What is good to study in physics majors, and what to study in physics majors

Updated on educate 2024-06-22
13 answers
  1. Anonymous users2024-02-12

    The more popular majors in physics include applied physics, materials physics, optics, acoustics and other major majors.

    Physics cultivates high-level professionals who master the basic theories and methods of physics, have a good mathematical foundation and experimental skills, and can engage in scientific research, teaching, technology and related management in physics or related science and technology fields.

    Knowledge and skills: 1. Master the basic theories and methods of mathematics, and have a high level of mathematical accomplishment;

    2. Master solid and systematic basic theories of physics and a wide range of basic knowledge and basic experimental methods of physics, and have certain basic scientific research ability and application development ability;

    3. Understand the general principles and knowledge of similar majors;

    4. Understand the frontiers of the development of physics and the general trend of scientific development;

    5. Understand the relevant policies and regulations of national science and technology, intellectual property rights, etc.;

    6. Master the basic methods of data inquiry, literature retrieval and the use of modern information technology to obtain relevant information; Have the ability to design experiments, create experimental conditions, summarize, sort out and analyze experimental results, write and participate in academic exchanges.

    Main courses: Main disciplines: Physics.

    Main courses: Advanced Mathematics, Mechanics, Thermal, Optics, Electromagnetism, Atomic Physics, Methods of Mathematical Physics, Theoretical Mechanics, Thermodynamics and Statistical Physics, Electrodynamics, Quantum Mechanics, Solid State Physics, Structures and Physical Properties, Introduction to Computational Physics, etc.

    The main practical teaching links: including production practice, scientific research training, graduation**, etc., generally arranged for 10-20 weeks.

    Related majors: Physics, Acoustics, Theoretical Physics, Applied Physics, Optical Information Science and Technology.

    Career direction: After graduation, students of this major can engage in teaching work in colleges and universities, or engage in theoretical research, experimental research and technology development and application in research institutes; In addition, you can also engage in technology development and application research in the fields of materials science and engineering, electronic information technology, etc.

  2. Anonymous users2024-02-11

    Are you good at physics? If yes, you can study theoretical physics, materials physics, astrophysics, geophysics, atmospheric physics, systems engineering, and more! These are all disciplines that are mainly based on physical theory!

    A little farther away--- aerospace, electronic communications, engineering mechanics, hydraulic engineering, nuclear science and technology, water supply and drainage, etc., and so on!!

  3. Anonymous users2024-02-10

    Mechanical automation, involving physics and mathematics.

  4. Anonymous users2024-02-09

    I'll be a physics teacher in the future.

  5. Anonymous users2024-02-08

    Major in PhysicsHe studied Advanced Mathematics, Mechanics, Thermal, Optics, Electromagnetism, Atomic Physics, Methods of Mathematical Physics, Theoretical Mechanics, Thermodynamics and Statistical Physics, and ElectrodynamicsQuantum mechanics, Solid State Physics, Structures and Physical Properties, Introduction to Computational Physics, etc.

    Physics is the study of the basic form, properties, motion and transformation, and internal structure of matter in the universe, and the content of physics is constantly expanding and deepening. With the development of various branches of physics, people have discovered different forms and differences in the existence of matter.

    Knowledge and skills that should be possessed:1. Master the basic theories and methods of mathematics, and have a high level of mathematical accomplishment.

    2. Master the solid and systematic basic theories of physics and a wide range of basic knowledge and basic experimental methods of physics, and have certain basic scientific research.

    Capabilities and application development capabilities.

    3. Understand the general principles and knowledge of similar majors;

  6. Anonymous users2024-02-07

    Physics: basic discipline knowledge of mathematics, computer, electrical engineering and electronics, and the history of the development of physics. Learn the basic laws of material motion, receive training in scientific research and technology development using physical knowledge and methods, and obtain preliminary training in basic research or applied basic research.

    Training Objectives of Physics Major: This major mainly cultivates professionals engaged in the teaching and research of physics and related frontier disciplines, and also cultivates interdisciplinary talents who can apply physics to various fields of technology and society.

    After study and training, students of this major should have the foundation for further study in physics and related disciplines, or meet the requirements of teaching, scientific research, technology development and management.

    Postgraduate Directions: The main postgraduate directions for physics graduates include theoretical physics, particle physics and nuclear physics, atomic and molecular physics, plasma physics, condensed matter physics, acoustics, optics, radio physics, and physics-related fields such as astrophysics, chemical physics, biophysics, atmospheric physics, marine physics, geophysics, etc.

  7. Anonymous users2024-02-06

    The knowledge system of undergraduate students majoring in physics consists of two parts: the knowledge system and the main practical teaching links.

