A mixture of 0.10 mol of NO, 0.050 mol of H₂, and 0.10 mol of H₂O is placed in a 1.0-L vessel at 300 K The following equilibrium is established: 2NO(g) + 2H₂(g) = N₂(g) + 2H₂O(g) At equilibrium [NO] = 0.062 M. ▼ Calculate the equilibrium concentration of H₂O. Express the molarity to three decimal places. 2 P 2 Templates Symbols undo redo reset keyboard shortcuts s help % ! Submit Previous Answers Request Answer X Incorrect; Try Again; 5 attempts remaining Part D Calculate Ke- Express your answer to two significant figures. Kc = 1 ( Templates Symbols undo do reset keyboard shortcuts ΑΣΦ Α Submit Request Answer M C

Chemistry for Engineering Students
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Chapter12: Chemical Equilibrium
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Problem 15.35 - Enhanced - with Feedback
A mixture of 0.10 mol of NO, 0.050 mol of H₂, and
0.10 mol of H₂O is placed in a 1.0-L vessel at 300 K.
The following equilibrium is established:
2NO(g) + 2H₂(g) = N₂(g) + 2H₂O(g)
At equilibrium [NO] = 0.062 M.
Calculate the equilibrium concentration of H₂O.
Express the molarity to three decimal places.
1 r
Templates Symbols undo redo reset keyboard shortcuts help
ΑΣΦ
Submit
X Incorrect; Try Again; 5 attempts remaining
Part D
Previous Answers Request Answer
Calculate Ke
Express your answer to two significant figures.
Kc =
Submit
P
Templates Symbols undo do reset keyboard shortcuts help
½
. C
M
Request Answer
34 of 43
Review | Constants | Periodic Table
>
Transcribed Image Text:Problem 15.35 - Enhanced - with Feedback A mixture of 0.10 mol of NO, 0.050 mol of H₂, and 0.10 mol of H₂O is placed in a 1.0-L vessel at 300 K. The following equilibrium is established: 2NO(g) + 2H₂(g) = N₂(g) + 2H₂O(g) At equilibrium [NO] = 0.062 M. Calculate the equilibrium concentration of H₂O. Express the molarity to three decimal places. 1 r Templates Symbols undo redo reset keyboard shortcuts help ΑΣΦ Submit X Incorrect; Try Again; 5 attempts remaining Part D Previous Answers Request Answer Calculate Ke Express your answer to two significant figures. Kc = Submit P Templates Symbols undo do reset keyboard shortcuts help ½ . C M Request Answer 34 of 43 Review | Constants | Periodic Table >
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