From University Lecturer to Chief Academician
Chapter 399 Scientific research competition, first-order lithium results released, international boi
in the office.
The people in the research team kept discussing and recording that what they were studying was the possible existence of peculiar phenomena, and they never expected to have a theoretical framework.
Although it is only a few words and does not fill in enough mathematical foundation, but overall, there is already a theoretical framework for a general direction.
The name of this theory is "Cosmic Development and Elemental Behavior".
The main content of the theory is that, with the continuous enhancement of the annihilation force in the universe, the properties of the elements are also constantly changing.
For example, regular iron.
Conventional iron is stable and not radioactive. Iron has several isotopes, three of which are radioactive, with atomic mass numbers of 53, 55, and 59, respectively.
After countless years of evolution, under the cosmic environment with enhanced annihilation force, perhaps a certain isotope has become an element in a stable state during the process of constant change.
Of course, the above are just examples.
What the new theory wants to express is that the element in the stable state under the normal annihilation force environment may become a decay element after the natural evolution of tens of billions of years.
same.
Through long-term natural evolution, the properties of some decaying elements may become stable.
The new theory is connected with the annihilation force field experiment and the step-up elements, and it is believed that there is a deviation between the elements that undergo step-up under the suddenly enhanced annihilation force and the elements that evolve naturally with the increase of the annihilation force.
The difference between the two is a peculiar phenomenon.
"This peculiar phenomenon may be a special magnetic field, it may be some kind of undetected radiation, or it may be other manifestations..."
"But no matter what, the existence of the abnormal phenomenon has played a role in resisting the strong annihilation force field."
Paul Phil-Jones said, "I still prefer specific magnetic fields, because experiments have proved that magnetic fields have a repulsive effect on strong annihilation force fields."
"There is a special magnetic field that can weaken the effect of the annihilation force field within a certain range."
The viewpoint put forward by Paul Phil-Jones is indeed very reasonable, directly explaining the problem of the fixed content of first-order iron in the raw materials under the strong annihilation force field.
But how to prove it?
Wang Hao still can't think of it for the time being, the only thing he can think of is... the nuclear test.
It's the same as Ding Zhiqiang said.
In the end Wang Hao looked at Ding Zhiqiang, Paul Phil Jones and Helen also saw Ding Zhiqiang, hoping that Ding Zhiqiang would have some good ideas.
Ding Zhiqiang...
He shrugged and said nothing.
Ding Zhiqiang could understand what Wang Hao, Paul Phil-Jones and Helen said. Because of this, he was fighting a war between heaven and man in his heart.
If Wang Hao just "forcibly" called himself a genius, Ding Zhiqiang would immediately classify him as a "positive PUA".
Now……
Both Paul and Helen were like that.
The problem is that Ding Zhiqiang felt that what they said was very reasonable, thinking along the lines of 'nuclear experiment', he completed a theoretical framework.
When thinking of this, Ding Zhiqiang felt that he was a genius.
He said the result directly!
Wouldn't it be possible to prove all inferences by carrying out a nuclear test under a strong annihilation force field? At that time, I just said it casually, but it led to a large set of analysis.
The final question still has to be attributed to the nuclear experiment.
It's like answering a super difficult question, he said the answer directly, while others get inspiration according to the answer, and then slowly reverse the process...
Ding Zhiqiang thought about it carefully, and couldn't help but doubt, "Could it be that I'm really a genius? Impossible..."
"Why don't I feel it myself?"
"When it comes to IQ, Mr. Wang Hao, Helen, Paul... ahem, there is no comparison at all. Speaking of others...what else?"
He was lost in thought.
the other side.
Tian Guilin, Liao Zhenxing and Wang Zhimin didn't say a word the whole time, but just sat aside and listened quietly.
At first, they were shocked by the content of "discovery of first-order lithium" and "ultra-high content". Later, when they really entered the discussion, they found that they couldn't get in the way at all.
One is, I don't quite understand.
The other is because they feel that their IQs are completely behind, and their hearts have been hit hard.
have a look!
That Mr. Jones made a complicated statement, how could Ms. Hinton react in an instant, and then continue to say, but also add some personal opinions?
Doesn't she have to think?
That little fat man named Ding Zhiqiang is even more powerful. He is indeed the most valued student of Academician Wang Hao, and he is simply a genius to the extreme.
While others were still thinking about the derivation, the little fat man had already come up with a conclusion. It was like doing a super difficult calculation problem. It would be great if he could find a way to calculate it. In the end, someone directly said the answer.
Although they didn't understand well, they still felt very powerful.
Didn't you see it?
Mr. Jones, Ms. Hinton, and Academician Wang Hao all give the little fat man a thumbs up, and when they have problems, they all look at the little fat man...
wrong!
Never be called a little fat man in the future!
to call...
"Professor Ding!"
