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I think it will be difficult for girls to find a job after studying engineering, so it is better to study international trade and finance, so that your English and mathematics will not be wasted, and it will be very good for future development.
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Come to our Central South University materials! It is only a little worse than Tsinghua University, and it is good at mathematics and English, which is also very important in college. It is very advantageous to go to graduate school. Check it out on the Internet.
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It is recommended that you study medicine, I think this is very suitable for you, science can definitely be used, many doctors have the opportunity to study abroad, you can use English, the better the development of the country, the higher the treatment of doctors and lawyers, etc., people who engage in these two professions in developed countries are recognized as upper-class people. Doctors have stable jobs, steadily rising incomes, and high social status, making them a good choice for girls.
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English is very good, it is good to take the diplomatic test or be a foreign language teacher, the teacher is very popular now.
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There are so many things to do with physics and mathematics that I have to study science and engineering. And it is also the most difficult subject in college. If you want to go abroad, you can study physics and mathematics, and physics has mechanics, optics, electromagnetism and other directions, which are divided into theoretical physics and experimental physics.
Mathematics includes Applied Mathematics, Engineering Mathematics....There are optimization, statistics, differential equations, geometric algebra and other directions, and mathematical modeling is generally used to solve practical problems. If you want to work, don't major in mathematics, you can study physics, you can study engineering physics, materials physics, nuclear physics. In biology, it is also easy to go abroad, and the job is good, which is suitable for girls to study.
There are ecology, pharmaceutical, bioengineering, life sciences, etc., in fact, more chemistry is used, and mathematics is relatively less used. Since you are interested in science, science and engineering also have to learn English, then you should not choose an English major. Finally, as far as science and engineering are concerned, there are many things that you have to know whether you are researching or working in related fields.
It's up to you whether you're up to the task. Generally speaking, there are very few girls who study mathematics and physics, and there are more girls in biology and English.
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I think you are suitable for applying for the School of Bioengineering, the college mainly includes majors such as food science and engineering, bioengineering and pharmaceutical engineering, etc., the majors are mainly physics, mathematics and other science subjects, English is a necessary compulsory course in college, if English is very good, in the university, especially science majors are very popular. If you have good logical thinking, I suggest that you have a related major in the student college, bioengineering is a newly developed major in recent years, the development direction strongly supported by the state, and there are good employment prospects, but most of the biology majors in the country are above the score line, if you want to apply for a large number of majors, the score line will be increased accordingly, look at your score in the high school mock exam to judge whether you are suitable for the development of this direction, don't be too ambitious, the college entrance examination is very serious, and the college entrance examination is about to take the college entrance examination. I wish you the best of luck in the university of your dreams!!
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Like me, automate.
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1. Communication engineering: It is an important branch of electronic engineering, a sub-major of electronic information, and one of the basic disciplines. The Department of Science and Transportation focuses on the principles and applications of information transmission and signal processing in the communication process.
2. Mechanical design and manufacturing and automation: It is a comprehensive technical discipline that studies the enterprise management of various industrial machinery and equipment and mechanical and electrical products from design, manufacturing, operation control to production process. 3. Applied Mathematics:
It is a general term for all mathematical disciplines or branches with strong application, and generally refers to the part of all mathematical theories and methods with strong application. 4. Applied Physics: Mainly cultivate students to master the basic theories and methods of physics, have a good mathematical foundation and basic experimental skills, master electronic technology, and computer technology.
5. Automation: It is necessary to study the principles and methods of automatic control, automation unit technology and integration technology and its application in various control systems.
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There are many universities that have this major, such as Nanjing University, Peking University, Fudan University, University of Science and Technology of China, and so on.
Biophysics is a sub-discipline of biology. It is a sub-discipline of biology that applies the concepts and methods of physics to study the relationship between the hierarchical structure and function of organisms, the physical and physicochemical processes of life activities, and the physical characteristics of substances in the process of life activities. Biophysics aims to elucidate the laws of movement of matter, energy and information in a certain space and time.
Physics and biology are related in two ways: on the one hand, biology provides physics with biological systems with physical properties, and on the other hand, physics provides biology with tools to solve problems.
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The majors available in high school physics subjects include marine science, electronic science, geophysics, etc.; Chemistry subjects include nuclear engineering, materials, chemical and pharmaceutical, etc.; Biology subjects can be selected from bioengineering, environmental science, plant production and other majors.
Physics: Conceptual and Applied Mechanics, Marine Science, Electronic Science, Geophysics, Thermal and Power Engineering, Applied Physics, Materials Science, Engineering Mechanics, Machinery, Information and Electronic Science, Measurement and Control Technology and Instruments, Nuclear Engineering and Nuclear Technology, Aerospace and Aeronautics and Astronautics.
Chemistry: Nuclear Engineering, Materials (Materials Science and Engineering, etc.), Chemical Engineering and Pharmaceuticals, Biological Sciences, Applied Chemistry Socks, Geology, Forestry Engineering, Food Science and Engineering, Medical Technology, Public Health and Preventive Medicine.
Biology: Bioengineering, Science (Biological Sciences, Biotechnology, etc.), Environmental Science (Ecology, etc.), Medicine (Basic Medicine, Preventive Medicine, etc.), Forest Resources, Grass and Leaf Science, Plant Production (Agronomy, Horticulture, etc.), Environmental Ecology, Animal Production, Animal Medicine, Aquatic Products.
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In this combination of subject reform, physics, as a difficult subject to learn, has relatively high requirements for candidates' logical thinking ability: biology is relatively difficult to learn in science subjects, and for students with medium learning, it is a subject with high "cost performance"; Chemistry is more about examining students' ability to memorize basic knowledge.
On the whole, although the coverage rate of this pure science combination is more than 96%, it seems to be a good combination, but this combination is difficult to learn and requires students to have strong scientific thinking, and the number of people who choose this combination is not only large.
The competition is very fierce, and if you choose this combination with medium grades, you will be at a disadvantage in the point system, so it is not recommended to choose "physical and chemical biology" for students with medium grades.
For students with average grades, it is recommended to adhere to the following three principles when choosing subjects:
1. Choose a subject that you are good at, so that you can save a lot of time for other subjects in the review stage.
Second, choose the school's advantage subjects, each school because of the different levels of teachers, the advantage of subjects is also different, in the review stage, the role of the old grandson is often also very critical.
3. When choosing subjects, you should also plan for the major you want to study in the future, so that you will not be at a loss when filling in the volunteers.
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Generally, science and engineering courses will open physics courses, which belong to general physics, and it should be noted that physics majors generally do not learn this course.
Physics students will begin with a more rigorous scientific system in the various branches of physics: mechanics, electromagnetism, optics, thermodynamics and statistical physics, optics, theoretical physics, etc.
Similar to all science and engineering majors, they study advanced mathematics, but mathematics majors don't study advanced mathematics, they study, well, number theory, geometry, and so on.
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Physics majors will go deeper into specific aspects, such as mechanics, electricity, etc., and all aspects are one course.
The biology major is a rough idea.
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Applied Chemistry, Materials Physics, etc., you can refer to the volunteer book.
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Physics: Physics (Teacher Training), Basic Physics, Communication Engineering, Electronic Technology, Mechanical Automation, Optics and Precision Instruments, Engineering Mechanics, Nuclear Physics, Engineering Thermodynamics.
Chemistry: Chemistry (Teacher Training), Applied Chemistry.
Biology: Biological Sciences (Teacher), Biotechnology, Bioengineering, etc. You can choose according to the university you choose.
Take classes seriously, rest well, and make progress every day.
I'm upside down to your question :
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