In the laboratory, a general chemistry student finds that when 0.61 g of MgCl2(s) are dissolved in 118.50 g of water, the temperature of the solution increases from 25.92 to 28.06 °C. The heat capacity of the calorimeter (sometimes referred to as the calorimeter constant) was determined in a separate experiment to be 1.67 J/°C. Based on the student's observation, calculate the enthalpy of dissolution of MgCl2(s) in kJ/mol. Assume the specific heat of the solution is equal to the specific heat of water. ΔHdissolution = ________ kJ/mol
When a solid dissolves in water, heat may be evolved or absorbed. The heat of dissolution (dissolving) can be determined using a coffee cup calorimeter.
In the laboratory, a general chemistry student finds that when 0.61 g of MgCl2(s) are dissolved in 118.50 g of water, the temperature of the solution increases from 25.92 to 28.06 °C.
The heat capacity of the calorimeter (sometimes referred to as the calorimeter constant) was determined in a separate experiment to be 1.67 J/°C.
Based on the student's observation, calculate the enthalpy of dissolution of MgCl2(s) in kJ/mol.
Assume the specific heat of the solution is equal to the specific heat of water.
ΔHdissolution = ________ kJ/mol
data:image/s3,"s3://crabby-images/da547/da54729a3f9aadb14343d36745ac9369bce33180" alt="When a solid dissolves in water, heat may be evolved or
absorbed. The heat of dissolution (dissolving) can be
determined using a coffee cup calorimeter.
Thermometer
In the laboratory a general chemistry student finds that when
0.61 g of MgCl (s) are dissolved in 118.50 g of water, the
Cardboard or
Styrofoam lid
temperature of the solution increases from 25.92 to 28.06
°C.
The heat capacity of the calorimeter (sometimes referred to
as the calorimeter constant) was determined in a separate
experiment to be 1.67 J/°C.
Nested
Styrofoam cups
Based on the student's observation, calculate the enthalpy of
dissolution of MgCl2(s) in kJ/mol.
- Reaction
occurs in
solution.
Assume the specific heat of the solution is equal to the
specific heat of water.
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