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University Physics

面向21世纪课程教材

作者:
王伟
定价:
54.00元
ISBN:
978-7-04-053325-5
版面字数:
650.000千字
开本:
16开
全书页数:
暂无
装帧形式:
平装
重点项目:
面向21世纪课程教材
出版时间:
2019-11-29
读者对象:
高等教育
一级分类:
物理学与天文学类
二级分类:
理工类专业物理学基础课程
三级分类:
大学物理学

本书是适应我国不断发展的高等教育国际化的需要而编写的。内容包括力学(含流体力学)、电磁学、机械振动和机械波、波动光学、热学以及近代物理(狭义相对论和量子力学初步)。本书注重物理基本概念的严谨阐述和物理知识的具体应用,在注重经典物理学知识的基础上,适当强化近代物理知识的介绍。注重培养学生的创新思维,注重使用最新的物理概念。相较于国际流行的教材,本书更加简洁明了,重点突出,更加贴近中国大学物理的教学体系;相较于国内经典的教材,本书以英文撰写,融入了国际流行教材的一些特色,更加适用于来华留学生的教学。

本书适合教学总学时在64学时的大学物理课程,周学时为4,一个学期完成教学。本书主要适用于海外来华研修工程专业和临床医学专业的留学生,也可以作为国内高等院校双语教学的参考书。

  • Front Matter
  • 1 Motion of Particles and Force
    • 1-1 Position Vector and Equation ofMotion
    • 1-2 Velocity and Acceleration
    • 1-3 Circular Motion
    • 1-4 Newtons Laws of Motion
  • 2 Conservation of Energy andMomentum
    • 2-1 Work and WorkKinetic EnergyTheorem
    • 2-2 Conservative and NonconservativeForce Potential Energy
    • 2-3 Principle of WorkEnergy ConservationLaw of Mechanical Energy
    • 2-4 Linear Momentum
    • 2-5 Conservation of LinearMomentum
  • 3 FixedAxis Rotation of a RigidObject
    • 3-1 Basic Motion of a Rigid Object
    • 3-2 Torque Newtons Second Lawfor Rotation Moment of Inertia
    • 3-3 Work, Power, and Energy inRotational Motion
    • 3-4 Angular Momentum Conservation ofAngular Momentum
    • 3-5 Limits of Validity of ClassicalMechanics
  • 4 Fluids in Motion
    • 4-1 The Equation of Continuity
    • 4-2 Bernoullis Equation
    • 4-3 Applications of BernoullisEquation
    • 4-4 Flow of the Viscous Fluid
  • 5 Electrostatic Fields
    • 5-1 Coulombs Law
    • 5-2 Electric Field
    • 5-3 Gauss’ Law
    • 5-4 Electric Potential
    • 5-5 Conductors in Electric Fields
    • 5-6 Capacitance and Dielectrics
    • 5-7 Energy Stored in the ElectrostaticField Energy Density
  • 6 Magnetic Fields
    • 6-1 Electric Current and ElectromotiveForce
    • 6-2 Magnetic Field
    • 6-3 The BiotSavart Law
    • 6-4 Gauss’ Law in Magnetism
    • 6-5 Ampères Law
    • 6-6 Charged Particles Moving in aMagnetic Field and an ElectricField
    • 6-7 Magnetic Force on a CurrentCarrying Wire
    • 6-8 Torque on a Current Loop in aUniform Magnetic Field
    • 6-9 Magnetism in Matter
  • 7 Faradays Law of Induction
    • 7-1 Faradays Law of Induction
    • 7-2 Motional and Induced ElectromotiveForce
    • 7-3 SelfInduction and MutualInduction
    • 7-4 Energy Stored in a MagneticField
    • 7-5 Displacement Current MaxwellsEquations
  • 8 Oscillations
    • 8-1 Simple Harmonic Motion
    • 8-2 Simple Harmonic Motion andUniform Circular Motion
    • 8-3 The Pendulum
    • 8-4 Energy of the Simple HarmonicMotion
    • 8-5 Superposition of Simple HarmonicMotions
    • 8-6 Damped Oscillations ForcedOscillations Resonance
  • 9 Mechanical Waves
    • 9-1 The Generation and Propagationof Mechanical Waves
    • 9-2 The Wave Function of a SinusoidalWave
    • 9-3 Energy and Power of a TravelingWave
    • 9-4 Huygens’ Principle Diffractionand Interference of Waves
    • 9-5 Standing Waves
    • 9-6 The Doppler Effect
  • 10 Wave Optics
    • 10-1 Electromagnetic Waves
    • 10-2 Coherent Light Sources
    • 10-3 Youngs Double-SlitExperiment
    • 10-4 Interference in Thin Films
    • 10-5 Diffraction of Light HuygensFresnel Principle
    • 10-6 Fraunhofer Diffraction by aSingle-Slit
    • 10-7 Fraunhofer Diffraction by a CircularAperture
    • 10-8 Diffraction Gratings
    • 10-9 Polarization of Light Waves
  • 11 Kinetic Theory of Gases
    • 11-1 Thermal Equilibrium The IdealGas Law The Zeroth Law ofThermodynamics
    • 11-2 Microscopic Description of Matter Basic Concepts in Statistics
    • 11-3 Pressure and Temperature of anIdeal Gas
    • 11-4 Theorem of Equipartition ofEnergy Internal Energy of an IdealGas
    • 11-5 The Maxwell Distribution ofMolecular Speeds
    • 11-6 Mean Free Path
  • 12 Fundamentals of Thermodynamics
    • 12-1 Quasi-Static Process WorkHeat
    • 12-2 Internal Energy The First Lawof Thermodynamics
    • 12-3 Isovolumetric and IsobaricProcesses Molar SpecificHeat
    • 12-4 Isothermal and AdiabaticProcesses
    • 12-5 Cyclic Processes The CarnotEngine
    • 12-6 The Second Law ofThermodynamics
    • 12-7 Entropy and Entropy Postulate
    • 12-8 A Statistical View of Entropy
  • 13 Theory of Special Relativity
    • 13-1 The Michelson-MorleyExperiment
    • 13-2 Einsteins Principle of Relativity
    • 13-3 The Lorentz TransformationEquations
    • 13-4 Relativistic Linear Momentumand Energy
  • 14 Quantum Physics
    • 14-1 Blackbody Radiation andPlancks Hypothesis
    • 14-2 The Photoelectric Effect
    • 14-3 The Compton Effect
    • 14-4 Bohrs Model of the HydrogenAtom
    • 14-5 The Wave Properties of MaterialParticles
    • 14-6 The Uncertainty Principle
    • 14-7 Introduction to QuantumMechanics
    • 14-8 The Quantum Model of theHydrogen Atom Electron Spin
  • Answers to Multiple Choice and Problems
  • APPENDIX
  • REFERENCES

大学物理数字课程与纸质教材一体化设计,紧密配合。数字课程涵盖物理学家简介、阅读材料等内容,充分运用多种媒体资源,极大地丰富了知识的呈现形式,拓展了教材内容。在提升课程教学效果的同时,为学生学习提供思维与探索的空间。

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