NOVEL Genius of the Rules-Style System Chapter 1496 - 708: Worthy of Zhao Yi!_2

Genius of the Rules-Style System

Chapter 1496 - 708: Worthy of Zhao Yi!_2
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Chapter 1496: Chapter 708: Worthy of Zhao Yi!_2

Edward Witten exclaimed, "It sounds like the eruption of a solar sunspot, I really wish I could see it on site."

Zhao Yi nodded, "You’re right, it’s pretty much like that."

Edward Witten continued, "However, in terms of Space Link Technology, I haven’t seen any similar records or theories. I mean, Space Link Technology also causes energy to overflow and be absorbed by space, correct?"

Zhao Yi hesitated for a moment, then nodded, "Yes."

"What would happen if, during the process of spatial connection, the overflowing energy—that is, the speed at which space absorbs energy—reached a limit?"

The question stumped Zhao Yi.

Spatial Connection Technology and anti-gravity technology are unrelated; they are two different types of space technology. Spatial Connection Technology was discovered during the experiments on anti-gravity.

In the process of constructing anti-gravity, once the overflowing energy reaches a limit, an anti-energy barrier would appear.

Therefore, in the process of constructing spatial connections, if the speed at which energy overflows reached a limit, theoretically something would also happen.

But what?

Zhao Yi thought about it carefully and found the question extremely intriguing because he had never considered such a problem before.

This probably had to do with the research process.

In the theoretical research process of Spatial Connection Technology, he also had to explore many other directions because space technology is a brand-new field with too many possible research directions.

After constructing the theory of spatial connection, the theory was directly transformed into technology that could produce related Spatial Connection devices. Over time, the technology gradually improved and matured, and then came the development of space energy transmission technology.

Everything progressed very smoothly without encountering any direct obstacles or difficulties.

He had never considered the problems that energy overflow could cause, probably because Spatial Connection devices were relatively small and didn’t produce overheating that could cause connection issues, so he didn’t think about related problems.

Now, thinking about it carefully, what Edward Witten said was very interesting.

Zhao Yi earnestly said, "I had never thought about this before, Edward, you’re truly a genius. I think this is a great direction for research."

"Is that so?" Zhao Yi’s statement surprised Edward. "So you mean to say that you had never considered my question?"

Zhao Yi nodded vigorously, candidly admitting.

Edward Witten suddenly became interested, "Then let’s research it together!" freewebnøvel.com

"I’m sure we will find something."

For the entire next day, the two of them were holed up in the office, discussing related theoretical issues. They kept on debating, but it was too difficult to find conclusive results.

The main reason was the lack of experimental references.

The discovery of the anti-energy barrier wasn’t dependent on theoretical deduction, but rather, the anti-energy barrier was found during experiments and subsequent theories were deduced based on the experiments.

Now, without any experimental references, they didn’t know what would happen. Without any experimental findings, theoretical research had no direction.

However, Zhao Yi began to take it more seriously. He even called upon Qiu Chengwen and Zhang Qican to conduct related research together. Everyone put forward their own ideas. Later, Zhang Qican made a suggestion, "Right now, we have no direction. Whatever we say seems to make sense, but none of it has any foundation."

"I think we can do this; we pick a direction, like, the Voidon hypothesis, and analyze within the framework of the Voidon hypothesis."

Zhao Yi immediately nodded, "That’s a great idea. We can look for a more accurate direction, like, during the process of spatial connection, where does the overflowing energy go?"

This question was quickly answered.

Under the regulation of the Voidon hypothesis, the overflowing energy was absorbed by space and transformed into a large number of Voidons, which greatly expanded space.

This was also quite understandable.

It seems incredible that space could expand greatly by just absorbing a little bit of energy, but considering the unimaginable vastness of the universe and the compression of space in the cosmos—with rates possibly reaching billions or even higher orders of magnitude—any amount of expansion is conceivable.

However, what is incomprehensible is that when so many Voidons filled space, no space compression phenomenon occurred.

Clearly.

This point can’t be explained by the non-spatial nature of Voidons because during the construction process of anti-gravity, space’s energy absorption reached an extreme, indicating there is an upper limit to the speed of energy absorption by space.

So where did the Voidons go?

A new problem arose.

After several days of research with no progress, Qiu Chengwen simply made a suggestion, "I think it’s meaningless to do theoretical research this way. Everything is based on our unfounded speculation, and trying to construct relevant mathematics in this speculative manner to get an answer is purely a matter of luck."

"We could, however, make theoretical hypotheses and look for experimental directions."

"We could try to construct a more stable connection and conduct relevant experiments in the hope of observing something."

It was a very practical suggestion.

Qiu Chengwen’s idea was straightforward: to construct a more stable space channel.

For example, the same ten-cubic-meter link could connect ten thousand Voidons, a hundred thousand Voidons, or even a billion Voidons.

This would be a strengthened channel.

It’s like building a road. A standard two-lane highway can be built very simply, with potholes, but as long as the road is relatively smooth, cars can travel on it.

Others may build it very extravagantly and broadly, with very flat surfaces, even installing barriers in the middle, trees on both sides, and a very nice surrounding environment.

Both roads allow cars to pass, but the standards of their construction are completely different.

After continuously strengthening the channel, reaching a critical value, it might be possible to see something in the experiment.

That was Qiu Chengwen’s idea.

Although the direction of research had been determined, the work had to be put on hold temporarily because of the need to conduct experiments on material transmission.

The theory group then became very busy. They participated in the work of the experimental committee, listening to several teams’ reports related to data research.

In the process of work, it’s worth mentioning that the data summarized by the HL team had some slight deviations, which Zhao Yi pointed out immediately.

"There is a deviation in your final results."

Zhao Yi said with certainty, "On the third page of your report, there is a calculation with collected particle data, and the solution is not entirely correct."

The meeting room was instantly abuzz with discussion.

Each team presented their data reports at the central conference hall, with team representatives speaking to explain the computational process of their submitted data reports and providing analysis on the computational results.

The reports were submitted a day in advance, but due to the complexity of the data and calculations, representatives from the teams were required to provide detailed explanations.

However, no one would scrutinize every single step of the calculation that closely.

Even if such issues arose, they were generally hard to point out. The reports would be uploaded to the network, and the information would be made public to collaborating institutions.

Typically, it was only at this stage that someone would conduct a detailed study of an individual report and discover a deviation in a calculation result.

The work on particle collision experiment data was pretty much like this.

Zhao Yi pointing it out directly at the meeting was truly shocking.

"How did he spot the data error?"

"Did he check the data carefully the day before? But that’s impossible, right? With so much data, how could he have finished looking at it in one day, let alone calculating each one?"

"That’s astonishing."

It was at this point that many people remembered that Zhao Yi was the world’s most talented mathematician, having proved several top-level mathematical conjectures. In the field of data calculation, he had absolute authority.

A few people from the experimental committee couldn’t help but exclaim, "How did Zhao Yi do it?"

"It’s like he has a natural sensitivity to data, able to see even the slightest errors."

"I didn’t notice it at all."

"Even now, I’m not sure that the data is incorrect."

"It’s not incorrect, it’s not completely correct either; there is a certain deviation, as it’s range data."

"But it will have some impact on the results."

In the end, all they could do was to sigh, "Zhao Yi is truly remarkable!"

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