes,” let’s explore the key components of Kubernetes. The Kubernetes cluster consists of at least one worker node where containerized applications are deployed and one master node or control plane which manages the worker nodes. The Control plane or master node consists of Kube-API server, etcd, Kube-scheduler, and Kube-controller-manager, whereas the worker node consists of Kubelet, Kube-Proxy, and Container Runtime. 

Source de l’article sur DZONE

Amazon Web Services (AWS) is the biggest cloud platform in the world, with over 200 features. In this article, we break down 10 AWS services that support at least some SQL syntax, talk about their use cases, and give examples of how to write queries.

Service Description SQL Support Use Case
RDS Postgres, MySQL, etc. Full Small-medium web apps
Aurora Serverless databases Full Serverless apps
Redshift Data warehouse Full OLAP, Petabytes of data, analytics
DynamoDB NoSQL database Some – PartiSQL Ecommerce, building fast
Keyspaces Managed Cassandra (key value) Some – CQL Messaging
Neptune Graph database Some – openCypher Social networks
Timestream Time series database Partial IOT, Logging
Quantum Ledger Cryptographically verified transactions Some – PartiSQL Finance
Athena Ad-hoc queries on S3 Some – CTAS Historical data
Babelfish MSFT SQL Server on Aurora Full .NET

The table above shows how SQL support varies between the services. A graph database cannot be queried in the same way as a classic relational database, and various subsets of SQL, like PartiQL, have emerged to fit these models. In fact, even within standard SQL, there are many SQL dialects for different companies like Oracle and Microsoft.

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In the video below, we take a closer look at MySQL DB Installation: Using MySQL Workbench to connect to MySQL DB and how to install the Mysql 8 Server. Let’s get started!

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As I’m becoming a senior developer in terms of age, I’ve transitioned from one language to another. One of my main interests has always been clean, easy-to-understand UIs (User Interface). That journey started for me with Director (to create multimedia CD-ROMs), Flash website animation, and Flex Rich Internet Applications (= « Flash on steroids »). When I started developing with Java over 10 years ago, we had some projects with the early versions of Vaadin and JavaFX. As I went on with serverside applications, I only continued with JavaFX for some personal and side projects and loved the way you can create a UI both with XML (FXML actually) and code, exactly the same approach I loved with Flex. Since then, my love for Java and JavaFX only grew and it’s still my major programming environment.

But JavaFX has one missing piece: running it in the browser… Yes, JPRO can do this, but it needs a license and a dedicated server. And yes, there are some projects ongoing to bring JavaFX fully to the browser, but they are ongoing and not mature yet… Let’s look at another approach: Vaadin Flow and run it on a Raspberry Pi to control a LED and show the state of a button.

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SQLite is an often overlooked flavor of SQL engines. Some have suggested it is the most prolific SQL engine in existence due to its highly flexible nature and ability to run on almost any platform with limited resources. Unlike other SQL engines like MySQL, PostgreSQL, MSSQL, or Oracle, SQLite runs without a server. SQLite does not rely on a data directory or a constantly running daemon: a database is encapsulated in a single file.

SQLite and iMessage

iMessage is one of the most popular messaging platforms today, largely because it is built into iOS and Mac devices. Since its release, it has evolved significantly. But, at its core, it is simply an instant messaging platform. iMessage uses SQLite in the background to store relational data about messages, conversations, and their participants.

Source de l’article sur DZONE


WordPress is by far the world’s most popular CMS. Not only does it dominate the CMS market with a 64% market share, but it also powers 39.6% of all websites. It has taken the internet by storm by democratizing the web for all. Now, anyone can build, manage, and host a successful website without needing a college degree or coding expertise.

However, while WordPress is great at managing many technical aspects, it still can’t do everything for you. Built mostly on PHP, there are often concerns regarding how performant WordPress is. And, with performance impacting everything from bounce rates to SEO rankings to conversions, it’s something that should be on your radar too.

