Chapter 262: The First Year of the New Era

January 11, 2017.

The New Humanity Program was completed, and the entire population of 1386,3671.16 million people in the mainland has completed the implantation of biological computers.

In addition, 5,776,943 people in Xiangjiang, 642,637 in Macao, and 13,496,730 in Dayuan Province have completed the transformation of new human beings.

There are no people left who have not been transformed, and the reasons for this are self-evident.

The total number of people who have completed the transformation of new humans in the Human Alliance has been refreshed to 5,736,943.

After concluding its annual meeting, the Netherworld decided to name 2016 the first year of the New Human Era, or the New Age for short.

In 2017, the New Era was officially launched within the New Humanity, and 2017 is the first year of the New Era.

This means that the old era of the Common Era has officially become a thing of the past, and a new page has entered the history of mankind.

……

After Huang Mingzhe got off the line, he stood up and stretched, picked up the high-energy nutrient solution on the side, and replenished his physical fitness.

Opening the office door, he was still in the Nanorobotics Research Institute.

Come to the testing ground inside the lab.

He Shibing is manipulating nanorobots, which are close to maturity at this stage, and the only shortcoming may be the operator's external equipment.

I saw He Shibing wearing a silver-gray helmet full of science fiction, which is a helmet that integrates brainwave sensing, neutrino communication, built-in biological computer, and multi-functional glasses.

The nano helmet is mainly used to manipulate nanobots, and can also assist the operator in combat and work.

In addition, there is a 12 kg battery backpack, which contains: a 10 kg high-energy battery with an energy storage capacity of 24 kWh, a wireless charger with a charging range of 150 meters, and a battery management system.

In the testing ground, some silver-gray clumps appear in the air or on the ground.

Since the diameter of nanorobots is only about 480~510 nanometers, dust with a particle size of more than 10 microns (PM10) will sink due to resting (that is, the wind no longer resists gravity). (7) (8) Chinese is the fastest update on the whole network ωωω.78zω.cδм

Smaller dust particles do not sink naturally and can only be collected by filtration or by means of electric fields as mentioned below.

As a result, nanobots can be suspended directly in the air, and they can use their electrostatic fields to move and gather quickly.

On the side of the test site, Huang Hongda is manipulating various electromagnetic interference, laser interference, and sonic interference equipment, constantly interfering with the manipulation of nanorobots.

Huang Mingzhe clicked on their test report and found that nanobots still have many shortcomings.

For example, the energy consumption is very large, one unit (one kilogram) of nanorobots, in the state of high-intensity operation, needs to consume 15~17 kilowatt-hours of electricity per hour.

In fact, this energy consumption is not the energy consumption of the nanorobot itself, but the consumption of the wireless charger, and only 15% of the electrical energy released by the wireless charger is received by the nanorobot at most.

The second weakness is the control range, judging from the current series of tests, the maximum working range of the nanobot can only reach about 3.4 kilometers.

However, the practical range is only about 400 meters, because this involves fine control and the limitation of charging distance.

This is still a new human being, with biological computer assistance, ordinary people to manipulate nanorobots, it is estimated that they will not be able to climb 100 meters.

Of course, there are some solutions to this shortcoming, such as the use of neutrino atom imagers, which can accurately control nanorobots within a range of 3.4 kilometers.

The problem is that neutrino atomic imagers, the smallest of which are 45 kilograms, can cover 3.4 kilometers of neutrino atomic imagers, and the weight should reach about 150 kilograms.

This weight is extremely disadvantageous for individual use, and can only be applied to armored vehicles and the like.

However, even with these shortcomings, nanobots are still very useful.

He Shibing manipulated the nanorobot to gnaw a high-strength alloy steel plate weighing hundreds of kilograms into a pile of powder in just ten minutes.

On the blue star, no matter how strong things are, they can't withstand the destruction at the atomic level.

The nanobot activates the iron atom adsorption function to move the iron atoms out of the alloy steel, and the alloy steel has no way to resist this kind of destruction.

Among the functional parts of nanorobots, 22 common elements can be transported, and it is obvious that it is difficult to avoid the use of common elements in both metallic and non-metallic materials of human beings.

Even titanium alloys contain carbon and other elements, which is an unsolvable attack.

For example, when nanobots attack living organisms, they directly attack the carbon element of living organisms, even lizardmen have to kneel.

Nanobots can only be used to destroy, and the function of building objects has not yet been designed.

To build the function of the object, it must be coordinated with the neutrino atom imager, otherwise it is difficult to be accurate.

Huang knew he had to improve the neutrino atom imager and make it smaller, preferably to less than 10 kilograms.

For the time being, we can only increase the energy density of the battery or directly use the miniature nuclear fusion reactor, because the waste of wireless charging technology is a congenital defect.

After watching the nanobot's self-healing and self-replicating functions for a while.

Due to the need for self-repair and self-replication of nanorobots, the materials used to make nanorobots are common elements.

Avoid the use of small and trace elements as much as possible, so as not to find raw materials outside.

In terms of replication speed, it can double the proliferation in 186 seconds at the fastest.

After discussing with He Shibing and others, Huang Mingzhe decided to restrict the division and reproduction function of nanorobots.

According to the upper limit of the biocomputer computing power of the nano helmet, the maximum number of nanorobots for a single machine is set to 50 units.

The primitive nanobot can only split and reproduce 500 times, and when the 500 splitting and reproduction are used up, the division and reproduction function will be automatically locked.

The second-generation nanobots do not have the function of splitting and reproducing.

If the certified user of the nanobot dies, or if the nanobot is stripped off, the nanobot will self-disintegrate after 72 hours.

Users of nanobots must go to the nanobot management center for recertification once a year, and special personnel can be extended to once every three years.

Obviously, Huang Mingzhe is preventing some unnecessary trouble.

……

At the same time, as the country gradually entered a wartime mechanism.

In January, a secret mobilization order was issued to all localities to conscript 15 million new human beings into the army.

In addition, the militia mechanism in various localities has been activated, and militia training has been carried out for some workers in factories, farms, and rural cooperatives.

There are more and more Phoenix satellites in outer space, which means that the time for the new humans to fight to the death with the G organization is getting closer and closer.

Combat robots, exoskeleton armor, and Baiqi-class or line-level are being quickly put into service.

The Netherworld Mansion has also conducted several exercises in a row, and in the face of the G organization on the blue star, Huang Mingzhe and the others still have some certainty.

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