hw(v +1/2)- hwxe(v+1/2)-E Using the equation for the energy levels of a morse operator A.) Derive an expression for the energy of an allowed transition. B.)In the infrared spectrum for C 0, a transition is observed at 2143.26 cm^-1 and 4260.04cm^-1. What energy levels do these transitions

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hw(v + 1/2)- hwxe(v+ 1/2)- =E Using the equation for the energy levels of a morse operator A.)
Derive an expression for the energy of an allowed transition. B.)In the infrared spectrum for 2C0, a
transition is observed at 2143.26 cm^-1 and 4260.04cm^-1. What energy levels do these transitions
correspond to? Why does this happen? C.) Assume that the morse energy level applies, and determine
values for hw and hwXe in wavenumber (cm^-1). D.) Determine the values for k, De, and DO.
Transcribed Image Text:hw(v + 1/2)- hwxe(v+ 1/2)- =E Using the equation for the energy levels of a morse operator A.) Derive an expression for the energy of an allowed transition. B.)In the infrared spectrum for 2C0, a transition is observed at 2143.26 cm^-1 and 4260.04cm^-1. What energy levels do these transitions correspond to? Why does this happen? C.) Assume that the morse energy level applies, and determine values for hw and hwXe in wavenumber (cm^-1). D.) Determine the values for k, De, and DO.
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