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Chapter 159 Your research is wrong, but your research is too(2/2)

She explained in a calm tone, and then looked at Wang Hao with admiration, "Teacher Wang, when do you have time?"

"It's available now."

Hearing this situation, Wang Hao definitely couldn't sit still, so he simply went to the physics laboratory with Wang Yue.

Zhang Zhiqiang looked at the backs of the two people and couldn't help but said depressedly, "Women nowadays really have no discernment. Wang Hao looks just average, just a little younger. Isn't that right? A man in his thirties is like a flower. The more mature he is, the more attractive he is."

"

After he finished speaking, he looked at Luo Dayong, seemingly seeking support.

Luo Dayong found another mirror from nowhere and placed it in front of Zhang Zhiqiang. Zhang Zhiqiang took a look and found that his hair in the mirror was much thinner.

The more Zhang Zhiqiang read, the more depressed he became, and asked Xiang Luo Dayong, "What do you mean?"

"Give it to you."

Luo Dayong finished speaking very calmly, as if he had just done something inconspicuous, so he continued to turn his head and look out the window, humming a song -

"I have no direction, how can I have strength? I have no dreams, so how can I realize them? Thank you for exposing my cowardly side..."

Zhang Zhiqiang felt a little confused. He searched for one of the lyrics out of curiosity, and when he looked at the search results, his head was filled with black lines.

The title of the song is, "See Yourself Clearly".



Physics laboratory.

He Yi, Xiao Xinyu, Yan Jing and others were discussing the recent experiment.

Wang Hao knocked on the office door and was immediately warmly welcomed in.

Xiao Xinyu introduced, "Professor Wang, I asked you to come this time because we may have discovered the 'annihilation force' you mentioned in the superconducting experiment."

"...What experiment?" Wang Hao's tone was full of disbelief, because it was so strange.

If it is in microscopic experiments such as particle collisions, through a large amount of data analysis, it is possible to find traces of the annihilation force.

But, superconducting experiments?

The superconducting experiment is not a microscopic physics experiment, so how can it be possible to discover microscopic forces in the experiment?

Xiao Xinyu explained.

They have just completed the 'Communicated Gravity' experiment.

The theory of ‘exchange gravity’ was proposed by Dr. Li Ning thirty years ago.

Li Ning, a physicist at the Center for Space Plasma and Upper Atmosphere Physics at the University of Alabama at Americus, believes that ions in Bose-Einstein condensates are trapped in a high-temperature superconductor disk with a variable magnetic field.

When it is medium, the anti-gravity effect can be achieved, and its lattice structure can store a large amount of energy. Theoretically, this will produce a gravity-like field, which can increase or decrease the influence of gravity.

Li Ning calls it ‘communication gravity’.

The experiment produced a beam-like effect above the disk, affecting matter at a distance.

This supports the theory of communicative gravity.

When Li Ning proposed this theory, it was not taken seriously at all, because anti-gravity was too advanced, and the theory of AC gravity sounded like science fiction.

However, 20 years ago, during the anti-gravity experiment in a magnetic field, the Dutch team unexpectedly discovered that the objects on the disk were reduced by 2% under the influence of gravity.

This means that anti-gravity has achieved new results.

After that, there was no relevant news in the international physics community. It is said that the Ministry of National Defense of Amerikan took over the relevant research.

It has been 20 years now and no other news has been released.

The physics laboratory just wants to study "superconducting antigravity". They hope to see the phenomenon of "gravity reduction".

Of course, it ultimately failed.

There may be many reasons for failure, but failure is also expected, because there is no reference for relevant experiments except some published information.

Domestically, the phenomenon of ‘anti-gravity’ has not yet been discovered in superconducting experiments.

Even a failed experiment has brought a lot of results. Every large-scale experiment in physics can be said to be progress. Whether there are results or no results, some relevant results can be analyzed and studied based on the experimental data.

.

Whether it is experience summary or theoretical derivation, it is very valuable.

For example, this "failed" experiment, which took several months to prepare, cost more than half a million yuan, and was completed with meticulous work and reduced materials, is enough to summarize and complete several papers.

Of course, after spending more than half a million yuan to write just a few papers, it can definitely be said to be a 'loss'.

When summarizing experimental data in the physics laboratory, a strange problem was discovered——

‘Quality deviation’ of superconducting materials before and after experiments.

Although the mass deviation of the superconducting material after the experiment is very small, normally it will not be noticed in particular, but when thinking of the annihilation force mentioned by Wang Hao, to a certain extent, it can also be understood that the 'annihilation force comes into play, resulting in

The quality deviation of superconducting materials?

He Yi and Xiao Zhenyu hope to understand it this way.

Of course, even they themselves know that this statement is really untenable, and the possibility of errors in experimental measurement data is higher.

So after Xiao Xinyu came out of the explanation, he looked at Wang Hao with some expectation, but more of he was not confident, "Professor Wang, what do you think?"

Wang Hao shook his head silently.

He knew it was impossible as soon as he heard it. The annihilation force was aimed at the mass unit. Even for electrons, relative to the mass unit, it might be very, very large.

Will a superconducting material lose a large number of electrons due to experiments, resulting in a reduction in mass?

Maybe it's possible, but it's definitely not detectable.

It's like using an ordinary scale to weigh a cow. If you walk over and pluck a hair from the cow, you won't be able to weigh it at all.

However, it actually makes sense for Xiao Zhenyu and He Yi to understand it this way, because they do not have a clear concept of the annihilation force. At most, they have read the narrative article published by Wang Hao.

The introduction of that article is very vague, and it is not very precise. Only by combining the mathematical analysis and research of the disappearance of the hyperon decay signal detected by the spectrometer, can we have a deeper understanding of the speculation of the 'annihilation force'.

Wang Hao was about to shake his head in denial when he suddenly received a system prompt——

[Task three, inspiration value +13.]

[Inspiration value: 29.]

"??"

He was stunned immediately.

Because no exact direction can be found, research related to annihilation force has not obtained inspiration value for a long time.

It has risen so much now?

Combined with the information obtained in the brain, it can be confirmed that the discovery of annihilation force has a certain relationship with superconductivity. In other words, superconducting experiments are also a method of discovering annihilation force.

Wang Hao nodded vigorously, "Professor Xiao, Professor He, your research is so important."

"Although the mass loss of superconducting materials is definitely not related to the annihilation force, I think your experiment may have a certain relationship with the annihilation force."

"——?"

This time it was Xiao Zhenyu and He Yi's turn to be surprised. They said they had discovered the annihilation force, but they were only analyzing a very slim possibility.

In the end, Wang Hao denied their possibility, but still said that the superconducting experiment was related to the annihilation force?

What is the logic?
Chapter completed!
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