A student runs two experiments with a constant-volume "bomb" calorimeter containing 1000.g of water (see sketch at right). First, a 7.500g  tablet of benzoic acid  C6H5CO2H  is put into the "bomb" and burned completely in an excess of oxygen. (Benzoic acid is known to have a heat of combustion of  /26.454kJg .) The temperature of the water is observed to rise from  24.00°C  to  71.24°C  over a time of  7.0  minutes.   Next,5.020g of ethanol C2H5OH are put into the "bomb" and similarly completely burned in an excess of oxygen. This time the temperature of the water rises from 24.00°C to  53.47°C.   C2H5OHl + 3O2g -> 2CO2g + 3H2Og Be sure any of your answers that are calculated from measured data are rounded to the correct number of significant digits. Is this reaction exothermic, endothermic, or neither? If you said the reaction was exothermic or endothermic, calculate the amount of heat that was released or absorbed by the reaction in the second experiment. Calculate the reaction enthalpy ΔHrxn per mole of CO2.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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A student runs two experiments with a constant-volume "bomb" calorimeter containing
1000.g
of water (see sketch at right).

First, a

7.500g
 tablet of benzoic acid 
C6H5CO2H
 is put into the "bomb" and burned completely in an excess of oxygen. (Benzoic acid is known to have a heat of combustion of 
/26.454kJg
.) The temperature of the water is observed to rise from 
24.00°C
 to 
71.24°C
 over a time of 
7.0
 minutes.

 

Next,5.020g of ethanol C2H5OH are put into the "bomb" and similarly completely burned in an excess of oxygen. This time the temperature of the water rises from 24.00°C to  53.47°C.

 
C2H5OHl + 3O2g -> 2CO2g + 3H2Og

Be sure any of your answers that are calculated from measured data are rounded to the correct number of significant digits.

Is this reaction exothermic, endothermic, or neither?

If you said the reaction was exothermic or endothermic, calculate the amount of heat that was released or absorbed by the reaction in the second experiment.

Calculate the reaction enthalpy ΔHrxn per mole of CO2.

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