5) The latent heat of fusion of water at 0 °C is 6.025 kJ mol and the molar heat capacities P.m) of water and ice are 57.3 and 73.7 J K 'mol, respectively. Calculate AH for the freezing # 1 mol of supercooled water at -10.0 °C. B) -7335 J -) -6189 J mol¹ B) -7335 J mol-¹ 0.0 (A) mol¹ C) 7335 J mol¹ D) -4715 J mol¹ E) -6459 J mol-¹ (16) All of the following are false about reversible adiabatic process except:mo A) Temperature will increase due to expansion. B) Change in internal energy due to work and heat. C) Temperature will decrease due to compression. D) No heat can leave the system. E) Heat can come to system.

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R$ 280 16,0241/1 10 nomie 14.10.0.
5) The latent heat of fusion of water at 0 °C is 6.025 kJ mol and the molar heat capacities
CPm) of water and ice are 57.3 and 73.7 J K 'mol, respectively. Calculate AH for the freezing
f 1 mol of supercooled water at -10.0 °C.
A) -6189 J mol
(A)
B) -7335 J mol-¹ C) 7335 J mol¹¹ D) -4715 J mol¹
E) -6459 J mol-¹
inn
(16) All of the following are false about reversible adiabatic process except: motorb
A) Temperature will increase due to expansion.
B) Change in internal energy due to work and heat.
C) Temperature will decrease due to compression.
D) No heat can leave the system.
E) Heat can come to system.
Transcribed Image Text:R$ 280 16,0241/1 10 nomie 14.10.0. 5) The latent heat of fusion of water at 0 °C is 6.025 kJ mol and the molar heat capacities CPm) of water and ice are 57.3 and 73.7 J K 'mol, respectively. Calculate AH for the freezing f 1 mol of supercooled water at -10.0 °C. A) -6189 J mol (A) B) -7335 J mol-¹ C) 7335 J mol¹¹ D) -4715 J mol¹ E) -6459 J mol-¹ inn (16) All of the following are false about reversible adiabatic process except: motorb A) Temperature will increase due to expansion. B) Change in internal energy due to work and heat. C) Temperature will decrease due to compression. D) No heat can leave the system. E) Heat can come to system.
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