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The force constant for the 1H35Cl molecule is 516 N/m. (a) Calculate the vibrational zero-point energy...

The force constant for the 1H35Cl molecule is 516 N/m. (a) Calculate the vibrational zero-point energy of this molecule. (b) If this amount of energy could somehow be converted to translational energy, how fast would the molecule be moving? (a) E = _____________________________ J (b) v = ___________________________ m/s The moment of inertia, I, of this molecule is 2.644 x 10-47kg m2. What are the frequencies of light corresponding to the lowest energy (c) pure vibrational and (d) pure rotational transitions?

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notational K.E. - I IW? 2,981x10o = w2 2.664 x 16h7 3.357X103 o w ang focy w = 3.357 X 10² radians I sec. also we know: ke tmFor last , calculations some data is needed.

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