Mastering Physics with Pearson eText -- Standalone Access Card -- for Essential University Physics (3rd Edition)
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Chapter 36, Problem 71P
To determine

The average radial speed for an electron in ground state.

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At time t = 0 the wave function of the hydrogen atom is: where we ignore the spin.(a) Calculate the expected value of energy for this system.(b) What is the probability of finding the system at l = 1, m = +1 as a function of time?(c) What is the probability of finding the electron around 10−10 cm from the proton, at t = 0s (canapproximate).(d) Write the time-dependent wave function: ψ (r,t)
The product of the two provided equations (with Z = 1) is the ground state wave function for hydrogen. Find an expression for the radial probability density and show that the expection value for r (for the ground state) is <r> = 3a0/2.
The Rydberg constant for a Hydrogen atom is R = 1.097 x 107 m-1. What is the ionisation energy of Hydrogen? Select one: a. 13.6 eV b. 7.8 eV c. 5.7 eV d. 10.6 eV

Chapter 36 Solutions

Mastering Physics with Pearson eText -- Standalone Access Card -- for Essential University Physics (3rd Edition)

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