Physics I - 101 Academic Year

物理(一) -101學年度

本課程是由 國立陽明交通大學電子物理系提供。

物理上學期課程包括數學能力、運動學、牛頓力學、圓周運動、能量與動量守恆、轉動動量、靜力平衡、重力、流體力學、振動、波動、聲波、熱力學。

課程用書:John W. Jewett, Jr. and Raymond A. Serway,書名:PHYSICS for Scientists and Engineers with Modern Physics (8th edition),AbeBooks.co.uk.
為求學習成效完美,請購買課本!

 

授課教師 電子物理系 簡紋濱老師
課程學分 4學分
授課年度 101學年度
授課對象 大學一年級學生
預備知識 高中物理課程
課程提供 課程影音   課程綱要   課程行事曆 

課程目標

物理上學期課程包括數學能力、運動學、牛頓力學、圓周運動、能量與動量守恆、轉動動量、靜力平衡、重力、流體力學、振動、波動、聲波、熱力學

 

課程章節

內容綱要
第零章 物理中的數學
第一章 Physics and Measurement
第二章 Motion in One Dimension
第四章 Motion in Two Dimensions
第五章 The Laws of Motion
第六章 Circular Motion and Other Applications of Newton’s Laws
第七章 Energy of a System
第八章 Conservation of Energy
第九章 Systems of Particles and Conservation of Linear Momentum
第十章 Rotation of a Rigid Object About a Fixed Axis
第十一章 Conservation of Angular Momentum
第十二章 Static Equilibrium Elasticity
第十四章 Fluids
第十五章 Oscillation Motion
第十六章 Wave Motion
第十八章 Superposition and Standing
第十九章 Temperature
第二十章 The First Law of Thermodynamics
第二十一章 The Kinetic Theory of Gases
第二十二章 Heat Engines, Entropy, and the Second Law of Thermodynamics

課程書目

John W. Jewett, Jr. and Raymond A. Serway,PHYSICS for Scientists and Engineers with Modern Physics (8th edition)

 

