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Read Watch Interact
Physics Tutorial
1-D Kinematics
Newton's Laws
Vectors - Motion and Forces in Two Dimensions
Momentum and Its Conservation
Work, Energy, and Power
Circular Motion and Satellite Motion
Thermal Physics
Static Electricity
Current Electricity
Waves
Sound Waves and Music
Light Waves and Color
Reflection and the Ray Model of Light
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Physics Interactives
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Kinematics
Newtons Laws
Vectors and Projectiles
Momentum and Collisions
Work and Energy
Circular and Satellite Motion
Balance and Rotation
Static Electricity
Electric Circuits
Magnetism
Waves and Sound
Reflection and Mirrors
Refraction and Lenses
Shockwave Studios
Name That Motion
Graph That Motion
Graphing Motion
Two-Stage Rocket
Free Body Diagrams
Riverboat Simulator
Projectile Simulator
Hit the Target
Race Track
Uniform Circular Motion
Gravitation
Orbital Motion
Time Dilation
Length Contraction
Standing Wave Patterns
Beat Patterns
RGB Lighting
Painting With CMY
Young's Experiment
Least Time Principle
Refraction of Light
Lenses
Multimedia Studios
1-Dimensional Kinematics
Newton's Laws
Vectors and Projectiles
Momentum and Collisions
Work and Energy
Circular, Satellite, and Rotational Motion
Einstein's Theory of Special Relativity
Static Electricity
Waves, Sound and Light
Ray Optics
QuickTime Movies
Practice Review Test
The Review Session
1-D Kinematics
Newton's Laws of Motion
Vectors and Projectiles
Forces in Two Dimensions
Momentum and Collisions
Work, Energy and Power
Circular and Satellite Motion
Static Electricity
Electric Circuits
Waves
Sound and Music
Light and Color
Reflection and Mirrors
Refraction and Lenses
Minds on Physics
Start!
Directions
Teacher Use
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Record-Keeping
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About MOP
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MOP the App Part 1
Timeline
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About MOPs
The Calculator Pad
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Habits of an Effective Problem Solver
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Motion in One Dimension
Newton's Laws
Vectors and Projectiles
Forces in Two Dimensions
Momentum and Collisions
Work, Energy and Power
Circular Motion and Gravitation
Static Electricity
Electric Ciruits
Wave Basics
Sound and Music
Light and Color
Reflection and Mirrors
Refraction and Lenses
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Position-Velocity-Acceleration
Position-Time Graphs
Velocity-Time Graphs
Free Fall
Newton's First Law
Newton's Second Law
Newton's Third Law
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Vectors
Projectiles
Projectile Motion
Forces in 2 Dimensions
Impulse and Momentum Change
Momentum Conservation
Work-Energy Fundamentals
Work-Energy Relationship
Circular Motion
Roller Coaster Physics
Universal Gravitation
Series Circuits
Parallel Circuits
Describing-Waves
Lenses
Reasoning Center
Philosophy
CRS
Usage
Resource CD
The Laboratory
About
Teacher Guide
Using Lab Notebooks
Share
The Photo Gallery
1-D Kinematics
Newton's Laws
Vectors - Motion and Forces in Two Dimensions
Momentum and Its Conservation
Work, Energy, and Power
Circular Motion and Satellite Motion
Thermal Physics
Static Electricity
Current Electricity
Waves
Sound Waves and Music
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Reflection and Ray Model of Light
Refraction and Ray Model of Light
Share The News
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The Physics Classroom
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Physics Tutorial
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Reflection and the Ray Model of Light
Reflection and the Ray Model of Light
Lesson 1 - Reflection and its Importance
The Role of Light to Sight
The Line of Sight
The Law of Reflection
Specular vs. Diffuse Reflection
Lesson 2 - Image Formation in Plane Mirrors
Why is an Image Formed?
Image Characteristics in Plane Mirrors
Ray Diagrams for Plane Mirrors
What Portion of a Mirror is Required to View an Image?
Right Angle Mirrors
Other Multiple Mirror Systems
Lesson 3 - Concave Mirrors
The Anatomy of a Curved Mirror
Reflection of Light and Image Formation
Two Rules of Reflection for Concave Mirrors
Ray Diagrams - Concave Mirrors
Image Characteristics for Concave Mirrors
The Mirror Equation
Spherical Aberration
Lesson 4 - Convex Mirrors
Reflection and Image Formation for Convex Mirrors
Ray Diagrams - Convex Mirrors
Image Characteristics for Convex Mirrors
The Mirror Equation - Convex Mirrors
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Reflection and the Ray Model of Light