Constants Carbonyl fluoride, COF,, is a chemical reagent useful in the synthesis of fluorinated organic compounds. The decomposition of COF2 occurs at high temperature and with a catalyst according to the following reaction: Part A 2 COF2(g) = cO2(g) + CF4(g) If 32.5 bar of COF, is placed in a container at 813 K, how much COF, is left after equilibrium? The equilibrium constant at 813 K is K= 9.81. O 18.5 bar O 14.0 bar O 1 bar O 4.47 bar O 5.87 bar Submit Request Answer Part B What is K. (the equilibrium constant in terms of concentrations) for this reaction at the same temperature 813 K? O 663 L mol1 O 9.81 O 0.145 mol L-1 O 663 mol L-1 O 0.145 L mol1

Physical Chemistry
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Chapter1: Gases And The Zeroth Law Of Thermodynamics
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Problem 1.21E: Pressures of gases in mixtures are referred to as partial pressures and are additive. 1.00 L of He...
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Constants | Periodic Table
Carbonyl fluoride, COF2, is a chemical reagent useful in
the synthesis of fluorinated organic compounds. The
decomposition of COF2 occurs at high temperature and
with a catalyst according to the following reaction:
Part A
2 COF2(g) = CO2(g) + CF4(g)
If 32.5 bar of COF, is placed in a container at 813 K, how much COF, is left after equilibrium?
The equilibrium constant at 813 K is K = 9.81.
18.5 bar
14.0 bar
1 bar
4.47 bar
O 5.87 bar
Submit
Request Answer
Part B
What is K. (the equilibrium constant in terms of concentrations) for this reaction at the same temperature 813 K?
O 663 L mol-1
O 9.81
O 0.145 mol L-1
O 663 mol L-1
O 0.145 L mol-1
Transcribed Image Text:Constants | Periodic Table Carbonyl fluoride, COF2, is a chemical reagent useful in the synthesis of fluorinated organic compounds. The decomposition of COF2 occurs at high temperature and with a catalyst according to the following reaction: Part A 2 COF2(g) = CO2(g) + CF4(g) If 32.5 bar of COF, is placed in a container at 813 K, how much COF, is left after equilibrium? The equilibrium constant at 813 K is K = 9.81. 18.5 bar 14.0 bar 1 bar 4.47 bar O 5.87 bar Submit Request Answer Part B What is K. (the equilibrium constant in terms of concentrations) for this reaction at the same temperature 813 K? O 663 L mol-1 O 9.81 O 0.145 mol L-1 O 663 mol L-1 O 0.145 L mol-1
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