End of June.

Rainbow University.

Hundreds of students from the C9 Alliance, led by Yang Bin, Vice President of Huaqing University, came to the school gate.

C9 Alliance refers to the nine-school alliance.

The Nine Schools Alliance is the top university alliance in Xia State.

The members of the alliance are Yenching University, Huaqing University, Harbin Institute of Technology, Fudan University, Shanghai Jiaotong University, Jinling University, Zhejiang University, Xiaguo University of Science and Technology, and Xi’an Jiaotong University.

They came here to hold an academic exchange seminar with Rainbow University.

students who can come here.

All are top students from each school.

This year, Rainbow University suddenly emerged, publishing a large number of top journal papers, ranking first in the country academically.

The students of C9 League are all the proud ones of heaven.

Naturally, they do not want to live in the shadow of rainbow students forever during their college career.

This academic exchange meeting is not so much an exchange.

It’s better to say “kick the gym”!

The school gate.

Tao Rui, President of Rainbow University, and members of the student union were already waiting here.

After some greetings between the two parties.

Tao Rui took everyone to visit the campus and arranged accommodation.

Basic processes such as feeling the campus atmosphere, appreciating the campus environment, and visiting campus construction are part of the student exchange seminar.

The first day of the communication seminar.

C9 Alliance students did nothing, just took pictures and visited the campus。

……

The next morning.

Students from the C9 Alliance, after being diverted.

They went to various colleges of Rainbow University for academic exchanges.

The multimedia classrooms of major departments have all become PK scenes for students from Rainbow Academy and C9 Alliance.

Some students who had no classes in the morning came to the scene to enjoy the wonderful showdown between the two sides.

School of Mathematics.

In the multimedia classroom.

Wei Dongyi, a doctoral student at Yenching University, was talking on the stage.

His paper was displayed on the big screen at the scene——《The exact number of positive solutions to the general nonlinear one-dimensional mean curvature equation.

As Wei Dongyi continued to explain.

The Rainbow students and mathematics professors in the audience all nodded frequently.

They had heard Wei Dongyi’s name before.

Wei Dongyi High School won two consecutive gold medals in the World Mathematical Olympiad with perfect scores and was recommended to Yenching University.

in mathematical circles.

Wei Dongyi can be called a top academic master, and the outside world even calls him Chen Jinrun’s successor.

After a while.

Wei Dongyi ended his speech and received unanimous applause from the students.

Next.

Other students from the C9 Alliance came on stage one after another.

They are extremely accomplished in the field of mathematics and received applause from everyone present.

After a while.

Liu Le, a sophomore at the host Rainbow University, stepped onto the stage.

He said calmly: “I prepared a paper. I originally wanted to submit it to a top journal. Taking advantage of this exchange seminar, I will show my shame.” After saying

950, Liu Le put the U into the USB interface and read it. paper.

The title of the paper is “Proof of the Adequacy of Two Core Conjectures of Keller Geometry”!

Saw this title.

There was an uproar.

C9 Alliance students and professors were all very surprised.

In the field of mathematical partial differential equations and complex geometry。

—A Keller manifold is a manifold with a unitary structure that satisfies an integrability condition.

It is a Riemannian manifold, complex manifold and symplectic manifold.

These three structures are pairwise compatible.

The existence of constant scalar curvature measures on Keller manifolds has been one of the core problems in geometry over the past 60 years.

Regarding its existence, there are three famous conjectures – the stability conjecture, the coercion conjecture and the geodesic stability conjecture.

The stability conjecture, also known as Qiu Chentong’s conjecture, was solved by Xia Guo mathematicians in 2014.

In three conjectures.

The obligatory conjecture and the geodesic stability conjecture have not yet been solved.

But now…

Liu Le, a student from Rainbow, has promised to prove two core conjectures of Keller’s geometry.

How incredible is this?

On the high platform.

Liu Le introduced while operating the PPT: “As we all know, finding the solution to a class of fourth-order completely nonlinear elliptic equations can prove the existence of a constant scalar curvature measure. My idea is that in the K-energy mandatory

or Under the assumption of geodesic stability, to prove the existence of solutions to such equations.

At the same time, I also extended the classic theorem on the ring-symmetric Keller manifold surface to high dimensions.

Next, please see my specific problem-solving steps……”

Following Liu Le’s narration.

There are hundreds of pages of formulas displayed on the big screen.

It contains thousands of formulas.

The mathematics professor present listened carefully and verified it in his notebook.

However, proving this thesis will take a lot of time.

They could only give up the argument temporarily and choose to match Liu Le’s explanation speed.

They didn’t understand many parts of the paper.

But look at it as a whole.

The paper does not contain any logical errors。

……

Time passes slowly.

On the big screen, formulas and lemmas appeared one after another.

Liu Le said loudly: “The above formula proves that Keller’s geometric compulsory conjecture and geodesic stability conjecture are established!”

The scene was completely silent at first.

Immediately afterwards, cheers like a mountain roar and a tsunami broke out.