If you don’t know it yet, images are one of the main causes of slow-loading websites. In recent years, WordPress has stepped up its efforts to try and help users with image optimization out-of-the-box.

Still, as we’ll show, it’s not a total solution, and there is still plenty you can do to deliver better experiences on your WordPress website through image optimization.

What is WordPress Image Optimization? Why is it Important?

Simply put, image optimization is anything you do to make images load faster on your website pages. Almost all websites that use images can benefit from some form of image optimization, even those using WordPress.

Why?

Well, performance is a hugely significant factor when it comes to the competitiveness of your website today.

Google has also made performance an increasingly important factor when it comes to SEO rankings. In fact, performance is a direct ranking signal that carries significant weight.

Google’s Page Experience Update that went live in 2021 has been the biggest move in that direction yet. Soon, Google might even use visual indicators in SERP results to distinguish high-performing websites from the rest.

In Google’s own words, “These signals measure how users perceive the experience of interacting with a web page and contribute to our ongoing work to ensure people get the most helpful and enjoyable experiences from the web.”

So, Why Should We Target Images For Performance Optimization?

According to Google, images are the largest contributor to page weight. Google has also singled out image optimization specifically as the factor with the most untapped potential for performance optimization.

This problem isn’t going away soon. According to data by the HTTP Archive, there are roughly 967.5 KB bytes of image data on desktop web pages and 866.3 KB of image data on mobile pages. This is an increase of 16.1% and 38.8%, respectively, over the last five years.

Thanks to popular e-commerce tools like Woocommerce, it’s estimated that up to 28% of all online sales happen on WordPress websites.

And don’t forget, images are both a key part of conveying information to the user and integral to the design of your website. If they take significantly longer to load than your text, for example, it will negatively impact the user experience in a variety of ways.

In summary, optimized images help your WordPress website by:

  • Improving user satisfaction.
  • Improving various traffic metrics, like bounce rates, time-on-page, etc.
  • Boosting your SEO rankings.
  • Contributing to higher conversions (and sales).

How Does Image Optimization in WordPress Work?

WordPress is so popular because it’s a CMS (content management system) that allows anyone to build, design, and manage a website without any coding or advanced technical experience. Advanced features can be installed with just a few clicks, thanks to plugins, and you rarely have to touch the code behind your website unless you want to make some unique modifications.

In short, using a CMS like WordPress shields you from many of the day-to-day technicalities of running a website.

WordPress Image Optimization: What It Can Do

As we mentioned, one of the main reasons WordPress is so popular is because it takes care of many of the technical aspects of running a website. With that in mind, many think that WordPress should also automatically take care of image optimization without them having to get involved at all.

Unfortunately, that’s not really the case.

True, WordPress does offer some built-in image optimization. Whenever you upload an image to WordPress, it currently compresses the quality to about 82% of the original (since v4.5).

In v4.4, WordPress also introduced responsive image syntax using the srcset attribute. This creates four breakpoints for each image you upload according to the default WordPress image sizes:

  • 150px square for thumbnails
  • 300px width for medium images
  • 768px max-width for medium_large images
  • 1024px max-width for large images.

Here you can see an example of the actual responsive syntax code generated by WordPress:

<img loading="lazy" src="https://bleedingcosmos.com/wp-content/uploads/2021/12/33-1024x683.jpg" alt="" class="wp-image-9" width="610" height="406" srcset="https://bleedingcosmos.com/wp-content/uploads/2021/12/33-1024x683.jpg 1024w, https://bleedingcosmos.com/wp-content/uploads/2021/12/33-300x200.jpg 300w, https://bleedingcosmos.com/wp-content/uploads/2021/12/33-768x512.jpg 768w, https://bleedingcosmos.com/wp-content/uploads/2021/12/33-1536x1024.jpg 1536w" sizes="(max-width: 610px) 100vw, 610px">

Depending on the screen size of the device from which a user visits your webpage, WordPress will let the browser pick the most appropriately sized image. For example, the smallest version for mobile displays or the largest for 4K Retina screens, like those of a Mac.

