Chapter 583: Confirming the Expansion of the Universe! Technical research, Qian Hongyu: Is it really possible?
Experimental data shows regular bumps, and theoretical analysis means that radiation waves related to spatial expansion are detected.
This discovery made everyone very excited.
By the end of the meeting, everyone was excited to discuss, and they knew very well what the new findings represented.
They accomplished more than just a physical discovery.
First of all, the study is directly related to the expansion of space, and to a large extent to the astronomical theory of the expansion of the universe, that is, to confirm the important astrophysical theory of the expansion of the universe.
With the help of experimental data, it can even be said to confirm that the universe is constantly expanding.
They experimentally discovered the principle of the expansion of the universe, which until then had been based only on astronomical observations or explanations for astronomical phenomena.
To sum up, it was originally all theories, hypotheses, and even definitions, but now it is the discovery of the principle of expansion, which is equivalent to confirming the phenomenon of cosmic expansion.
Second, the gravitational field is created by creating space, which is also a completely new technology.
The gravitational field has a different effect than the annihilation field.
The annihilation force field is based on the interference of matter and physical properties at the particle level, and in the special environment of anti-gravity and strong annihilation force field, the physical rules will change to a certain extent, and the matter will undergo some changes at the particle level.
The strong annihilation force field is the most obvious.
Ordinary substances are affected by a strong annihilation force field, which will cause a special magnetization reaction based on the particle level, and even produce the phenomenon of particle upgrading, which will completely change the properties of the elements, so that the matter itself will undergo great changes, and it can no longer be restored when returning to the normal environment.
Organisms cannot be in an annihilation field that is different from the normal for a long time.
Needless to say, the strong annihilation force field.
The impact of the anti-gravity field on living things is also very large, and the short-term impact of living things in the anti-gravity field is not large, but because the particle level is disturbed, the infrastructure will be destroyed, and a series of chain effects may occur.
Direct experimental studies have been done by the National Laboratory of Biological Genetics.
They placed the chimpanzee in an anti-gravity field of 50 percent intensity, and after a week, the chimpanzee showed significant weakness.
When the chimpanzee returned to its normal environment, a detailed examination of the chimpanzee revealed irreversible lesions inside its body.
For example, there are genetic breaks in many cells.
For example, some important proteins have changed their bond positions and cannot be recognized by antibodies and are excreted as waste products.
These fundamental lesions also caused a huge impact on the health of the chimpanzee, and after about half a month, the chimpanzee was officially declared dead.
The impact of the research report released by the Biogene Lab is still very large, for example, all the facilities with the selling point of 'anti-gravity field experience' have been forced to close.
Institutions and laboratories that have access to the anti-gravity field have also added an important security measure, which is that no one is allowed to enter the anti-gravity field, even if the strength of the field force is low.
Gravitational field, it's different.
The gravitational field can be understood as the impact phenomenon that occurs when the normal annihilation force field environment creates an 'expansion space'.
It's a technology on a spatial level.
Because new spaces are created, the expanded spaces impact the existing spaces, resulting in the creation of a 'directional space field' in a specific area.
To some extent, the formation of the gravitational field is like the sluice gate in the swimming pool, there is a lot of water in the pool, after the sluice is opened, a new flow of water will be formed, if the water flow is within a controllable range, people standing at the sluice gate, will not suffer any damage, but will produce a good water impact experience.
If it is placed in space, in a special environment without gravity, the gravitational field can allow human beings to be subjected to a field force very similar to the earth's gravity at any time as if they were living on the surface of the earth.
A lot of people think about this.
The same was true of Paul Phil-Jones, who, after the excitement and excitement were over, went back to his office and contacted Zhou Hui, the deputy leader of his 'design team'.
His design team was set up for the shape design of the space carrier.
Initially, a lot of interested people joined the group.
Zhou Hui is also one of them.
Zhou Hui participated in the design of the lunar spacecraft and was appointed as the deputy leader of the group, but after joining the team, she regretted it.
Paul Phil-Jones is unreliable.
Paul Phil-Jones's style of doing things was very authoritarian, and he decided on a cabin design around a concave mirror, and no matter who objected to it, he would not adopt, accept, or even ignore it.
If others insist, Paul Phil-Jones would say, "I'm the team leader!" ”
Zhou Hui has given up.
