Chapter 597: Directional control, improved technology! Huang Mingkun: Academician He is such a good person!(1/2)
The scene created by the gravitational field is very shocking to people.
Huang Mingkun lamented that he called it "great technology". He was a true soldier, and the first thing he thought of was to apply technology to weapons.
That is definitely a powerful high-tech weapon!
Ding Zhiqiang also feels that it is more "interesting" to use it in weapons. The application of gravitational field technology in the protection of aerospace carriers is only in the future.
There is not even an aerospace carrier now, so the protective application can only be imagined for the time being, but its use for destruction is real.
Wang Hao's idea is much simpler.
Whether it is used for weapons or for the protection of space carriers, technology needs to continue to be researched and enhanced to achieve better results.
After returning to the experimental base, Wang Hao immediately called everyone for a meeting and mainly explained three issues. "This experiment is of great significance and it also affirms our research results in the past period of time."
"Whether it is a technical level or a theoretical level, everything has been confirmed."
"Theoretically, the first thing to determine is the linear characteristics of the experiment. We initially thought that the experimental results were not linear, but now it is proven that the experiment is indeed linear. There is a direct correlation between the gravitational field release distance and the electrical power."
"The second point is the interference effect of the semi-topological structure inside the material releasing S and S-waves."
"We adopted an ultra-thin layer of co-directional current material design, and the gravitational field strength and release distance created were significantly enhanced."
"Members of the theory group should summarize the above and add corresponding structural content to improve it."
Wang Hao paused for a moment and continued, "The third point is the most important, which is the control of the direction of the gravitational field."
When it comes to the issue of 'directional control', people in the theory group become serious.
Research on the release direction of the gravitational field has only just begun to produce results. By adjusting the direction of the main structure and the sheet, they have been able to control the propagation direction of the S wave after it is formed, but cannot control the diffusion direction after leaving the main area.
The propagation direction of the S wave after it is formed also represents the direction of the gravitational field.
The gravitational field they created in their experiment was downward.
Normally speaking, the direction of the gravitational field is downward, and the range covered by subsequent propagation will also extend downward, but in fact this is not the case. It can be found in experiments that the subsequent extension is still along the transmission direction of s and s-waves.
In the experiment, the main influence area of S wave was formed within the range of 5500 meters to 5700 meters from the equipment, and a gravitational field with a magnification of 1.79 was created.
In this area, the gravitational field strength at each location is equal, forming a stable spatial expansion range.
There is no direct correlation between the direction of the gravitational field and the transmission direction of S and S-waves, because the formed space S-waves can no longer be understood in terms of ‘waves’, and ‘S-waves’ are just codes for ease of understanding.
‘S wave’ is essentially a ‘space force field’.
It is like a reaction in which matter and antimatter cancel each other out. Because matter and antimatter have canceled each other out, there is no longer any theory of speed and mass, and naturally there is no so-called ‘inertia’.
The energy formed will explode at the origin and spread around, regardless of the original directions of matter and antimatter.
S wave is not a wave, but a space force field, its essence is similar to the gravity of the planet.
When a stable space force field is formed, the subsequent impact of the force field is uncertain. It may be a pure energy burst, or the gravity of the planet will spread to all directions, or it may be a simple impact in one direction.
The s-wave produced experimentally is the latter, and the impact direction is along the S and S-wave transmission directions, covering a range of 5800 meters to 7900 meters from the device.
"Is this a coincidence, or does the subsequent impact range always extend towards the s and s-wave range?"
"Or, the subsequent scope of impact is controllable?"
After Wang Hao raised this question, everyone else started thinking about it and immediately responded with the correct answer.
The scope of subsequent impact is controllable!
Wang Hao did not let others explain their ideas, but continued, "This is the main direction of our next research."
"The reason why we study in this direction is because our theory is not perfect yet. If we can complete this part of the theory, we can greatly improve the technology, even qualitatively!"
People in the experimental group were a little confused, but everyone in the theory group understood.
In the past period of time, they have been conducting research simultaneously on both theoretical and technical aspects. On a purely technical level, research has reached a high point.
