With the rapid development and humanization of artificial intelligence, will human beings become better?

If you look closely, you can think of the clerk in the Apple Store as an electronic person, a mixture of people and machines. Each store is filled with salespeople with handheld smartphones who can help customers with everything from technical issues to after-sales services to product purchases and checkouts. There are no cash registers, no cashiers, and no long queues waiting for payment customers. The store is just an exhibition hall to showcase the products. When you decide what product you want, a salesperson takes it out of the storeroom. If you are already an old Apple customer who has signed up for a credit card, you will need to provide your own email address, which contains all the information in the Apple Store. All you have to do is walk out of the store with the selected product.

Will humans become better by starting to transform their bodies and consciousness?

Instead of using technology to reduce the number of employees or reduce operating costs, Apple uses technology to create amazing user experiences and configure new features for them. Apple uses technology to create the world's most productive retail store.

The progress of civilization is accompanied by the shadow of man-machine combination. The combination of humans and technology has made us the masters of other species. Our weapons and tools are stronger and sharper than the claws of any animal, making us more powerful and human beings able to defeat all beasts. Not to mention that humans can grow their food faster and stronger by growing crops and domesticating them to get more food than their ancestors.

In short, there are two types of enhancements in the process of civilization and complexity, namely body and spirit. One premise is to add more sensors to the physical world to collect and analyze data on an unimaginable scale. This is the real key that is often referred to as the "Internet of Things" and is now well known and not a science fiction novel. (Insurance may be the innate business model of the “Internet of Things,” just as advertising is the Internet's innate business model, because data-driven decision-making eliminates uncertainty.) It's more than just a smart device. Nest thermostats, Amazon Echo speakers, Fitbit sports bracelets and Apple Watch smart watches, as well as self-driving cars, connect to the Internet of Things. More important is the data provided by these devices. In the future, these devices may cascade in unexpected ways.

Agricultural giant Monsanto acquired Climate CorporaTIon, a big data weather insurance company founded by former Google employees David Friedberg and Siraj Khaliq. Monsanto used the company's technical achievements in conjunction with precision planting techniques to control the timing and depth of grain planting based on soil data, demonstrating to the public that the new focus of agricultural productivity is data and control. When the eyes in the sky can accurately tell the farmers about the status of the land and the progress of the crop, they need fewer seeds, less fertilizer and water, and can automatically drive the Tanaka equipment.

The same is true for engineering and materials science. The inventor Saul Griffith told me: "We use mathematical methods to replace materials." Sunfolding, a Griffith-based company, sells a solar tracking system for large solar farms that replaces steel, motors and gears with a simple pneumatic system that is only a fraction of the weight and cost. Another project is to replace the traditional equipment used for natural gas storage with a giant carbon storage container containing tiny plastic tubing so that the natural gas tank can exist in any shape and reduce the catastrophic risk of rupture. It turns out that when you understand physics correctly, you can use math instead of materials.

New design features are also closely linked to emerging manufacturing technologies such as 3D printing. 3D printing not only provides low-cost models and localized manufacturing products. It offers different kinds of geometries than traditional manufacturing. This requires human designers to develop powerful software. The future is more than just "smart devices," not just tools and devices that incorporate more sensors and intelligence, but new "products" built with smart tools and a whole new process of making them.

Design software companies such as Autodesk adhere to this concept. Their Heart Generation toolset supports the so-called "generation design." Engineers, architects, or product designers can enter a range of design constraints: functions, costs, materials, and cloud-based genetic algorithms (the original form of artificial intelligence) can feed back hundreds or even thousands of possible options. To achieve these goals. In the process of iteration, people and machines will design new products that have never been seen or even never imagined by human power.

The most interesting thing is to use calculations to help design new shapes, new materials or new processes. For example, the global architecture and engineering company Arup recently showed the public how to use the latest method to design the smallest size structural components, and the required raw materials are only half of the previous ones, but the load can be carried the same. The final machine design looks different from the simple human design.

BTC Miner


Bitcoin mining is the process of creating new bitcoin by solving puzzles. It consists of computing systems equipped with specialized chips competing to solve mathematical puzzles. The first bitcoin miner (as these systems are called) to solve the puzzle is rewarded with bitcoin. The mining process also confirms transactions on the cryptocurrency's network and makes them trustworthy.

For a short time after Bitcoin was launched, it was mined on desktop computers with regular central processing units (CPUs). But the process was extremely slow. Now the cryptocurrency is generated using large mining pools spread across many geographies. Bitcoin miners aggregate mining systems that consume massive amounts of electricity to mine the cryptocurrency.
In regions where electricity is generated using fossil fuels, bitcoin mining is considered detrimental to the environment. As a result, many bitcoin miners have moved operations to places with renewable sources of energy to reduce Bitcoin's impact on climate change.

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