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  • PHYS 0174
  • Lecture 01 - Vector Addition
  • Lecture 02 - Vector Multiplication, 1-D Motion
  • Lecture 04 - Projectiles, Relative Motion
  • Lecture 05 - Newton's Laws
  • Lecture 06 - Free Body Diagrams, Friction
  • Lecture 08 - Work-Kinetic Energy Theorem
  • Lecture 10 - Conservation of Energy
  • Lecture 12 - Conservation of Momentum
  • Lecture 14 - Torque, Static Equilibrium
  • Lecture 15 - Rolling
  • Lecture 16 - Conservation of Ang. Momentum
  • Lecture 17 - Elasticity, Oscillations
  • Lecture 18 - Simple Harmonic Motion
  • Lecture 19 - Traveling Waves
  • Lecture 20 - Sound, Doppler Effect
  • Lecture 21 - 1st Law of Thermo, Ideal Gas
  • Lecture 22 - Internal Energy of a Gas

PHYS 0174

Author:
Dave Nero
A collection of simulations that supports PHYS 0174 at the University of Pittsburgh
PHYS 0174

Table of Contents

  • Lecture 01 - Vector Addition

    • Graphical Vector Sum in 2-D
  • Lecture 02 - Vector Multiplication, 1-D Motion

    • Graphical Dot Product in 2-D
    • Graphical Cross Product in 3-D
  • Lecture 04 - Projectiles, Relative Motion

    • Projectile Motion
    • Relative Motion in 2-D
  • Lecture 05 - Newton's Laws

    • Forces and Motion
  • Lecture 06 - Free Body Diagrams, Friction

    • Block Sliding Down Ramp With Friction
  • Lecture 08 - Work-Kinetic Energy Theorem

    • Integrating to Find Work
  • Lecture 10 - Conservation of Energy

    • Energy Skate Park
    • Bungee Jumping With Energy Conservation
  • Lecture 12 - Conservation of Momentum

    • Collision Lab
    • Ballistic Pendulum
    • Multiple Ejections Versus Rocket Equation
  • Lecture 14 - Torque, Static Equilibrium

    • Motion of 2-D Object With Arbitrary Forces Applied
    • Balancing Act
  • Lecture 15 - Rolling

    • Rolling With and Without Slipping
    • Sliding Versus Rolling Versus Tumbling
  • Lecture 16 - Conservation of Ang. Momentum

    • Colliding Asteroids and Angular Momentum
  • Lecture 17 - Elasticity, Oscillations

    • Stress-Strain Plot
  • Lecture 18 - Simple Harmonic Motion

    • Masses and Springs
    • Pendulum Lab
    • Physical Pendulum Pivoted From Arbitrary Point
  • Lecture 19 - Traveling Waves

    • Model of a Traveling Wave
    • Harmonic Series and Standing Waves on a String
  • Lecture 20 - Sound, Doppler Effect

    • Standing Sound Wave in a Pipe
  • Lecture 21 - 1st Law of Thermo, Ideal Gas

    • Heat Capacity and Phase Change
  • Lecture 22 - Internal Energy of a Gas

    • P-V Diagram and Work
Next
Graphical Vector Sum in 2-D

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