1. The research and development unit of a chemical company is studying the reaction of CH4 and H2S, two components of natural gas. CH4(g) + 2H2S(g) + CS2(g) + 4H2(g) In one experiment, 1.00mol of CH4, 1.00mol of CS2, 2.00mol of H2S, and 2.00mol of H2 are mixed in a 250-mL vessel at 9600C. At this temperature, Kc 0.036. (a) In which direction will the reaction proceed to reach equilibrium? (b) If [CH4] = 5.56M at equilibrium, what are the equilibrium concentrations of the other substances? %3D

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Chapter3: Molecules, Moles, And Chemical Equations
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Problem 3.81PAE: 3.81 The particulate scale drawing shown depicts the products of a reaction between H2 and O2...
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1. The research and development unit of a chemical company is studying the reaction of CH4 and H2S,
two components of natural gas.
CH4(g)
+ 2H2S(g) → CS2(g) +
4H2(g)
In one experiment, 1.00mol of CH4, 1.00mol of CS2, 2.00mol of H2S, and 2.00mol of H2 are mixed in a
250-mL vessel at 9600C. At this temperature, Kc = 0.036.
(a) In which direction will the reaction proceed to reach equilibrium?
(b) If [CH4] = 5.56M at equilibrium, what are the equilibrium concentrations of the other substances?
%3D
2. Hydrogen iodide decomposes according to the equation
2HI(g) + H2(g) + 12(g).
for which Kc = 0.0156 at 400°C. A 0.550 mol HI was injected into a 2.00 L reaction vessel at 400°C.
Calculate the concentration of HI at equilibrium.
Transcribed Image Text:1. The research and development unit of a chemical company is studying the reaction of CH4 and H2S, two components of natural gas. CH4(g) + 2H2S(g) → CS2(g) + 4H2(g) In one experiment, 1.00mol of CH4, 1.00mol of CS2, 2.00mol of H2S, and 2.00mol of H2 are mixed in a 250-mL vessel at 9600C. At this temperature, Kc = 0.036. (a) In which direction will the reaction proceed to reach equilibrium? (b) If [CH4] = 5.56M at equilibrium, what are the equilibrium concentrations of the other substances? %3D 2. Hydrogen iodide decomposes according to the equation 2HI(g) + H2(g) + 12(g). for which Kc = 0.0156 at 400°C. A 0.550 mol HI was injected into a 2.00 L reaction vessel at 400°C. Calculate the concentration of HI at equilibrium.
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