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When 1.0g of oxalic acid (H(2)C(2)O(4)) ...

When `1.0g` of oxalic acid `(H_(2)C_(2)O_(4))` is burnt in a bomb calorimeter whose heat capacity is `8.75 kJ//K`, the temperature increases by 0.312 K. The enthalpy of combustion of oxalic acid at `27^(@)C` is

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When 1.0g of oxalic acid (H_(2)C_(2)O_(4)) is burned in a bomb calorimeter whose heat capacity is 8.75kJ/K, the temperature increases by 0.312K. The enthalpy of combustion of oxalic acid at 27^(@)C

When 1.0 g of oxalic acid (H_(2)C_(2)O_(4)) is burnt in a bomb calorimeter whose capacity is 8.75 KJ/K, the temperature increases by 0.312 K, the enthalpy of combustion of oxalic acid at 27^(@)C is :

When 1.0 g of oxalic acid (H_(2)C_(2)O_(4)) is burnt in a bomb calorimeter whose capacity is 8.75 KJ/K, the temperature increases by 0.312K, the enthalpy of combustion of oxalic acid at 27^(@)C is :

When 1.0 g of oxalic acid (H_(2)C_(2)O_(4)) is burnt in a bomb calorimeter whose capacity is 8.75 KJ/K, the enthalpy of combustion of oxalic acid at 27^(@)C is :

When 0.36 g of glucose was burned in a bomb calorimeter ( Heat capacity 600 JK^(-1) )the temperature rise by 10 K. Calculate the standard molar enthalpy of combustion (MJ/mole).

When 0.36 g of glucose was burned in a bomb calorimeter ( Heat capacity 600 JK^(-1) )the temperature rise by 10 K. Calculate the standard molar enthalpy of combustion (MJ/mole).

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When 1.0 gm of fructose C_(6) H_(12) O_(6) (s) is burnt in oxygen in a bomb calorimeter, the temperature of the calorimeter water increases by 1.56^(@)C . If the heat capacity of the calorimeter and its contents is 10.0 kJ//^(@)C . Calculate the enthalpy of combustion of fructose at 298 K.