Adding 5.47 g of to 140 g of water in a coffee-cup calorimeter (with stirring to dissolve the salt) resulted in a decrease in temperature from 19.7 °C to 17.1 °C. Calculate the enthalpy change for dissolving in water in kJ/mol. Assume the solution (whose mass is 145.5 g) has a specific heat capacity of 4.2 J/g · K. (Cold packs take advantage of the fact that dissolving ammonium nitrate in water is an endothermic process.)   A cold pack uses the endothe

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter5: Principles Of Chemical Reactivity: Energy And Chemical Reactions
Section: Chapter Questions
Problem 41PS: Adding 5.44 g of NH4NO3(s) to 150.0 g of water in a coffee-cup calorimeter (with stirring to...
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Adding 5.47 g of to 140 g of water in a coffee-cup calorimeter (with stirring to dissolve the salt) resulted in a decrease in temperature from 19.7 °C to 17.1 °C. Calculate the enthalpy change for dissolving in water in kJ/mol. Assume the solution (whose mass is 145.5 g) has a specific heat capacity of 4.2 J/g · K. (Cold packs take advantage of the fact that dissolving ammonium nitrate in water is an endothermic process.)

 

A cold pack uses the endothermic enthalpy of a solution of ammonium nitrate.

Enthalpy change =  how many kJ/mol

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