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Results #1-#10 of 47
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Barrier Scattering Model  [ Computer Program ]
  
Match Score:
100
Byline:
W. Christian
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The Barrier Scattering model computes the 1D quantum scattering-state wave function and shows its time evolution for an arbitrary potential V(x) on the interval [xmin,xmax]. It is a…
Free Gaussian Wave Packet  [ Computer Program ]
  
Match Score:
100
Byline:
J. Palop
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The Free Gaussian Wave Packet model simulates the time evolution of a free-particle Gaussian wave packet in position and k (momentum) space.  The position-space and k-space…
Two Dimensional Schrodinger Equation  [ Computer Program ]
  
Match Score:
100
Byline:
J. Palop
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The Two Dimensional Schrodinger Equation model simulates the time evolution of a two-dimensional wave packet as it moves towards a slit with an obstacle in it, both with variable…
  
Match Score:
100
Byline:
Kansas State Physics Education Research Group and D. Zollman
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This resource, part of the Spectroscopy Lab Suite, simulates optical transitions in solids. Emission spectra from different color Light Emitting Diodes are shown. Students can create…
  
Match Score:
100
Byline:
Kansas State Physics Education Research Group and D. Zollman
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This resource illustrates the motion of a Gaussian wavepacket in one dimension scattering off of a barrier. The shape and size of the barrier can be changed, including creating a…
  
Match Score:
100
Byline:
Kansas State Physics Education Research Group and D. Zollman
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This resource illustrates the physics of quantum tunneling in one dimension. Single and double barriers of various shapes can be used. The wavefunction, probability, and…
  
Match Score:
100
Byline:
Kansas State Physics Education Research Group, D. Zollman, and N. Rebello
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This resource illustrates the construction of scattering state wavefunctions in one dimension for a piece-wise constant potential. A barrier or well can be created from two potential…
  
Match Score:
100
Byline:
Kansas State Physics Education Research Group and D. Zollman
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This resource illustrates the construction of wave packet states from the superposition of plane waves. The user can add together different amplitudes of waves in either momentum or…
  
Match Score:
100
Byline:
K. Michielsen and H. De Raedt
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This web page illustrates the Stern-Gerlach effect on spin 1/2 particles. Movies and an illustration show the time-dependent properties of wavepackets in an inhomogeneous magnetic…
  
Match Score:
100
Byline:
K. Michielsen and H. De Raedt
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This web page illustrates the tunneling of a quantum wavepacket through potential barriers. Movies show the time-dependent properties of wavepackets interacting with various…
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Results #1-#10 of 47