While this may seem impressive, it’s only a fraction of what can be achieved using a proper image optimization solution, as we’ll show later.

Lastly, WordPress implemented HTML native default lazy loading for all images starting with version 5.5.

So, in short, WordPress offers the following image optimization capabilities baked-in:

  • Quality compression (limited)
  • Responsive syntax (up to 4 breakpoints)
  • Lazy loading

WordPress Image Optimization: What it Cannot Do

There are other issues many have with both the implementation of image compression and responsive syntax as it’s used by WordPress. This leads to some users even purposefully deactivating WordPress’ built-in image optimization so they can fully take control of it themselves.

Here are some of the reasons why:

  • WordPress uses a very basic form of quality compression. It does not use advanced technologies like AI and machine learning algorithms to compress images while maintaining maximum visual quality. It’s also lossy compression, so the quality is lost for good. You can clearly see the difference between an original HD image and the compressed version created by WordPress.
  • WordPress only compresses most images by up to 20%, while advanced image optimization tools can reduce all image sizes intelligently by up to 80%.
  • Responsive syntax can provide significant performance improvements over simply uploading a single HD image to be served on all devices and screens. However, it’s still only limited to a set number of breakpoints (typically 3 or 4). Since it’s not dynamic, a whole spectrum of possible image sizes is not created or used.
  • Responsive syntax code is not scalable and can quickly lead to code that’s bloated, messy, and hard to read.
  • WordPress doesn’t accelerate image delivery by automatically caching and serving them via a global CDN, although this can be done using other tools.

Another important optimization feature that WordPress does not have is auto-conversion to next-gen image file formats. Different image formats offer different performance benefits on different devices. Some formats also enable higher levels of compression while maintaining visual fidelity.

Next-gen formats like WebP, AVIF, and JPEG-2000 are considered to be the most optimal formats on compatible devices. For example, until recently, WebP would be the optimal choice on Chrome browsers, while JPEG-4000 would be optimal on Safari browsers.

However, WordPress will simply serve images in the same formats in which they were originally uploaded to all visitors.

How to Measure the Image Performance of a WordPress Website?

As the undisputed king of search engines, we’ll base most of our performance metrics on guidelines established by Google.

Along with its various performance updates, Google has released a number of guidelines for developers as well as the tools to test and improve their websites according to said guidelines.

Google introduced Core Web Vitals as the primary metrics for measuring a web page’s performance and its effect on the user experience. Thus, Core Web Vitals are referred to as “user-centric performance metrics.” They are an attempt to give developers a testable and quantifiable way to measure an elusive and abstract concept such as “user experience.”

Combined with a number of other factors, Core Web Vitals constitute a major part of the overall page experience signal:

You can find a complete introduction to Core Web Vitals here. However, they currently consist of three main metrics:

  • LCP (Largest Contentful Paint): The time it takes the largest above-the-fold element on your page to load. This is typically a full-sized image or hero section.
  • FID (First Input Delay): The delay from the moment a user first interacts with an element on the page until it becomes responsive.
  • CLS (Cumulative Layout Shift): The visual stability with which the elements on a page load.

Here is an illustration of how these metrics are scored:

While these are the three most important metrics to optimize, they are not the only ones. Google still measures other metrics like the FCP (First Contentful Paint), SI (Speed Index), as well as the TTFB (Time to First Byte), TBT (Total Blocking Time), and TTI (Time to Interactive).

A number of these metrics are directly affected by the images used on your web pages. For example, LCP, FCP, and SI are direct indicators of how fast the content of your web page loads and depends on the overall byte size of the page. However, it can also indirectly affect FID by keeping the main thread busy with rendering large amounts of image content or the perceived CLS by delaying the time it takes large images to load.

These metrics apply to all websites, whether they are custom-made or built using a CMS like WordPress.