From the perspective of science fiction lovers, she believes that the shape of the space carrier designed by the group is full of science fiction imagination, and their design must be the most beautiful among several groups, after all, it is a scheme around a huge sphere, and in terms of aesthetics, it has a very big advantage.
At the same time, the design around the huge ball will also greatly increase the usable space of the cabin.
These are all advantages.
However, from the perspective of scientific basis and application, there are a lot of problems with their design.
In other words, their design is unscientific.
In the conventional design, the capsule is always above the propulsion unit, i.e. above the concave mirror.
There are many advantages to this, the most straightforward of which is that whether you are lifting off from the surface of a planet or navigating in space, the capsule is always at the front of the device, which makes the propulsion very stable.
Now all rockets are designed in such a way that the capsule is at the top of the rocket, and the middle to the bottom are the propulsion equipment and fuel compartments.
This is true for the design of other groups.
In short, the shape design of the capsule around the concave mirror will indeed make the space carrier more beautiful, more stable, and more usable space, but the problem is that there are more disadvantages, and it is almost hopeless for such a scheme to be selected.
After all, in the design of the space carrier, aesthetics is the least important factor.
When she found out that Paul Phil-Jones was contacting her, Zhou Hui reluctantly pressed her forehead, she knew a little about Paul Phil-Jones, and knew that the other party could barely communicate, so she could only reluctantly respond, "Mr. Jones." ”
Paul Phil-Jones was very polite, "Hello Professor Zhou, how is the design work of our group recently?" Any progress? ”
Zhou Hui made a simple return.
In fact, the design work of the group has made certain revisions on the basis of the original, and there is no design breakthrough.
Without new technical support, it is impossible to achieve any breakthroughs in design.
After Zhou Hui finished speaking, Paul Phil-Jones was obviously a little dissatisfied, but he knew that he couldn't go back, so he still had to rely on Zhou Hui to improve the design, and immediately said seriously, "Professor Zhou, you must be serious!" ”
"Let me tell you in advance, the design of our group is likely to be chosen, because only the design of our group is a capsule surround concave mirror."
"None of the other groups."
"Got it?"
Paul Phil-Jones said it very seriously and seriously, so that Zhou Hui almost believed it for a while.
After putting down the communication, Zhou Hui was stunned for a long time, and quickly shook his head vigorously, "The design of our group will be selected?" ”
"This unscientific design...... No kidding! ”
She shook her head vigorously again, but decided to let the others work hard, no matter what, Paul Phil-Jones was the team leader, and when he came back, the work would have to be explained to the past.
……
Zhang Yang and Zhou Lina were also communicating with others.
Mu Sheng from the radiation laboratory of the Radar Research Institute called, concerned about their work, "It's been more than a week, are you still adapting?" ”
"Is Academician Wang easy to get along with?"
"Now the research should begin, I won't ask about the specific situation, but you must be serious, even if you can't research anything, you must let Academician Wang see our ability......"
"Ula Ula ~~"
Mu Sheng said a lot in a row, meaning to let Zhang Yang and Zhou Lina work hard, and at the same time expressed that they should not be too demanding, after all, the data is too complicated, and there is no progress in their own research.
Then he heard Zhang Yang say, "Director, we're done." ”
"What?"
"I said, we're done!"
Zhang Yang said very seriously.
Mu Sheng was a little stunned when he heard it for a while, and he asked Zhou Lina, "Is Professor Zhou like this?" ”
"Yes."
Zhou Lina said, "I can't believe it, but it's really done, it's like a dream, to be honest, we just did some basic work, Academician Wang has already come to a conclusion and discovered the law of specific bumps of radiation waves......"
"I don't quite understand it until now, but it should be done."
"Listen to Mr. Jones, we have confirmed the expansion of the universe ......"
Zhou Lina briefly explained.
Mu Sheng listened dumbfounded, and put down the phone with the same expression, and then he slapped his thigh hard, "Why didn't I go!" ”
"It's done in 10 days, and it's a big research ...... in 10 days on a business trip"
"As a result, I actually gave the opportunity to Zhang Yang and Zhou Lina."
"Confirm the expansion of the universe!"
"If it were someone else, it would be impossible, but Academician Wang is very likely, such a big research is definitely a heavy stroke on the resume, and it is even possible to participate in the ......co-election of academicians in the future."
"Whew~~~"
Mu Sheng took a deep breath and felt that he had missed the biggest opportunity in his life.
