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Chemistry, 30.08.2019 16:10 preciosakassidy

Consider the combustion of octane (c8h18), a primary component of gasoline.
2c8h18 (l) + 25o2(g) > 18h2o(g) + 16 co2 (g)
a. calculate the change in volume(in l) due to the total number of moles of gases produced when 1.000 gal (~3.784 l) of octane undergoes combustion at 1.00 atm and 25.00 c the density of octane at 25.00 c is 0.703g/ml
b. use your answer in part a to calculate the volume of gases produced at 475k (the temperature of a car engine)
c. use the equation , w= -p delta v, to calculate the work (in kj) done by the system (the reaction) during the combustion of 1.000 gal of octane (use 1l*atm = 101.325 j)
d. if 1 kj = 1 kws (kilo watt*second), then calculate the energy (in kj) in a kilowatt hour.
e. consider a new kind of vehicle that could be powered by an electrical current similar to that used in our homes. calculate the cost of electricity needed to produce the same amount of energy (determined in part c) as the combustion of 1.00gal of gasoline if seattle city light currently charges on average about 11.35 cents/kwh
f. the combustion of 1.00 gal of octane produces about 1.2x105 kj of heat. compare the change in internal energy due to work calculated in part c with the heat of the reaction. how much of the internal energy change is due to the work done by the system due to gas expansion? (hint: compare the absolute value for heat versus work)

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Consider the combustion of octane (c8h18), a primary component of gasoline.
2c8h18 (l) + 25o2(...
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