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所在平台: Udemy |
课程主页: https://www.udemy.com/course/how-to-understand-quantum-physics-calculate-tention-physics/
课程评论:没有评论
**课程概述:** 本课程深入浅出地介绍了量子物理学和张力物理学的核心概念。我们将探索量子世界,了解其在原子和亚原子粒子尺度上的运作机制,以及普朗克常数在其中扮演的关键角色。同时,课程还将教授如何计算物理系统中的张力,这对于工程和建筑等领域至关重要,关乎结构的安全性。此外,我们还将深入理解物理学中“功”的定义,学习如何通过公式 Work = F × D × Cosine(θ) 来计算功,揭示力、位移和角度之间的关系。 **学习要点:** * **量子物理学基础:** 掌握量子理论描述物质和能量在亚原子尺度上的行为。 * **张力计算:** 学习在各种物理场景下精确计算张力的方法。 * **功的计算:** 理解物理学中“功”的概念,并掌握计算功的公式及应用。
Quantum physics (also known as quantum theory or quantum mechanics) is a branch of physics providing a description of the behaviour and interaction of matter and energy on the scale of subatomic particles, photons and certain materials at very low temperature. The quantum realm is defined as being where the "action" (or sometimes the angular momentum) of the particle is within a few orders of magnitude of a very tiny physical constant called the Plank constant.In physics, tension is the force exerted by a rope, string, cable, or similar object on one or more objects. Anything pulled, hung, supported, or swung from a rope, string, cable, etc. is subject to the force of tension. Like all forces, tension can accelerate objects or cause them to deform. Being able to calculate tension is an important skill not just for physics students but also for engineers and architects, who, to build safe buildings, must know whether the tension on a given rope or cable can withstand the strain caused by the weight of the object before yielding and breaking.learn how to calculate tension in several physical systems.In physics, "work" has a different definition than it does in everyday speech. Specifically, the term "work" is used when a physical force causes an object to move. In general, if a strong force causes an object to move very far, a lot of work is done, and if the force is small or the object doesn't move very far, only a little work is done. Force can be calculated with the formula Work = F × D × Cosine(θ), where F = force (in newtons), D = displacement (in meters), and θ = the angle between the force vector and the direction of motion.