He clutched his heart hard.
Although his heart was still beating very strongly, he felt a faint pain, and even his eyeballs were wrapped in tears.
……
The data analysis work has basically been completed, but only the analysis project in cooperation with the Radar Research Institute has been completed.
Technological research has only just begun.
They found a pattern in the data, and they can definitely discover a new physical phenomenon, which, combined with experiments, can be said to prove the expansion of the universe, but there is no direct progress in the study of gravitational field technology.
Wang Hao focused his work on gravitational field technology, and he found Shen Huiming to talk about the next step.
"You're done with the next step of the measurement, and you're done."
"We have found the pattern of the data, and we can be sure that a special radiant point has been found, which should be a special radiation wave with low intensity and low frequency fluctuations, according to the calculation."
"Judging from the data, the intensity of the radiation wave is not weak, and it should be possible to make a device for accurate measurement."
"So the next step is to make a detailed measurement of this radiation."
Shen Huiming was also very surprised when he heard it, he thought that the work would take a long time, but he didn't expect to complete the data analysis so quickly.
He said seriously, "Academician Wang, I want to see the results, and then carefully compare and analyze the data and experiments. ”
"No problem."
Shen Huiming quickly looked at the results.
He specializes in radiometric experiments, and after carefully looking at the regularity data of the bumps, he almost understands the specific band range.
The next step is to perform a detailed measurement.
The measured data includes the frequency, intensity, and even waveform of the radiation, as well as other characteristics that may be present.
As long as the radiation band region can be successfully targeted, it is possible to make direct measurements for the manufacture of direct detection equipment.
Wang Hao reminded in particular, "You should pay attention to one thing when researching, the data we measure are conventional radiation waves, but conventional radiation waves may also be scattered by first-order waves." ”
"If there's a data problem, be sure to let me know."
When there is enough data, the calculation can be accurate and more detailed, and the subsequent measurement will be very smooth.
After about a week, Shen Huiming's team has measured enough data.
After submitting the data, Wang Hao and the research team analyzed it together, first of all, to increase the credibility of the new physical discovery to 5σ.
After that, detailed calculations were made on the new data.
All the members of the research group participated in the calculation work, and finally obtained the specific frequency, wavelength and other data of the radiation wave, Wang Hao held a summary meeting, and decided to call the new type of radiation wave 'space microwave', referred to as space 's wave'.
Next, the next step was explained, and Shen Huiming's team was responsible for the research of S-wave detection equipment.
The next step is to use S-wave detection equipment to assist in the study of gravitational field technology.
If the accuracy of the manufactured S-wave detection equipment is high enough, it is possible to determine the specific source of the S-wave by performing detailed measurements in different regions, so as to determine which part of the underlying structure of the gravitational field equipment is at work.
This is the overall line of study.
Wang Hao thinks that the research of S waves is mainly to provide support for theory, and as for the research of gravitational field technology, S wave equipment will play a role in the future.
Not much use right now.
In the field of pure technical research, he can lead the team to explore step by step.
After fully understanding the S-wave, the inspiration value of the gravitational field technology research task has also increased a lot.
[Task 3]
[Project Title: Increasing Gravitational Field Strength Based on β-CWY-137 (Difficulty: A.)] 】
[Inspiration: 91.] 】
Inspiration has reached 91 points, which is not far from 100 points.
They can only focus on the underlying architecture of the device, and the method is to come up with various solutions to analyze.
The underlying architecture of the device is still very complex, but after removing the three modules in the center, it should be certain that the two sides correspond to each other's co-directional current.
The direction of research on this basis is very clear.
The main research mode of the research group returned to normal, and Wang Hao began to hold research and discussion meetings continuously, allowing everyone to propose a plan to improve the underlying structure.
Then, slowly refine it.
When the research method returned to the conventional mode, the mentality of many people involved in the research changed.
For example, He Yi.
He Yi's face brought a smile again, and he felt very suitable for Wang Hao's research method.
This model feels like the technology is about to improve soon.
Qian Hongyu's mentality is completely different.
He is confused about Wang Hao's research methods, and many times it seems that Wang Hao makes a decision alone to determine a change in the underlying structure.
There is no clear explanation as to why this is the case.
Qian Hongyu suddenly became confused again.
So, is it really going to work?
Symposiums have been held again and again, and various analyses have been made, but can technology really be improved without direct experimental research?
(End of chapter)