Chapter 343: The Characteristics of F-Rays, Application Meeting, Riemann Conjecture Is Just a Prerequisite?

"Anti-gravity aircraft at tens of thousands of meters in high altitude...... Is there a countermeasure? ā€

"When the time comes, there will be ......"

"Or do you want to put air-to-air missiles on the Airship-2? Isn't that the norm. ā€

"Academician Wang, do you mean that you are already working on this technology? Is it anti-missile, or anti-aircraft artillery? ā€

"The artillery can't be that high, right?"

"Isn't there already a technology for correcting the trajectory of warheads in the rocket yard? It should be related to Academician Wang, and now it may be a cooperation with the Rocket Institute? ā€

When they heard Wang Hao say that there were countermeasures, several officers and senior technical personnel were surprised to discuss.

Wang Hao did not explain in detail, not because it involved confidentiality, mainly because the research results have not yet been determined, and the application is not 100% guaranteed.

The Anti-Gravity Properties Research Center continues to conduct experiments, and some of the properties of F-rays have been determined.

The first is to be able to control the direction and determine that the F-ray has the characteristics of a strong annihilation force field, and the intensity is relatively high.

In addition, F-rays are instantaneously propagated.

What is certain is that the propagation speed is at least close to the speed of light, because of the current technical problems, the F-ray coverage distance is limited, and no way has been found to detect it.

The third property is that it is not affected by substances during transmission.

This is mainly because F-rays are not energy, nor matter, but a field force, just like a magnetic field or an electric field, and the magnitude of the field force will not be affected and change because there is matter in it.

However, F-rays are not invincible, they can still be blocked, and high magnetic fields can deflect F-rays.

F-rays, which can be understood as a strong annihilation force field with higher intensity and instantaneous bursts, will naturally have the characteristics of strong annihilation force, first of all, it can make matter produce strong magnetization.

The second is that it can instantaneously increase the activity of electronics, which will directly paralyze electronic devices.

In addition, based on the fact that strong annihilation forces increase particle activity, it is likely that F-rays have the effect of igniting nuclear reactions.

This includes not only nuclear fission reactions, but also nuclear fusion when conditions permit.

If the nuclear reactor being pointed at is operational, the F-rays may quickly intensify its reaction effect.

The last point has not been directly confirmed by experiments, it is just an inference from theoretical research, but Wang Hao is still very sure of the conclusion, but he doesn't know the specific effect, and he still needs real experiments to test it.

This kind of experiment is certainly not something that can be done lightly.

Wang Hao did not continue to talk about the topic, and the relevant discussions could only stay on the discussion.

The next step is to continue to understand the test situation of the Air Ship-2, and Wang Hao has a very detailed understanding of various data and equipment operation.

After that, he was sure that there was no major problem.

Some minor problems still exist, but they are also encountered normally in the test, and they can be solved by finding a way.

In the process of understanding, Wang Hao also talked to others about the upcoming celebrations.

The relevant responsible air force general explained the display process of the air-ship-2, "When the time comes, the air-ship-2 will stay above the clouds, and when the scheduled time comes, the air-ship-2 will fall vertically, and at the right time, it will fall to the predetermined height." ā€

"After that, it will be panned and fly straight until it leaves the event venue......

He was also in good spirits when he talked.

Wang Hao listened and looked forward to it, "This design is very good, it falls from the sky, which is different from other flying machines, and can play a role in showing technology." ā€

"yes, that's what we thought."

"The purpose of the parade is to display military science and technology, and to deter the international community, and by the way, it can also boost morale, and vertical ascent and descent are the biggest features of the air-ship-2 flight."

"This is the result of our discussions together, and it has also been approved by the superiors......"

……

After spending two days at the air base in Hucheng, Wang Hao took a military vehicle to the capital.

After arriving in the capital, Wang Hao went to the arranged hotel to rest, and the next day he went to the conference center in the Olympic Village, where the Ministry of Science and Technology held a conference on cutting-edge science and technology applications and theories.

In fact, the theme is the application and theoretical research of superconductivity.

'Application' is put in the front, and it is natural that the application is valued, and the main content is to discuss the application of superconductivity-related technologies, so as to promote new technologies to drive economic development.

That's the end goal.

The ultimate goal of any valuable field of science and technology is to drive economic development, achieve more jobs, and create higher profits.

Many of the people who attended the conference were professionals in applied technology, including some officials from the Ministry of Commerce, as well as representatives of large enterprises.

