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In fact, it is not too helpful for college, if you are majoring in physics, you will learn analytical mechanics and quantum mechanics in the later stage.
etc., all based on Lagrangian mechanics and Hamiltonian mechanics methods. High school physics is mainly a vector analysis method, which is an early Newtonian mechanical analysis method. The analytical methods of the two are very different, especially in the later stage, when electromagnetism is studied.
Optics, quantum field theory, etc., are all used in other mathematical methods.
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It's not big, and I learned more than three years in high school in one month. The physics contest is a little bit of a help.
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To be honest, I think the biggest impact is actually the learning method! If you are good at physics in high school and have good methods, then in college, even if the two are not very related, you can still learn well.
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Is there a shadow of high school physics knowledge? Yes, but very few. Compared with high school physics, college physics and professional courses will greatly extend the breadth and depth of knowledge.
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After reading Advanced Mathematics, you will then read Engineering Mathematics. In the complex variable functions of engineering mathematics, complex numbers are introduced into higher mathematics, and function transformations are also learned. We use the Laplace transform to turn a complex differential equation into a simple algebraic equation, and then reverse the transformation after the solution is completed, so as to obtain the solution of the differential equation.
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How can you understand college physics without high school physics? In addition, college physics is a deep level of high school physics. Quite a big help.
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For high school students who have just finished the college entrance examination, it is not recommended to go to hearsay, or take advantage of the vacation to have fun and relax, wait until the university starts to relax, and go all out to learn the required college physics courses.
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In any case, high school physics is the foundation of college physics and college majors, and it is the last floor tile before entering the door of college physics.
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I don't think it's a lot, it's more important to follow the classes in college, and I studied civil engineering in college. Don't overthink it, don't skip class.
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To be sure, high school physics helps with college physics, but not particularly much. High school physics is more about understanding physical phenomena, and physical phenomena account for the majority of college physics sections. Secondary school physics is the foundation, and university physics is advanced.
The object of learning between the two has basically not changed, but the depth has changed, the method has changed, and it can be said that the content of learning is still different.
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It depends on what the major is, if it is the physics of engineering, there is still a certain continuity, if it is a pure physics major, it is basically not very helpful, and the physics of the physics major is too difficult.
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High school physics is only the foundation of college physics, and college physics requires a higher and deeper level of mathematics.
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High school physics is not very helpful in terms of pure knowledge, but it helps you build a physics system and way of thinking.
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The cognition of physics is different under different mathematical frameworks, and physics expressed by linear and nonlinear equations and physics expressed by calculus are two systems of thinking.
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It's useless, and when you learn about electromagnetic fields and electromagnetic waves, you will know how difficult physics is.
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The power supply in high school has internal resistance, and the university is the ideal current source, voltage source, all of which are calculus.
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If you can't learn physics in high school, you can't learn physics in college!
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I feel that junior high school, high school and college physics are all the same, not difficult, learning physics is a kind of thinking, thinking about problem-solving methods or abilities, of course, if you are a physics master, then you may feel that the three stages are completely different.
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I can't study physics well in high school, let alone college physics.
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Compared with college physics, high school physics is for the mentally handicapped.
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If you want to see what courses you want, it has little to do with middle school, k is fake, just like classical mechanics (Newtonian mechanics) in high school, and quantum mechanics in college physics major.
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It feels pretty big. Unlike junior high school, it is necessary to start training rigorous and meticulous thinking.
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I don't think it helps!
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I just want to ask if girls can choose physics majors.
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High Physics and College Physics are two stages of physics, and there are certain differences in content and depth. Here are some of the relationships between them:
1.Basic knowledge and concepts: High school physics teaches the fundamentals and concepts of physics, such as Newtonian mechanics, electricity, optics, etc.
University Physics builds on these basic knowledge to cover a wider range of physics fields, such as quantum mechanics, thermodynamics, electromagnetism, etc.
2.Mathematics requirements: College physics is more reliant on mathematics, especially higher-order mathematics such as calculus and linear algebra. In contrast, the math requirements in high school physics are relatively low, focusing mainly on the basic scale difference Yamamoto math concepts such as algebra and geometry.
3.Experiments and Practice: University Physics focuses on the development of experimental design and practical skills, and students will conduct more experiments and data analysis. There are also experiments in high school physics, but they are usually simpler and aim to understand basic concepts and principles.
4.Theory and Depth: College Physics pays more attention to theoretical derivation and in-depth thinking, and students need to understand and apply the basic principles of physics more deeply. High school physics emphasizes the basic mastery of the basic concepts and laws of physics.
Despite these differences, high school physics, as the foundation and introduction to college physics, laid a certain foundation for the study of the latter. High school physics provides students with the basic concepts and ways of thinking of physics, and cultivates a certain physical intuition. Therefore, high school physics provides an important bridge for students to quickly adapt and deepen their learning in college physics learning.
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About high school physics is not good can you study physics major in college is as follows:
1.Of course. Although high school physics is not the best choice for Yunzhao, they can all graduate successfully.
Studying at university requires acquiring knowledge on your own, while university requires more independent thinking. Choosing a physics major can make it easier for you to understand and grasp the knowledge. If you study hard, you will always figure out something that you didn't know before.
2.The study of university is different from that of junior high and high school, and college requires us to acquire knowledge by ourselves. I still remember when we first came to college, many teachers told us that the most important thing in college was to learn to learn.
3.Choosing physics, it may be like, it may be forced, but no matter what the reason, study it seriously, there will always be gains from studying it seriously, think seriously, and always figure out something that you won't know before.
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1. Title. College Physics A: The title is clear and straight to the point.
University Physics B Edition: The title form is more diverse and life-like.
2. The focus of each period.
College Physics A version of vertical socks: the focus is on algebra in the first semester of the closed first semester, and the focus is on geometry in the first semester of the second semester.
College Physics B Edition: The first semester of junior high school focuses on geometry, and the first semester of junior high school focuses on algebra.
3. Chapters. College Physics A Edition: Each chapter is from shallow to deep, gradually improving, and has a strong sense of hierarchy.
College Physics B Edition: The content of each chapter is arranged to guide students to start from problems in life and gradually transition to teaching content.
4. Example questions and after-class exercises.
College Physics A Edition: Example questions and after-class exercises are more difficult.
University Physics and Physics B Edition: Example questions and after-class exercises are relatively simple.
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The problems of university physics research are more general, and the breadth and depth of research are not comparable to high school physics.
1. The launch speed is the speed at which the satellite and the launch vehicle are separated. 2. If the launch speed is lower than the first cosmic velocity, the launched satellite will return to the ground due to the gravitational pull of the earth, so the first cosmic velocity is the minimum launch velocity. So, you're right to understand it that way >>>More
1. Learn mathematics well, mathematics is the language of physics. >>>More
In fact, there is no shortcut to this, and it is necessary to have a sea war. >>>More
Start with the straightening exercise at the beginning of the first year of high school. You may think this is an exaggeration! You may also feel that you have learned well in front of you. >>>More
It varies depending on the place, and you will have to take the test at that time, and you will definitely have to buy the required textbooks, which is the case with mathematics. Geography and history of physical chemistry and liberal arts should also be studied, but the depth is determined by the liberal arts and sciences.