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If it is easier to find a job, it is better to choose material processing and metal materials, because these two majors are oriented to practical applications, such as the steel industry, metal processing, etc. If you want to study the selection of electronic information materials, this major seems to be very popular now, and they are used in high-tech, high value-added products, the last question is not very clear, I hope you find a direction that suits you.
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Going abroad or choosing electronic information materials... Inorganic or don't want it.,It's a cement guy.。。。 I'm of the scut material.。。。
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I am a material processing, which is divided into two directions: welding and molding, I learn welding, and I think it's very good. Like that big brother, I don't think inorganic is suitable for you, and I don't know much about the rest. Welding I am now learning brazing, that is, the electronic packaging technology in the packaging of brazing metal, I am mainly engaged in the work of brazing metal, this depends on what you like, it doesn't matter I think our engineering will not always be boring to engage in theory, it is very interesting to learn.
Hope it inspires you a bit, haha!
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You're from Southeastern University, right? If you don't want to do all the research, you can choose material processing or metal materials.
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Electronic information materials! Strongly urged you to go. Or metal, don't be inorganic, it's cement.
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Graduates of this major mostly enter various steel enterprises, manufacturing enterprises, automobile factories, as well as ceramics, cement, home appliances and other enterprises. There is a wide range of employment. Generally, the metal direction of materials science and engineering majors mostly enters steel enterprises and related research institutes, and the polymer and non-metal direction mostly enters ceramics, glass, coatings, home appliances and other industries, and most of them belong to large state-owned enterprises, military industry, private enterprises and scientific research institutions.
In materials science and engineering, it is easier to find a job in materials processing and other research directions.
Due to the particularity of the materials science and engineering major, the proportion of graduate students is quite high. Most of the R&D and technical positions provided by the above-mentioned enterprises and institutions also require a master's degree or above.
Materials Science and Engineering (MSE). In the "Catalogue of Disciplines and Majors for Conferring Doctoral and Master's Degrees and Cultivating Graduate Students" formulated and promulgated by the Discipline Evaluation Group of the Academic Degree Committee, materials science and engineering is one of the first-level disciplines in the engineering discipline category, and there are three second-level disciplines, namely:
Materials Physics and Chemistry, Materials Science, Materials Processing Engineering. Materials Science and Engineering is a discipline that studies the composition, structure, processing technology, properties and applications of materials. In modern science and technology, materials science is one of the three pillars of national economic development.
The main professional directions are metal materials, inorganic non-metallic materials, polymer materials, wear-resistant materials, surface strengthening, material processing engineering, etc.
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Tsinghua University, Shanghai Jiao Tong University, University of Science and Technology Beijing, Zhejiang University, Harbin Institute of Technology, Northwestern Polytechnical University, South China University of TechnologyHuazhong University of Science and Technology, Xi'an Jiaotong UniversityCentral South University
Materials Science and Engineering.
The main directions for postgraduate examination are: materials physics and chemistry, and materials science.
Materials Processing Engineering, Polymer Materials and Engineering.
Resource Cycle Science and Engineering, etc.
Introduction to Materials Science and Engineering.
Physics and chemistry of materials is a discipline that studies the structure of materials and their relationship with physical and chemical properties at multiple levels such as electronics, atoms, and molecules, based on physics, chemistry and other natural sciences. The focus of Materials Physics and Chemistry is based on the basic principles of physics and chemistry, combined with the cutting-edge research and development of materials science.
Using advanced theoretical research, analysis and design methods and technologies, as well as high-level experimental platforms, equipment and processes, we are committed to exploring the constitutive relationship between composition, scale, structure and performance of new materials and their inherent thermodynamic evolution laws, and exploring the new energy and new generation information technology.
Biology, high-end equipment crack filial piety including manufacturing industry, new energy vehicle industry and other development needs of new materials, new technologies, new processes, new products and their engineering application of effective ways.
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No. Materials SpecialtyGood or not, absolutelyPonies cross the riverMatter.
The development of the materials industry is relatively slow, and employment is generally not difficult, but it is not easy to find a good job, and it is even more difficult to make some achievements.
Materials major.
The employment and prospects are much better than those of the sciences and liberal arts, and the treatment is above average. Engineering is the most practical, and national policies are more categorical.
Inorganic and polymer employment is a little more difficult than metal, but there are good companies and employment in these two directions, and there are basically people who want the two majors of welding and mold. Polymer is the most difficult, and all the four major chemistry must be learned, but the advantage of polymer major can go to chemical employment, which depends on the direction of the research group and the learning requirements.
Materials Science and Engineering.
Study Notes:
The field of materials can be roughly divided into two categories: structural materials and functional materials according to their functions. The former are such as airplanes, engine blades, and reactors.
pressure vessels, etc. The latter are like light-emitting diodes.
Integrated electrofusion chip, magnetic recording, etc. And I think that materials science and engineering are a relatively immortal discipline.
Materials research, which used to be scattered under different disciplines such as physics, chemistry, metallurgy, and mechanical engineering, is now grouped together, so the content of the materials science and engineering curriculum varies from school to school. Fortunately, there is not much difference between undergraduates, and the freshmen and sophomores are mainly based on basic courses, which generally include mathematics, physics, chemistry and some basic engineering courses such as drawing and engineering mechanics.
