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In which year did Chinese scientists establish the straton model?
A Summary of China's Stratum Model for 40 Years (I)

-Commemorating the 40th anniversary of the publication of Stratigraphic Model.

Wang Dekui (Mianyang Daily, Mianyang, Sichuan, 62 1000)

Soliton demonstrates the double * * * yoke coding of chain quantum, which means that DNA has a double helix structure and four bases, and two pairs cannot be cross-coded. The resulting double helix double yoke coding extends to the positive and negative, upper and lower double yoke coding of quantum computers, which provides a basis for the quantum computer model linking space and time. That is, it is similar to the double helix structure of biological DNA, and the quantum orbital topology of spacetime is similar to the organization of real and imaginary, positive and negative double yoke codes, which can be called "biological spacetime". It is from the perspective of "biological time and space" that we summarize and analyze the constraints of the straton model in the past 40 years.

Key words: straton, wave function, double yoke coding, ring quantum, interior point space, quintuple number, quantum computer, biological spacetime.

Firstly, the * * * yoke of the straton model is studied and analyzed.

1953, two young scientists, francis crick and james watson, discovered that life is a * * * yoke and a double * * yoke code: the basic structure of DNA is a double helix structure consisting of two nucleotide chains, that is, due to the strict pairing relationship between the four nucleotides that make up a DNA molecule, according to a single DNA molecule of double helix, The theory of double helix structure untied many knotted knots in genetics and became the most important turning point in life science in the 20th century. Crick and Watson 1962 won the Nobel Prize. Academician Zou Chenglu and Academician Wang Zhizhi said that the elucidation of nuclear structure and DNA structure is undoubtedly one of the greatest scientific discoveries in the 20th century. That is to say, radioactive elements were discovered at the end of 19, and the broken nucleus was bombarded with heavy particles at the beginning of the 20th century, which made it clear that the nucleus was composed of protons and neutrons. These breakthroughs have affected the development of the whole physical science; Biology not only studies all living things in nature, but also studies various forms of life activities, all substances that make up living things and their roles in life activities. The transmission of biological genetic information from generation to generation depends on the self-replication of DNA molecules. Here, the matter of life science and the nonliving matter of physical science are a kind of bondage. Physical science involves space and time, and space and time are yokes. Einstein's special theory of relativity unifies the constraints of space and time. Furthermore, space-time and mass are yokes, and the gravitational wave equation of Einstein's general theory of relativity unifies the yokes of space-time and mass. The principle of holography is that holography in a certain dimension of space-time is completely equivalent to holography with one less qubit arrangement. Academicians Zou Chenglu and Wang Zhizhi believe that for a long time, we have always used the word "science and technology" to cover both science and technology, but on many issues, "science" and "technology" cannot be combined. Science aims to understand nature and explore the unknown; Technology, on the other hand, is based on the knowledge of nature, and uses the acquired knowledge to transform nature and serve mankind. Therefore, "science" and "technology" are also shackles. From the holographic principle, technology is a three-dimensional building, science is a plane building, and science is holographic to technology.

Today, governments and entities all over the world are willing to pay for gene technology, space technology, quantum computer technology, nuclear weapons technology, microwave technology and nanotechnology, but "science" depends on their contests in economic, military, cultural and political wars. Thus, there are * * * yokes of "official subject" and "folk subject", and * * * yokes of mainstream and non-mainstream. The emergence of computer network challenges the opposition between science paying and not paying, official and folk disciplines, mainstream and non-mainstream. This is the blog science war, which reflects the military science war, challenges the opposition between mainstream and non-mainstream, and shows that the science of official disciplines and folk disciplines is not only clear-cut, but also advanced. Taking the double helix structure of biological DNA as an example, our study of soliton demonstration chain not only reveals the solitary wave phenomenon in the double helix structure of DNA, but also reveals the phenomenon of * * * yoke coding field which is common in nature and human society. However, people have not yet linked the deep-seated phenomena such as * * * yoke and double * * * yoke and multi * * * yoke, and code, and * * * yoke code, their advantages and disadvantages, their interaction with solitary waves, their interaction with four kinds, their interaction with Beckman transformation and SG equation with modern mathematics. Here, soliton demonstrates the double * * * yoke coding around the chain quantum, which is similar to the double helix structure of biological DNA. The quantum computation of space-time is a quantum computer that organizes the real part and imaginary part, plus and minus double yoke codes together. This can be called "biological time and space". Our research and analysis of the yoke of the stratus model for forty years is also from the perspective of "biological time and space" That is, natural evolution created two different fields of double yoke coding, which unified time and space with life. The reason why the blog science war is endless is to seek to answer this truth. The government behavior and war behavior of human society are similar to the adjustment activities of multiple yokes.

