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The heat capacity of 2- chloro- 6- (trichloromethyl)pyridine has heen measured with anadiabatic calorimeter in the range from 13 to 316K. There is no indication of any phasetransition or thermal anomaly in this temperature region for the present compound. Theresults have been compared with those reported in [1] in the overlapping temperaturerange. The experimental heat capacity data have been fitted to a smoothed curve by the aidof the effective frequency distribution method, and the heat capacities below 13K have beenobtained by extrapolating the fitting curve down to 0K. The standard molar thermodynamicfunctions between 0 and 400 K have been derived by combining the present heat capacitymeasurements with the previous ones. The values of C_p~o (T), S~o(T) - S~o(0), [H~o(T) -H~o(0)]/T, and - [G~o(T) - H~o(0)]/T at T = 298.15 K are 189.35, 244.60, 112 .45 and 132.15J·K~(-1)·mol~(-1), respectively.
The heat capacity of 2-chloro- 6- (trichloromethyl) pyridine with heen measured with anadiabatic calorimeter in the range from 13 to 316K. There is no indication of any phase transition or thermal anomaly in this temperature region for the present compound. Theres have have been compared with those reported in [1] in the overlapping temperaturerange. The experimental heat capacity data have been fitted to a smoothed curve by the aidof the effective frequency distribution method, and the heat storage below 13K have been obtained by extrapolating the fitting curve down to 0K . The standard molar thermodynamicfunctions between 0 and 400 K have been derived by combining the present heat capacity measures with the previous ones. The values of C_p ~ o (T), S ~ o (T) -S 0 (0), [H ~ 0 T - H ~ o 0 / T, and - [G ~ o T - H ~ o 0 / T at T = 298.15 K are 189.35, 244.60, 112 .45 and 132.15 J · K ~ (-1) · mol ~ (-1), respectively.