S Be sure to answer all parts. Compound A decomposes according to the equation A(g) 2 B(g) + C (g) A sealed 1.00-L container initially contains 1.79 × 103 mol of A(g), 1.24 x 10-3 mol of B(g), and 6.55 x 10 mol of C(g) at 100°C. At equilibrium, [A] is 2.12 × 10-3 M. Find [B] and [C]. Solve for the equilibrium concentrations of B and C. [Bleq [Cleq x 10 x 10 M M

Chemistry: The Molecular Science
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Publisher:John W. Moore, Conrad L. Stanitski
Chapter12: Chemical Equilibrium
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Be sure to answer all parts.
Compound A decomposes according to the equation
A(g) 2 B(g) + C (g)
A sealed 1.00-L container initially contains 1.79 × 10-3 mol of A(g), 1.24 x 10-3 mol of B(g), and
6.55 x 104 mol of C(g) at 100°C. At equilibrium, [A] is 2.12 × 10-3 M. Find [B] and [C].
Solve for the equilibrium concentrations of B and C.
[Bleq
[Cleq
x 10
x 10
M
M
Transcribed Image Text:S Be sure to answer all parts. Compound A decomposes according to the equation A(g) 2 B(g) + C (g) A sealed 1.00-L container initially contains 1.79 × 10-3 mol of A(g), 1.24 x 10-3 mol of B(g), and 6.55 x 104 mol of C(g) at 100°C. At equilibrium, [A] is 2.12 × 10-3 M. Find [B] and [C]. Solve for the equilibrium concentrations of B and C. [Bleq [Cleq x 10 x 10 M M
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