評分標準

項目百分比
第一次測驗30%
第二次測驗30%
第三次測驗30%
作業20%

本課程行事曆提供課程進度與考試資訊參考。

學期週次
上課日期
參考課程進度

第一週

2012/09/17
2012/09/20
  • 課程介紹
第二週2012/09/24
2012/09/27
  • 第零章 物理中的數學
    -Equations & The Quadratic Formula
    -Linear Equations
    -Exponents
    -Trigonal Function
    -The Binomial Expansion
    -Logarithms
    -Complex Numbers
    -Differential and Integral Calculus
    -Taylor Expansion
    -Integration
    -Differential Equation
第三週2012/10/01
  • 第一章 Physics and Measurement
    1-1 Standard of Length, Mass, and Time
    1-2 Matter and Model Building
    1-3 Dimensional Analysis
    1-4 Conversion of Units
    1-5 Estimates and Order-of-Magnitude Calculation
    1-6 Significant Figures
    第二章 Motion in One Dimension
    2-1 Positon, Velocity, and Speed
    2-2 Instantaneous Velocity and Speed
    2-3 Analysis Model: The Particle Under Constant Velocity
    2-4 Acceleration
2012/10/04
  • 第二章 Motion in One Dimension
    2-4 Acceleration (special example)
    2-5 Motion Diagrams
    2-6 Motion Under Constant Acceleration
    2-7 Freely Falling Objects
    2-8 Kinematic Equations Derived from Calculus
    第四章 Motion in Two Dimensions
    4-1 Position, Velocity, and Acceleration
    4-2 Two Dimensional Motion with Constant Acceleration
    4-3 Projectile Motion
    4-4 Uniform Circular Motion
第四週2012/10/08
  • 第四章 Motion in Two Dimensions
    4-4 Uniform Circular Motion
    4-5 Tangential and Radial Acceleration
    4-6 Relative Velocity and Relative Acceleration
    第五章 The Laws of Motion
    5-1 The Concept of Force
    5-2 Newton’s First Law and Inertial Frames
    5-3 Mass
    5-4 Newton’s Second Law
    5-5 The Gravitation Force and Weight
    5-6 Newton’s Third Law
2012/10/11
  • 第五章 The Laws of Motion
    5-7 Some Applications of Newton’s Laws
    5-8 Forces of Friction
    第六章 Circular Motion and Other Applications of Newton’s Laws
    6-1 Newton’s Second Law for a Particle in Uniform Circular Motion
    6-2 Nonuniform Circular Motion
第五週2012/10/15
  • 第六章 Circular Motion and Other Applications of Newton’s Laws
    6-2 Nonuniform Circular Motion
    6-3 Motion in Accelerated Frames
    6-4 Motion in the Presence of Resistive Force
2012/10/18
  • 第六章 Circular Motion and Other Applications of Newton’s Laws
    6-4 Motion in the Presence of Resistive Force
    第七章 Energy of a System
    7-1 Systems and Environments
    7-2 Work Done by a Constant Force
    7-3 The Scalar Product of Two Vectors
    7-4 Work Done by a Varying Force
第六週2012/10/22
2012/10/25
  • 第七章 Energy of a System
    7-5 Kinetic Energy and the Work-Kinetic Energy Theorem
    7-6 Potential Energy of a System
    7-7 Conservative and Nonconservative Forces
    7-8 Relationship Between Conservative Forces and Potential Energy
第七週2012/10/29第八章 Conservation of Energy
8-1 The Nonisolated System: Conservation of Energy
8-2 The Isolated System
8-3 Situations Involving Kinetic Friction
8-4 Changes in Mechanical Energy for Nonconservative Forces
2012/11/01
  • 第八章 Conservation of Energy
    8-4 Changes in Mechanical Energy for Nonconservative Forces
    8-5 Power
    第九章 Systems of Particles and Conservation of Linear Momentum
    9-1 Linear Momentum and Its Conservation
    9-2 Isolated System
    9-3 Nonisolated System (Impulse)
    9-4 Collisions in One Dimension
    9-5 Collisions in Two Dimensions
第八週2012/11/05
  • 第九章 Systems of Particles and Conservation of Linear Momentum
    9-5 Collisions in Two Dimensions
    9-6 The Center of Mass
    9-7 Motion of a System of Particles
    9-8 Deformable Systems
    9-9 Rocket Propulsion
2012/11/08
  • 第十章 Rotation of a Rigid Object About a Fixed Axis
    10-1 Angular Position, Velocity, and Acceleration
    10-2 Rotational Kinematics: The Rigid Object Under Constant Angular Acceleration
    10-3 Angular and Translational Quantities
    10-4 Rotational Kinetic Energy
    10-5 Calculation of Moments of Inertia
第九週2012/11/12第十章 Rotation of a Rigid Object About a Fixed Axis
10-5 Calculation of Moments of Inertia
10-6 Torque
2012/11/15
