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» The Quantum Exchange Library Materials
The Quantum Exchange Library Materials
Total Materials:
225
1D Quantum States Applet
1D Quantum Transitions Applet
2D Circular Square Well Applet
2D Quantum Harmonic Oscillator Applet
2D Rectangular Square Well Applet
3D Quantum Harmonic Oscillator Applet
3Ms for Instruction: Reviews of Maple, Mathematica, and Matlab
5 1/2 Examples in Quantum Mechanics
A computer-simulated Stern–Gerlach laboratory
A Modern Approach to Quantum Mechanics
A New Model Course in Applied Quantum Physics
A New Model Course in Applied Quantum Physics: Examination Questions
A Practical Guide to SPM: Scanning Probe Microscopy
A Quantum Bouncing Ball
A Radically Modern Approach to Introductory Physics
Advanced Visual Quantum Mechanics
Aharonov-Bohm Effect
An Introduction to the Basics of Dephasing
An Open Source XML Framework for Authoring Curricular Materials
Applying Spectra and Energy Diagrams to Learn About Stars
Atomic Dipole Transitions Applet
Atomic Orbitals
Central Force Motion Example: Hydrogen Atom
Centre for Quantum Computation
Circular Well Superposition Model
Classical and Quantum Mechanical Waves
Clebsch-Gordan Coefficient Calculator
Collaboration Bohmian Mechanics
Complex Numbers
Configuration Interaction and Coupled Cluster methods
Constant Force Example
Creating an Energy Level to Model LEDs
Delta Function Potential Example
Determining Plank's Constant with LEDs
Diode Laser
Discrete Energy Levels in Bound States: Numerical Solutions
Double Slit Diffraction
Eigenstate Superposition
Electrons in a 2D lattice
Electrons: A Lattice Example
Encyclopedia of Laser Physics and Technology
Energy Band Creator
Energy Diagram Explorer
Essay Assignment System
Fermi Surface Database
Fluorescence Spectroscopy
From Cbits to Qbits: Teaching computer scientists quantum mechanics
From Einstein to Quantum Information
Gas Lamp Absorption
Gas Lamp Emission
Helium Neon Laser
How does Quantum Mechanics turn into Classical Mechanics?
Hydrogen Atom Applet
Hydrogen Spectroscopy
Hydrogen Spectroscopy II
HydrogenLab - Pictures of the Hydrogen Atom
IBM Scientists Make Breakthrough in Nanoscale Imaging
Identical Particles
Illinois PER: Materials Used in Our Introductory Courses
Infrared Detector Spectroscopy
Infrared Detector: Card Model
Institute for Quantum Information
Interactive Quantum Mechanics Exercises for Just-in-Time Teaching
Interference with Correlated Photons: Five Quantum Mechanics Experiments
International Journal of Quantum Information
Interpreting Wave Functions
Introduction to PET Physics
Introduction to Quantum Computing
Introduction to Quantum Mechanics
Introduction to Quantum Physics
Introductory Quantum Mechanics
Intuitive Quantum Physics
Investigating Student Understanding of Quantum Physics: Spontaneous Models of Conductivity
Investigation of Student Understanding of the Wave-Like Properties of Light and Matter
Laboratory-tutorial activities for teaching probability
Lecture Notes on Quantum Computation
Lectures on Quantum Computation
LED Constructor
LED's
Light and Waves
Many-Worlds Interpretation of Quantum Mechanics
Maple, Mathematica, and Matlab: the 3M's without the Tape
Matter Waves
Modeling Light Emission by Fluorescent Lamps
Modeling Light Emission to Explain Phosphorescence
Models of dephasing at low temperatures
Modern Physics Resource Packet
Modern Quantum Mechanics Experiments for Undergraduates
Molecular Orbits Applet
Multiple Slit Diffraction Model
NARST 1999: Research on Teaching and Learning Quantum Mechanics
New Faculty Workshop in Physics and Astronomy
Nine formulations of Quantum Mechanics
Nine Formulations of Quantum Mechanics: Lecture
Numerical Time Development in Quantum Mechanics Using a Reduced Hilbert Space Approach
Open Source and Open Access Resources for Quantum Physics Education
Open Source Physics
Open Source Physics Programs for Quantum Mechanics
Open Source Physics: Quantum Mechanical Measurement
Open Source Physics: Quantum Mechanical Superposition
Open Source Physics: Quantum Mechanics
Open Source Physics: Quantum Spins
OSP Quantum Mechanics: Measurement of Eignestates Worksheet
OSP Quantum Mechanics: Measurement of Two-State Superpositions Worksheet
OSP Quantum Mechanics: Measurement of Wave Packets Worksheet
OSP Quantum Mechanics: Multiple Measurments of Spin States Worksheet
OSP Quantum Mechanics: Single Measurments of Spin States Worksheet
