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PhysWiki: The Dyna...
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Table of contents
PhysWiki: The Dynamic Physics Textbook
Classical Mechanics
Conservation of Angular Momentum
Torque
Conservation of Mass and Energy
Conservation of Energy
Conservation of Mass
Equivalence of Mass and Energy
Newton's Law of Gravity
Noether's Theorem for Energy
Conservation of Momentum
Inertia
Momentum
Newton's Triumph
Work
Fluids
Boyle’s Law and the Law of Atmospheres
Stokes’ Law
The Bernoulli Effect
Viscosity
Friction
Motion
Waves
Computational
Condensed Matter
Cosmology
Electricity and Magnetism
Electricity
Charge, Electricity and Magnetism
Circuits
Resistance
Voltage
Electromagnetic Waves
Signal Processing
Fields
Electromagnetism
Induction
Optics
The Ray Model of Light
Applications
Images by Reflection
Particle Physics
Quantum Mechanics
1-D Quantum Mechanics
Coherent States of the Simple Harmonic Oscillator
Finding the Prefactor in the Simple Harmonic Oscillator Propagator
General Uncertainty Principle
Path Integrals in Quantum Mechanics
Schrödinger’s Equation in 1-D: Some Examples
The Energy-Time Uncertainty Principle: Decaying States and Resonances
The Simple Harmonic Oscillator
Time-Dependent Solutions: Propagators and Representations
Angular Momentum and Spin
Angular Momentum Operator Algebra
Div, Grad and Curl in Orthogonal Curvilinear Coordinates
Orbital Angular Momentum Eigenfunctions
Orbital Angular Momentum in Three Dimensions
Spin
The Hydrogen Atom
Approximate Methods
The WKB Approximation
Variational Methods
Essential Math
Fourier Series, Fourier Transforms and the Delta Function
Function Spaces
Functions of a Complex Variable: Contour Integration and Steepest Descent
Linear Algebra for Quantum Mechanics
Homework
Homework #1
Perturbation Theory
Electrons in One Dimension: the Peierls Transition
Higher Order Perturbation Theory
Photoelectric Effect in Hydrogen
Quantizing Radiation
Time-Dependent Perturbation Theory
Time-Independent Perturbation Theory
Van der Waals Forces Between Atoms
Reviewing Elementary Material
Early Quantum Mechanics
Electron in a Box
Introduction
The Uncertainty Principle
Wave Equations, Wavepackets and Superposition
Scattering Theory
Identical Particles Revisited
Relating Scattering Amplitudes to Bound States
Scattering Theory
The Partial Wave Expansion
Various Topics
Angular Momentum Quantization: Physical Manifestations and Chemical Consequences
Charged Particle in a Magnetic Field
Multiparticle Wavefunctions and Symmetry
The Density Matrix
Relativity
Distortion of Time and Space
Frames of Reference and Newton’s Laws
General Relativity
Relativistic Dynamics
Special Relativity
Spiral Physics
I - Mechanics
Model I : 1D Constant-Force Particle Model
01. Introduction
02. Model Specifics
03. Kinematics
01. Concepts and Principles
02. Drawing Motion Diagrams in 1D
03. Drawing Motion Graphs in 1D
04. Tabulating Motion Information - Motion Graphs
05. Analyzing a More Complex Motion
06. Symbolic Analysis
07. Addendum
01. Algebraic Signs
02. Deriving the kinematic relationships
08. Activities
01. Selected Answers For Kinematics
I-24
I-25
I-26
I-27
I-28
I-29
I-30
I-31
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I-48
I-49
I-50
I-51
I-52
I-53
I-54
I-55
04. Dynamics
01. Concepts and Principles
02. Drawing Free-Body Diagrams
03. Calculating the Force of Gravity near the Surface of the Earth
04. Analyzing a More Complex Scenario
05. Hints and Suggestions
06. Activities
01. Selected Answers for Dynamics
I-68
I-69
I-70
I-71
I-72
I-73
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I-75
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05. Conservation
01. Concepts and Principles
02. Analysis Tools
03. Analysis Tools 2
04. Analysis Tools 3
05. Activities
Model II : The constant-force particle model
01. Model Specifics
02. Kinematics
01. Concepts and Principles
02. Drawing Motion Diagrams
03. Drawing Motion Graphs
04. Tabulating Motion Information & Doing The Math
05. Hints and Suggestions
06. Activities
03. Dynamics
01. Concepts and Principles
02. Drawing Free-Body Diagrams
03. Applying Newton's Second Law
04. Choosing a Coordinate System
05. Activities
04. Conservation
01. Concepts and Principles
02. Analysis Tools
03. Analysis Tools 2
04. Activities
Model III : The Particle Model
01. Model Specifies
02. Kinematics
01. Concepts and Principles
02. Using the Calculus
03. Using the Calculus Another Example
04. Circular Motion
05. Circular Motion 2
06. The Kinematics of Circular Motion
07. Activities
03. Dynamics
01. Concepts and Principles
02. Time-Dependent Forces
03. Applying Newton's Second Law to Circular Motion
04. Activities
04. Conservation
01. Concepts and Principles
02. Applying the Impulse-Momentum Relation
03. Elastic Potential Energy
04. Applying Newton's 2nd Law to a Spring-Mass System
05.Potential Energy Functions
06. Activities
Model IV: The Rigid Body Model
01. Model Specifics
02. Kinematics
01. Concepts and Principles
02. Pure Rotation
03. Rotating and Translating
04. Activities
03. Dynamics
01. Concepts and Principles
02. Calculating the Rotational Inertia
03. Applying Newton's Second Law in Translational and Rotational Form - I
04. Applying Newton's Second Law in Translational and Rotational Form - II
05. Applying Newton's Second Law to Rolling Motion
06. Rotational Inertia of Common, Uniform Solids
07. Activities
04. Conservation
01. Concepts and Principles
02. Applying the Work-Energy Relation including Rotation - I
03. Applying the Impulse-Momentum Relations (Linear and Angular) - I
04. Activities
II - Electricity and Magnetism
Model 05 - Electric Fields
01. Concepts and Principles
02. Concepts and Principles 2
03. Analysis Tools
04. Analysis Tools 2
05. Analysis Tools 3
06. Activities
Model 06 - Electric Forces
01. Concepts and Principles
02. Analysis Tools
03. Activities
Model 07 - Magnetic Fields
01. Concepts and Principles
02. Analysis Tools
03. Analysis Tools 2
04. Activities
Model 08 - Magnetic Forces
01. Concepts and Principles
02. Analysis Tools
03. Analysis Tools 2
04. Activities
Model 09 - Electromagnetic Induction
01. Concepts and Principles
02. Analysis Tools
03. Activities
Model 10 - Electric Potential
01. Concepts and Principles
02. Analysis Tools
03. Analysis Tools 2
04. Activities
Model 11 - Electric Circuits
01. Concepts and Principles
02. Analysis Tools
03. Analysis Tools 2
04. Activities
XI - 19
XI - 20
XI - 21
XI - 22
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XI - 24
XI - 25
XI - 26
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XI - 55
XI - 56
XI - 57
XI - 58
Model 12 - Electromagnetic Waves
01. Concepts and Principles
02. Concepts and Principles 2
03. Analysis Tools
04. Analysis Tools 2
05. Activities
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Wikitexts
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