    Among them, the knowledge system involves general knowledge, subject basic knowledge and professional knowledge. Professional knowledge is further divided into basic professional knowledge and specific professional direction knowledge. The basic knowledge and professional knowledge of the subject specified in the following content are applicable to the training of undergraduate students majoring in physics in all universities, and the knowledge system of specific majors is independently constructed by each university.

    Physics is an undergraduate major in ordinary colleges and universities, which is a physics major, with a basic study period of four years and a degree of science.

    The major of physics cultivates high-level professionals who master the basic theories and methods of physics, have a good mathematical foundation and experimental skills, and can engage in scientific research, teaching, technology and related management in physics or related scientific and technological fields.

    Professional training objectives.

    The goal of cultivating undergraduate talents in physics is to lay a foundation for professionals engaged in the research and teaching of cutting-edge issues in physics and related disciplines, and to cultivate compound application talents who can apply physics to modern high-tech and various fields of society.

    After professional study and training in physics at the undergraduate level, students should have the foundation for further study in physics and related disciplines, or meet the requirements of teaching, scientific research, technology development and management.

    The undergraduate talents trained by the physics major should have a good mathematical foundation and numerical calculation ability, and master the basic theories, basic knowledge and basic skills of physics. Receive training in scientific thinking and physics research methods, and have a good scientific spirit, scientific literacy, scientific style and innovation consciousness; Have a certain ability to independently acquire knowledge, practical ability, research ability or new technology development ability.

  8. Anonymous users2024-02-05

    The undergraduate program in the School of Physics is Applied Physics.

    It mainly cultivates compound talents with a broad and solid foundation in mathematics and physics and proficient scientific experimental skills.

    Majors include: Fundamental Physics, Optics, Condensed Matter and Materials Physics.

    including nanomaterials), plasma physics.

    Main courses: General Physics, Experimental Physics, Theoretical Physics, Frontiers of Physics, Advanced Mathematics.

    Electronic technology, computer applications.

    Wait. Graduates of this program have a large number of opportunities to study physics, lasers, optoelectronics, and materials science inside and outside the university and related research institutes without examination.

    Master's and doctoral students in information, biology and other disciplines.

    At the same time, it has a wide range of employment opportunities and good development prospects in scientific research institutes, colleges and universities, and enterprise units.

    The majors in materials science are as follows:

    1.The direction of material physics focuses on cultivating material science and technology talents who are engaged in the study of the internal laws of the composition, microstructure and macroscopic physical properties of matter, and then use modern physical means and equipment to research and develop various types of high-performance new materials.

    2.The direction of metal materials focuses on cultivating scientific research talents engaged in the theoretical and applied basic research on the preparation process, microstructure, phase transformation and heat treatment of various new structures and functional metal materials, as well as engineering and technical talents engaged in the research and development and performance testing of various new metal materials.

    3.Inorganic non-metallic materials.

    Direction: Focus on cultivating engineering and technical talents who can not only engage in the basic theoretical research on the preparation process of various new structural and functional inorganic non-metallic materials, the relationship between microstructure and various application properties, but also carry out the research and development and performance testing of various new inorganic non-metallic materials and components.

    4.Composite Materials focuses on cultivating scientific research talents engaged in the preparation process of various new metals, inorganic non-metals, and polymer composite materials, the theoretical and applied basic research on the relationship between microstructure and various application properties, as well as engineering and technical talents engaged in the research and development and performance testing of various new structural and functional composite materials and components.

    5.The direction of electronic materials focuses on cultivating scientific research talents engaged in the theoretical and applied basic research on the preparation process, microstructure and performance of various electronic materials and components, as well as engineering and technical talents engaged in the research and development and performance testing of various new electronic materials and components.

  9. Anonymous users2024-02-04

    My buddy is majoring in physics.

    Yes, I heard him personally talk about this profession is not bad.

    His feeling is that it is still difficult to learn physics, and some students have learned it better"Dead", or if you don't like it, it may be more painful. But if you grasp the main idea, keep thinking, ask questions and solve problems, the learning process is still very interesting.

    In terms of employment prospects, I feel that there are still many people around me who continue their studies, and there are also many who change careers (some of my classmates go to psychology, finance, and computer science for graduate school), and some will choose to work in middle school or change careers to find a job as an undergraduate!

    Undergraduate education is general, and physics can be studied as a hobby, and it can be learned well (non-grades, non-grade points.

    We have different understandings of science and the laws of all things, and it would be better if you were more hands-on. If you are good at physics, you will feel very smart, and you will find good angles and solutions to problems, which will make people shine, and you will have more opportunities for promotion in your work.