Otto Stern, Nobel Prize 1943
Paradigms in Physics Summer Workshops 2006
PET Essentials E-training
Ph 125 Quantum Mechanics
PH425: Spin and Quantum Measurement
PhET Simulation: Band Structure
PhET Simulation: Davisson Germer: Electron Diffraction
PhET Simulation: Double Wells and Covalent Bonds
PhET Simulation: Fourier: Making Waves
PhET Simulation: Lasers
PhET Simulation: Neon Lights and Other Discharge Lamps
PhET Simulation: Nuclear Fission
PhET Simulation: Quantum Bound States
PhET Simulation: Quantum Physics
PhET Simulation: Quantum Tunneling
PhET Simulation: Quantum Wave Interference
PhET Simulation: Semiconductors
PhET Simulation: The Photoelectric Effect
PhET Simulation: Wave Interference
Phosphorescence
Photon Quantum Mechanics
Physics 2000
Physics 219: Quantum Computation
Physics Suite Sample Problems: Modern Physics
Physics Virtual Bookshelf
Physlet Problems Written or Adapted by Paul Zitzewitz
Physlets for Quantum Mechanics
Point Group Theory
Probability Illustrator
QM Carpet Program
QM Energy Measurement Program
QM Measurement Program
QM Momentum Carpet Program
QM Momentum Expectation Value Program
QM Momentum Measurement Program
QM Momentum Space Program
QM Position Expectation Value Program
QM Position Measurement Program
QM Probability Program
QM Superposition Program
QM Superposition Program Distribution
QM Wigner Program
Quantiki
Quantum Computer Simulator
Quantum Double Well
Quantum Experiments and The Foundation of Physics
Quantum Holography
Quantum Information Science Workshop
Quantum Interactive Learning Tutorials
Quantum Interference
Quantum Mechanical Models of Solids
Quantum Mechanical Scattering
Quantum Mechanics
Quantum mechanics for everyone: Hands-on activities integrated with technology
Quantum Mechanics Tutorials
Quantum Mechanics: Sum over paths
Quantum Microscopy and Quantum Systems Engineering: FAQ's
Quantum Motion
Quantum Motion in a Potential
Quantum Physics made Relatively Simple: Three Lectures by Hans Bethe
Quantum Physics Online
Quantum Physics Online: Quantization in one dimension
Quantum Physics Online: Quantization in three dimensions
Quantum Physics Online: Quantum superposition in one dimension
Quantum Physics Online: Quantum superposition in two dimensions
Quantum Physics Online: Spin 1/2
Quantum Physics Online: Wave Mechanics
Quantum Physics Resource Packet
Quantum Rigid Rotator Applet
Quantum Tic-Tac-Toe
Quantum Tic-Tac-Toe, Spooky-Coins, & Magic-Envelopes, as Metaphors for Relativistic Quantum Physics
Quantum Tunneling
Quantum Tunneling
Qwiki
Relative-State Formulation of Quantum Mechanics
Resources Students Use to Understand Quantum Mechanical Operators
RSPT Expansion
Ruby Laser
Simple Harmonic Motion Example
Single Slit Diffraction
Single Slit Diffraction
Solutions to the One-dimensional Time-independent Schrodinger Equation
Special Functions Model
Spectroscopy Lab Suite
Spherical Harmonics YLM Explorer
SPINS Java Homepage
Square Well Potential Example
Stern-Gerlach effect
Student Difficulties with Energy in Quantum Mechanics
Student Difficulties with Quantum Mechanics Formalism
Student Difficulties with Wave Concepts
Symbolic Mathematics Documents for Physical Chemistry
Symmetry and Degeneracy
Teaching Physics: Figuring Out What Works
Teaching Quantum Theory in the Introductory Course
The Basics of MRI
The end of the certain world: The life and science of Max Born
The Influence of Student Understanding of Classical Physics When Learning Quantum Mechanics
The Stern-Gerlach Experiment
The Teaching of Quantum Mechanics
The University of Virginia Virtual Lab
The Virtual Journal of Quantum Information
Two Source Interference
Understanding How Students Learn
Understanding Probabilistic Interpretations of Physical Systems: A Prerequisite to Learning Quantum Physics
Using a Computer-Rich Curriculum to Teach Quantum Mechanics
Visual Quantum Mechanics
Visual Quantum Mechanics
Visual Schrödinger: A Visualizer-Solver Applet for the One-Dimensional Schrödinger Equation
Visualizing Quantum Dynamics
Visualizing Quantum Mechanical Revivals
Wave Function Sketcher
Wave Packet Explorer
Wavepacket Tunneling through a Carbon Nanotube
Waves: An Interactive Tutorial
Web-based Quantum Mechanics II Course
Who needs to learn physics in the 21st century and why?
Wigner Quasi-probability Distribution for the Infinite Square Well
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