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Whether to take the postgraduate entrance examination or not can be decided based on your actual situation.
Compared with undergraduates, after all, graduate students study more than two or three years in their majors, and their professional knowledge should be more solid and in-depth, which is an absolute advantage, especially for science and engineering majors, in-depth theoretical research and learning are from graduate education.
In essence, the status of graduate students in the company is still higher than that of undergraduates, regardless of the actual ability, whether it is a master or not, the company's leaders and colleagues will also take a look at it, in the subconscious, feel that the ability of graduate students is superior, so only with a good working attitude and outstanding performance, it is easy to attract the attention and promotion of leaders.
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There are also many majors in material molding, so I don't know what major you are studying. As far as I feel, the welding and mold outlets in material molding are better. If you are admitted to graduate school, you should have the best relationship with the development of the country, and do national defense-related topics such as ceramics and non-metallic materials.
Now it should be decided whether to come out and look for a job after finishing school, or to do scientific research. Work is welding, molding, etc., and scientific research is done on national defense-related topics.
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Learn more, the starting point will be higher, and the choice will be wider, so it is recommended that you consider taking the postgraduate entrance examination.
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If you are just an ordinary worker in the future, the income will not be high, and if you have your own project, it is good to make molds or something.
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The income of doing molds or something is high.
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The major of material forming and control engineering can be admitted to graduate school, and it depends on you whether to go to graduate school or not.
1. Postgraduate Direction:
Graduate students in material forming and control engineering, mechanical engineering, mechanical manufacturing and automation, etc.
2. Employment direction:
After graduation, students will enter the fields of iron and steel enterprises, machinery manufacturing, automobile and shipbuilding manufacturing, metal and rubber and plastic materials processing industry, etc., and engage in production process control, technology development, scientific research, operation management, marketing and other aspects related to welding material forming, mold design and manufacturing. It has a similar employment direction and growth route as mechanical majors.
Training Objectives of Material Forming and Control Engineering:
The major of material forming and control engineering cultivates high-quality professionals with all-round development of morality, intelligence, physique and aesthetics, a certain cultural literacy and a good sense of social responsibility, mastering the necessary basic theories and professional knowledge of natural sciences, having good learning ability, practical ability, professional ability and innovation consciousness, and being able to engage in design and manufacturing, technology development, engineering application, production management, technical services and other work in professional fields and related interdisciplinary fields after graduation.
The above content refers to: Encyclopedia - Material Forming and Control Engineering.
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The employment of graduate students majoring in materials is very good.
Employment direction:
After graduating from the Gemstone and Material Technology Major, they can be engaged in the trade, identification, processing and production, quality supervision and inspection, production management, and scientific and technological development of jewelry and material technology in the departments of commerce and trade, economy and trade, commodity inspection, tourism, and banking.
After graduating from metal materials engineering, they can engage in scientific research, technology development, process and equipment design, production and operation management in the fields of metallurgy, material structure research and analysis, metal materials and composite materials preparation, metal material forming, etc.
After graduating from metallurgical engineering, they can be engaged in metallurgical technology and theory, smelting process and control, smelting technology and equipment design, production technology improvement, performance improvement and testing of smelting finished products, and metallurgical enterprise management.
After graduating from welding technology and engineering, they can be engaged in automatic welding, semi-automatic welding technology operation and construction, process specification formulation, product quality inspection, on-site production management and technical management for machinery manufacturing, shipbuilding and other industries, large and medium-sized enterprises.
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The best direction for the material molding postgraduate examination is as follows:1) Dielectric superlattice and its microstructured materials and devices.
2) Dielectric, ferroelectric thin films and integrated devices.
3) Artificial bandgap material.
4) Peroxide heterostructures and devices.
5) Nanomaterials and Nanoelectronics.
6) New functional inorganic non-metallic materials.
7) Design of microstructured materials.
8) High Performance Computing in Materials Design.
9) Nonlinear photonics.
10) Controlled synthesis and assembly of low-dimensional nanomaterials.
11) Bionanomaterials and biomedical materials.
12) Nanophotonics Materials.
Employment prospectsThe employment prospects of materials physics and chemistry are relatively good, firstly, because this major not only studies basic theoretical research, but also pays more attention to the research and development of advanced materials, and secondly, this major covers a wide range of fields and has good applications in various industries, so this major has a wide range of employment.
Graduates of this major can be employed in industries such as polysilicon (chemical and energy companies), semiconductors (electronics companies), physics, materials, and non-destructive testing (flaw detection, pressure vessel manufacturers). In addition, in large steel companies, aircraft manufacturing, automobile manufacturing, IT-related industries, etc., precision material technology is required, and the employment prospects are promising.