    Not very sure about the future. According to my friend's current opinion, the treatment of physics is good, and the competitive pressure is not very great, but it is a little busy, and it will be even busier in the future, and it will be busy for a lifetime. So if you want to mess around (me), don't come, some majors can live well, but physics is not included.

    But if you are ambitious and can persist for a long time, if you can always have a royal love for physics, welcome to apply for the physics major!

  10. Anonymous users2024-02-03

    Physics majors are not easy to get employed, because physics majors can only engage in specialized research after they come out, and the scope of employment is too small, unless you change careers.

  11. Anonymous users2024-02-02

    There are many different advantages to a physics major. It allows you to learn about physics and natural sciences, and can play a role in learning about laboratory equipment, data processing, and research. In addition, with the rapid development of modern science and technology, physics students can also succeed in software engineering, artificial intelligence, and other emerging fields.

  12. Anonymous users2024-02-01

    It is a very normal thing for high school students to be partial to the subject, when filling in the volunteer at the end of the college entrance examination, you can choose a college major according to your interests and hobbies, and you can also choose the corresponding major according to the subjects you are good at. Let's take a look at what majors are good in physics.

    Those who are good at physics can study applied physics, physics, acoustics, materials physics, optics, physics and information technology, new materials technology, new energy technology, aerospace technology, energy and power engineering, electronic science, marine technology, communication engineering, software engineering, nuclear engineering and technology, unmanned systems engineering, mechanical engineering, etc.

    Boys who are good at physics can choose the following majors:

    Electronic information (smart grid information engineering, electronic information engineering, electronic science and technology, communication engineering, integrated circuit design and integrated system), computer (digital technology, software engineering, information security, network engineering), clinical medicine, machinery (mechanical manufacturing and automation, mechanical and electronic engineering, process equipment and control engineering, material forming and control engineering, vehicle engineering), automation, materials, physics (physics, applied physics, optoelectronic information science), medicine(Clinical Medicine), Energy and Power Engineering, Surveying and Mapping Li Mo Remote Sensing Science, Transportation (Transportation, Chain Traffic Engineering, Traffic Equipment and Control Engineering), Engineering Mechanics, Statistics, Meteorology, etc., Aircraft and Power Engineering.

    Majors that girls can choose if they are good at physics are:

    Economics, Medicine (Clinical Medicine, Anesthesiology, Clinical Medicine of Traditional Chinese and Western Medicine, Stomatology, Medical Imaging), Finance, Medical Technology, Physics Education, Physics (Applied Physics, Physics, Nuclear Physics, Optoelectronic Information Science and Engineering), Energy and Power (Energy and Power Engineering, New Energy Science and Engineering, Nuclear Engineering and Nuclear Technology).

  13. Anonymous users2024-01-31

    It is a very normal thing for high school students to be partial to the subject, when filling in the volunteer at the end of the college entrance examination, you can choose a college major according to your interests and hobbies, and you can also choose the corresponding major according to the subjects you are good at. Let's take a look at what majors are good for physics.

    Those who are good at physics can study applied physics, physics, acoustics, materials physics, optics, physics and information technology, new materials technology, new energy technology, aerospace technology, energy and power engineering, electronic science, marine technology, communication engineering, software engineering, nuclear engineering and technology, unmanned systems engineering, machine bending imitation engineering, etc.

    Boys who are good at physics can choose the following majors:

    Electronic information (smart grid information engineering, electronic information engineering, electronic science and technology, communication engineering, integrated circuit design and integrated systems), computer (digital technology, software engineering, information security, network engineering), clinical medicine, machinery (mechanical manufacturing and automation, mechanical and electronic engineering, process equipment and control engineering, material forming and control engineering, vehicle engineering), automation, materials, physics (physics, applied physics, optoelectronic information science), Medicine (Clinical Medicine), Energy and Power Engineering, Surveying, Mapping and Remote Sensing Science, Transportation (Transportation, Traffic Engineering, Traffic Equipment and Control Engineering), Engineering Mechanics, Statistics, Meteorology, etc., Aircraft and Power Engineering.

    Majors that girls can choose if they are good at physics are:

    Economics, Medicine (Clinical Medicine, Anesthesiology, Clinical Medicine of Traditional Chinese and Western Medicine, Stomatology, Medical Imaging), Finance, Medical Technology, Physics Education, Physics (Applied Physics, Physics, Nuclear Physics, Optoelectronic Information Science and Engineering), Energy and Power (Energy and Power Engineering, New Energy Science and Engineering, Nuclear Engineering and Nuclear Technology).

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