A 33.5-ml sample of benzene at 39.2°C was cooled to its melting point, 5.5 °C, and then frozen at 5.5 "C. Calculate the quantity of energy U) transferred to the surroundings in this process. Sign matters! The density of benzene is 0.876 g/mL. The specific heat capacity of the liquid is 1.74 J g¹ K¹, Its fusion enthalpy is 127 J/g.

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter5: Principles Of Chemical Reactivity: Energy And Chemical Reactions
Section5.2: Specific Heat Capacity: Heating And Cooling
Problem 5.1CYU: You did an experiment in which you found that 59.8 J was required to raise the temperature of 25.0 g...
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A 33.5-mL sample of benzene at 39.2°C was cooled to its melting point, 5.5 °C, and then frozen at 5.5 "C. Calculate the
quantity of energy U) transferred to the surroundings in this process. Sign matters!
The density of benzene is 0.876 g/mL. The specific heat capacity of the liquid is 1.74 Jg¹K¹, Its fusion enthalpy is 127
J/g.
Transcribed Image Text:A 33.5-mL sample of benzene at 39.2°C was cooled to its melting point, 5.5 °C, and then frozen at 5.5 "C. Calculate the quantity of energy U) transferred to the surroundings in this process. Sign matters! The density of benzene is 0.876 g/mL. The specific heat capacity of the liquid is 1.74 Jg¹K¹, Its fusion enthalpy is 127 J/g.
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