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Answer :
Final answer:
The wavelength of a photon emitted when an electron makes a transition from one energy state to another in a hydrogen atom can be calculated, but the given data isn’t sufficient to determine the exact wavelength in this case.
Explanation:
The wavelength of a photon emitted during a transition from ni = 5 to nf = 4 state in the hydrogen atom is determined by the difference in energy levels of the two states, which when input into the equation λ = hc/E, can help in solving the wavelength in nanometers. Here, E refers to the energy difference, h is Planck's constant and c is the speed of light. However, to determine the energy difference, data provided isn't enough to solve for the final answer therefore one can’t determine which among the options (A) 97.3 nm, (B) 121 nm, (C) 194 nm, and (D) 656 nm is correct.
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