An electron is trapped in a finite well of width 0.5 nm and depth of 50...
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An electron is trapped in a finite well of width 0.5 nm and depth of 50 eV. The wavefunction is symmetric about the center of the well (x = 0.25 nm). If the electron has energy 29.66 eV and (0) = 1.42 (nm)/2, then what is the probability for finding the particle in the left half of the well (0 <x< 0.25 nm)? Note: Here we want probability value between 0 and 1, corresponding to the range between 0% and 100%. h( 27) P(0 < x< 0.25 nm) = Remember that i %3D >50 cV O cV -0.2 -0.1 p.1 0.3 0.4 05 0.6 0.7 An electron is trapped in a finite well of width 0.5 nm and depth of 50 eV. The wavefunction is symmetric about the center of the well (x = 0.25 nm). If the electron has energy 29.66 eV and (0) = 1.42 (nm)/2, then what is the probability for finding the particle in the left half of the well (0 <x< 0.25 nm)? Note: Here we want probability value between 0 and 1, corresponding to the range between 0% and 100%. h( 27) P(0 < x< 0.25 nm) = Remember that i %3D >50 cV O cV -0.2 -0.1 p.1 0.3 0.4 05 0.6 0.7
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625 rnn n lss3n ev 142 I ir cose n dx Heve porential enevgy 2 C 25 x ta sin kn ... View the full answer
Related Book For
Probability & Statistics for Engineers & Scientists
ISBN: 978-0130415295
7th Edition
Authors: Ronald E. Walpole, Raymond H. Myers, Sharon L. Myers, Keying
Posted Date:
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