APB Review Sessions
Mechanics II
Formulas
Description
Published Forrmula
centripetal acceleration
elastic potential energy
friction
gravitational potential energy
Hooke's Law
impulse
kinetic energy
linear momentum
Newton's 2nd Law
Newton's Law of Universal Gravitation
period of a simple pendulum
period of a spring
potential energy
power
power
work
Web Resources
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Lessons:
A Derivation of the Formulas for Centripetal Acceleration
Air Resistance
Air Resistance: Terminal Velocity
Centripetal Acceleration and Angular Motion
Derivation of Bohr's Model for the Hydrogen Spectrum
Derivation: Period of a Simple Pendulum
Energy Conservation in Simple Pendulums
Famous Discoveries: The Franck-Hertz Experiment
Forces Acting at an Angle
Freebody Diagrams
Gravitational Energy Wells
Inclined Planes
Inertial vs Gravitational Mass
Kepler's Laws
Linear Momentum
Magnetic Forces on Particles (Part II)
Mechanical Energy
Momentum and Energy
Newton's Laws of Motion
Period of a Pendulum
Properties of Friction
Rotational Kinetic Energy
SHM Equations
Simple Harmonic Motion
Springs: Hooke's Law
Static Equilibrium
Symmetries in Physics
Systems of Bodies
Tension Cases: Four Special Situations
The Law of Universal Gravitation
Uniform Circular Motion: Centripetal Forces
Universal Gravitation and Satellites
Universal Gravitation and Weight
Vertical Circles and Non-Uniform Circular Motion
What is Mass?
Work
Work and Energy
Labs:
A Battering Ram
A Photoelectric Effect Analogy
Air Track Collisions
Ballistic Pendulum
Ballistic Pendulum: Muzzle Velocity
Bouncing Steel Spheres
Calculation of "g" Using Two Types of Pendulums
Coefficient of Friction
Coefficient of Friction
Coefficient of Kinetic Friction (pulley, incline, block)
Collision Pendulum: Muzzle Velocity
Conical Pendulums
Conical Pendulums
Conservation of Energy and Vertical Circles
Conservation of Momentum
Conservation of Momentum in Two-Dimensions
Falling Coffee Filters
Force Table - Force Vectors in Equilibrium
Impulse
Inelastic Collision - Velocity of a Softball
Inertial Mass
Introductory Simple Pendulums
Kepler's 1st and 2nd Laws
LabPro: Newton's 2nd Law
Loop-the-Loop
Mass of a Rolling Cart
Oscillating Springs
Ramps: Sliding vs Rolling
Relationship Between Tension in a String and Wave Speed
Relationship Between Tension in a String and Wave Speed Along the String
Roller Coaster, Projectile Motion, and Energy
Rotational Inertia
Rube Goldberg Challenge
Sand Springs
Simple Pendulums: Class Data
Simple Pendulums: LabPro Data
Spring Carts
Static Equilibrium Lab
Static Springs: Hooke's Law
Static Springs: Hooke's Law
Static Springs: LabPro Data for Hooke's Law
Target Lab: Ball Bearing Rolling Down an Inclined Plane
Terminal Velocity
Video LAB: A Gravitron
Video LAB: Ball Re-Bounding From a Wall
Video Lab: Blowdart Colliding with Cart
Video Lab: Cart Push #2 and #3
Video LAB: Circular Motion
Video Lab: Falling Coffee Filters
Video LAB: Looping Rollercoaster
Video Lab: M&M Collides with Pop Can
Video Lab: Marble Collides with Ballistic Pendulum
Water Springs
Worksheets:
Advanced Properties of Freely Falling Bodies #1
Advanced Properties of Freely Falling Bodies #2
Advanced Properties of Freely Falling Bodies #3
Basic Practice with Springs
Calculating Force Components
Charged Projectiles in Uniform Electric Fields
Combining Kinematics and Dynamics
Distinguishing 2nd and 3rd Law Forces
Energy Methods: More Practice with Projectiles
Energy Methods: Projectiles
Energy/Work Vocabulary
Force vs Displacement Graphs
Freebody Diagrams #1
Freebody Diagrams #2
Freebody Diagrams #3
Freebody Diagrams #4
Inertial Mass Lab Review Questions
Introduction to Springs
Kepler's Laws: Worksheet #1
Kepler's Laws: Worksheet #2
Kinematics Along With Work/Energy
Lab Discussion: Gravitational Field Strength and the Acceleration Due to Gravity
Lab Discussion: Inertial and Gravitational Mass
More Practice with SHM Equations
net F = ma
Pendulum Lab Review
Pendulum Lab Review
Practice: Momentum and Energy #1
Practice: Momentum and Energy #2
Practice: SHM Equations
Practice: Uniform Circular Motion
Practice: Vertical Circular Motion
Ropes and Pulleys in Static Equilibrium
Rotational Kinetic Energy
SHM Properties
Standard Model: Particles and Forces
Static Springs: The Basics
Universal Gravitation and Satellites
Vertical Circular Motion #1
Vocabulary for Newton's Laws
Work and Energy Practice: An Assortment of Situations
Work and Energy Practice: Forces at Angles
AP Essays:
1972 B1:
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1973 B1:
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1973 B2:
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1974 B1:
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1974 B2:
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1974 B7:
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1975 B1:
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1975 B6:
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1975 B7:
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1976 B1:
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1976 B2:
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1977 B1:
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1977 B2:
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1978 B1:
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1978 B2:
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1979 B1:
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1979 B2:
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1980 B1:
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1980 B5:
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1980 B6:
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1981 B1:
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1981 B2:
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1981 B3:
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1982 B2:
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1982 B3:
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1983 B1:
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1983 B2:
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1984 B1:
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1984 B2:
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1984 B4:
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1984 C1:
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1985 B1:
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1985 B2:
