12C32S has an equilibrium bond length of 1.38 . You may assume it to be a...
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12C32S has an equilibrium bond length of 1.38 . You may assume it to be a linear rotor with no centrifugal distortion. (i) Calculate the moment of inertia for this molecule. (ii) Calculate the energy in cm of the J=98 transition of the pure rotational spectrum of 12C32S. (iii) Using the rigid rotor rotational constant, B, value you obtained in part (ii), calculate the most intense spectral transition expected in the 2C2S rotational spectrum at 60C 12C32S has an equilibrium bond length of 1.38 . You may assume it to be a linear rotor with no centrifugal distortion. (i) Calculate the moment of inertia for this molecule. (ii) Calculate the energy in cm of the J=98 transition of the pure rotational spectrum of 12C32S. (iii) Using the rigid rotor rotational constant, B, value you obtained in part (ii), calculate the most intense spectral transition expected in the 2C2S rotational spectrum at 60C
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