When using tools like Lighthouse or PageSpeed Insights, you’ll also get scored based on other flags Google deems important. Some of them are specific to images, such as properly sizing images and serving images in next-gen formats.

If you only use built-in WordPress image optimization, you’ll get flagged for the following opportunities for improvement:

Some of the audits it will pass, however, are deferring offscreen images (lazy loading) and efficiently coding images (due to compression):

A Better Way to Optimize WordPress Images: ImageEngine

Billions of websites are all vying for prime real estate on Google SERPs, as well as the attention of an increasingly fussy internet-using public. Every inch matters when it comes to giving your website a competitive advantage.

So, how can you eliminate those remaining performance flags and deliver highly optimized images that will keep both your visitors and Google happy?

Sure, you could manually optimize images using software like PhotoShop or GIMP. However, that will take you hours for each new batch of images. Plus, you still won’t benefit from any automated adaptive optimization.

A more reasonable solution in today’s fast-paced climate is to use a tool developed specifically for maximum image optimization: an image CDN like ImageEngine.

ImageEngine is an automated, cloud-based image optimization service using device detection as well as intelligent image compression using the power of AI and machine learning. It can reduce image payloads by up to 80% while maintaining visual quality and accelerating delivery around the world thanks to its CDN with geographically dispersed PoPs.

Why is ImageEngine Image Optimization Better Than WordPress?

When making a head-to-head comparison, here are the reasons why ImageEngine can deliver better performance:

  • Device Detection: ImageEngine features built-in device detection. This means it picks up what device a visitor to your website is using and tailors its optimization strategy to what’s best for that specific device.
  • Client hints: By supporting client hints, ImageEngine has access to even more information regarding the device and browser to make better optimization decisions.
  • Next-gen formats: Based on optimal settings, ImageEngine automatically converts and serves images in next-gen formats like WebP, AVIF, JPEG2000, and MP4 (for GIFs).
  • Save data header: When a Chrome user has save-data mode enabled, ImageEngine will automatically compress images more aggressively to save on data transfer.
  • CDN with dedicated edge servers: ImageEngine will automatically cache and serve your optimized image assets using its global CDN. Each edge server has device awareness built-in to bring down latency and accelerate delivery. You can also choose to prioritize specific regions.

So, the key differentiator is that ImageEngine can tailor optimizing images for what’s optimal for each of your visitors. ImageEngine is particularly good at serving mobile visitors thanks to WURFL device detection, which can dynamically resize images according to most devices and screen sizes in use today. As of now, this is a completely unique capability that none of its competitors offer.

It allows for far better and more fine-tuned optimization than WordPress’ across-the-board approach to compression and responsive syntax.

If you want, you could turn off WordPress responsive syntax and compression, and you would still experience a performance increase using ImageEngine. However, ImageEngine also plays nice with responsive syntax, so it’s not completely necessary unless you want to serve the highest-fidelity/low-byte-size images possible.

How Does ImageEngine Work with WordPress?

The process ImageEngine uses to integrate with WordPress can be broken down into a few easy steps:

  • Sign up for an ImageEngine account: ImageEngine offers three pricing plans depending on the scale and features you need as well as a no-commitment 30-day free trial.
  • Specify your image origin: This tells ImageEngine where to find the original versions of your images. For a WordPress website, you can just use your domain, e.g., https://mywordpresswebsite.com. ImageEngine will then automatically pull the images you’ve uploaded to your WordPress website.

  • Copy the Delivery Address: After you create an account and specify your image origin, ImageEngine will provide you with a Delivery Address. A Delivery Address is your own unique address that will be used in your <img> tags to point back to the ImageEngine service. Delivery Addresses may be on a shared domain (imgeng.in) or customized using a domain that you own. A Delivery Address typically looks something like {random_string}.cdn.imgeng.in. If your images are uploaded to the default WordPress folder /wp-content/uploads/, you can access your optimized images from ImageEngine simply by changing your website domain. For example, by typing {imageengine_domain}.cdn.imgeng.in/wp-content/uploads/myimage.jpg into your browser, you’ll see the optimized version of that image. Just press the copy button next to the Delivery Address and use it in the next step configuring the plugin.

