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Physics Honors Cross Reference
Topic
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1-D Motion
Calculating Average Velocity or Speed
Solving for Time
Displacement from Time and Velocity Example
Acceleration
Airbus A380 Take-off Time
Airbus A380 Take-off Distance
Why Distance is Area under Velocity-Time Line
Average Velocity for Constant Acceleration
Acceleration of Aircraft Carrier Takeoff
Race Cars with Constant Speed Around Curve
Deriving Displacement
Plotting Projectile Displacement, Acceleration, and Velocity
Impact Velocity From Given Height
Vectors
Introduction to Vectors and Scalars
Visualizing Vectors in 2 Dimensions
2-D Motion
Projectile at an Angle
Different Way to Determine Time in Air
Launching and Landing on Different Elevations
Total Displacement for Projectile
Total Final Velocity for Projectile
Correction to Total Final Velocity for Projectile
Projectile on an Incline
2-D Motion-Advanced
Clearing the Green Monster at Fenway
Green Monster at Fenway Part 2
Optimal angle for projectile 1
Optimal angle for projectile 2 – Hangtime
Optimal angle for a projectile part 3
Optimal angle for projectile 4
Projectile Height Given Time
Deriving Max Projectile Displacement Given Time
Newton’s Laws
Newton’s First Law of Motion
Newton’s Second Law of Motion
Newton’s Third Law of Motion
Introduction to Gravity
Mass and Weight Clarification
Gravity for Astronauts in Orbit
Would a Brick or Feather Fall Faste
Normal Force and Contact Force
Normal Force in an Elevator
Inclined Plane Force Components
Ice Accelerating Down an Incline
Force of Friction Keeping the Block Stationary
Correction to Force of Friction Keeping the Block Stationary
Force of Friction Keeping Velocity Constant
Intuition on Static and Kinetic Friction Comparisons
Static and Kinetic Friction Example
Introduction to Tension
Tension (part 2)
Tension in an accelerating system and pie in the face
Moving pulley problem (part 1)
Moving pulley problem (part 2)
Energy
Introduction to work and energy
Work and Energy (part 2)
Conservation of Energy
Work/Energy problem with Friction
Introduction to mechanical advantage
Mechanical Advantage (part 2)
Mechanical Advantage (part 3)
Momentum
Introduction to Momentum
Momentum: Ice skater throws a ball
2-dimensional momentum problem
2-dimensional momentum problem (part 2)
Optics
Specular and Diffuse Reflection
Specular and Diffuse Reflection 2
Refraction and Snell’s Law
Refraction in Water
Snell’s Law Examples 1
Snell’s Law Example 2
Total Internal Reflection
Virtual Image
Parabolic Mirrors and Real Images
Parabolic Mirrors 2
Convex Parabolic Mirrors
Convex Lenses
Convex Lens Examples
Concave Lenses
Object Image and Focal Distance Relationship (Proof of Formula)
Object Image Height and Distance Relationship
Sound
Introduction to Waves
Amplitude, Period, Frequency and Wavelength of Periodic Waves
Introduction to the Doppler Effect
Doppler effect formula for observed frequency
Doppler effect formula when source is moving away
When the source and the wave move at the same velocity
Mach Numbers
Electrostatics
Electrostatics (part 1): Introduction to Charge, Coulomb’s Law
Electrostatics (part 2)
Proof (Advanced): Field from infinite plate (part 1)
Proof (Advanced): Field from infinite plate (part 2)
Electric Potential Energy
Electric Potential Energy (part 2– involves calculus)
Voltage
Capacitance
Circuits
Circuits (part 1)
Circuits (part 2)
Circuits (part 3)
Circuits (part 4)
Fluids
Fluids (part 1)
Fluids (part 2)
Fluids (part 3)
Fluids (part 4)
Fluids (part 5)
Fluids (part 6)
Fluids (part 7)
Fluids (part 8)
Fluids (part 9)
Fluids (part 10)
Fluids (part 11)
Fluids (part 12)
Thermodynamics
Thermodynamics (part 1)
Thermodynamics (part 2)
Thermodynamics (part 3)
Thermodynamics (part 4)
Thermodynamics (part 5)
Magnetism
Introduction to Magnetism
Magnetism 2
Magnetism 3
Magnetism 4
Magnetism 5
Magnetism 6: Magnetic field due to current
Magnetism 7
Magnetism 8
Magnetism 9: Electric Motors
Magnetism 10: Electric Motors
Magnetism 11: Electric Motors
Magnetism 12: Induced Current in a Wire
Rotation
Center of Mass
Introduction to Torque
Moments
Moments (part 2)
SHM – Springs
Intro to springs and Hooke’s Law
Potential energy stored in a spring
Spring potential energy example (mistake in math)
Introduction to Harmonic Motion
Harmonic Motion Part 2 (calculus)
Harmonic Motion Part 3 (no calculus)
Circular Motion
Introduction to centripetal acceleration (part 1)
Centripetal Acceleration (part 2)
Centripetal Acceleration (part 3)
Visual Proof: a= v^2/r
Calculus Proof that a=v^2/r
Introduction to angular velocity
Conservation of angular momemtum
Gravitation
Introduction to Newton’s Law of Gravitation
Gravitation (part 2)
Advanced Math Topics
Unit Vectors and Engineering Notation
Unit Vector Notation
Unit Vector Notation (part 2)
Projectile Motion with Unit Vectors
Projectile Motion with Unit Vectors (part 2)
Projectile Motion with Ordered Set Notation
Cross product 1
Cross Product 2
Cross Product and Torque
The dot product
Dot vs. Cross Product
Calculating dot and cross products with unit vector notation
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