All teachers and students in the lecture hall stood up and applauded for a long time.

Two core conjectures of Keller geometry are proved.

At the same time, Liu Le also solved several famous problems related to constant scalar curvature metric and Calabi extreme value metric on Keller manifolds. (cdag)Start today.

Liu Le will shock the entire mathematics world!

As for this mathematics communication seminar.

There is no suspense now!

……

the other side.

School of Physics.

In the multimedia classroom.

Yang Shuai, a sophomore at Rainbow University, talked eloquently on the stage.

His paper is titled “The birth of normal temperature superconductors!” ”

Yang Shuai said slowly: “Superconductors, also known as superconducting materials, are designed to be conductors with zero resistance at a certain temperature.

Humans first discovered superconductors in 1911, discovered by Dutch scientist Heike Onnes.

Superconductors have three characteristics, namely complete conductivity, complete diamagnetism, and flux quantization.

Complete conductivity refers to the zero resistance of superconducting materials, which allows zero energy loss in the field of power transmission.

Complete diamagnetism refers to Utilizing the diamagnetism of superconducting materials, placing the superconducting material above the magnet can generate a repulsive force between the magnet and the superconductor.

Flux quantization refers to when the insulating layer between two layers of superconductors is as thin as atomic size. Superconducting DC current and superconducting AC current can be generated through the insulating layer.

Unfortunately…the current technology has not yet developed room temperature superconductors, and cannot maximize the advantages of superconductors.” The

voice fell.

The C9 Alliance students present nodded slightly.

In the current physics world, low-temperature superconductivity and high-temperature superconductivity have been achieved.

Can be used in room temperature superconducting field.

Scientists still don’t have much clue.

Not an exaggeration.

Room temperature superconductivity is the ultimate dream of scientists.

Until now.

Ten scientists have won the Nobel Prize for their research in the field of superconductivity.

On the high platform.

Yang Shuai said: “In March this year, I published an academic paper called “Magic Angle Graphene” in the natural journal “Nature”. In the paper, after stacking at a very specific magical angle, the

twisted Double-layer graphene can exhibit strong superconductivity at low temperatures.

At that time, the industry said that the magic angle graphene I discovered opened up new fields of condensed matter physics and twisted electronics.

Since then.

I We are always trying to stack more magic angle graphene, three layers of magic angle graphene, four layers of magic angle graphene…eight layers of magic angle graphene, nine layers of mag

ic angle graphene, ten layers of magic angle graphene…

research Discovered.

The more graphene layers are stacked, the higher the temperature required to achieve low-temperature superconductivity.

After reaching this conclusion,

I began to stack graphene layers crazily and, with the help of a supercomputer, calculated the optimal angle of twisting. . (To read Baoshuang novels, go to Feilu Novel Network!)

Finally, when the magic angle graphene is stacked to 1028 layers, it can achieve room temperature superconductivity at 15 degrees Celsius.

Next, please see my experimental data……”

Following Yang Shuai’s narration.

Everyone present was stunned.

A true room temperature superconductor! []

Yang Shuai actually conquered the field of room-temperature superconductivity that countless scientists have dreamed of!

You know, superconductors have a wide range of applications.

Utilizing the complete electrical conductivity of superconductors, superconducting power transmission cables, superconducting transformers, and superconducting generators can be used.

At present, domestic charging using copper or aluminum wires, about 15% of the electric energy is lost on the transmission line.

In Xia State alone, the annual power loss reaches more than 100 billion kilowatt hours.

If changed to superconducting power transmission.

The electricity saved is equivalent to building dozens of large power plants.

The diamagnetic properties of superconducting materials can be used to create high-speed superconducting maglev trains and fully superconducting tokamak nuclear fusion test devices.

Using the flux quanta of superconducting materials, we can replace semiconductor materials, develop superconducting quantum chips, and create room-temperature quantum computers.

In addition, superconducting materials can develop higher-resolution nuclear magnetic resonance equipment, memory alloys, superconducting transistors, biochemical magnets, superconducting electromagnetic boats, etc., and are widely used.

Not an exaggeration.

Yang Shuai conquered ultra-temperature superconductors.

100% chance of winning the Nobel Prize in Physics in the future!

As for today’s academic exchange, there is no suspense!

……

the other side.

School of Chemistry.

In the multimedia classroom.

Zhang Shi, a sophomore student at Caihong University, spoke eloquently: “As we all know, lithium-ion batteries are the current mainstream and are widely used in many fields.

However, lithium-ion batteries have problems such as intolerance to low temperatures, poor stability, and environmental pollution from waste batteries. .

With the development of new energy vehicles and other industries, higher requirements have been put forward for the charging speed and power storage capacity of batteries. Various scientific research institutions

hope to develop a new battery to replace the traditional lithium-ion battery.

In recent years In recent years, remarkable achievements such as graphene batteries, nuclear waste batteries, new nano-batteries, and solid-state lithium metal batteries have been launched one after another.……”

Hear this.

