From University Lecturer to Chief Academician
Chapter 410 The experiment is successful, the application for the super weapon project, the new disc
After Wang Hao and Liao Jianguo finished speaking, they returned to the office. He was indeed not interested in the follow-up research on persistent f-rays.
There are two main reasons.
One is time-consuming and labor-intensive. The study of continuous f-rays requires placing a high-energy-intensity heat dissipation source in the anti-gravity field.
The best choice for a heat sink is a nuclear reactor.
There are too many advantages of nuclear reactors. For example, the continuous high-intensity heat dissipation can last for more than ten years or decades.
For example, the reaction intensity is stable, the existing technology can be effectively controlled, and the heat dissipation can always meet the experimental needs.
etc.
But nuclear reactors also have great disadvantages, the most important of which are two. One is the radioactive problem that can directly cause harm to the human body.
If the research is done at the annihilation force field experiment base, the personnel participating in the research must wear anti-radiation equipment, and safety may not be guaranteed, so the experiment will become very complicated.
In addition, adding a nuclear reactor to the internal heat source cannot be carried out by the annihilation force field experiment team alone, and requires the cooperation of a nuclear research team.
In order to ensure the effective control of the nuclear reactor, solve radioactive hazards, reactor cooling and other problems, the entire equipment will become extremely complicated, and the design alone will become a time-consuming and labor-intensive work, from design to manufacture. a long time.
Another reason is that follow-up research belongs to the field of purely technical design, without any scientific exploratory nature at all.
It's like designing and building an airplane.
The theory of aircraft flight has been perfected, and the design and manufacture are the work of a large number of engineers, and there is no need for him to participate.
Wang Hao still likes to explore the unknown of science.
The unknown is interesting!
On the other hand, Liao Jianguo's mood was very complicated. He never thought that he would hear such important news when he came to the Annihilation Force Field Experimental Base.
Persistent F-rays?
If F-rays become sustainable, they can be called 'super weapons'.
The research on this kind of super weapon makes people look forward to it just by listening to it, and its significance is not even worse than that of nuclear bombs and aircraft carriers, which are major engineering research.
Nuclear bombs, a strategic deterrent, are rarely used.
Aircraft carriers can enhance the defense capabilities of coastal waters, and at the same time have very important ocean strike capabilities, which can greatly increase the country's military influence.
But with the development of anti-gravity technology, strategically speaking, the aircraft carrier has become a bit tasteless. No matter how powerful an aircraft carrier is, it will never catch up with the "aircraft carrier" flying in the air.
Even in a short period of time, the aircraft carrier still has a strong deterrent force, but the domestic aircraft carrier power technology is decades behind American, and it is not easy to catch up.
And the F-ray is unique in China!
After the F-ray is persistent, it will have very high practical value and will become a sharp weapon for attacking high-altitude targets and near-earth satellites.
This research will definitely become a big project comparable to nuclear bombs and aircraft carriers.
If it can be truly researched and manufactured, relevant scholars and project leaders may become great figures recorded in history.
Liao Jianguo's heart surged when he thought about it.
He then shook his head with a wry smile, "Academician Wang is not interested at all in such an important research."
"really!"
"We are not at the same level at all, but it is right to think about it. Academician Wang has left his name through the ages. He must have higher pursuits, such as this kind of research..."
"People can't see it either!"
Liao Jianguo was immediately filled with complicated feelings, but he was still very much looking forward to the new experiment.
The new experiment is to detect the duration of F-rays.
As long as the duration can be detected, it can be determined that the F-rays produced by the new technology are persistent, and the research has a technical basis.
This experiment required very high-precision measurement equipment.
After the annihilation force field experiment team and the F-ray experiment team submitted the experiment requirement report together, it immediately attracted the attention of the military and science and technology departments.
Soon the military mobilized the most cutting-edge and sophisticated testing equipment from the top optical research institution in the country, and quickly transported it to the annihilation force field test base.
They also sent a professional researcher over.
It only took about half a month for the equipment to be transferred, transported, installed, and debugged. After confirming that the equipment can cooperate with the experiment, the next experiment will begin.
The superior sent a forty-year-old female researcher named Xu Hua.
When the experiment started, Xu Hua's eyes were full of nervousness and excitement. She was excited to participate in the 'never heard of' F-ray generation experiment.
F-rays are still based on creating an anti-gravity field and a strong annihilation force field. It sounds very lofty, but I don't know the specifics.
In addition, participating in Wang Hao's experiment is also exciting.
That's Wang Hao, Academician Wang!
The international scientific community does not know how many admirers Wang Hao has. Xu Hua is one of them. She admires Wang Hao very much. The first thing she does when she meets Wang Hao is to ask for his autograph.
Wang Hao was a little embarrassed at that time.
After working together for a few days, Xu Hua calmed down a lot, but she still felt very excited about the upcoming experiment.
Standing beside Wang Hao, An resisted her excitement and talked about the testing equipment, "This equipment is the most advanced in the world, and the detection time accuracy is 0.001 second."
