er a magnetic field can influence the heat capacity of a paramagnetic molecule by calculating the electronic contribution to the heat capacity of an NO2 molecule in a magnetic field. Estimate the total constantvolume heat capacity using equipartition, and calculate the percentage change in heat capacity brought about by a 5.0T magnetic field
er a magnetic field can influence the heat capacity of a paramagnetic molecule by calculating the electronic contribution to the heat capacity of an NO2 molecule in a magnetic field. Estimate the total constantvolume heat capacity using equipartition, and calculate the percentage change in heat capacity brought about by a 5.0T magnetic field
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P13E.2 Explore whether a magnetic field can influence the heat capacity of a paramagnetic molecule by calculating the electronic contribution to the heat capacity of an NO2 molecule in a magnetic field. Estimate the total constantvolume heat capacity using equipartition, and calculate the percentage change in heat capacity brought about by a 5.0T magnetic field at (a) 50K, (b) 298K. Hints: Recall that NO2 has one unpaired electron. Assume that the sample is in the gas phase at 50K and 298K
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