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Materials Science and Engineering is a broad field that involves many different professional directions and fields of study. Here are some of the promising career paths in Materials Science and Engineering:
1.Advanced material preparation and processing technology: This direction involves the research and development and preparation of new materials, as well as related processing technologies. Graduate students in this field can find employment opportunities in industries such as materials manufacturing, aerospace, automotive, electronics, etc.
2.Nanomaterials and Nanotechnology: This direction involves the preparation, properties and applications of nanomaterials, as well as related nanotechnologies. Graduate students in this field can find employment opportunities in industries such as materials manufacturing, electronics, and medical after graduation.
3.Material Surface and Interface Engineering: This direction involves the properties and applications of material surfaces and interfaces, as well as related engineering techniques. Graduate students in this direction can find employment opportunities in industries such as materials manufacturing, electronics, and chemicals.
4.Materials Calculation and Simulation: This direction involves the calculation and simulation of materials, as well as related software and algorithms. After graduation, graduate students in this direction can find employment opportunities in industries such as materials manufacturing, electronics, and aerospace.
In short, choosing a good career direction needs to consider your own interests and abilities, as well as market demand and development trends. It is recommended that you learn more about the employment prospects and development trends of the relevant industry when choosing a postgraduate pathway, so that you can make a more informed decision.
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First of all, we all know that what we learn at the undergraduate level is actually just scratching the surface, and the level of scientific research is not much different from that of graduate students, since we have not mastered any core knowledge and technology, when applying as an undergraduate, it will naturally not be a R & D and design position, because today's competitive pressure is increasing, and the recruitment requirements are also increasing year by year. Another practical problem is that when looking for a job, material majors are far less popular than mechanical, electrical and other majors, and many units do not need material majors at all, which you can often experience when you go to the job fair. In addition, it must be said that the success rate of materials majors is much higher than that of mechanical and other majors, because its content is relatively simple and the competitive pressure is smaller, so I suggest that you can try to go to graduate school first, and strive to go to a higher platform, which will definitely be more competitive for graduate students, and the position is naturally different from that of undergraduates.
I am a graduate of materials science, and it was very difficult to find a professional job in materials at the beginning, because of the treatment and job problems, and now I am doing work that has nothing to do with materials, and I have not taken the postgraduate examination, and I often regret it, so I recommend that you can try it, I wish you a success!
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Whether to take the postgraduate entrance examination or not can be decided based on your actual situation.
Compared with undergraduates, after all, graduate students study more than two or three years in their majors, and their professional knowledge should be more solid and in-depth, which is an absolute advantage, especially for science and engineering majors, in-depth theoretical research and learning are from graduate education.
In essence, the status of graduate students in the company is still higher than that of undergraduates, regardless of the actual ability, whether it is a master or not, the company's leaders and colleagues will also take a look at it, in the subconscious, feel that the ability of graduate students is superior, so only with a good working attitude and outstanding performance, it is easy to attract the attention and promotion of leaders.
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It is necessary to take the postgraduate examination for the material forming major, and if you are interested in doing research work in Dongshu, then you should take the postgraduate examination. Try to apply to a better school than your current school, choose a subject that interests you, and find a respectable tutor.
Advantages of material forming postgraduate examinationCompared with undergraduates, after all, graduate students study more than two or three years in their majors, and their professional knowledge should be more solid and in-depth, which is an absolute advantage, especially for science and engineering majors, in-depth theoretical research and learning are all from graduate education.
In essence, the status of graduate students in the company is still higher than that of undergraduates, regardless of the actual ability, whether it is a master or not, the company's leaders and colleagues will also take a look at it, in the subconscious, feel that the ability of graduate students is superior to others, so only with a good work attitude and outstanding performance, it is easy to attract the attention and promotion of leaders.
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<><1.Cultivation goals.
This major cultivates students who can adapt to the needs of industries such as material forming, material connection, mold design and 3D printing machinery and automation control, and are engaged in the field of material connection forming (welding) or mold design and manufacturing. High-quality engineering and technical talents with innovative ability and international vision, and qualified builders of the socialist cause with all-round development of morality, intelligence, physique, aesthetics and labor.
2.Postgraduate entrance examination.
Materials Physics and Chemistry is an interdisciplinary discipline composed of physics, chemical simplicity and materials, which integrates the research methods and characteristics of various disciplines. Based on physics, chemistry and other natural sciences, this discipline studies the physical and chemical behaviors and laws of materials from the multi-level levels of molecules, atoms, and electronics, studies the relationship between the composition, structure and properties of different materials, designs, controls and prepares new materials and related devices with specific properties, and is committed to the research and development of advanced materials.
3.Research Interests.
1) Dielectric superlattice and its microstructured materials and devices, (2) Dielectric and ferroelectric thin films and integrated devices, (3) human belt materials, (4) peroxide heterostructures and devices, (5) nanomaterials and nanoelectronics, (6) new energy-mechanical metal materials, (7) design of microstructured materials, (8) high-performance computing in material design
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