Technology That Will Change The Future – Bernard Marr is a world-renowned futurist, influencer and thought leader in business and technology, passionate about using technology for the benefit of humanity. He is the author of 20 best-selling books, writes a regular column for Forbes magazine, and consults and coaches some of the world’s most prominent organizations. He has 4 million people on his social media channels and newsletters and is ranked by LinkedIn as one of the top 5 business influencers in the world.
Bernard Marr is a world-renowned futurist, influencer and thought leader in business and technology, passionate about harnessing technology for the benefit of humanity. He is the author of 20 best-selling books, writes a regular column for Forbes magazine, and advises and consults with some of the world’s most prominent organizations. He has over 2 million social media followers, 1 million newsletter subscribers and was named one of the top 5 business influencers in the world by Xing, LinkedIn and Top Mind 2021.
- 1 Technology That Will Change The Future
- 2 Smart Holidays: How Tech Will Change The Future Of Travel
- 3 How Will We Be Communicating Change In The Future?
Technology That Will Change The Future
I talk about the many technology trends that are moving out of R&D departments and into everyday life, but the following five are the ones that I believe will have the most profound impact on our society and humanity as a whole.
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Artificial intelligence, or AI, and machine learning refer to the ability of machines to learn and act intelligently, meaning they can make decisions, perform tasks, and even predict future outcomes based on what they learn from data.
AI and machine learning play a bigger role in everyday life than you might think. Alexa, Siri, Amazon product recommendations, personalized Netflix and Spotify recommendations, every Google search you do, security checks for fraudulent credit card purchases, dating apps, fitness trackers… it’s all there. Powered by AI.
AI will change almost every aspect of modern life. “Success in creating artificial intelligence would be the greatest event in human history,” said Stephen Hawking. And Hawking immediately said: “Unfortunately, if we don’t learn to avoid risks, this may be the last.”
As we know, there are potentially huge risks to society and human life, especially given that some countries are racing to develop AI-based autonomous weapons. AI and machine learning are the foundation upon which many other technologies are built. For example, without AI, we wouldn’t have made incredible advances in the Internet of Things, virtual reality, chatbots, facial recognition, robotics, automation, or autonomous vehicles.
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AI will also change human jobs. AI-driven automation will have a particularly significant impact and could lead to the displacement of many jobs. But instead of subscribing to the vision of a dystopian future where all human jobs will be handed over to robots, I believe that AI will improve our lives. AI will improve human performance and replace displaced jobs with new jobs.
Furthermore, as machines become smarter and more capable of performing human tasks, I believe that our uniquely human capacities—things like creativity, empathy, and critical thinking—will become more and more valuable in the workplace in the future.
Genomics is an interdisciplinary field of biology that focuses on understanding and manipulating the DNA and genomes of living organisms. Gene editing is a group of technologies that allow genetic engineering to alter the DNA and genetic makeup of living organisms.
Biotechnology is advancing to the point where it is possible to modify the DNA encoded within the cell; This affects the characteristics or traits that their offspring will have. In plants, it can affect the number or color of leaves, and in humans, it can affect their height, eye color, or susceptibility to disease. This opens up almost limitless possibilities because it means that any inherited trait in a living organism can theoretically be modified.
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Much of the work done with gene editing is done in the healthcare field. Among the most exciting current projects is the correction of DNA mutations that cause serious diseases such as cancer or heart disease. But perhaps more than any other technology, there are ethical and legal concerns, as well as “what if” questions, when it comes to gene manipulation and editing. Genome editing in humans is currently banned in many countries, including much of Europe, because its long-term consequences are unclear.
It’s easy to think about the possibilities of eradicating cancer and even infinitely extending human life with something as transformative for society as genomics. In fact, if possible, such great achievements are probably a long way off. Focusing on solving small problems that have an immediate real-world impact is likely to be more productive in the short term.
Human-computer interfaces create technologies and wearable devices that help people improve their physical and potentially mental functioning and lead better, healthier lives. The most common examples of wearables today are fitness trackers and smartwatches: small, easy-to-use devices that typically track our activities and provide information that helps us live healthier, better, and more productive lives. .
However, the term wearable does not necessarily mean something placed on the wrist or other part of the body; It also extends to smart clothing, such as running shoes that can measure your gait and activity, advances such as robotic prosthetics, and wearable robotics used in industrial settings.
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As technology gets smaller and smarter, the range of wearables will expand, and the wearables we know today will be replaced by new, smaller and smarter products. For example, we already have smart glasses, but they could be replaced by smart contact lenses. Smart contact lenses can then be replaced by smart eye implants.
Advances like these lead many to believe that humans and machines will merge to create truly augmented humans, transhumans, or humans 2.0, where the human body is enhanced like a sports car to perform better physically and mentally. It will change the world of medicine and perhaps challenge our understanding of what it means to be human.
At the societal level, we may be heading for an even greater gap between the rich and the poor, the haves and the have-nots. Technology promises to help us live longer, healthier lives, and perhaps even offer the possibility of eternal life, but perhaps only for those who can afford it. Imagine a society where the rich are huge people and live forever, while everyone else is ordinary and poor… There is a broader ethical question of whether we want to live too long, given the enormous strain on our lives. planet. .
Augmented reality, or XR for short, includes virtual reality, augmented reality, and mixed reality, and refers to the use of technology to create more immersive digital experiences.
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In practice, XR is used to increase brand engagement, encourage customers to try before they buy, improve customer service, make workplace training more effective, and improve other organizational processes.
XR technologies offer people exciting and new ways to experience the world around them. XR technology is finding very real applications in our world and could dramatically change the way we interact with technology. In fact, mobile-based AR experiences like the Pokemon Go app generated more than $3 billion in global revenue in 2018. XR is also the user interface in the metaverse, the idea of a virtual universe where we can be whoever we are or not. It’s what we want when exploring the digital world of video games, dating, going to events, or anything similar to ‘Ready Player One’.
But affordability and affordability are obvious hurdles to overcome, as XR headphones can be expensive, bulky, and complicated. But as the technology becomes more common, accessible, and user-friendly, that only increases the potential for widespread adoption. The biggest challenges include privacy and the potential physical and psychological effects of highly immersive technologies.
3D printing, also known as additive manufacturing, refers to creating a 3D object from a digital file by building it layer by layer. 3D printing may seem more low-tech than artificial intelligence or gene editing, but it has the potential to revolutionize manufacturing and other industries.
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Thanks to 3D printing, factories of the future will be able to quickly print machinery spare parts on-site. The entire assembly line can be replaced with 3D printers. We could print human tissue for transplants, we could print weapons, we could even print food.
3D printing technology offers many opportunities, but also some disadvantages, challenges and obstacles to overcome. Although it has the potential to reduce the environmental impact of production by using fewer materials overall, we must consider the environmental impact of printers.
3D printing also creates problems for intellectual property owners, as the technology allows counterfeiters to cheaply and easily manufacture counterfeit licensed products. There is also the issue of possible weapons
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