For the reaction I2(g) + Br2(g) K = 280 at 150 °C. Suppose that 0.490 allowed to reach equilibrium at 150 °C. 21Br(g) mol IBr in a 2.00-L flask is ▾ Part A What is the equilibrium concentration of IBr? Express your answer in moles per liter to three significant figures. [IBr] = Submit Part B [12] = Submit Part C ||| ΑΣΦ | Request Answer [Br₂] = What is the equilibrium concentration of I₂? Express your answer in moles per liter to three significant figures. V— ΑΣΦ 3 Request Answer A C ? ΠΑΣΦ 1 A ? M What is the equilibrium concentration of Br₂? Express your answer in moles per liter to three significant figures. ? M M

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter12: Chemical Equilibrium
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Problem 61QRT
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For the reaction
I2(g) + Br2(g)
K = 280 at 150 °C. Suppose that 0.490
allowed to reach equilibrium at 150 °C.
21Br(g)
mol IBr in a 2.00-L flask is
Part A
What is the equilibrium concentration of IBr?
Express your answer in moles per liter to three significant figures.
[IBr] =
Submit
Part B
[12] =
ΠΙΑΣΦ
Part C
Request Answer
What is the equilibrium concentration of I₂?
Express your answer in moles per liter to three significant figures.
Submit Request Answer
[Br₂] =
ΠΫΠΙΑΣΦ 4 →
ΠΑΣΦ
?
?
What is the equilibrium concentration of Br₂?
Express your answer in moles per liter to three significant figures.
P Pearson
M
P ?
M
M
Transcribed Image Text:For the reaction I2(g) + Br2(g) K = 280 at 150 °C. Suppose that 0.490 allowed to reach equilibrium at 150 °C. 21Br(g) mol IBr in a 2.00-L flask is Part A What is the equilibrium concentration of IBr? Express your answer in moles per liter to three significant figures. [IBr] = Submit Part B [12] = ΠΙΑΣΦ Part C Request Answer What is the equilibrium concentration of I₂? Express your answer in moles per liter to three significant figures. Submit Request Answer [Br₂] = ΠΫΠΙΑΣΦ 4 → ΠΑΣΦ ? ? What is the equilibrium concentration of Br₂? Express your answer in moles per liter to three significant figures. P Pearson M P ? M M
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