With the innovation of superconducting materials, superconducting technology has penetrated into various fields, the most important of which is power and manufacturing.

In the field of electric power, it goes without saying that superconducting technology is directly related to electricity, and in the process of power supply, many parts of the process will use superconducting technology in order to reduce energy loss.

In addition, the construction of superconducting energy storage devices has also begun, and it is expected that the initial application will be realized next year.

Superconducting technology is also widely used in manufacturing.

For example, the steel industry.

Superconducting technology can create a higher and more stable magnetic field, which can be applied to the steel production process.

Superconducting technology can also be used in many fields, including medical devices, transportation, aerospace technology, and more.

The Ministry of Science and Technology meeting also explored the application of anti-gravity technology.

At present, the biggest application of anti-gravity is the manufacture of air-ship series aircraft and anti-gravity maglev trains, and other major applications are in the stage of exploration.

This is mainly because the highest-end anti-gravity technology is still in a confidential settlement.

Ordinary companies can only use overt anti-gravity technology to create 50 percent anti-gravity fields and 70 percent lateral fields.

In order to realize the application of this level of technology, it requires a very large investment in application technology research and development.

Wang Hao didn't care much about the application of superconducting technology and anti-gravity technology, he just sat in on the meeting, mainly waiting for the follow-up to enter the theoretical stage.

He was invited to participate in the conference mainly to lead the research direction of strong annihilation.

In the direction of the strong annihilation force field, Wang Hao is the only one who has the right to speak, because only his team has created a strong annihilation force field.

This content was waited until the next day.

In the morning, the conference entered the theoretical stage, and most of the attendees were scholars.

Wang Hao sat on the rostrum and made some explanations on the research on strong annihilation, and the content was all part that had been made public or known to most people.

For example, superimposing force fields.

For example, mixing high-pressure materials creates an anti-gravity field before they enter a superconducting state.

After that, Wang Hao did not talk about the content of experimental research related to the strong annihilation force field, but talked about the basic research of annihilation theory, "Whether it is strong annihilation force or weak annihilation force, we must base ourselves on theory in the process of research." ā€

"The current theory of annihilation is far from perfect."

"Even the analysis of weak annihilation, that is, anti-gravity, is only based on experimental findings, rather than really making a bottom-level explanation from theory."

"This also leads to the problem that we can't use theory to infer experiments, so we can only deduce theories based on experiments, and we don't know what the next experiment will find."

"That's a big question."

Wang Hao said very seriously, "If we have been aiming at experiments, there will come a time when research will enter a bottleneck, and we don't know what to do next, so we can only try our luck to carry out experiments." ā€

"In the past 100 years, most of the research related to superconductivity has been at this stage......"

Before the advent of the 'superconducting semitopology theory', superconductivity-related technologies had caught up with the theory, which also led to the stagnation of superconductivity-related research for decades.

Even if some new superconducting materials are developed, the improvement is very small, so to speak, almost meaningless, just scientific numbers.

What Wang Hao said surprised many scholars.

In recent years, Wang Hao has been researching experimental physics related to antigravity and superconductivity, as well as some applied science and technology application research.

Anti-gravity technology and superconducting batteries are among the representatives, and the two together have created an anti-gravity vehicle that shocked the world.

This is not only the impression of scholars, but also because Wang Hao has not published any theoretical achievements internationally.

Now Wang Hao suddenly emphasized the theory, which is still surprising, but what he said is convincing, the annihilation theory is only a new theory, even if it has been determined and called 'annihilation physics' by some institutions, but it is far from perfect.

Imperfect theories, of course, cannot support the analysis of technical directions.

When they saw Wang Hao talking eloquently, many scholars in the audience thought about another thing, they felt that the era of Wang Hao's 'theory' had passed.

This is mainly because Wang Hao has not had any theoretical-related achievements for a long time, but has devoted all his energy to technology application research.

"It is estimated that Academician Wang does not have much energy to spend on theoretical directions!"

"Whether it is anti-gravity technology or research related to strong annihilation, it takes a lot of energy, how can he grasp theory and technology at the same time."

"He is too important to the country, and the air-ship-2, including the experiment of strong annihilation, is the main direction......"

"The future of theory still belongs to young people!"

Some scholars said that they belonged to young people, and they felt very strange when they looked at Wang Hao on the stage.

Wang Hao's age is not very old!

The 'young people' they thought about in their hearts were estimated to be older than Wang Hao's.