In other words, it is difficult to improve the equipment based on existing theories. Without theoretical support, it is impossible to simply study the main structure or the problem of co-directional currents to make much progress in technology.
promote.
The intensity of the gravitational field created now is 1.79 times, and the release distance is 5,500 meters. Even if the technology is further improved, the maximum intensity cannot exceed twice, and the release distance cannot exceed 10,000 meters.
If you want to break through the above two values, you must continue to improve the theory.
Of course there are other ways.
For example, it is to find another material with better performance than β-CWY-137 material.
Obviously, breakthroughs in materials are more difficult than perfecting theory and technology. Without theoretical support, finding new materials depends entirely on luck, which seems hopeless.
…
The study of the subsequent influence direction of the gravitational field is still very important.
This is not only related to theoretical issues, but also controls the direction of the gravitational field's influence. The stable central area of the gravitational field they created is only about two hundred meters, and the subsequent influence range exceeds two kilometers.
The subsequent influence range is much larger than the stable central area, the linear difference is up to ten times, and the volume difference is even greater.
This is like a nuclear bomb explosion. The central area of the explosion is not large, but the energy burst affects a large area.
This chapter is not over yet, please click on the next page to continue reading! Only by mastering the technology of controlling the direction of the explosion can we better master the gravitational field technology without causing a series of problems due to the uncontrollable scope of influence.
Wang Hao takes research very seriously.
He knows that the research on directional control is a breakthrough point. Being able to control the direction of subsequent effects can make great breakthroughs in theory and technology.
Research is also not easy.
They already have a certain theoretical foundation, but experimental detection is still a big problem.
For example, currents in the same direction release s and s-waves, but neither wave can be directly detected, and their properties have no concept at all.
According to international physics standards, s and s-waves are still just theories. They cannot be determined directly because they cannot be directly detected. However, Wang Hao received correct feedback and determined them directly. They do not need to rely on international physics standards to judge.
.
That doesn't make any sense at all.
The next step of research is to conduct theory and experiment simultaneously. Wang Hao is more focused on the architecture of the underlying equipment and uses the architecture of the underlying equipment to connect the theory. He hopes to find a new breakthrough point.
Unfortunately, there has been no progress for half a month.
If the system had not provided correct feedback, Wang Hao would have even thought that his idea was wrong because they could not find a breakthrough point at all.
So does everyone else.
When no breakthrough point can be found at either the theoretical or experimental level, some people even believe that the subsequent impact area is the extension of the S and S-wave direction, and there is no other controllable method.
Of course, Wang Hao is still very authoritative.
For example, He Yi never questioned Wang Hao. He felt that since Wang Hao said it, it must be right.
Qian Hongyu said in private that "maybe the direction is the extension of the S and S-wave directions", He Yi said clearly, "Professor Qian, it is good to have your own ideas, but when your ideas conflict with Academician Wang
When the time comes, don’t hesitate, kill your thoughts, and think along Academician Wang’s train of thought!”
Qian Hongyu couldn't understand it at all.
Isn’t it necessary to dare to question authority in scientific research? Isn’t one of the purposes of learning to have the ability to make one’s own judgments about things?
He Yi actually asked him to kill his thoughts...
This is too much!
Even if the other party is Academician Wang... Well, Qian Hongyu thought about it carefully, and what He Yi said makes sense. At least so far, Academician Wang has never made a mistake, and his so-called personal thoughts have no theory.
Support is only due to the lack of progress in research.
When He Yi talked about killing his own thoughts, he just asked Qian Hongyu not to question Wang Hao. In fact, he also had his own thoughts.
In the office.
When Wang Hao, He Yi, Qian Hongyu and others were staring at the structural diagram of the equipment, He Yi expressed his opinion, "Academician Wang, if it is to improve the equipment, should we change our thinking?"
"for example?"
Wang Hao held his chin and looked at He Yi.
"We have been studying co-directional currents, but the structure of co-directional currents, I think, has been studied very deeply."
"From the very beginning when the gravitational field was discovered, until now, all we have been doing is simplifying the underlying structure of the device and studying the issue of co-directional currents. Maybe we can add something to the underlying structure?"
He Yi said with thought.
To be continued...