A particle is confined between rigid walls separated by a distance L-0.189 nm. The particle is in the fifth excited state (n = 6). Evaluate the probability to find the particle in an interval of width 2.00 pm at the following locations. (Hint: No integrations are required for this prablem; use Equation 5.4 directiy.) What would be the corresponding results for a classical particle? Equation 5.4 quantum classical (e) x0.180 nm (b) 0.031 nm (c) 0.079 nm
A particle is confined between rigid walls separated by a distance L-0.189 nm. The particle is in the fifth excited state (n = 6). Evaluate the probability to find the particle in an interval of width 2.00 pm at the following locations. (Hint: No integrations are required for this prablem; use Equation 5.4 directiy.) What would be the corresponding results for a classical particle? Equation 5.4 quantum classical (e) x0.180 nm (b) 0.031 nm (c) 0.079 nm
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
Transcribed Image Text:A particle is confined between rigid walls separated by a distance L-0.189 nm. The particle is in the fifth excited state (n = 6). Evaluate the probability to find the particle
in an interval of width 2.00 pm at the following locations. (Hint: No integrations are required for this prablem; use Equation 5.4 directly.) What would be the corresponding
results for a classical particle?
Equation 5.4
quantum
classical
(e)x0.180 nm
(b) x 0.031 nm
(c) x 0.079 nm
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