5) Consider the reaction below. CO(g) + 2H2(g) → CH;OH(9) 1.5 L of hydrogen gas and 3.5 L of carbon monoxide gas, both at 45 ºC and 1.28 atm are in separate containers separated by a value. When the value is opened the two gases mix and react, according to the above reaction. a) Please determine the limiting reagent and the theoretical yield. b) If the percent yield is 67.3%, what is the concentration of the product in the final reaction mixture? c) What is the partial pressure of the product in the final reaction mixture?

Chemistry: An Atoms First Approach
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ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
Publisher:Steven S. Zumdahl, Susan A. Zumdahl
Chapter8: Gases
Section: Chapter Questions
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5) Consider the reaction below.
Co(g) + 2H¿(g) → CH,OH(g)
1.5 L of hydrogen gas and 3.5 L of carbon monoxide gas, both at 45 °C and 1.28 atm are
in separate containers separated by a value. When the value is opened the two gases
mix and react, according to the above reaction.
a) Please determine the limiting reagent and the theoretical yield.
b) If the percent yield is 67.3%, what is the concentration of the product in the
final reaction mixture?
c) What is the partial pressure of the product in the final reaction mixture?
Transcribed Image Text:5) Consider the reaction below. Co(g) + 2H¿(g) → CH,OH(g) 1.5 L of hydrogen gas and 3.5 L of carbon monoxide gas, both at 45 °C and 1.28 atm are in separate containers separated by a value. When the value is opened the two gases mix and react, according to the above reaction. a) Please determine the limiting reagent and the theoretical yield. b) If the percent yield is 67.3%, what is the concentration of the product in the final reaction mixture? c) What is the partial pressure of the product in the final reaction mixture?
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