must be represented by one Once the expression is constructed, solve for Kc. Кс

Introduction to General, Organic and Biochemistry
11th Edition
ISBN:9781285869759
Author:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Publisher:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Chapter7: Reaction Rates And Chemical Equilibrium
Section: Chapter Questions
Problem 7.81P
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Consider the reaction of CO₂ and solid carbon described by the chemical reaction
below. Determine the equilibrium constant for this reaction by constructing an
ICE table, writing the equilibrium constant expression, and solving it. Complete
Parts 1-2 before submitting your answer.
C(s) + CO₂(g) = 2 CO(g)
Initial (M)
Change (M)
Equilibrium (M)
NEXT >
When 1.50 mol of CO₂ and an 10.0 mol solid carbon are heated in a 20.0 L container at 1100 K,
the equilibrium concentration of CO is 0.0700 M. Fill in the ICE table with the appropriate value
for each involved species to determine concentrations of all reactants and products..
0.0700
0.0050
1
-0.0700
1.50
0.140
C(s)
10.0
-0.140
+
20.0
0.0350
2
CO₂(g)
0.500
-0.0350
0.150
0.110
2 CO(g)
RESET
0.0750
0.0400
Transcribed Image Text:Consider the reaction of CO₂ and solid carbon described by the chemical reaction below. Determine the equilibrium constant for this reaction by constructing an ICE table, writing the equilibrium constant expression, and solving it. Complete Parts 1-2 before submitting your answer. C(s) + CO₂(g) = 2 CO(g) Initial (M) Change (M) Equilibrium (M) NEXT > When 1.50 mol of CO₂ and an 10.0 mol solid carbon are heated in a 20.0 L container at 1100 K, the equilibrium concentration of CO is 0.0700 M. Fill in the ICE table with the appropriate value for each involved species to determine concentrations of all reactants and products.. 0.0700 0.0050 1 -0.0700 1.50 0.140 C(s) 10.0 -0.140 + 20.0 0.0350 2 CO₂(g) 0.500 -0.0350 0.150 0.110 2 CO(g) RESET 0.0750 0.0400
Consider the reaction of CO₂ and solid carbon described by the chemical reaction
below. Determine the equilibrium constant for this reaction by constructing an
ICE table, writing the equilibrium constant expression, and solving it. Complete
Parts 1-2 before submitting your answer.
C(s) + CO₂(g) = 2 CO(g)
PREV
[1.50]
[1.50]²
Based on the set up of your ICE table, construct the expression for Kc. Each reaction participant
must be represented by one tile. Do not combine terms.
Once the expression is constructed, solve for Kc.
1.75
[0.500]
[0.500]²
0.571
Kc
1
=
[0.150]
Question 2 of 9
[0.150]²
0.123
[0.0750]
[0.0750]²
8.16
[0.0700]
[0.0700]²
2
||
[0.140]
[0.140]²
[0.0400]
[0.0400]²
RESET
[0.0050]
[0.0050]²
Transcribed Image Text:Consider the reaction of CO₂ and solid carbon described by the chemical reaction below. Determine the equilibrium constant for this reaction by constructing an ICE table, writing the equilibrium constant expression, and solving it. Complete Parts 1-2 before submitting your answer. C(s) + CO₂(g) = 2 CO(g) PREV [1.50] [1.50]² Based on the set up of your ICE table, construct the expression for Kc. Each reaction participant must be represented by one tile. Do not combine terms. Once the expression is constructed, solve for Kc. 1.75 [0.500] [0.500]² 0.571 Kc 1 = [0.150] Question 2 of 9 [0.150]² 0.123 [0.0750] [0.0750]² 8.16 [0.0700] [0.0700]² 2 || [0.140] [0.140]² [0.0400] [0.0400]² RESET [0.0050] [0.0050]²
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