  • Install the ImageEngine Optimizer CDN plugin: The plugin is completely free and can be installed just like any other plugin from the WordPress repository.
  • Configure and enable ImageEngine Plugin in WordPress: Just go to the plugin under “ImageEngine” in the main navigation menu. Then, copy and paste in your ImageEngine “Delivery Address,” tick the “Enabled” checkbox, and click “Save Changes” to enable ImageEngine:

Now, all ImageEngine basically does is replace your WordPress website domain in image URLs with your new ImageEngine Delivery Address. This makes it a simple, lightweight, and non-interfering plugin that works great with most other plugins and themes. It also doesn’t add unnecessary complexity or weight to your WordPress website pages.

ImageEngine vs Built-in WordPress Image Optimization

So, now let’s get down to business by testing the performance improvement you can expect from using ImageEngine to optimize your image assets.

To do this test, we set up a basic WordPress page containing a number of high-quality images. I then used PageSpeed Insights and the Lighthouse Performance Calculator to get the performance scores before and after using ImageEngine.

Importantly, we conducted this test from a mobile-first perspective. Not only has mobile internet traffic surpassed desktop traffic globally, but Google themselves have committed to mobile-first indexing as a result.

Here is a PageSpeed score using the Lighthouse calculator for WordPress with no image optimization:

As we can see, both Core Web Vitals and other important metrics were flagged as “needs improvement.” Specifically, the LCP, FCP, and TBT. In this case, both the LCP and FCP were a high-res featured image at the top of the page.

If we go to the opportunities for improvement highlighted by PageSpeed, we see where the issues come from. We could still save as much as 4.2s of loading time by properly resizing images and a further 2.7s by serving them in next-gen formats:

So, now let’s see how much ImageEngine can improve on that.

The same test run on my WordPress website using ImageEngine got the following results:

As you can see, we now have a 100 PageSpeed score. I saved roughly 2.5s on the SI (~86%) as well as roughly 1.7s on the LCP (~60%). There was also a slight improvement in the FCP.

Not only will you enjoy a stronger page experience signal from Google, but this represents a tangible difference to visitors regarding the speed with which your website loads. That difference will lead to lower bounce rates, increased user satisfaction, and more conversions.

There was also a 53% overall reduction in the total image payload. This is impressive, considering that it’s on top of WordPress’ built-in compression and responsive syntax.

Conclusion

So, as someone with a WordPress website, what can you take away from this?

Well, first of all, WordPress does feature some basic image optimization. And while not perfect, it should help you offer reasonable levels of performance, even if you use a lot of image content.

However, the caveat is that WordPress applies aggressive, across-the-board compression, which will lead to a noticeable reduction in visual quality. If you use WordPress for any type of website where premium quality images are important, this is a concern — for example, as a photography portfolio, exhibition, or image marketplace like Shutterstock.

By using ImageEngine, you can reduce image payloads and accelerate delivery even further without compromising too harshly on visual quality. What’s more, ImageEngine’s adaptive image optimization technology will provide greater improvements to more of your visitors, regardless of what device(s) they use to browse the web.

Whether or not you still want to use WordPress’ built-in optimizations, ImageEngine will deliver significant improvements to your user experience, traffic metrics, and even conversions.

Plus, true to the spirit of WordPress, it’s extremely simple to set up without any advanced configuration. Just sign up for ImageEngine in 3 easy steps, install the plugin, integrate ImageEngine by copy/pasting your image domain, and you’re good to go.

 

[ This is a sponsored post on behalf of ImageEngine ]

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Zato is an integration platform and backend application server which means that, during most of their projects, developers using Zato are interested in a few specific matters.

