Development of productivity started in 1981
Chapter 275: Undergraduate Graduation and Their Destinations
Chapter 275: Undergraduate Graduation and Their Destinations
On June 1987, 6, Wang Jiankun returned to BJ after a long absence to attend the graduation ceremony of Tsinghua University.
He went to Tsinghua University to study in September 1983. His seven major disciples, Wu Xiaoyi, and several other students who were arranged by the president to participate in his training also graduated from undergraduate studies this year.
Since the second half of 85, he has basically used his clone to study and attend classes in school on his behalf. He only comes back occasionally to synchronize memories, attend hometown gatherings, and accompany his family on trips to BJ. The rest of the time his real body spends in Myanmar or several major bases abroad.
In the next two years, he basically did not publish any heavyweight papers, but instead let his clone study and take exams step by step.
However, the papers he had previously published on the NS equations are continuing to play an important role in many confidential research institutes in China.
In the second half of his junior year, the Department of Mathematics contacted him, hoping that he would stay on to pursue graduate studies or teach.
At that time, Wang Jiankun took into account the domestic policy development situation and decided to accept the school's invitation and continue his postgraduate studies.
At this time, domestic policies were still relatively strict, and most areas were still closed. Only a small number of areas had relaxed management. If he wanted to develop freely in the country and not accept assignments but choose to find his own job, it was almost impossible.
In addition, my family and school will feel that I am different.
Of course, his family members, mainly his grandparents and father, hope that he can be within the system.
If you choose to graduate at this time, you will have to accept the school's job assignment.
Graduates of the mathematics department are generally assigned to work in research institutes, so it would be better for him to stay in school and have more freedom.
Among the other seven disciples, five who studied science chose to stay in school for graduate studies.
The two students who studied liberal arts went directly to work after graduation.
Yu Zirun is from the Department of Economics at Peking University and interned at the Ministry of Commerce in the past two years.
Before I even graduated, the Ministry of Commerce asked the school for people.
She has a very good temperament and image, and she is fluent in multiple languages, and her English and Japanese are almost comparable to those of professional translators.
Therefore, during the internship, several leaders of the Ministry of Commerce valued her very much. In the first half of her senior year, they had already discussed with her the salary and level after graduation.
Although subject to departmental rules and regulations, the initial level can only be determined according to the highest level of interns, but the salary is based on the salary of a full-time section chief.
At that time, Yu Zirun even came to Tsinghua University specifically to seek advice from Wang Jiankun's clone.
The clone supported Wang Jiankun in joining the Ministry of Commerce according to the plan previously formulated by his original body.
Yu Zirun is more suitable for politics. She has been influenced by it since childhood, and her language and negotiation skills required by the Ministry of Commerce are her strengths.
Now that she has entered the realm, her progress will definitely not be slow in the future.
Zheng Qian went to work in the court system.
With the help of Wang Jiankun, she learned a lot of legal knowledge when she was in high school.
After entering university, I quickly adapted and then joined in the drafting of many domestic legal documents.
Although she is young, she has considerable experience as a graduate.
Her mentor is also a leader in the legal field.
Therefore, as soon as she graduates this year, she will be able to work as a judicial assistant in the Supreme Court.
Her supervisor also supports her to pursue a postgraduate degree while working, so that her academic qualifications will not be low in the future.
Wang Jiankun certainly supported her choice.
Legal tools are indispensable for his future development in the country. Having such a disciple involved can avoid a lot of troubles and provide a lot of help in the future.
The place where Wu Xiaoyi, this half friend and half disciple, is going is also very good, the Organization Department of the Central Committee of the Communist Party of China.
With the help of Wang Jiankun, his college entrance examination scores were also very high.
Then the major he applied for was carefully selected with the help of his father.
During college, I entered the Organization Department of the CPC Central Committee for internship.
He grew up in a family environment that included high-ranking county officials and a government compound.
I have been exposed to many things in the officialdom since I was a child. During college, I worked in the department responsible for the assessment and promotion of department-level cadres and higher-level cadres.
Therefore, the position he can reach in the future should be the highest among all the classmates and friends that Wang Jiankun is familiar with.
At this time, Wu Xiaoyi's father was still one of the top leaders of the Raozhou government department, and his political achievements were good, and his age could support him to move up a level.
In this way, Wu Xiaoyi's early development will be protected by his father.
In the later period, his own position should be not low, and he will know a lot of people. If nothing unexpected happens, there will be unlimited possibilities.
As for the other five students who studied science, Wang Jiankun did not recommend them to work in research institutes or government departments at this time.
