Treat a vibrating HI molecule as a stationary Iodine atom with the Hydrogen atom oscillating towards and away from the Iodine atom. a. Calculate the vibrational frequency and zero-point energy of the molecule given that the force constant of the HI bond is 314 Nm".

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2. Treat a vibrating HI molecule as a stationary Iodine atom with the Hydrogen atom oscillating
towards and away from the Iodine atom.
a. Calculate the vibrational frequency and zero-point energy of the molecule given that the
force constant of the HI bond is 314 N m.
Transcribed Image Text:2. Treat a vibrating HI molecule as a stationary Iodine atom with the Hydrogen atom oscillating towards and away from the Iodine atom. a. Calculate the vibrational frequency and zero-point energy of the molecule given that the force constant of the HI bond is 314 N m.
b. Would you expect the vibrational frequency to change if the system is in an excited state
and why or why not?
Transcribed Image Text:b. Would you expect the vibrational frequency to change if the system is in an excited state and why or why not?
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