The following equation represents the combustion reaction of octane (C8H18), which is the primary component in gasoline.               2C8H18(l)  +  25 O2(g)  -->  16CO2(g)  +  18H2O(l)   The molar mass of octane is 114.22 g/mol and its density is 0.69 g/mL. If 1.0 L of octane is completely combusted in excess of oxygen, how many kilograms of CO2 gas is released into the atmosphere?

Chemistry
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Chapter3: Stoichiometry
Section: Chapter Questions
Problem 114E: a. Write die balanced equation for the combustion of isooctane (C8H18) to produce water vapor and...
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The following equation represents the combustion reaction of octane (C8H18), which is the primary component in gasoline.

              2C8H18(l)  +  25 O2(g)  -->  16CO2(g)  +  18H2O(l)

  The molar mass of octane is 114.22 g/mol and its density is 0.69 g/mL. If 1.0 L of octane is completely combusted in excess of oxygen, how many kilograms of CO2 gas is released into the atmosphere? 

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