Yu Min majored in physics and performed excellently during his undergraduate studies, always ranking among the top two in the department.
In addition, Wang Jiankun also gave him some guidance from time to time, which enabled him to achieve a lot of results in nuclear physics.
He has published many theoretical research papers on condensed matter physics in various journals at home and abroad.
The department gave him two options. One was to join the Institute of Nuclear Physics of the Chinese Academy of Sciences and do some cutting-edge research with the academicians.
The other option is to continue studying for a master's degree until you graduate with a doctorate.
During this period, I followed my supervisor to do research related to nuclear fusion.
At this time, a certain tutor had successfully applied for a research project on nuclear fusion and was in urgent need of capable students to join.
When Yu Min was faced with two choices, he didn't know which one to choose.
After Wang Jiankun heard his clone's retelling in Myanmar, he asked him to convey it to Yu Min, allowing him to continue his postgraduate studies and work on nuclear fusion research under his supervisor.
At this time, some projects in the Chinese Academy of Sciences could only maintain basic theoretical research due to lack of funds.
If Yu Min joined at this time, it would be difficult for him to achieve anything due to his low qualifications, and he would probably be stuck there for several years.
If he joins a university tutor who has research funding, he can not only continue his studies but also make use of the experimental physics skills he has previously developed.
Controlled nuclear fusion technology is the next generation of technology for the peaceful use of atomic energy and an important symbol of the advancement of human civilization.
It represents that human civilization has basically broken free from energy constraints, and there will be a steady supply of clean energy available in future production and life.
At this time, Wang Jiankun basically mastered the manufacturing technology of nuclear fission power plants by relying on his super-power super-copying ability.
Various factories in northern Myanmar are mass-producing nuclear fission power plants to meet the growing demand for electricity. One of his key tasks in the next stage is to develop controlled nuclear fusion technology.
Yu Min was able to join the research project of controlled nuclear fusion at this time, and in the future he could unknowingly reveal certain key technologies to the country through him.
At this time, there had been significant progress in the research of controlled nuclear fusion technology abroad, which was why his mentor was able to apply for projects and funding, and the country also did not want to miss out on the future energy revolution technology.
In 1986, the T-15 device of the Kurchatov Institute in the Soviet Union achieved plasma discharge, with a magnetic field strength of 3.5 Tesla and a plasma current of 1.5 MA, verifying the feasibility of superconducting magnets in nuclear fusion.
T-15 is the world's first tokamak to use superconducting magnets, which lays the foundation for the superconducting design of the future Thermonuclear Experimental Reactor (ITER).
In the same year, the United States' TFTR (Tokamak Test Reactor) achieved a plasma temperature exceeding 1 million degrees Celsius (duration 0.3 seconds), approaching the fusion ignition conditions of the "triple product" (density × temperature × confinement time) for the first time.
And they also initiated testing of the tritium fuel injection system, paving the way for future deuterium-tritium fusion experiments.
Also in 1986, Europe's JET (Joint European Torus) extended the plasma confinement time to 10 seconds through neutral beam injection (NBI) heating technology, and the energy gain factor (Q value) reached 0.15 (Q=1 is energy balance).
The above are major advances in magnetic confinement, and there are also many in inertial confinement.
In 1986, the Nova laser at Lawrence Livermore National Laboratory (LLNL) achieved a 200-fold compression density (100 g/cm) of deuterium-tritium target pellets, verifying the physical feasibility of inertial confinement fusion.
The laser energy absorption efficiency was increased to 15%, providing data for the subsequent design of the National Ignition Facility (NIF).
Japan
Osaka University's Gekko XII was upgraded in 1986, with a laser energy output of 10 kilojoules, and high-speed imaging technology was used to capture the target pellet implosion process.
After the US-Soviet summit in 1985, the preliminary design of the International Thermonuclear Experimental Reactor (ITER) was officially launched in 1986, with the goal of jointly developing controlled fusion technology.
Participating countries include the United States, the Soviet Union, Europe, and Japan
The general solution of the NS equation obtained by Wang Jiankun can also play a great role in the study of plasma turbulence.
Therefore, he felt that Yu Min could join the research project of controlled nuclear fusion at this time, and in the future he could use him to unknowingly reveal certain key technologies to the country.
Lang Junjian is from the Department of Information and Electronic Science. He has many options for assignments after graduation, but he thinks it is better to stay in university, and he can also get a higher academic degree.
At this time, he no longer had to worry about finances.
Many software programs that he participated in or led in writing when he was in high school have occupied most of the domestic market under the promotion of Xingyao Group.
