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November 2011

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Results #1-#10 of 14
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Circular Well Model  [ Computer Program ]
  
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100
Byline:
W. Christian
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The Circular Well model displays the 2D energy eigenstates of a particle trapped in a very deep two-dimensional circular well.  Because the Schrödinger equation for this system is…
Rectangular Well Superposition Model  [ Computer Program ]
  
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W. Christian
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The Rectangular Well Eigenstate Superposition model displays the time evolution of the position-space wave function in an infinite 2D rectangular well using a superposition of energy…
Rectangular Well Model  [ Computer Program ]
  
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100
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W. Christian
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The Rectangular Well model displays the 2D energy eigenstates of a particle trapped in a very deep two-dimensional rectangular well.  Because the Schrödinger equation for this system…
Special Functions Model  [ Computer Program ]
  
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100
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W. Christian
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EJS Special Functions Model shows how to access special functions in the OSP numerics package. The simulation displays a graph of the special function over the given range as well as…
Eigenstate Superposition Model  [ Computer Program ]
  
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W. Christian
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The Eigenstate Superposition model illustrates the fundamental building blocks of one-dimensional quantum mechanics, the energy eigenfunctions ψ n (x) and energy eigenvalues E n…
Dirac Delta Scattering Model  [ Computer Program ]
  
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100
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W. Christian
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The Ejs Dirac Delta Scattering model displays the time evolution of a plane wave incident on a Dirac delta function barrier. The default wave function shows a right-moving plane wave…
Free Particle Wavepacket Model  [ Computer Program ]
  
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100
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W. Christian
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The Ejs Free Particle Wavepacket model displays the time evolution of a free (V = 0 everywhere) initial Gaussian wave packet in position and momentum space. The default wave…
Shooting Method Model  [ Computer Program ]
  
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100
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W. Christian
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The Ejs Shooting Method model displays the solution to the time-independent Schrödinger equation determined via the shooting method. The default potential energy function is a…
Making Quantum Mechanics Visual and Interactive  [ Conference Proceedings ]
  
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W. Christian
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W. Christian, Multimedia in Physics Teaching and Learning (2015).
This presentation describes class-tested curricular material that use interactive Open Source Physics (OSP) based curricular material in support the teaching of quantum mechanics.…
Bound Eigenstate Superposition JS Model  [ Computer Program ]
  
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100
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W. Christian
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The Bound Eigenstate Superposition JavaScript Model illustrates the fundamental building blocks of one-dimensional quantum mechanics, the energy eigenfunctions  Psi n (x) and energy…
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Results #1-#10 of 14

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