The platform concentrates on answering these key, everyday questions that Python backend developers routinely ask:

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Few things are more important to a web designer or developer’s chances of success than having the proper workflow. The term “workflow” applies to the set of standardized steps you or your company uses to create, test, and deploy designs or products.

Over the years, as development processes have evolved, so too have the workflows experts use to bring their ideas to life. The MVP workflow, or “Minimum Viable Product” strategy, is one of the most popular options in 2022.

Here’s what you need to know about the MVP workflow and how it differs from some of the other standard workflows developers may be used to.

What is the Designer/Developer Workflow?

As mentioned above, the designer/developer workflow is a series of steps used by experts in the web design world to achieve a creative goal. The process includes the steps taken to start a project, evolve it, and finish it. Since software is never developed without tools, the technology you’ll access throughout the development process is also considered in most workflows.

An example of a standard development workflow might look like this:

  • Scaffolding: This is the stage wherein you start your new web project, creating a git repo, downloading libraries, preparing file structures, and completing other tasks to make sure your product is ready to roll out into the world.
  • Develop: This is where you’ll spend most of your time writing code for your application or website. The development process may include various specific tools and support from other staff members.
  • Test: In this stage, you examine the functionality of your code to determine if everything works as it should. If there are errors or issues, you can go back and develop fixes to the potential problems. Your code may go through the development/test process several times before you can move to the next stage.
  • Integrate: This is when you merge the code for your part of the development process with the rest of the team. You can also integrate your code into websites and existing apps at this point. If you’re working solo, you can skip this process.
  • Optimize: You prepare all your assets for use on a production server during the optimization stage. Files are generally optimized to ensure your visitors can view your site easily or access your applications with ease.
  • Deploy: In the deployment stage, developers push code and assets up into the server and allow for changes to be viewed by the public.

What is MVP? (Minimum Viable Product)

Now you know what a developer workflow looks like, you can begin to assess the concept of the “MVP” workflow. The term “MVP” stands for Minimum Viable Product.

The idea of “Minimum Viable Product” applies to a range of industries, from education to healthcare and government entities. This term comes from lean start-up practices and focuses heavily on the value of learning and changing during the development process.

When you adapt your workflow to focus on an MVP, you’re essentially adjusting your focus to a point where you can create a stripped-back version of something new – like an app or a website. The MVP is built just with the core features (the minimum), so you can bring the idea to market and test it as quickly as possible.

For instance, if your goal were to create an attractive new website for a client, an MVP would focus on implementing the crucial initial tools, and nothing else. While you may create checkout pages, product pages, and other aspects of the site, you wouldn’t populate it with content or start experimenting with bonus widgets and apps.

So, how does this offer a better alternative to the standard workflow?

Simply put, an MVP workflow is quick, agile, and easy. The idea is you can validate key concepts with speed, fail quickly, and learn just as fast. Rather than having to build an entire app and almost start over from scratch every time you find an error, you can race through the iteration and development process.

MVP workflows are also highly appealing to start-ups and entrepreneurs hoping to validate ideas without a massive amount of upfront investment.

Examples of MVP Workflows

Still confused? The easiest way to understand how an MVP workflow works is to look at an example.

Let’s start with a conceptual example. Say you were building a voice transcription service for businesses. The desired features of this product might include the ability to download transcription, translate them into different languages, and integrate them into AI analytics tools.

However, using the MVP approach, you wouldn’t try to accomplish all of your goals with your software at once. Instead, you’d focus on something simple first – like the ability to download the transcripts. Once you confirm you can do that, you can start a new workflow for the next most important feature for the app.

One excellent example of a company with an MVP approach is Airbnb. The entrepreneurs behind this unicorn company, Joe Gebbia and Brian Chesky, didn’t have a lot of cash to build a business with at first. They had to use their own apartment to validate the idea of creating a website where people could share their available “space” in a home or apartment with the public.

