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Ed Tech Trends In Education


Education is undoubtedly one of the most important areas for humanity. Therefore, large investments in this area will always pay off, as the experience of modern mankind shows. New technologies in the field offer a way to revolutionize the field and create many solid conditions for its development.

In this article, we’ll take a look at some of the key areas and give you a way to better navigate the existing ed tech trends. Here, technologies such as animation, artificial intelligence, virtual reality and big data are taken into consideration. All of these areas will have a huge influence in the future. So if you want to be progressive, a strong goal is to focus on them as much as possible.

Top 5 educational technology trends in 2022

Several technologies will have a considerable impact in the years to come. They include the following:

  1. Animation. We see facilitation as a strong avenue for promoting both theoretical and practical learning. Above all, animation of different types is perfect for providing learners with a quick overview of certain technologies. It is particularly effective in holding the attention of young audiences. If you have to teach programming to children, the approach is more or less perfect. Another crucial element undoubtedly includes some form of animation work. Here you can, for example, teach both programming and art by having some students create animations and other programs as a base game environment for new models.
  2. Artificial intelligence. To a large extent, work on artificial intelligence in programming courses on Node.js, for example, can greatly expand the ability of all students involved to learn the basics of the discipline. Artificial intelligence in learning can enable the majority of essential skills to turn an individual into a strong programmer. Thus, a good idea is to entrust programming students with some tasks related to artificial intelligence. It will quickly teach them the basics and, more importantly, even activate the knowledge of additional disciplines such as mathematics.
  3. Virtual reality and augmented reality. Augmented reality and virtual reality can be effective in promoting some form of spatially-focused learning. If you want to teach your students the understanding of molecular structures, virtual reality is a perfect tool in many cases. It will show key data in a very strong 3D format to enable understanding of such a complex topic. Thus, VR/AR can be effective in promoting long-term learning for people with moderate and below-average spatial skills, as it will give them a chance to fill gaps in visualization skills.
  4. Cloud computing. If you want to enable certain collaborative projects, it is essential to use some form of cloud computing. In this regard, we strongly recommend focusing on using cloud services to push students towards team programming tasks. Even in times of confinement, we can facilitate the creation of a Node.js website based on cloud frameworks. It is not surprising to see their development in the years to come.
  5. BigData. Finally, high-quality Big Data tools can help highlight some key trends in education. In this case, collecting information about a student can create a very good set of statistical information about his long-term abilities and learning talent. Big Data tools allow for the analysis of a lot of information and, therefore, would be able to provide feedback that was not available to specialists in the past.


In short, existing technologies in education are increasingly advanced. Humanity has a growing number of tools that should be able to facilitate high quality standards in learning. Your success in this area will undoubtedly depend on your ability to be an early adopter of new technologies.

The sooner you start using AI or Big Data, the sooner your attempts at education will succeed. Ultimately, we can recommend a company that can help you with education-related processes regarding Node.js. KeenEthics should be able to provide many vital recommendations that can improve education-related efforts.


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