Computer Basics, etc.
The above content refers to Encyclopedia - Materials Science and Engineering.
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Materials Science and Engineering is a field that deals with materials science.
Majors with a wide caliber in engineering, chemistry and other disciplines. Based on materials science, chemistry and physics, the major is mainly concerned with material composition, structure, processing technology, performance and application.
What to do: 1. Molding and processing of materials and polymer composite materials, polymer synthesis, chemical fibers, new building decoration materials, modern spraying and packaging materials, ceramics, cement, household appliances, electronic and electrical, automobile factories.
Iron and steel enterprises, petrochemical enterprises, manufacturing enterprises, aerospace and other enterprises, engaged in design, new product development, production management.
marketing, etc.
2. Engage in scientific research in materials-related scientific research units, such as the Institute of Chemistry of the Naduan Academy of Science of China, the Dongsan Institute of Nonferrous Metals, the Institute of Aeronautical Materials, and the General Research Institute of FRP. 3. In the first department, engaged in administrative management, quality supervision and other work. Due to the Materials Science & Engineering major.
The particularity of the proportion of graduate students is quite high, and the above-mentioned enterprises and institutions.
Most of the R&D and technical positions provided also require a master's degree or above.
Main disciplines: Physical Chemistry, Physical Chemistry of Materials, Quantum and Statistical Mechanics, Solid State Physics, Introduction to Materials Science, Fundamentals of Materials Science, Materials Physics, Materials Chemistry.
Mechanics of Materials, Modern Materials Testing Methods, Material Processes and Equipment, Heat Treatment of Steel, etc.
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The understanding of the materials science and engineering major is as follows:
1. After graduation, students majoring in materials science and engineering can be engaged in the molding and processing of materials and polymer composite materials, polymer synthesis, chemical fibers, new building decoration materials, modern coatings and packaging materials, ceramics, cement, household equipment, electronic products, automobile factories, iron and steel industry, petrochemicals, and manufacturer companies.
2. Aerospace and other enterprises are engaged in design, new product development, production management, and marketing department, and can also go to colleges and universities, scientific research units engaged in scientific research and teaching, and can also be engaged in administrative management and quality supervision in the first department.
3. In addition to the employment of materials science and engineering undergraduates, another major destination is to study for graduate school or further study. It can be said that the high rate of postgraduate entrance examination is a major feature of materials majors. The knowledge learned by students majoring in materials science and engineering at the undergraduate level is also relatively comprehensive and basic, which lays a good foundation for future study.
The main courses studied in the Materials and Engineering major are:
Basic knowledge of material structure, crystal defects, phase structure and phase diagram, amorphous structure and properties, solid surface and interface, solidification and vapor deposition of materials, diffusion bond and solid phase transition, sintering, deformation and fracture, fluid flow basics, heat transfer, mass transfer process and control, material and product design, material selection, manufacturing, processing and molding, and failure analysis.
Engineering Drawing, Fundamentals of Mechanical Design and Manufacturing, Electrical Engineering and Electronics, First Law of Thermodynamics, Second Law of Thermodynamics, Thermodynamics of Multicomponent Systems, Chemical Equilibrium, Phase Equilibrium, Chemical Reaction Kinetics, Physical Properties of Materials, Heat Treatment of Materials, Preparation and Processing of Materials, Methods of Material Analysis, Engineering Materials Science, Mechanical Properties of Materials.
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Materials science and engineering mainly studies the basic knowledge and basic skills of material preparation, processing and molding in the fields of metallic materials, inorganic non-metallic materials, polymer materials, etc., and explores the relationship between the structure and properties of materials, so as to better utilize and improve the agility of materials. For example, the strength of satellite shell materials is improved, the clarity of mobile phone LCD panel materials is optimized, and the durability of artificial joints in the medical industry is improved.
Materials Science and Engineering mainly focuses on "Fundamentals of Materials Science", "Physical Chemistry", "Quantum and Statistical Mechanics", "Solid State Physics", "Materials Physics", "Materials Chemistry", "Mechanics of Materials", "Modern Materials Testing Methods", "Materials Technology and Equipment", "Materials Thermodynamics", "Functional Materials and Digital Basis Applications", etc. Some colleges and universities train in the following professional directions: inorganic non-metallic materials.
Materials science and engineering majors can be engaged in product research and development, process design, production management, materials engineering, quality testing and other work in industrial and aviation enterprises, and can also be engaged in material research and development, performance testing, microscopic analysis and other work in scientific research units.
The universities include Tsinghua University, Zhejiang University, Shanghai Jiaotong University, Huazhong University of Science and Technology, Xi'an Jiaotong University, Harbin Institute of Technology, Southeast University, Beijing Institute of Technology, Tianjin University, Shandong University, Xiamen University, Jilin University, Central South University, Northwestern Polytechnical University, Hunan University, University of Science and Technology Beijing, Nanjing University of Aeronautics and Astronautics, Nanjing University of Science and Technology, Northeastern University, etc.
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