The equation for the combustion of octane is: 20,Hmu) +250e 16CO, +18H,0 AH =-10,900 kJmol" a. What mass of oxygen would be needed to release 8516 kJ of heat? b. Calculate the mass of CO2 that would be produced, and the associated energy change, whne 630 g of octane is burnt

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Chapter1: Chemical Foundations
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. The equation for the combustion of octane is:
20,H) +250) → 16CO, +18H,0 AH =-10,900 kJmol
a. What mass of oxygen would be needed to release 8516 kJ of heat?
b. Calculate the mass of CO2 that would be produced, and the associated energy change, whne 630
g of octane is burnt
Transcribed Image Text:. The equation for the combustion of octane is: 20,H) +250) → 16CO, +18H,0 AH =-10,900 kJmol a. What mass of oxygen would be needed to release 8516 kJ of heat? b. Calculate the mass of CO2 that would be produced, and the associated energy change, whne 630 g of octane is burnt
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