Consider the simple model of the hydrogen atom with the single electron that can only exist in allowed circular orbits around the proton. The radius of each orbit is r = (0.0529 nm)n², with n = 1, 2, 3, .... Calculate the electric potential energy when the electron (a) is in the second orbit, with n = 2, and (b) has escaped from the atom, with n → ∞0. %3!

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
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Chapter6: Applications Of Newton's Laws
Section: Chapter Questions
Problem 74P: In the simple Bohr model of the ground state of the hydrogen atom, the electron travels in a...
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Consider the simple model of the hydrogen atom with the single electron that can
only exist in allowed circular orbits around the proton. The radius of each orbit is r= (0.0529
nm)n?, with n = 1, 2, 3, .... Calculate the electric potential energy when the electron (a) is in
the second orbit, with n = 2, and (b) has escaped from the atom, with n→ .
Transcribed Image Text:Consider the simple model of the hydrogen atom with the single electron that can only exist in allowed circular orbits around the proton. The radius of each orbit is r= (0.0529 nm)n?, with n = 1, 2, 3, .... Calculate the electric potential energy when the electron (a) is in the second orbit, with n = 2, and (b) has escaped from the atom, with n→ .
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