A generic solid, X, has a molar mass of 61.6 g/mol. In a constant-pressure calorimeter, 18.3 g of X is dissolved in 383 g of water at 23.00 degrees celsius. The temperature of the resulting solution rises to 29.10 degrees celsius. Assume the solution has the same specific heat as water, 4.184 J/(g degress celsius) and that there's negligible heat loss to the surroundings. X(s) --> X(aq) How much heat was absorbed by the solution? What is the enthalpy of the reaction?

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter5: Thermochemistry
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A generic solid, X, has a molar mass of 61.6 g/mol.

In a constant-pressure calorimeter, 18.3 g of X is dissolved in 383 g of water at 23.00 degrees celsius.

The temperature of the resulting solution rises to 29.10 degrees celsius.

Assume the solution has the same specific heat as water, 4.184 J/(g degress celsius) and that there's negligible heat loss to the surroundings.

X(s) --> X(aq)

How much heat was absorbed by the solution?

What is the enthalpy of the reaction?

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