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Results #1-#8 of 8
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Match Score:
100
Byline:
Publisher: Physics 2000
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This page, from Physics 2000, contains a discussion of wave/particle duality. The Bohr model of the atom and quantization of electron energies are also described, and concepts such…
  
Match Score:
100
Byline:
Publisher: Physics Education Technology Project
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This PhET simulation, from the University of Colorado, allows you to explore the properties of water, sound, and light waves. you can measure the wave speed with a stopwatch and…
  
Match Score:
100
Byline:
Publisher: Physics Education Technology Project
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With this PhET simulation, you can explore quantum bound states in double potential wells. You can interactively change features such as the width, spacing, and height of the wells,…
  
Match Score:
100
Byline:
Publisher: Physics Education Technology Project
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This PhET simulation allows you to study Fourier series expansions of waves--one example is the overtone series in a musical instrument. You can select amplitudes of up to 11…
  
Match Score:
100
Byline:
Publisher: Physics Education Technology Project
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This webpage contains an interactive simulation that replicates the Davisson-Germer experiment of electron diffraction off of materials, a historically important verification of the…
  
Match Score:
100
Byline:
Publisher: Physics Education Technology Project
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This webpage contains an interactive simulation that allows students to explore quantum interference of photons and matter particles. The simulation allows the user to shoot either a…
  
Match Score:
100
Byline:
Publisher: Physics Education Technology Project
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This PhET interactive simulation allows you to explore how quantum mechanics describes what happens when a subatomic particle approaches a "potential barrier." The particle is…
  
Match Score:
100
Byline:
Kansas State Physics Education Research Group and D. Zollman
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Try out double-slit interference on this site. You'll see elegant interference patterns and find out what happens as you change the wavelength, the source separation and the phase.