3. Given that: 2CH;OH (I) + 302 (g) → 2CO2 (g) + 4H2O (I) AH = -1452 kJ A 2.00 g sample of methanol, CH3OH, is burned in a constant volume bomb calorimeter that has a heat capacity of 1340 J °C'. If the calorimeter contains 500 g of water and the initial temperature of the calorimeter is 25 °C, calculate the final temperature of the calorimeter.

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3. Given that:
2CH3OH (I) + 302 (g) → 2CO2 (g) + 4H2O (I)
AH = -1452 kJ
A 2.00 g sample of methanol, CH3OH, is burned in a constant volume bomb calorimeter
that has a heat capacity of 1340 J °C'. If the calorimeter contains 500 g of water and
the initial temperature of the calorimeter is 25 °C, calculate the final temperature of the
calorimeter.
Transcribed Image Text:3. Given that: 2CH3OH (I) + 302 (g) → 2CO2 (g) + 4H2O (I) AH = -1452 kJ A 2.00 g sample of methanol, CH3OH, is burned in a constant volume bomb calorimeter that has a heat capacity of 1340 J °C'. If the calorimeter contains 500 g of water and the initial temperature of the calorimeter is 25 °C, calculate the final temperature of the calorimeter.
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