Consider the equilibrium system described by the chemical reaction below. A 1.00 L reaction vessel was filled with 2.00 mol SO2 and 2.00 mol NO2 and allowed to react at a high temperature. At equilibrium, there were 1.30 mol of NO in the vessel. Determine the concentrations of all reactants and products at equilibrium and then calculate the value of Kc for this reaction.

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter4: Temperature Effects On Atom Arrangements And Atom Motion
Section: Chapter Questions
Problem 4.14P
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Consider the equilibrium system described by the chemical reaction below. A 1.00 L
reaction vessel was filled with 2.00 mol SO2 and 2.00 mol NO2 and allowed to react at
a high temperature. At equilibrium, there were 1.30 mol of NO in the vessel. Determine
the concentrations of all reactants and products at equilibrium and then calculate the
value of Kc for this reaction.
SO:(g) + NO2(g)= SO:(g) + NO(g)
1
2
NEXT
Based on the given values, fill in the ICE table to determine concentrations of all reactants and
products.
SO:(g)
NO:(g)
SO:(g)
NO(g)
+
+
Initial (M)
Change (M)
Equilibrium (M)
RESET
+x
-X
1.00
2.00
1.30
-1.00
-1.30
2.30
2.70
0.70
1.35
2.00 - x
2.00 + x
Activa
Go to Se
1L
Transcribed Image Text:Consider the equilibrium system described by the chemical reaction below. A 1.00 L reaction vessel was filled with 2.00 mol SO2 and 2.00 mol NO2 and allowed to react at a high temperature. At equilibrium, there were 1.30 mol of NO in the vessel. Determine the concentrations of all reactants and products at equilibrium and then calculate the value of Kc for this reaction. SO:(g) + NO2(g)= SO:(g) + NO(g) 1 2 NEXT Based on the given values, fill in the ICE table to determine concentrations of all reactants and products. SO:(g) NO:(g) SO:(g) NO(g) + + Initial (M) Change (M) Equilibrium (M) RESET +x -X 1.00 2.00 1.30 -1.00 -1.30 2.30 2.70 0.70 1.35 2.00 - x 2.00 + x Activa Go to Se 1L
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Cengage Learning