"It detects it on the fly and calculates the contrasting lighting conditions."
"I have already made the settings based on the original experimental data. As long as the F-ray lasts longer than 0.001 seconds, it can detect..."
Xu Hua introduced it carefully.
Wang Hao already had a good understanding of the new equipment, he just nodded lightly, and was very satisfied with the accuracy of the equipment.
It is amazing that the detection accuracy of this kind of direct detection equipment can reach 0.01 second.
The expressions of time in many physical fields are very astonishing. For example, the lifespan of fast-decaying particles is even lower than 10 minus 20 seconds, which is unimaginable for human beings.
But in fact, those are calculated data, rather than direct 'timing' detection.
The calculation sounds very accurate, but there may be a huge deviation from reality, and the theoretically calculated time is different from reality.
The theory of relativity also supports this point.
Therefore, the duration of F-rays still needs to be able to be detected specifically in order to show its persistence.
...
The experiment entered the final preparation time.
Xu Hua went to the laboratory.
Liao Jianguo stood next to Wang Hao. He was more nervous than the others, because as long as the experiment found something, they would start the project research, and he would become the project leader.
So he very much wanted to be able to detect the persistence of F-rays.
At this time, Liao Jianguo asked with concern, "Academician Wang, is the duration of F-rays positively related to the intensity of the heat source?"
"This question is a bit out of line."
Wang Hao said with a smile, "We must first detect the persistence before we can study its correlation with the intensity of the heat source."
Liao Jianguo smiled embarrassedly, "I know that too, but I still want to know in advance."
"I'm not sure either."
Wang Haodao, "The law must be verified by follow-up experiments. I can only confirm that in the case of a low heat source, the duration of F-rays is positively correlated with the intensity of the internal heat source."
Liao Jianguo continued to ask, "Then is there a possibility that if the intensity of the heat source reaches a certain value, the F-rays can continue forever?"
"...This is also possible."
Wang Hao shook his head uncertainly, "That would be an ideal situation. To achieve that level, maybe the heat source can't just be a small nuclear reactor, but a violent nuclear fusion?"
"Nuclear Fusion!"
Tang Jianjun caught the key words, his eyes lit up and he asked, "Academician Wang, is it possible to carry out nuclear fusion reaction inside?"
Wang Hao smiled wryly, "You have to ask Director Liao about this."
"If the persistence can be detected, director Liao will be responsible for the follow-up research. The nuclear fusion reaction is too violent and difficult to control. Adding a small nuclear reactor inside should lay the foundation for future research on controlling nuclear fusion."
Tang Jianjun looked at Liao Jianguo with some embarrassment.
After Liao Jianguo came to the experimental base, the two still talked normally, as if nothing had happened, but Tang Jianjun always felt very embarrassed.
Liao Jianguo didn't care anymore.
In the face of heavyweight big projects, the little awkwardness with Tang Jianjun is nothing at all, he just looks forward to taking over the research of big projects.
Liao Jianguo said to Tang Jianjun, "We will apply for continuous research on F-rays in the future. Adding a nuclear reactor inside will definitely be a big project."
"The relevant experimental data will definitely lay the foundation for future nuclear fusion research."
Tang Jianjun also looked forward to it.
Although it's just 'laying the foundation', at least there is hope. He only hopes to see the day when controllable nuclear fusion is realized in his lifetime.
In the conversation of several people, the experiment has already started.
The whole experimental process is basically the same as the previous experiment, except that the F-ray release port has added optical detection equipment.
Everyone held their breath as the F-rays were ready to be released.
As the black shadow flickered away, they immediately looked at a computer screen in the corner. The computer was connected to an optical detection device, and the data would be uploaded in time.
"There is already data!" Liao Jianguo was the first to exclaim, "0.078 seconds!"
"Is it this index?"
"That's right!"
"It's 0.078 seconds, longer than expected!"
"The accuracy reaches 0.001 seconds? It's amazing, the value is almost close to 0.1 seconds..."
Everyone was very excited, "The continuity of detection means that the F-rays released by the new technology can be maintained, which is amazing!"
"We made it!"
"Successful!"
...
The experiment is over.
All the researchers who participated in the experiment made notes or wrote reports on the experiment, and then held an experiment summary meeting together.
Afterwards, Wang Hao, Liu Yunli, Liao Jianguo and others jointly wrote an application proposal for "Further Research on F-Ray Persistence".
The application plan explains the latest experimental findings, as well as the technical theoretical derivation based on the experiment, and expounds the importance of continuous research on F-rays.
Liao Jianguo also marked the word "super weapon" on the report, and explained that the continuous research of F-rays can create a "super weapon".
A super weapon, not exaggerated.
The core of the research is the new F-ray generation technology, and the way to improve the technology is to add a nuclear reactor inside. From the perspective of experimental findings, increasing the intensity of the internal heat source can not only increase the persistence of F-rays, but also enhance the intensity and propagation distance.
think about it...
