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Zhao Yi completed the technical paper on the Neutron Generator and submitted it, then put it aside and began his own research --

The mathematical analysis of supersymtry particles.

He had already completed the energy discussions of fermions and bosons. The main content was fundantally done, with only additional supplentary content left to complete. Specifically, the descriptions of energy principles obtained during the initial mont of the formation of fermions and bosons.

In terms of this part, Zhao Yi considered further contemplating the cause of particle formation. In plain terms, why do particles collide or form photons, bosons, or other particles in other reactions, rather than forming the sa type of particle? What is the fundantal reason for forming different particles?

Finding definite answers to these questions is tough in a short period, the only possibility was to make inferences based on the particle energy data model and real experintal data or, in other words, to rely on ’reasonable imagination’.

The imagination has to be reasonable.

The first step was to compare the previously completed particle energy mathematical model. Since supersymtry research was under way, the primary particles under analysis are fermions and bosons. The principle of particle formation that was established must not contradict the existing particle mathematical system.

The next step was to refer to experintal data.

Zhao Yi studied the copied experintal data ticulously. The positron-electron collider laboratory was indeed generous, providing him with a copy of the research findings as long as they were not confidential. As the specific data were very extensive and could not be stored in ordinary computers, they also gave him a temporary internal account for him to log in and view the internal network.

This data and analysis results are important references for research. The analysis result can be compared with established particle energy fraworks to see where there is a significant deviation.

Moreover, so data analysis outcos are very aningful because the mathematical structure of particle energy is very complex and so areas require setting a threshold range.

For example, setting a coordinate point and analyzing the fundantal energy range it embodies, it fluctuates between 130 to 2500 units.

The number is uncertain.

As long as it stays between 130 and 2500 units, it can support the overall mathematical structure, while the reference experintal data can sotis help narrow the range down.

But Zhao Yi did not often make small changes to the model data. He would reduce the threshold range slightly only when he found the range was too broad. The main reason being that the particle energy theory was completed only by him. Others could also use a large amount of experintal results to revise and perfect it.

This work cannot be done in one step. Solely with the data from the positron-electron collider laboratory, it is also impossible to allow the theory to perfected in one go.

Having the frawork now is enough.

...

While Zhao Yi was focused on particle mathematical research, the upper departnt already noticed the return email he had sent with research subject labeled ’A new type of Neutron Generator principle’.

In fact, there were many similar reports. For instance, so organization developed a new navigation theory and rushed to make a report inquiring if it could potentially benefit military-industrial technology. Generally, reports were made out of inquiry, just to get confirmation there was no problem.

High-tech in the field of national defense and military work is usually conducted in-house. For example, major state-owned military enterprises or national laboratories are involved in related developnt operations.

And so on.

A piece of research from regular scholars is unlikely to aid national defense or military work significantly.

Of course, possibilities still exist.

The upper-level departnt in charge will divide and classify the reports received from scholars.

When the hers staff saw a title labeled ’A new type of Neutron Generator technology’, they found it amusing. Usually, the reported technology titles are things like ’Navigation Theory’, ’Information Blocking Technology’, ’Discovery of New Pathogenic Bacteria’, and such. Suddenly, there was sothing called the ’Neutron Generator’, which was particularly eye-catching. But ’Neutron Generator’?

Have we entered the era of Star Wars now?

The hers worker found it fascinating but complicated. Nevertheless, after he opened the email and read it, his expression beca more serious because the report was credited to Zhao Yi.

"Zhao Yi?"

"That young mathematical prodigy? I heard he was doing AIDS research, why did he report high-tech weaponry technology?" The worker was seriously confused, so he forwarded the ssage to the person in charge of high-tech military technology.

In no ti.

Upper-level discussions took place. "Neutron Generator? What’s that?"

"I have no clue, it’s sothing like a railgun?"

"A gun that shoots neutron beams? Should we ask the nuclear departnt? Or the High Energy Institute?"

There’s no direct link between high-tech military fields and high-energy physics, but they could approximately point to the correct departnt. Soon, the problem was put in front of Ding Shouxian, the head of the High Energy Institute.

"Neutron Generator?"

Ding Shouxian indeed knew about the Neutron Generator; he had personally approved related research projects. "Are we doing this research? It’s classified work, but not of a high level. Theoretically, a Neutron Generator can detect explosive devices or nuclear bombs, but the possibility is still too low. First, you need to make a generator. It would be best if the neutron could travel further, ideally tens of kiloters, but at present, it can only reach few centiters..."

His words trailed off, expressing a hint of embarrassnt. But that’s what reality was. An unconfined neutron beam is like the inner strength of the martial artist in martial arts novels which disperses as soon as it is externalized. The gap from military usage was too enormous.

You are reading Genius of the Rules-Style System Chapter 642 - 365: Is a Mathematical Physics Genius Reviewin on novel69. Use the chapter navigation above or below to continue reading the latest translated chapters.
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