(1) Introduction of Class Model Leaders and Main Awarders

1, Zhu Hongyuan (19 17 ~ 1992), a native of Yixing, Jiangsu. 1939 graduated from Tongji Institute of Technology in department of mechanical engineering. 1948 received a doctorate in philosophy from Manchester University. 1950 After returning to China, he successively worked as a researcher in the Institute of Modern Physics, the Institute of Atomic Energy and the Institute of High Energy Physics of the Chinese Academy of Sciences, and served as the first deputy director of the Institute of High Energy. In the 1940s, the properties of electromagnetic radiation emitted by high-speed charged particles moving in a magnetic field were comprehensively studied. In 1960s, the theoretical problem of establishing low-energy strong interaction by using dispersion relation and unitary condition was deeply discussed, and the transport process in high-temperature and high-density system containing photons, electrons, neutrons and nuclei was deeply studied, and many important achievements were obtained. In the mid-1960s, some scholars, led by Hu Ning, systematically studied the theory of straton model, which opened up a new field of theoretical research on hadron internal structure. A lot of work has been done to promote the research of physics and the development of BEPC in China. 1980 was elected as an academician of China Academy of Sciences. Published 42 academic papers. The monograph Quantum Field Theory is a standard textbook for several generations of particle physicists in China.

2. Hu Ning (19 16 ~ 1997), a native of Suqian, Jiangsu. Professor Peking University is a researcher at the Institute of Theoretical Physics, Chinese Academy of Sciences. 1938 graduated from the physics department of The National SouthWest Associated University, and then taught in the national The National SouthWest Associated University. 194 1 He was admitted to Tsinghua University to study in the United States and went to California Institute of Technology for further study. 1943, Ph.D. from California Institute of Technology. From 1943 to 1948, he studied quantum field theory and elementary particle theory at Princeton Institute for Advanced Studies in the United States, Dublin Institute for Advanced Studies in Ireland and Bohr Institute in Copenhagen, Denmark. From 1948 to 1950, he worked as a researcher in the Institute of Nuclear Research of Cornell University, the Department of Physics of the University of Wisconsin and the National Academy of Sciences of Canada. 195 1 year. 1955 was elected as an academician of China Academy of Sciences. 1957 to 1959, participated in the work of Dubna Joint Nuclear Research Institute of the Soviet Union, and served as the head of the research team of the theoretical laboratory and the Chinese representative of the academic Committee of the Institute. In his early years, under the guidance of Zhou Peiyuan, he devoted himself to the study of theory of turbulence in fluid mechanics. From 1940s to 1950s, the nuclear force theory of mesons, general relativity, S-matrix theory, quantum electrodynamics and particle theory, high-energy multi-particle generation theory and strong interaction theory were deeply studied, and many important achievements were made. In the mid-1960s, together with Zhu Hongyuan, he led the establishment and development of hadron internal structure theory, systematically studied related issues and achieved a series of original achievements. A large number of new hadrons and new phenomena found in high-energy physics experiments are analyzed, and the hadron structure and strong interaction dynamics mechanism are discussed. The main works are electrodynamics and quantization of field theory.

3. Dai Yuanben was born in 1928, Changde, Hunan. 1947 was admitted to the Physics Department of the Faculty of Science of Central University (later renamed Nanjing University) and graduated in the summer of 1952. 1952 10 used to be a teaching assistant and lecturer in Nanjing Institute of Technology. /kloc-0 studied in the Institute of Mathematics of China Academy of Sciences in April, 1958, 196 1 graduated. In the same year, he served as an assistant researcher in the theoretical physics research room of Institute of Mathematics, 1963 as an associate researcher,/kloc-0 as a researcher in March/978, and/kloc-0 as a researcher in the Institute of Theoretical Physics of Chinese Academy of Sciences since June/978. He has served as director of the research office of the Institute and director of the academic committee. 1980 was elected as an academician of China Academy of Sciences. He is mainly engaged in the theoretical research of particle physics and has published more than 70 academic papers, including monographs such as Normative Interaction Theory. Important research achievements have been made in the fields of Qi Leiji theory, quantum model and high-energy asymptotic behavior of quantum field theory. Solitary particles, layer-lepton composite model and spontaneous symmetry breaking in quantum field theory have been deeply studied, and a series of innovative results have been achieved. Participated in straton model research, and 1982 won the second prize of National Natural Science.

4. He Zuoxiu, 1927, from Shanghai, originally from Wangjiang, Anhui. 195 1 graduated from the physics department of Tsinghua University. I used to work in Publicity Department of the Communist Party of China. He used to be the deputy director of the Institute of Theoretical Physics, Chinese Academy of Sciences. He is currently a researcher at the Institute of Theoretical Physics, a professor at the Department of Philosophy of Peking University and a doctoral supervisor. He has been engaged in the research of particle physics and various application problems for a long time. His important work includes the study of straton model, quantum field theory of composite particles and weak interaction theory. , has published about 250 scientific papers. He has also engaged in theoretical research on atomic bombs and hydrogen bombs, and is one of the explorers of hydrogen bomb theory in China. At the same time, he is also a famous philosopher and expert in dialectics of nature in China, and has published about 300 scientific papers in the fields of philosophy, politics and economy.