After the discussion in the research group was over, Wang Hao, Helen, and Paul Phil-Jones all left. Liao Zhenxing and Wang Zhimin immediately surrounded Ding Zhiqiang, "Professor Ding, I have heard of your name when I was at the Institute of High Energy. It's like thunder!"
"Professor Ding, you are truly a genius. We need to learn more from you. Can you recommend some materials to us?"
"Professor Ding, what are you researching, can we help?"
"Professor Ding..."
Tian Guilin stood at the door with his hands behind his back and watched, and couldn't help sighing in his heart, "Zhenxing and Zhimin are really smart."
"Although Professor Ding is still young, he is a formidable young man. If they stay here and discuss with Professor Ding more, they will definitely learn a lot."
"As expected of Academician Wang Hao's most valued student..."
...
When Wang Hao's research group was immersed in the study of extraordinary phenomena, the international physics community launched a fierce scientific research competition around "first-order iron".
"Measurements of first-order iron radiation waves".
"Methods of Exciting Radiation to Produce First-Order Energy Waves".
"Precise measurement of the melting point of first-order iron".
"An ultra-low carbon content first-order ferrous steel".
"The next-order iron in conventional environments...".
Every issue of the top international physics journals will have results related to "first-order iron". There are many institutions with a large number of first-order iron materials. Researchers are working day and night, striving to make new discoveries faster.
At the same time, there are many results related to the research of first-order iron.
Most of the results are focused on physical properties, radiation properties, and electromagnetic properties, and some are theoretical studies that make inferences from experimental results.
etc.
Some powerful material institutions have made rapid progress in the research of first-order ferroalloys, and successively released results related to first-order ferroalloys.
For example, the Institute of Aeronautical Materials used first-order iron as the raw material to produce a low-carbon steel with a toughness of 1450 MPa and a Rockwell hardness of 75.
This data is not the highest toughness among steels, but the results released by the Institute of Aeronautical Materials just illustrate a problem, "We use conventional iron as raw material, and the steel manufactured by the same method has a toughness of 1230 MPa and a Rockwell hardness of 63."
"Instead of using first-order iron, the toughness and Rockwell hardness have been greatly improved."
"In the direction of alloy manufacturing, using first-order iron to replace conventional iron, the steel produced has stronger toughness and hardness."
Several top material institutions have released similar results, including Wuhan Iron and Steel Research Institute, Fucheng Shipbuilding Industry Steel Research Group, Locke Leesman Steel Company Technology Department, Max Planck Society Metal Materials Research Institute, and so on.
Putting these results together, we can make a simple summary. The steel made of iron replaced by first-order iron will have a great improvement in toughness and hardness, and the increase range is between 10% and 30%.
This effect has been very significant.
Professor Sun Haonan of the Fucheng Shipbuilding Industry Steel Research Group gave a representative statement in an interview, "Steel made of first-order iron instead of conventional iron has improved physical properties in many aspects."
"If you don't consider the cost of primary iron, it will be easy to manufacture the steel that needs the same."
"For example, a high-strength special steel is required on ships. We used to have to continuously forge the manufacturing process. The manufacturing process is extremely complicated and the manufacturing cost is also high."
"Using first-order iron, it becomes much easier to manufacture steel with the same performance."
"That reduces costs."
"Of course, considering the high cost of first-order iron itself, it is not realistic yet..."
What Sun Haonan said was the facts.
The manufacturing process of some special steel is complicated, and the cost is very high. If the first-order iron is used to replace the conventional iron, the manufacturing difficulty of the demand will be lowered, and the manufacturing cost will naturally be reduced.
At the same time, performance may also be improved.
Because of this, many corporate organizations can't help but look to the technology department and pay attention to the progress of the formation of new companies.
If the new company is formally established, it will definitely sell first-order iron on a large scale.
At that time, the price of first-order iron will also be lower, but we still have to wait for the specific situation.
...
In the feast of international competition for first-order iron research, the International Annihilation Theory Organization released a piece of news, which attracted the attention of many people--
"We regret to announce that Empoli Cooper will no longer be in charge of the International Annihilation Theory Organization..."
Empoli Kubo is out.
The chairman of the International Annihilation Theory Organization resigned suddenly, and it seemed that there was no warning, but those who knew some things thought it was normal.
Because the progress of research cannot keep up.
The Antigravity Behavior Research Center has continuously released the results, which also let the international physics community know about their research progress. At least the strength of the annihilation force field is clear.
The annihilation force field produced by the International Annihilation Theory Organization is only about 4 times stronger.
Antigravity Behavior Research Center, more than 7 times.
The gap is almost doubled, and the technical difference is more than doubled. It can be described as "several generations", and it will certainly not satisfy the countries and institutions behind the organization.
Empoli Cooper can serve as the head of the Annihilation organization because of the support of the American Energy Department and the big man Duruk Bent.
Empoli Kubo had no choice but to leave when the DOE and Duruke Bent were dissatisfied.
