A 2.580 mol quantity of NOCI was initially placed in a 1.750 L reaction chamber at 400 °C. After equilibrium was established, it was found that 27.60 percent of the NOCI had dissociated: 2NOCI (g) 2NO(g) + Cl₂ (g) Calculate the equilibrium constant K for the reaction. Round your answer to 4 significant digits.

Chemistry for Engineering Students
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Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12.45PAE: The following equilibrium is established in a closed container: C(s)+O2(g)CO2(g)H=393kJmol1 How does...
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A 2.580 mol quantity of NOCI was initially placed in a 1.750 L reaction chamber at 400 °C. After equilibrium was established, it was found that 27.60 percent
of the NOC1 had dissociated:
2NOCI (g) 2NO(g) + Cl₂ (g)
Calculate the equilibrium constant K for the reaction. Round your answer to 4 significant digits.
C
0x10
X
Ś
Transcribed Image Text:A 2.580 mol quantity of NOCI was initially placed in a 1.750 L reaction chamber at 400 °C. After equilibrium was established, it was found that 27.60 percent of the NOC1 had dissociated: 2NOCI (g) 2NO(g) + Cl₂ (g) Calculate the equilibrium constant K for the reaction. Round your answer to 4 significant digits. C 0x10 X Ś
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