Consider the proton to be a spherical shell of charge of radius R. Using first order perturbation theory calculate the change in the binding energy of hydrogen due to the non-point-like nature of the proton. Does the sign of your answer make sense physically? Explain. Note: You may use the approximation R « ao throughout this problem, where ao is the Buhr radius.
Consider the proton to be a spherical shell of charge of radius R. Using first order perturbation theory calculate the change in the binding energy of hydrogen due to the non-point-like nature of the proton. Does the sign of your answer make sense physically? Explain. Note: You may use the approximation R « ao throughout this problem, where ao is the Buhr radius.
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![Consider the proton to be a spherical shell of charge of radius R. Using
first order perturbation theory calculate the change in the binding energy
of hydrogen due to the non-point-like nature of the proton. Does the sign
of your answer make sense physically? Explain.
Note: You may use the approximation R « ao throughout this problem,
where ao is the Buhr radius.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9dbe35cd-1685-4370-b5db-991183794b07%2Fe13d124e-7c05-4bd5-8dee-6558868301cb%2Fjlw2hcd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider the proton to be a spherical shell of charge of radius R. Using
first order perturbation theory calculate the change in the binding energy
of hydrogen due to the non-point-like nature of the proton. Does the sign
of your answer make sense physically? Explain.
Note: You may use the approximation R « ao throughout this problem,
where ao is the Buhr radius.
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