F-rays have the characteristics of high intensity, covering distance and sustainability, and the generating equipment has become much simplified, and the angle of the release port can even be adjusted.
That can definitely be called a 'super weapon'.
The application for "Further Research on the Persistence of F-rays" was quickly submitted to the military and the science and technology department, and the superiors, Mr. Xu and General Zhang, both saw the report.
They all reacted the same way.
"Is this true or not?"
"Super weapon? It's too exaggerated! The F-ray can still continue, and can it change the angle?"
"Any target in the air will become a target, right?"
"too exaggerated!"
Although the content of the application is amazing, because Wang Hao is also one of the applicants, the credibility is naturally greatly improved.
Teacher Xu and General Zhang discussed it, and decided to go and have a look together.
at the same time.
Wang Hao returned to Xihai University without waiting for the response from the superior department. He first went to the Anti-Gravity Behavior Research Center to see the situation of the new team.
The new team is the annihilation force field material experiment group.
The person in charge of the experimental group was Sheng Hailiang, and other members also came to report. There were twenty-three in total, and they were divided into three groups.
Their working place is still at the Anti-gravity Behavior Research Center for the time being.
He Yi has been in charge of the experiment of annihilation force field materials before. He already has a lot of work experience, and now he just handed over the work to the new experimental group.
Fortunately, with He Yi's help, Sheng Hailiang quickly adapted to work.
Wang Hao went to the research center to meet Sheng Hailiang and other newcomers. He gave a brief speech, emphasizing the importance of the annihilation force field material experiment.
He is really looking forward to working with the new experimental group.
Wang Hao has always hoped to create a strong annihilation force field based on metal materials. Compared with high-voltage hybrid superconducting materials, metal superconducting materials have great advantages.
For example, the current carrying capacity is stronger.
Theoretically speaking, a stronger current carrying capacity means that there are more semi-topological structures inside, which makes the annihilation force field stronger.
In addition, the use of metal superconducting materials has low environmental requirements, and the cost of manufacturing strong annihilation force field generating equipment will also be greatly reduced.
From the perspective of theoretical research, first-order iron elements can be used to create the basic materials for strong annihilation force fields, which will also bring great help to the exploration of special phenomena and the deciphering of the mysteries of first-order elements.
These are all advantages.
Of course.
It will take time and a lot of luck for the new experimental group to make a real discovery. Wang Hao has no expectations in a short time.
After completing the research on the new technology of F-rays, he returned to the university to conduct regular research. Most of the time he worked with Huang Zhen, Ding Zhiqiang, Helen and Paul Phil-Jones on annihilation theory and related experimental phenomena. theoretical discussion.
afternoon.
Wang Hao was lying on a chair, drinking coffee and watching a movie leisurely.
Ding Zhiqiang walked into the office and shouted, "Teacher Wang, there is a new discovery, which may be related to a strange phenomenon!"
Wang Hao sat up immediately and asked, "What discovery!"
"look at this!"
Ding Zhiqiang handed over the tablet computer, which displayed the newly issued electronic journal "Material Physics".
Among them is a research paper called "Study on the Anomaly of Electronics in the Outer Layer of First-Order Iron Elements", which was completed by Yoshio Kurimura of the National Institute of Materials Science and Technology in Japan.
In the process of studying first-order iron elements, Kurimura Yoshio found that the activity of the outer electrons of first-order iron elements is 'unreasonable'.
This anomaly manifests itself in many ways, for example, the more stable chemical state of the first-order iron element, for example, its metallic compounds have lower electrical resistance than regular iron.
There are many physical properties listed in the study.
When comparing these physical properties, it is found that some physical properties are opposite.
For example, a more stable chemical form may mean a higher resistance value.
This conclusion is not definite, but several of them put together give people a very unusual feeling. Compared with the characteristics of other conventional elements, "first-order iron elements and their metal compounds should have higher resistance values and Not lower."
This is where the problem lies.
After many demonstrations, Kurimura Yoshio's research came to the conclusion that "the activity of the outer electrons of the first-order iron element is abnormal".
"I think this may have something to do with the abnormal phenomenon!"
Ding Zhiqiang said, "This research has found something unusual. If it is a conventional element, the outer electrons cannot be so active."
Wang Hao thought about it and asked, "If the outer electrons are active, to a certain extent, it may mean that the compound is unstable, right?"
"right."
Ding Zhiqiang nodded vigorously, "However, first-order iron compounds are even more stable than conventional iron compounds."
He's talking about the stability of chemical bonds.
The stable performance of chemical bonds is that more energy is required to separate chemical bonds, and greater heat will be released through chemical reaction separation.
Wang Hao thought about it carefully, and suddenly thought of another experiment.
When He Yi was experimenting with annihilation force field materials, he discovered that some first-order iron materials exhibited very unusual antigravity properties.
When tens of K exceeds the critical temperature, the material can produce a weak antigravity field.
Is there a connection between the two?
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