Under a constant pressure of 1.00 atm, at 25.00oC, the combustion of 1.136 g of C6H12O3(l) raises the temperature of 2.000 kg of water by 2.617 degrees Celsius. Combustion is the reaction of a substance with O2(g) to give CO2(g) and H2O(l). The specific heat capacity of water is 4.184 J K-1 g-1. Ignore the heat capacities of any containers. With the help of the data above, find the values of ΔH, ΔU, Q, and W for the combustion of 1.000 mol of C6H12O3(l) in a steel container of constant volume at 25.00oC.

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Under a constant pressure of 1.00 atm, at 25.00oC, the combustion of 1.136 g of C6H12O3(l) raises the temperature of 2.000 kg of water by 2.617 degrees Celsius. Combustion is the reaction of a substance with O2(g) to give CO2(g) and H2O(l). The specific heat capacity of water is 4.184 J K-1 g-1. Ignore the heat capacities of any containers.

With the help of the data above, find the values of ΔH, ΔU, Q, and W for the combustion of 1.000 mol of C6H12O3(l) in a steel container of constant volume at 25.00oC.

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