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Super God-Level Top Student-Chapter 683 - 269: The Higher Peaks of Mathematics_2
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He hesitated for a moment before speaking, "So you didn't call me just to say thanks for this?"
After thinking it over, Qiao Ze said, "If winning a certain prize meant thanking someone other than myself, then that prize would be meaningless to me, wouldn't it?"
The statement made sense, and after being at a loss for words for a short while, the person on the other end finally said, "I have to admit, you're right, Qiao Ze. Gratitude for any award should first and foremost be to oneself. Then, do you need me for something?"
Qiao Ze pondered for a moment and replied, "I have recently completed the mathematical structure proof of the Super Helical Coordinate System, and expanded quantum field theory into multiple dimensions. In other words, in this theory, the wave function of particles is no longer just a function of three-dimensional space and time but needs to be defined in higher dimensions."
For example, the wave function that involves gravitons needs to be described in four-dimensional and higher-dimensional spaces, meaning the wave function Ψ of gravitons exists in an n-dimensional space, where n is greater than 4. Based on this, I have corrected several different manifestations of Quantum Entanglement. In multidimensional space, the entanglement between particles involves more dimensional interactions."
At the same time, the theory led to descriptions of the ways in which gravitons interact on a quantum scale, including the interactions between Containment Gravitons and Containment Higgs Particles, proving that by changing the helical axis of the Containment Graviton, the direction of the gravitational field can be adjusted. I'm not quite certain if it could be applied at the physical level."
"However, if we could prove this in the lab, I think it might be of great help to your research on the N-body problem."
Qiao Ze had plainly laid out his recent research findings.
There were no confidentiality issues, as it was all pure mathematical deduction, serving the purpose of going from 0 to 1.
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As for how to verify it, and how to get from 1 to 100, that's not a problem for a mathematical theorist to consider.
It's like what Qiao said, translated it means he has mathematically proven that the gravitational field has a direction, determined by the helical axis of the graviton, so if a way to control the helical axis is found, the direction of the gravitational field can be adjusted.
If physicists could prove this through experiments, it would mean that human civilization could harness gravity.
The theory sounds simple, but its implementation might take hundreds or thousands of years.
That is the charm of theoretical research: it suggests the correct direction, and then no one knows how many years later, someone might suddenly develop a tool that causes everyone to exclaim in surprise – is that even possible?
It also plunged the person on the other end into deep thought about the reality of the world.
Roth Dugan always felt that human capabilities had their limits.
Like the 100-meter dash world record being 9.58 seconds, one can dream that perhaps with continued evolution and more scientific training methods, the record might be pushed to around 9 seconds, but it will never get down to 1 second, right?
Similarly, with theoretical research, having an epiphany after accumulating knowledge and then developing a theory is understandable, but such flashes of insight can't always happen, can they?
From addressing the Yang-Mills Equations and solving the mass gap hypothesis to the transcendental geometry and Super Helical Coordinate System emerging in no time at all – how long has it been?
Just the thought of the predicted Containment Quantum Model being verified as true by CERN was already shocking enough, and now, in no time at all, the mathematical structures have been further detailed?
"Qiao, really, I'm very thankful you shared all this with me. So what do you imply?" Roth Dugan finally asked cautiously, pulling himself together from the confusion.
He no longer dared to think that Qiao Ze would submit his papers to Mathematics Annual.
The Xi Lin Mathematical Research Institute has its own journal, and recently, all of Qiao Ze's research papers on the subject have been written in Chinese, which means, the young man across from him really didn't care whether the international academic community accepted his theories or not.
Most importantly, last time he had promised to submit an article to "New Discoveries in Mathematics and Physics" of the Xilin Mathematics Research Institute, but to date, he hadn't even finished writing the review of his paper.
"What I mean is, if you are truly interested in the N-body problem, you might consider continuing your research at Xilin. I will provide as much help as I can, both financially and academically. Correspondingly, I want to learn from you how to teach students, as I have encountered some difficulties in that regard."
It was still Qiao's typical style.
He put the terms of the exchange on the table, directly.
After all, the Xilin Mathematics Research Institute isn't short on money, just on people.
Although the N-body problem is a macroscopic issue, Qiao Ze's next phase of work is centered on finding the unity between micro and macro phenomena.
The Super Helical Coordinate System theory could be imagined as a bridge connecting the micro and macro worlds. This theory might offer a completely new perspective, allowing for both quantum phenomena and cosmic and gravitational behaviors to be described within the same theoretical framework.
The reason Qiao Ze started with the Containment Graviton is that it establishes a mathematical structure.
If everyone accepts this mathematical structure, it means they also accept that the Super Helical Coordinate System provides a multidimensional mathematical framework for everyone, allowing scientists to describe physical phenomena ranging from quantum particles to galactic scales with a unified mathematical language.
Its most crucial feature is embedding traditional three-dimensional space and time into a higher-dimensional coordinate system for explanation.
Just like what he was doing. By mathematically analyzing the quantum gravity field and analyzing the behavior of gravitons through multidimensional analysis, it allows them to fit experimental observations at both the quantum and macroscopic levels.
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