The patent fees or buyout fees made him a millionaire, and there will be a steady stream of income in the future.
He participated in the development of supercomputers in college. Although his position was relatively low at the beginning, with the special care of Wang Jiankun and his own efforts, he is now able to lead a team.
His field is a very new one, and there are basically no senior experts around. The ones who do exist are serving national secret projects.
Therefore, he can go directly to a doctoral program after graduating from undergraduate school, and has already applied for a research topic.
It is an artificial intelligence research project jointly supported by Xingyao Electronics and a domestic department.
Xingyao Electronics' 120nm chip process is already capable of producing AI chips with a certain degree of intelligence.
Lang Junjian also learned a lot of brain nerve research techniques from Wang Jiankun.
Therefore, his direct doctoral thesis is to imitate the structure of brain nerves and design a brain-like AI chip.
On this topic, although Wang Jiankun used his superpowers to determine that the performance ceiling of silicon-based chips is very low, even weak artificial intelligence will be difficult to develop successfully.
However, when studying silicon-based AI chips, the corresponding circuit structure and some software can be used on subsequent carbon-based chips and photonic quantum chips.
The development of electronic technology is best done step by step. If some preliminary research is not done, you may have to make up for it later due to certain problems.
Therefore, although the development is limited, Wang Jiankun still instructed Xingyao Electronics to invest in such projects and let the most advanced chip production line help with wafer tape-out.
Fang Guihua is from the Department of Materials. In the past few years, he has helped Wang Jiankun with a lot of auxiliary research, mainly helping to measure some new materials designed by Zhizi and created by Wang Jiankun using his superpowers.
He is also very hardworking in his studies and has always been the top student in the department.
Therefore, when I was in my sophomore year, I was recommended by my supervisor to join the research group on superconducting materials to participate in research work.
Wang Jiankun also occasionally provided him with some research ideas on high-temperature superconductivity and even room-temperature superconductivity.
With his help, several projects I worked on during my undergraduate studies have already won the attention of my supervisor.
At present, they have completed the development of a copper-based superconductor with a superconducting transition temperature of 60K.
This temperature is very advanced based on internationally published data.
Fang Guihua was the main experimenter on that material and had particularly unique insights in mechanism analysis. Even his mentor believed that he would achieve remarkable results in superconducting research in the future.
Therefore, even though a big shot from the Chinese Academy of Sciences strongly invited him, his mentor did not want to let him go and allowed him to stay in school to pursue a doctorate and participate in superconducting materials research.
The copper-based superconducting materials they are currently manufacturing are already being used in some cutting-edge fields. Although the operating costs are still very expensive, they provide strong support for certain experiments.
Wang Jiankun is still suppressing the speed of technology output, otherwise room-temperature superconductivity can be provided at this time.
It is also taken into consideration that the country is still relatively weak at this time. If it releases this technology now, it will only allow foreign countries to enjoy the dividends of technology first, and the benefits it gets itself will not be too much.
Hu Chunming has a similar experience to Fang Guihua. He is from the Department of Chemistry and has joined the research on the preparation of graphene.
Wang Jiankun actually didn't do much research on the preparation technology. Previous super graphene batteries were directly synthesized using super powers. Although conventional manufacturing research has been organized at the base in northern Myanmar, there has not been much progress.
Currently, chemical vapor deposition can only be used to produce single-layer or multi-layer graphene sheets with a diameter not exceeding 2 cm.
Graphene sheets of this size are still a little small for industrial applications, but they are sufficient for experimental research.
Wang Jiankun planned to wait until Hu Chunming officially started his graduate career, and then pass on the corresponding technology to China through heuristic guidance.
Of course, his research group has also achieved some results independently. They can now use self-designed equipment to produce multi-layer graphene sheets with a diameter of about 1 cm.
Cheng Ming is a civil engineering major, and he participated in some major water conservancy projects during his undergraduate studies.
Although he was about to graduate, he was still busy with his mentor at the construction site for the Beijing-Tianjin high-speed railway line.
He also chose to stay in school and follow his mentor to participate in the design work of some major engineering projects.
Not only can your academic qualifications be improved, but the knowledge you learn will also be more comprehensive, which is much better than working in a construction bureau.
In addition, there were several other students from the same county who were admitted to BJ. Most of them chose to leave school and accept job assignments.
The jobs that can be assigned at this time are much worse than those of students in the first three levels. It is basically difficult for liberal arts majors to enter ministries, and for science majors, it depends on the field and personal scientific research ability.
Wang Jiankun was not very familiar with them and only chatted with them briefly occasionally at hometown gatherings.
(End of this chapter)
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