24-1 Two kinds of processes and entropy 24-2 Entropy change for reversible processes 24-3 Entropy change for irreversible processes 24-4 The second law of thermodynamics 24-5 Entropy and the performance of engines 24-6 Entropy and the performance of refrigerators 24-8 The second law revisited 24-9 A statistical view of entropy
5-1 Motion of Rigid body刚体的平动、转动和定轴转动 5-2 Torque The Law of Rotation rotational Inertia力矩刚体定轴转动定律转动惯量 5-3 Applying the Law of rotation转动定律的应用 5-4 Kinetic Energy and Work in Rotational Motion定轴转动的动能定理 5-5 Angular Momentum of a rigid Body Conservation of Angular Momentum定轴转动的刚体的角动量定理和角动量守恒定律
§8-1 Electric Charges Coulomb’s Law 电荷 库仑定律 §8-2 The Electric Field 电场 电场强度 §8-4 Gauss’ Law 高斯定理 §8-5 Electric Potential 静电场的功 电势 §8-3 Electric Field Line and Flux 电力线 电通量 §8-6 Equipotential Surface and Potential Gradient 等势面 电场强度与电势的关系 §8-7 The Electric Force Exerted on a Moving Particle 带电粒子在外电场中的运动
32-9 Relativistic Momentum and Mass (P749-751) In classical mechanics, the law of conservation of momentum (P=constant) holds in different inertial reference frames. But in relativity, if we continue to define P=mv, and m is a constant, the total momentun is not conserved for different inertial frames
Chapter 17 Heat and the First Law of Thermodynamics 1. Heat and Energy Transfer, Internal Energy and Specific Heat 2. The First Law of Thermodynamics 3. Applying ist Law of Thermodynamics Molar Specific Heats for Gases, and the Equipartition of Energy Adiabatic Expansion of a Gas