written by
the Kansas State Physics Education Research Group and Dean A. Zollman
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 double barrier. The width, initial position, and total energy of the wavefunction can all be changed as well. Dimensionless units are used.
<a href="https://www.compadre.org/quantum/items/detail.cfm?ID=1115">Kansas State Physics Education Research Group, and Dean Zollman. Quantum Motion.</a>
Kansas State Physics Education Research Group and D. Zollman, , WWW Document, (https://perg.phys.ksu.edu/vqmorig/programs/java/qumotion/quantum_motion.html).
Kansas State Physics Education Research Group and D. Zollman, Quantum Motion, <https://perg.phys.ksu.edu/vqmorig/programs/java/qumotion/quantum_motion.html>.
Kansas State Physics Education Research Group, & Zollman, D. (n.d.). Quantum Motion. Retrieved September 8, 2024, from https://perg.phys.ksu.edu/vqmorig/programs/java/qumotion/quantum_motion.html
Kansas State Physics Education Research Group, and Dean Zollman. Quantum Motion. https://perg.phys.ksu.edu/vqmorig/programs/java/qumotion/quantum_motion.html (accessed 8 September 2024).
Kansas State Physics Education Research Group, and Dean Zollman. Quantum Motion. 8 Sep. 2024 <https://perg.phys.ksu.edu/vqmorig/programs/java/qumotion/quantum_motion.html>.
@misc{
Author = "Kansas State Physics Education Research Group and Dean Zollman",
Title = {Quantum Motion},
Volume = {2024},
Number = {8 September 2024},
Year = {}
}
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%0 Electronic Source %A Kansas State Physics Education Research Group, %A Zollman, Dean %T Quantum Motion %V 2024 %N 8 September 2024 %9 application/java %U https://perg.phys.ksu.edu/vqmorig/programs/java/qumotion/quantum_motion.html
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