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 Physics Applets

The Interactive Library is about "real interactivity"! The database contains hundreds of activities that make use of sophisticated java, vrml and shockwave programs. These are all 'free software programs'.

If you are unfamiliar with java or shockwave take a look at these sample programs.

-Teachers Create your own activity sheet to go with the programs and your students are set for a new experience.

-Students Use these programs to supplement your classroom activities, or use one of the more advanced applets as a starting point for your science project.

 Try one now!

MECHANICS

Equilibrium of Three Forces
Resultant of Forces (Addition of Vectors)
Pulley System
Lever Principle
Inclined Plane (by Fendt)
Newton's Second Law
Elastic and Inelastic Collision
Newton's Cradle
Carousel (Centripetal Force)
Kepler's First Law
Kepler's Second Law
Air Track
Inclined Plane (shockwave)
Golf Range!
Shoot the Monkey
2D Collisions
Freefall Lab - Terminal Velocity
Center of Mass
See-Saw Torque
Moment of Inertia
Simple Harmonic Motion
Two-Dimensional Harmonic Motion
Driven Harmonic Motion (1 mass)
Driven Harmonic Motion (2 masses)
Force on a Wing
Projectile motion
Elastic collisions
Coriolis and centrifugal forces
The Kepler problem
The simple plane pendulum
Chaos in the driven pendulum
Reaction Time **
Reaction Time and Car Accident **
Traffic Light System *
Relative Moltion --Frame of Reference
Racing Balls
Displacement, Velocity, Acceleration
Projectile Motion
Projectile Motion with Air Drag
Interesting Properties of Projectile Motion
Bouncing Balls**
Free Rolling and Circular Motion
Angular Momentum and Area
Simple Harmonic Motion and Uniform Circular Motion
Spring Force
Motion of a Ping Pong Ball
Instantaneous Speed
Billiards and Physics**
Pendulum
Simple Version of Pendulum
Kepler Motion
Projectile Orbits and Satellite Orbits
Billiard ball simulation
Spinning Top*
Newton's Cannon
Virtual wind tunnel
Pendulum
Spring Pendulum
Coupled Pendula
Inclined Plane/Friction
Potential/Kinetic Energy
Momentum
2-D Cannon
Projectile Motion

Pulleys
Work
Conservation of Momentum (1-D collisions)
2-D collisions
Frictional Force
Dynamics Applet (Surendranath)

OSCILLATIONS AND WAVES

Sound Beats
Longitudinal Wave
Phased Array
Ultrasound: How does it work?
Interference Patterns
Doppler Effect (1 source)
Doppler Effect (2 sources)
Lissajous Figures
Ripple Tank
Forced Oscillations (Resonance)
Standing Longitudinal Waves
Reflection and Refraction of Waves (Huygens' Principle)
Interference of two Circular or Spherical Waves
Doppler Effect
The damped harmonic oscillator
Coupled oscillations
Transmission of waves through dense material
Oscillation and Wave
Doppler Effect and Shock Waves
Interference between two waves
Transverse and Longitudinal Waves
Transverse
Travelling Wave
Beats
Interference in a Ripple Tank

GENERAL

Units
Error and Measurement**
Vector Addition**
Exponential Growth
Vector Addition
Min/Max Thermometer
Real-time Histogram
Virtual physics lab (NTNU)
Density Lab

FLUIDS

Hydrostatic Pressure in Liquids
Buoyant Force in Liquids
Floating Log
Gravity Flow
Buoyant Force
Buoyant Force II

LIGHT AND OPTICS

Additive Colors
Subtractive Colors
Basic Prism
Ray Tracing
Fermat's Principle
Interference Patterns
Refraction of Light
Refracting Astronomical Telescope
spectrum tuner
color addition
Reflection/Refraction (Water-air Interface)
Thin Lens Demonstration
Thin Lens Combination
Thick Lens
Physics of Rainbows
Shadow/Image and Color
Fermat Principal
The World of Color**
Mixing Colored Light Beams
Light: a myriad of colors..
How a pinhole camera works
Bragg's Law of Diffraction

ELECTRICITY AND MAGNETISM

Introduction to E&M
Introduction to Plasma
Coulombic Forces
Lorentz Force
Direct Current Electrical Motor
Generator
Ohm's Law
Simple AC Circuits
Electromagnetic Oscillating Circuit
Electromagnetic Wave
Charged Particle motion in EM field
Propagation of Electromagnetic Wave
Basic Function of an Oscilloscope
Cyclotron
Biot Savart Law
RC Circuits (DC)
RLC Ciruit
Multimeter (VOM)
Clipping Circuit (Voltage Limiters)
Lissajous Lab***
Interference of Siusoidal Waves
Voltage
Motion in an electromagnetic field

MOLECULAR, ATOMIC
AND NUCLEAR


Lennard-Jones Molecular Dynamics**
Polymers
Surface Tension
P and V Effects -Le Chatlier's principle
Thomson Atom
Nuclear Atom
Einstein's Explanation of Brownian Motion
One-dimensional one-atom classical gas
Two-dimensional collisions
Model Nonequilibrium System

Brownian Motion (Advanced)
Spectra of Gas discharges
The particle in the box
Radioactive Decay
Radioactive Decay
Space and Time (Special Relativity)

APPLIED

Multiple Pendulum
Heat Flow
Planetary Motion**
Spinning Top
Soliton
Bungie Chord
Bridge
Breaking Bridge
Beam
Breaking Beam


 

 

 

 

 

 


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