In fact, Empoli Cooper still struggled a bit. He returned to American to meet Druk Bent, but he could only admit that he could not catch up within two generations.
"Three generations!"
"This is the result of our discussion!"
"The anti-gravity behavior research center's technology is very strong, but they can't keep improving. It only takes two or three years for us to catch up..."
Duruk-Bent replied angrily, "You said last time that the annihilation force field created by Wang Hao's team has a strength of around 6.6. That is also the result of your discussion, right?"
"Now, it's like this again."
"I don't want to hear the same words again and experience the same disappointment..."
"Mr. Cooper, you can go."
Then, Empoli Kubo didn't even go to State O, so he was fired on the spot.
Duruk-Bent was furious indeed.
This kind of anger is not only because of the R\u0026D progress of the Annihilation organization can't catch up with the opponent, but also because of the pressure from work.
He is about to step down.
Everyone has to think about their own future. As a politician, Druk Bent naturally hopes to achieve success in his work so that he can develop better in the future.
However, Duruk-Bent's tenure did not have much to show for it.
Originally thinking about the emergence of new physics, they invested heavily in support to catch up with competitors and let American take the lead in the field of new physics.
result……
The gap seems to be getting bigger and bigger!
Duruk Bent still didn't give up, he knew that during his tenure, it was impossible to see the day when the research on the annihilation force field reached the top.
However, he can continue to support.
If it was the policy when he was in office to let the research in the new physics direction catch up with the opponent, then it can also be said to belong to his political achievements.
Duruk Bent gave up on Empoli-Kubo, but he did not give up on the study of the annihilation force field. He made a decision, "We must continue to increase investment and give greater support."
"It's definitely not enough to just rely on the annihilation organization now."
"We still have to rely on our own people... we should raise more funds and let the national laboratory do this research..."
"The annihilation force field may be a strategic research in the future!"
"The Annihilation organization can't give up, and we still have to send another person. However, Empoli failed, and it will be very difficult for the person sent in the past to continue to be the person in charge..."
"Damn Empoli!"
at the same time.
Argonne National Laboratory.
Duroinshev-J-Beck walked out of the experiment room exhausted. He took off his overalls and threw them on the table, unable to hide the excitement all over his body.
His team had just completed an ionization energy detection experiment and made an astonishing discovery—the ionization energy of first-order iron is between 12.2eV and 12.4eV.
The ionization energy of regular iron is 9.32 eV.
Compared with conventional iron, the ionization energy of first-order iron has been greatly improved.
Ionization is a reaction between physics and chemistry, and it is difficult to be directly classified into the category of physics and chemistry.
Most of the research on primary iron revolves around the physical properties, as more studies are registered, the chemical properties of primary iron are unchanged compared to conventional iron.
Duroinshev-J-Beck just wanted to find a surprising direction to do research, and he never expected such an astonishing discovery.
This result is made public, and there are many points to be tapped.
Now that the physics community is conducting a scientific research competition for first-order iron, Duroinshev-J-Beck also decided to publish the results quickly. He contacted several physics journals, and finally chose "Science".
Compared with other journals, "Science" magazine will delay the release of results by half a month, but "Science" magazine is obviously more influential.
This achievement is definitely worthy of the level of "Science" magazine.
Duroinshev-J-Beck walked out of the laboratory with excitement, and happened to bump into Christopher Johnson, and his expression immediately put on a warm smile, "Christopher, how is your group doing? Are there any results?"
Christopher frowned suddenly.
Although they both work in the Argonne Laboratory and are also researchers in the materials group, their relationship is far from being good because they compete with each other to be the first person in the laboratory's metal materials. Sometimes they don't even greet each other. Hit it.
Seeing Duroinshev's enthusiasm now, Christopher asked with doubts, "Did you find out?"
Duroinshev gave a thumbs up and said with a smile, "As expected of Christopher!"
"Congratulations."
Christopher walked away immediately after saying a word, he didn't want to see Duroinshev's happy face.
If Duroinshev's research has not progressed for a long time, maybe he will be in the mood to say a few more words to the other party, for example, to persuade the other party to "don't care too much, because no matter what, there is no progress".
Duroinshev didn't care either.
Anyway, the new results will be published soon, and by then, his first-order iron research results will be able to surpass Christopher.
At that time, everyone will know who is the first person in the Argonne laboratory for metal materials.
...
Duroinshev has not waited for his own results to be published, but has waited for the results released by the Antigravity Behavior Research Center.
The new issue of "Annihilation Physics and Theory" released new research findings, mainly focusing on "the second upgraded element-lithium".
"First-Order Lithium".
"Anomalous Ionization Properties of Magnetized Lithium Elemental Compounds".
"Ionization energies of first-order iron elements and first-order lithium elements."
Three research results related to first-order lithium were published together, which immediately caused the national physics community and related public opinion to boil...
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