Super Dimension Technology Era
Chapter 261 Nanorobots (2)
December 28th.
The total number of new humans rose to 1,039,678,561 million.
Changwu-D4 and Changwu-D5 completed the acceptance work and were officially put into service.
Phoenix Satellite System has 22 satellites in orbit...
…
Huang Mingzhe secretly returned to the Sisi Club headquarters in Shanmei, Lingnan. After handling some internal affairs, he spent the night with Wen Na.
The next day, three ordinary-looking off-road vehicles escorted Huang Mingzhe to the Nanorobotics Research Institute.
In fact, the current domestic security level in China is already very high. With the combination of the Diting detection satellite system and the Diting detector on the ground, it is unlikely to enter the country lurking.
The G organization's Pacific God's Domain and even the Inquisition have sent people to infiltrate many times in the past six months, but every time they were like nothing.
Even so, the security force around Huang Mingzhe is still very strong.
Even though there are only three off-road vehicles, these off-road vehicles are all special customized products with a unit price of more than 100 million yuan. Together with 11 fully armed security guards, it is almost impossible to attack Huang Mingzhe.
The Nanorobotics Research Institute is located in the eastern part of Luhe County, Shanmei.
From the heavy snow in the Guanzhong Plain, to the sunny and windy days in the South.
The institute is surrounded by plum trees all over the mountains and plains, and it’s like seeing the northern scenery with falling snowflakes again.
As soon as the off-road vehicle entered the underground garage of the institute, the director of the institute, Huang Hongda, and the chief researcher, He Shibing, had been waiting for a long time.
The two of them were more or less ashamed. After all, the Nanorobotics Research Institute had been established not long ago. This research institute was a laboratory affiliated with the Semiconductor Research Institute and was upgraded to an independent research institute at the end of 2014.
Now two years have passed and he is still half-dead.
Originally, Huang Hongda and He Shibing thought that after all members of the institute were transformed into new humans, their research progress would advance by leaps and bounds.
As a result, more than half a year has passed, and nanorobots still have not made much progress, and they are still far away from the practical stage.
Generally speaking, scientific research products can be divided into four stages, namely the research and development stage, the laboratory stage, the practical stage, and the commercial mass production stage.
"President, we are very sorry..." Huang Hongda said awkwardly.
Huang Mingzhe didn't blame them. After all, scientific research work is sometimes like this. It seems to be over, but it just keeps getting stuck.
"Let's talk inside."
A group of people entered the laboratory.
The Nanorobotics Research Institute is divided into nanoprocessing laboratories, microcommunication laboratories, high-energy microbattery laboratories, nanorepair laboratories, and functional supporting laboratories.
After conducting a thorough investigation of these five laboratories, Huang Mingzhe had a preliminary understanding of their situations.
First of all, in terms of wireless charging technology, the High Energy Micro Battery Laboratory has conducted research and has also experimented on nanorobots.
Wireless charging with a radius of about 150 meters can indeed be achieved through wireless chargers. If a micro-nuclear fusion reactor is used instead of a large wireless charger, the charging distance can even be increased to a radius of about 5 kilometers.
The obvious reason for not using it is that, as Huang Mingzhe expected, wireless charging itself is a strong source of electromagnetic interference.
In the wireless charging magnetic field, the nanorobot's communication system simply stopped working.
Being unable to communicate means that you cannot control nanorobots. What is the purpose of developing nanorobots that cannot be controlled?
Huang Mingzhe ordered: "Now follow my instructions."
Huang Hongda, He Shibing and others quickly raised their ears seriously.
"First, the battery problem of nanorobots can be solved with wireless charging technology. You can use your own technical reserves to correct it immediately."
"But interference..." He Shibing said hesitantly.
Huang Mingzhe waved his hand: "Of course I have a solution. I personally handle the communication system and do not use terahertz communication."
Not using terahertz communication? Huang Hongda, He Shibing and others looked at each other.
"I'm going to use neutrino communications instead."
"Neutrino communication?" He Shibing naturally has knowledge of this technology. In fact, neutrino communication is still a popular field in China.
It is mainly due to the π neutrino flow shield and neutrino detector developed by Huang Mingzhe, especially the neutrino detector technology. This technology is very similar to communication technology.
The neutrino detector emits a stream of neutrinos, and then the neutrinos are reflected back after encountering an object. The neutrino stream receiving system of the detector receives the reflected neutrino stream, thereby analyzing the condition of the object.
The neutrino communication technology just adds a neutrino signal encoding stage, and then does not require the total material reflection type neutrino flow, only a specific receiver is needed.
Huang Mingzhe continued: "In addition, Shi Bing, you should broaden your thinking. The self-healing problem of nanorobots can be combined with bionics technology and atomic manipulation technology."
Bionics and atomic manipulation technology? He Shibing was stunned for a moment, and then his eyes lit up: "As expected of the president, why didn't I think of that?"
Others also let go of their arrogance. In fact, many people will become blind and arrogant after obtaining biological computers. This is a common social phenomenon.
But they obviously forgot that now that everyone has obtained a biological computer, geniuses will also be more powerful.
Just like Huang Hongda and He Shibing, they have been unable to figure out nanorobots, but Huang Mingzhe came up with a complete set of solutions in three attempts. This is the gap.
After re-adjusting the technical route, Huang Mingzhe is responsible for neutrino communications, Huang Hongda is responsible for wireless charging integration, and He Shibing is responsible for nano-repair functions.
Huang Mingzhe, who went all out, showed his god-level strength and took down the neutrino communication and neutrino signal receiver in less than a week.
This neutrino signal receiver is so small that it is composed of only 133 atoms, with a diameter of only about 47.6 to 49.4 nanometers.
The wireless charging and high-energy batteries that Huang Hongda was responsible for were his own technical reserves and were completed at about the same time as Huang Mingzhe.
The rest is the nano-repair function that He Shibing is responsible for.
After Huang Ming completed the neutrino communication, he came over to help He Shibing complete the project.
Using a bionic bacterial structure, the entire nanorobot is designed to be a bionic bacterium with a diameter of 480 to 510 nanometers.
The nanorobot has a core component called the atomic replication core, which connects all the components of the entire nanorobot.
It can quickly realize the functions of "self-repair" and "division and reproduction". How does the atomic replicating nucleus achieve self-repair and division and reproduction?
The reason lies in the in-depth application of atomic manipulation technology. Specific atomic and molecular manipulation activation conditions are programmed on the atomic replication core. Once the activation conditions are triggered, the atomic replication core will manipulate atoms and molecules to complete the repair and splitting of nanorobots.
With Huang Mingzhe, the inventor of atomic manipulation technology, the research and development of nanorobots is progressing at a rapid pace.
Soon the prototype of the first nanorobot was designed and manufactured.
Next, they need to add functional components to the nanorobot to perform functional integration.
Nanorobots have dozens of components such as identification components, attack components, auxiliary components, charging components, communication components, micro-computing cores, atomic replication cores, and energy storage cores.
The integration went extremely smoothly.
Thank you for your support, and thank you book friends "Yu Ming Tao Ren", "Eyesore", "Qingtian Yi", and "Tigerhill" for your rewards (ω`)
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