MISSED THIS? Watch KCV 15.8. WE 15.9: Read Section 15.8. You can click on the Review link to access the section in your eText Consider the following reaction: CO(g) + H₂O(g) = CO₂(g) + H₂(g) K,-0.0611 at 2000 K A reaction modure initially contains a CO partial pressure of 1370 torr and a H₂O partial pressure of 1740 torr at 2000 K Part A Calculate the equilibrium partial pressure of CO₂. Express the pressure in torr to three significant figures. 1951 ΑΣΦ Pco, 291.0 Submit Previous Answers Request Answer 1.8026 X Incorrect: Try Again; 18 attempts remaining After converting the initial pressures to atm you should obtain the following ICE table to organize your data Peo Po Initial Change -F Equilibrium 1.8026- 2.2895-r P Peo, P 0.0 0.0 +x 2.2005 ? I torr Substitute the terms in the Equilibrium row into the equilibrium-constant expression, and then solve the resulting quadratic equation
MISSED THIS? Watch KCV 15.8. WE 15.9: Read Section 15.8. You can click on the Review link to access the section in your eText Consider the following reaction: CO(g) + H₂O(g) = CO₂(g) + H₂(g) K,-0.0611 at 2000 K A reaction modure initially contains a CO partial pressure of 1370 torr and a H₂O partial pressure of 1740 torr at 2000 K Part A Calculate the equilibrium partial pressure of CO₂. Express the pressure in torr to three significant figures. 1951 ΑΣΦ Pco, 291.0 Submit Previous Answers Request Answer 1.8026 X Incorrect: Try Again; 18 attempts remaining After converting the initial pressures to atm you should obtain the following ICE table to organize your data Peo Po Initial Change -F Equilibrium 1.8026- 2.2895-r P Peo, P 0.0 0.0 +x 2.2005 ? I torr Substitute the terms in the Equilibrium row into the equilibrium-constant expression, and then solve the resulting quadratic equation
Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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![MISSED THIS? Watch KCV 15.8. WE 15.9, Read
Section 15.8. You can click on the Review link to
access the section in your eText.
Consider the following reaction:
CO(g) + H₂O(g) = CO(g) + H₂(g)
K,-0.0611 at 2000 K
A reaction modure initially contains a CO partial
pressure of 1370 torr and a H₂O partial pressure
of 1740 torr at 2000 K
Part A
Calculate the equilibrium partial pressure of CO₂.
Express the pressure in torr to three significant figures.
1951 ΑΣΦ
Pco, 291.0
Submit
Previous Answers Request Answer
Peo
X Incorrect: Try Again; 18 attempts remaining
After converting the initial pressures to atm you should obtain the following ICE table to organize your
data
Po
Initial
Change
Equilibrium 1.8026-
1.8026
2.2005
Peo, P
0.0 0.0
-F
+2
2.2895-r x
?
I
torr
Substitute the terms in the Equilibrium row into the equilibrium-constant expression, and then solve
the resulting quadratic equation](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F432934f5-038b-441a-9abc-66d6c6189f7b%2Fe989f20e-da59-4b13-a900-f0119359a041%2Fa4k5ku7_processed.jpeg&w=3840&q=75)
Transcribed Image Text:MISSED THIS? Watch KCV 15.8. WE 15.9, Read
Section 15.8. You can click on the Review link to
access the section in your eText.
Consider the following reaction:
CO(g) + H₂O(g) = CO(g) + H₂(g)
K,-0.0611 at 2000 K
A reaction modure initially contains a CO partial
pressure of 1370 torr and a H₂O partial pressure
of 1740 torr at 2000 K
Part A
Calculate the equilibrium partial pressure of CO₂.
Express the pressure in torr to three significant figures.
1951 ΑΣΦ
Pco, 291.0
Submit
Previous Answers Request Answer
Peo
X Incorrect: Try Again; 18 attempts remaining
After converting the initial pressures to atm you should obtain the following ICE table to organize your
data
Po
Initial
Change
Equilibrium 1.8026-
1.8026
2.2005
Peo, P
0.0 0.0
-F
+2
2.2895-r x
?
I
torr
Substitute the terms in the Equilibrium row into the equilibrium-constant expression, and then solve
the resulting quadratic equation
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