In fact, in recent years, a large number of outstanding young scholars in the field of mathematics and theoretical physics have emerged in China, and they have also contributed a lot of achievements.

This is mainly because of support at the national level.

When research in a certain area attracts attention, it will naturally receive support at the national level, and the method of support is very simple, which is to 'throw money'.

For example, if we increase support for basic research in mathematics, we will support many mathematics research projects, and it will be easier to apply for related projects.

For example, increasing the allocation of talents for pure mathematics and theoretical incompetence will allow more mathematics and physicists to engage in basic research work, rather than being forced to turn to other directions.

There will also be more jobs in mathematics and physics research, and there will be more excellent mathematics and physics scholars.

In the thinking of the scholars in the audience, Wang Hao finished his speech and returned to his position.

Professor Yu Haibin of Shuimu University, sitting next to Wang Hao, he is in his forties, which can be regarded as very young, and at the same time benefited from the state's support for mathematical theory research, the project he applied for was approved and received 500,000 yuan of financial support.

Yu Haibin talked to Wang Hao about his research, "Academician Wang, I have a student named Liu Qing who is very good, and we are doing research on the Riemann hypothesis together. ā€

"Riemann conjecture?"

When Wang Hao heard this, he immediately became interested, "Is there any progress?" ā€

Yu Haibin smiled a little smugly and continued, "Our latest results were published in Acta Mathematica Sinica. ā€

He went on to explain, "We are using analytic number theory to study the hyperbolicity ...... Jensen polynomials."

"It was proved in the end that for all 'd≄1 and sufficiently large n', and incidentally for 8≄d≄1 and all n≄0......"

Wang Hao listened patiently.

Although he had not studied the Riemann conjecture in depth, he understood it after a cursory listen.

To put it simply, Yu Haibin and his students are a continuation of Jensen's analysis in the twenties of the last century, and prove a proviso.

This progress is indeed not bad.

On the surface, it sounds like the progress has reached the level of the twin prime conjecture (Zhang Yitang proved that the twin prime conjecture is 'weakened'), but in fact, the distance is still a little worse, and in addition, a lot of number theory conjectures are stuck at the end of the process, and I don't know how long it will take to really prove it.

Perhaps, it will never be proven.

Perhaps, others will prove it in other ways, rather than slowly 'getting closer to the proof' from one direction.

Of course.

This does not deny the research contributions of Yu Haibin and his students, otherwise it would not have been published in Acta Mathematica Sinica, indicating that the mathematical community recognizes it.

Yu Haibin said that his research was indeed a little proud, and he also asked Wang Hao, "Academician Wang, in the direction of annihilation theory, what research are you doing?" ā€

Other people around looked at it.

Wang Hao said, "I am studying the most basic mass point problem, hoping to shape the construction of mass point in a mathematical way. ā€

"Huh?"

Yu Haibin was invited to attend the conference on the theory of annihilation, so he naturally knew the theory of annihilation very well.

He could understand what Wang Hao was talking about, and immediately asked, "Is there any progress?" ā€

"Big progress, no."

Wang Hao pursed his lips and shook his head, and then said, "But I have found the direction, and I think we should use the Riemann conjecture and some kind of multidimensional equation as the mathematical carrier for the construction of mass points." ā€

"That's a good idea."

"Indeed."

Others also commented, "Using the Riemann hypothesis and some kind of multidimensional equation as a carrier, the mass point can be constructed and expressed." ā€

"There may be very complex and unsolvable problems involved......

"For Academician Wang, what problem can't be solved?"

"Also to ......"

Yu Haibin suddenly asked, "Academician Wang, you plan to use the Riemann conjecture as a carrier, if you can successfully complete the shaping and want to improve the research mathematically, you must prove the Riemann conjecture, right?" ā€

Wang Hao nodded, "I'm not sure whether to prove the Riemann conjecture first or to shape the mass point first, I am more inclined to the latter, and it can be assumed that the Riemann conjecture is correct." ā€

On this basis, the shaping of quality points is carried out. Physical theories don't exactly require sound mathematical proofs. ā€

"However, if this path doesn't work, I might consider studying the Riemann conjecture......"

He said it very calmly.

Others were not calm when they heard it, and they just discussed the difficulty of quality point research in their minds, and they didn't have any idea.

Now I know.

The premise of this study may need to prove the Riemann hypothesis?

This......

Are you sure it works?

(End of chapter)