To begin, Airbnb only created a very basic website, published photos of their property, and waited to see the results. After discovering people were genuinely interested in renting another person’s home, the company was able to begin experimenting with new ideas to make a site where people could list their properties for travelers.

The Pros and Cons of an MVP Workflow

There are a lot of benefits to the MVP workflow – particularly when it comes to gaining agility and developing new products quickly. However, there are downsides too.

Pros

  • With an MVP approach, you can maximize your learning opportunities and create a more innovative, successful product at speed. You get to test every step of the way.
  • You release iterations or versions of your product quickly, which means you discover problems faster, allowing you to quickly solve these issues.
  • You build on the benefits of customer fans, “evangelists” in the marketplace who are keen to help your product or service grow.
  • An MVP gives you more freedom to try out unique ideas and “risks” you might otherwise avoid with a traditional workflow.
  • Because you’re focusing on creating only the “minimum viable product,” you don’t have to spend a fortune on initially setting up your workflows.

Cons

  • Agile work with an MVP flow requires a lot of effort in collecting constant feedback from customers and releasing iterations.
  • You’ll need to dedicate yourself to releasing many small and frequent product releases on a tight schedule.
  • You might have to revise the functionality of your product or app a number of times.

Creating Your MVP Workflow

If you believe an MVP workflow might be effective for you, the first step is defining your “Minimum Viable Product.” The app, website, or product you design needs to align with your team’s strategic goals, so think about what your company is trying to achieve at this moment – before you get started. If you have limited resources, or specific purposes, like improving your reputation as a reliable company, now might not be the right time to develop a new MVP.

Ask what purpose your minimum viable product will serve and what kind of market you’re going to be targeting. You’ll need to know your target customer to help you test the quality and performance of each iteration of your MVP. Once you know what your ideal “product” is, ask yourself what the most important features will be.

You can base these decisions on things like:

  • User research
  • Competitive analysis
  • Feedback from your audience

For example, if you’re producing an AI chatbot that helps companies to sort through customer inquiries, the most important “initial feature” may be the ability to integrate that bot into existing websites and apps owned by the company.

MVP Approach Guidelines

Once you have your hierarchy of most valuable features for your minimum viable product, you can translate this into an action plan for development. Remember, although you’re focusing on the “minimum” in development, your product still needs to be “viable.” In other words, it still needs to allow your customer to achieve a specific goal.

  • Review your features: Reviewing your prioritized product requirements and the minimum level of functionality you can deliver with each of these “features.” You need to ensure you’re still providing value to your customer with anything you produce.
  • Build your solution: Build your minimum set of features for the product or service. Remember to build only what is required. You can use methodologies like the agile or waterfall method to help guide your team during this process.
  • Validate your solution: Release your offering into the market, and ensure you have tools in place to gather feedback from early adopters. Use beta programs, focus groups, and market interviews to understand how your solution works for your customers and where you can improve on your current offer.
  • Release new iterations: Based on what you learn from your target audience, release improvements to your product quickly. Use your validation strategies to collect information from your audience with each release.
  • Review again: Go back to your product requirements and desired features and start the process over again, this time focusing on the next most valuable functionality. Over time, the value of your minimum viable product will increase.

Using the MVP Workflow Approach

While the MVP workflow approach might not be the right solution for every development or design team, it can work very effectively in the right circumstances. The MVP approach doesn’t minimize the importance of understanding market problems and delivering value. Instead, the focus is on delivering quick value that gradually increases and evolves over time.

As many developers and designers know, the most useful form of product validation in most cases is real-world validation. When your customers have had an opportunity to use a product on a day-to-day basis, they can provide much more effective feedback.

Just keep in mind that committing to the MVP approach also means changing your workflow and committing to iterations – otherwise, other features may never be completed. You’ll need to be willing to work quickly and in small bursts without getting too heavily caught up in one feature or functionality.

 

Featured image via Pexels.

Source

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