Everyone present nodded.

Nowadays, there are more and more new energy vehicles in the streets and alleys.

In major new energy vehicle brands.

On the Rainbow Tram, you can go to the Rainbow Battery Swapping Station to swap batteries.

However, ordinary brand trams require slow charging or fast charging, which is very time-consuming.

But I have to admit it.

The era of new energy trams has arrived!

On the high platform.

Zhang Shi said: “Recently, I have developed a new type of polymer battery in the laboratory.

The new polymer battery���Polymer batteries charge 10 times faster than traditional lithium-ion batteries and only take a few seconds to complete charging.

The breakthrough of this new battery is based on the use of redox nitro-containing polymers as electrochemical energy storage materials.

Ordinary nitro-containing polymers have the advantage of fast charge and discharge speed, but their insufficient conductivity makes them difficult to achieve commercial application.

In the field of metal polymers, I use the composite of nickel-selenium polymer and Salen body as the main chain of a new compound.

In terms of stability and efficiency.

This kind of battery is safer and will not cause the risk of burning or explosion.

At the same time, it can also effectively reduce environmental pollution.

Next, please see my experimental data……”

Hear this.

Everyone present was filled with admiration.

Zhang Shi’s scientific research paper is a Nobel Prize-level achievement.

The advent of this new polymer battery

is bound to overturn the existing lithium-ion battery landscape and accelerate the development of the new energy vehicle field!

Not an exaggeration.

The emergence of new polymer batteries is a milestone achievement in the field of chemistry。

……

the other side.

IT Academy.

In the multimedia classroom.

Wu Yuan, a sophomore at Rainbow University, stepped onto the stage.

He put the U into the USB port, and the title of the paper appeared on the big screen。

《MIP*RE》!

Wu Yuan spoke slowly: “Einstein had a famous saying: Quantum mechanics should allow two objects to instantly affect each other’s behavior at a long distance. He called it ghostly action at a distance, which is quantum entanglement. He passed

away In the following decades, experiments proved quantum entanglement.

But until today, people still don’t know how much coordination nature allows between distant objects.

Today, I will use pure mathematics and algorithms to prove MIP*RE !

The language category MIP determined by the interaction of classical verification and multiple quantum theory verifications is equivalent to the recursively enumerable language category RE.”

After that, he began to explain his 240-page PPT.

The multimedia classroom is very quiet.

Only Wu Yuan’s voice echoed.

The students looked at the papers on the big screen attentively, with expressions of enlightenment on their faces from time to time.

On the high platform.

Wu Yuan kept explaining PPT.

Formulas appeared on the screen.

time passes slowly。

—Hours.

Two hours…

In the end, when Wu Yuan proved that MIP*RE was established, the scene was filled with excitement.

The professors present all had incredible expressions on their faces.。

MIP*RE is established!

From the perspective of von Neumann algebra theory, Wu Yuan refuted the embedding conjecture theory of Connes, the winner of the French Fields Medal, and solved many related problems in pure mathematics, quantum mechanics and computer science branches in one fell swoop – a so-called “complexity theory” .

The Connes embedding conjecture theory is the central conjecture of the operator algebra theory in the 1970s.

What is discussed is whether infinite matrices can be approximated by finite matrices.

This conjecture has existed for more than 40 years.

Mathematicians hope this conjecture is correct.

Because the conjecture is correct, it can be proved that many other mathematical tools are also correct.

Now Wu Yuan’s paper shows that.

Connes’ embedding conjecture is wrong!

The mathematical tools that the industry thinks are wrong too!

At this moment.

The C9 Alliance students present had mixed feelings.

Wu Yuan proved that MIP*RE means that a quantum computer that uses quantum logic to calculate can theoretically verify the answers to a large number of questions.

In other words, MIP*RE multi-party interactive proof, coupled with the computing power of quantum entanglement, provides an idea for the Turing halt problem.

The two machines are entangled with each other and verify each other, which can be used to solve the Turing Halt problem.

A proof in computer science had a profound impact on the quantum physics community and mathematicians.

Not surprisingly.

Wu Yuan’s paper will soon cause a sensation in the academic world。

……

at the same time.

Academic exchange seminars are being held in various colleges of Rainbow University.

Papers that attracted worldwide attention appeared one after another.

As a result, all the students in the C9 Alliance were crushed by the Rainbow students.

At this moment, they fell into deep shock and deep self-isolation.

The C9 Alliance is the face of Xia Guo’s education industry.

Every student was the top pick in each province or an Olympiad gold medal winner.

But when they faced the rainbow students.

Only then did they truly realize how terrifying the other party was!

Not to mention the students from the C9 League competing on the field.

Even if a professor from the C9 League takes the field, he will probably lose miserably.

Many students even cursed secretly.

An ordinary academic exchange seminar.

Rainbow students produced Nobel-level papers.

They are still having fun! .


Tap the screen to use advanced tools Tip: You can use left and right keyboard keys to browse between chapters.

You'll Also Like