Electrons in the lower of two spin states in a magnetic field can absorb a photon of the right frequency and move to the higher state. Part A Find the magnetic field magnitude B required for this transition in a hydrogen atom with n = 1 and 1 = 0 to be induced by microwaves with wavelength > Express your answer in terms of the variables λ, m, e, and c. ΕΠΙ ΑΣΦ ? ΔΕ B = eħ 2 2m Submit Previous Answers Request Answer × Incorrect; Try Again; 4 attempts remaining Part B Calculate the value of B for a wavelength of 4.10 cm. Express your answer with the appropriate units. με B = Value Units Submit Request Answer ?

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Electrons in the lower of two spin states in a magnetic field can absorb a
photon of the right frequency and move to the higher state.
Part A
Find the magnetic field magnitude B required for this transition in a hydrogen atom with n = 1 and 1 = 0 to be induced by microwaves with wavelength >
Express your answer in terms of the variables λ, m, e, and c.
ΕΠΙ ΑΣΦ
?
ΔΕ
B =
eħ
2
2m
Submit Previous Answers Request Answer
× Incorrect; Try Again; 4 attempts remaining
Part B
Calculate the value of B for a wavelength of 4.10 cm.
Express your answer with the appropriate units.
με
B =
Value
Units
Submit
Request Answer
?
Transcribed Image Text:Electrons in the lower of two spin states in a magnetic field can absorb a photon of the right frequency and move to the higher state. Part A Find the magnetic field magnitude B required for this transition in a hydrogen atom with n = 1 and 1 = 0 to be induced by microwaves with wavelength > Express your answer in terms of the variables λ, m, e, and c. ΕΠΙ ΑΣΦ ? ΔΕ B = eħ 2 2m Submit Previous Answers Request Answer × Incorrect; Try Again; 4 attempts remaining Part B Calculate the value of B for a wavelength of 4.10 cm. Express your answer with the appropriate units. με B = Value Units Submit Request Answer ?
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