  • 第十章 Rotation of a Rigid Object About a Fixed Axis
    10-6 Torque
    10-7 The Rigid Body Under a Net Torque
第十週2012/11/19第十一章 Conservation of Angular Momentum
11-1 The Vector Product and Torque
11-2 Angular Momentum: The Nonisolated System
11-3 Angular Momentum of a Rotating Rigid Object
11-4 The Isolated System: Conservation of Angular Momentum
11-5 The Motion of Gyroscopes and Tops
2012/11/22
  • 第十二章 Static Equilibrium Elasticity
    12-1 The Rigid Object in Equilibrium
    12-2 More on the Center of Gravity
    12-3 Examples of Rigid Objects in Equilibrium
    12-4 Elastic Properties of Solids
    第十四章 Fluids
    14-1 Pressure
第十一週2012/11/26
  • 第十四章 Fluids
    14-2 Variation of Pressure with Depth
    14-3 Pressure Measurements
    14-4 Buoyancy Forces and Archimede’s Principle
    14-5 Fluid Dynamics
    14-6 Bernoulli’s Equation
    14-7 Other applications of fluid dynamics
    第十五章 Oscillation Motion
    15-1 Motion of an Object Attached to a Spring
    15-2 The Particle in Simple Harmonic Motion
2012/11/29
  • 第十五章 Oscillation Motion
    15-3 Energy of the Simple Harmonic Oscillator
    15-4 Comparing Simple Harmonic Motion with Uniform Circular Motion
    15-5 The Pendulum
    15-6 Damped Oscillations
第十二週2012/12/03
  • 第十五章 Oscillation Motion
    15-6 Damped Oscillations
    15-7 Forced Oscillations
    第十六章 Wave Motion
    16-1 Propagation of a Disturbance
2012/12/06
  • 第十六章 Wave Motion
    16-2 The Traveling Wave Model
    16-3 The Speed of Waves on Strings
    16-.4 Reflection and Transmission
    16-5 Rate of Energy Transfer by Sinusoidal 5 Waves on Strings
第十三週2012/12/10
  • 第十六章 Wave Motion
    16-5 Rate of Energy Transfer by Sinusoidal 5 Waves on Strings
    16-6 The Linear Wave Equation – Physical Model
    第十八章 Superposition and Standing
    18-1 Superposition and Interferences
    18-2 Standing Waves
    18-3 Standing Waves in Strings Fixed at Both Ends
2012/12/13
第十四週2012/12/17
  • 第十八章 Superposition and Standing
    18-4 Resonance
    18-5 Standing waves in air columns
    18-6 Standing Waves in Rods and 6 Membranes
    18-7 Beats: Interference in Time
    18-8 Nonsinusoidal Wave Patterns
2012/12/20
  • 第十八章 Superposition and Standing
    18-8 Nonsinusoidal Wave Patterns
    第十九章 Temperature
    19-1 Temperature and the Zeroth Law of Thermodynamics
    19-2 Thermometers and the Celsius F F 2 Temperature scale
    19-3 The Constant-Volume Gas Thermometer and the Absolute Temperature Scale
    19-4 Thermal Expansion of Solids and Liquids
第十五週2012/12/24
  • 第十九章 Temperature
    19-4 Thermal Expansion of Solids and Liquids
    19-5 Macroscopic Description of an Ideal Gas
    第二十章 The First Law of Thermodynamics
    20-1 Heat and Internal Energy
    20-2 Specific Heat and Calorimetry
    20-3 Latent Heat
    20-4 Work and Heat in Thermodynamics
    20-5 The First Law of Thermodynamics
    20-6 Some Applications of the First Law of Thermodynamics
2012/12/27
  • 第二十章 The First Law of Thermodynamics
    20-6 Some Applications of the First Law of Thermodynamics
    20.7 Energy Transfer Mechanisms
    第二十一章 The Kinetic Theory of Gases
    21-1 Molecular Model of an Ideal Gas
第十六週2012/12/31
  • 第二十一章 The Kinetic Theory of Gases
    21-2 Molecular Specific Heat of an Ideal Gas
    21-3 Adiabatic Processes for an Ideal Gas
    21-4 The Equipartition of Energy
    21-5 Distribution of Molecular Speeds
2013/01/03
第十七週2013/01/07第二十一章 The Kinetic Theory of Gases
21-5 Distribution of Molecular Speeds
第二十二章 Heat Engines, Entropy, and the Second Law of Thermodynamics
22-1 Heat Engines and the Second Law of Thermodynamics
22-2 Heat Pumps and Refrigerators
22-3 Reversible and Irreversible Processes
22-4 The Carnot Engine
2013/01/10
  • 第二十二章 Heat Engines, Entropy, and the Second Law of Thermodynamics
    22-4 The Carnot Engine
    22-5 Gasoline and Diesel Engines
    22-6 Entropy
    22-7 Entropy change in irreversible
    22-8 Entropy on a Microscopic Scale
第十八週2013/01/14
  • 第三次測驗
2013/01/17
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