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1986 B1:
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1986 B2:
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1986 B4:
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1987 B1:
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1988 B1:
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1988 B2:
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1989 B1:
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1989 B6:
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1990 B1:
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1990 B2:
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1991 B1:
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1991 B2:
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1991 B5:
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1992 B1:
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1992 B2:
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1992 B5:
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1993 B1:
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1993 B2:
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1993 B6:
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1994 B2:
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1995 B1:
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1995 B3:
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1995 B4:
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1995 B5:
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1996 B1:
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1996 B2:
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1997 B1:
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1997 B2:
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1997 B3:
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1997 B4:
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1997 B5:
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1997 B6:
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1998 B1:
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1998 B2:
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1998 B6:
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1999 B1:
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1999 B3:
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1999 B5:
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2000 B1:
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2001 B1:
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2001 B2:
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2002 B1:
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2002 B2:
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2002 B7:
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2002 Form B - B1:
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2002 Form B - B2:
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2002 Form B - B5:
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2002 Form B - B7:
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2003 B1:
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2003 Form B - B1:
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2003 Form B - B4:
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2004 B1:
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2007 B1:
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2007 B7:
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2008 B7:
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2008 Form B - B1:
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2008 Form B - B2:
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2008 Form B - B7:
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2009 B1:
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2009 B5:
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2009 Form B - B1:
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2009 Form B - B2:
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2010 B1:
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2010 B4:
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2010 Form B - B1:
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2010 Form B - B2:
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2010 Form B - B3:
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2011 B1:
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2011 B1 Form B:
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2011 B5:
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2012 B1:
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2012 B2:
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2012 B7:
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2013 B1:
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2013 B6:
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2014 B1:
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2014 B5:
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CP Workbook Pages:
Action-Reaction #1
Action-Reaction #2
Centripetal Acceleration
Centripetal Force
Conservation of Energy
Conservation of Momentum
Equilibrium on an Inclined Plane
Falling and Air Resistance
Force and Acceleration
Force and Weight
Force Vectors and the Parallelogram Rule
Freebody Diagrams
Gravitational Interactions
Incline Places: Force Vector Resultants
Incline Planes - Force Vector Components
Inertia
Mobiles: Rotational Equilibrium
Momentum
Momentum and Energy
Momentum and Kinetic Energy
Momentum Practice Problems
Momentum Systems and Conservation
Net Force
Newton's Law of Motion: Friction
Power Production
Satellites: Circular and Elliptical
Static Equilibrium
Tensions and Equilibrium
Work and Energy
NextTime Questions:
Acceleration
Air Resistance #1
An Apple on a Table
Apex #1
Apex #2
Circular Orbits
Cliffs
Elliptical Orbits
Escape Velocity
Falling Rock
Falling Spheres
Friction
Frictionless Pulley
Gravitation #1
Gravitation #2
Head-on Collisions #1
Head-on Collisions #2
Ice Boat
Momentum
Pendulum
Ramps
Rotating Disk
Sailboats #1
Sailboats #2
Satellite Positions
Scale Reading
Settling
Skidding Distances
Spiral Tube
Tensile Strength
Terminal Velocity
Tug of War #1
Tug of War #2
Two-block Systems
Amusing Problems:
Big Al
Big Fist
Family Reunion
Puppy Love
Ring Around the Collar
The Antelope
The Box Seat
The Jogger
The Pepsi Challenge
The Pet Rock
The Pool Game
The Raft
The Satellite
The Spring Phling
Timex
PhysicsLAB
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Catharine H. Colwell
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