a) Calculate the characteristic temperature associated with a vibrational energy level transition of angular frequency w = = 2x10¹³ rad s¹. b. A process "freezes out" at temperatures below 42 K. Calculate the typical energy associated with this process.
a) Calculate the characteristic temperature associated with a vibrational energy level transition of angular frequency w = = 2x10¹³ rad s¹. b. A process "freezes out" at temperatures below 42 K. Calculate the typical energy associated with this process.
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a) Calculate the characteristic temperature associated with a vibrational energy level transition of angular frequency ω = 2×1013 rad s-1 .
b). A process “freezes out” at temperatures below 42 K. Calculate the typical energy associated with this process.

Transcribed Image Text:a) Calculate the characteristic temperature associated with a vibrational energy level transition of
angular frequency w = 2×10¹³ rad s¨¹.
b. A process "freezes out" at temperatures below 42 K. Calculate the typical energy associated with
this process.
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