For the step potential function shown in Figure P2.33, assume that E > V, and that particles are incident from the +x direction traveling in the wave solutions for each region. (b) Derive expressions for the transmission and reflec- -x direction. (a) Write the tion coefficients.
For the step potential function shown in Figure P2.33, assume that E > V, and that particles are incident from the +x direction traveling in the wave solutions for each region. (b) Derive expressions for the transmission and reflec- -x direction. (a) Write the tion coefficients.
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
Transcribed Image Text:Incident particles
Vo
x = 0
+x –
Figure P2.33 | Potential
function for Problem 2.33.

Transcribed Image Text:For the step potential function shown in Figure P2.33, assume that E > Vo and that
particles are incident from the +x direction traveling in the -x direction. (a) Write the
wave solutions for each region. (b) Derive expressions for the transmission and reflec-
tion coefficients.
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