2) 2.44 mol of gaseous hydrogen bromide is added to an empty 3.16 L container. When values are no longer changing, at 62.5 °C , 0.55 mol hydrogen gas is collected. Using the provided skeletal equation, determine the value of the equilibrium constant, at 62.5 oC, to 2 decimal HBre f Bre) + H) places: IK5I
2) 2.44 mol of gaseous hydrogen bromide is added to an empty 3.16 L container. When values are no longer changing, at 62.5 °C , 0.55 mol hydrogen gas is collected. Using the provided skeletal equation, determine the value of the equilibrium constant, at 62.5 oC, to 2 decimal HBre f Bre) + H) places: IK5I
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![2) 2.44 mol of gaseous hydrogen bromide is added to an empty 3.16 L container. When values
are no longer changing, at 62.5 °C, 0.55 mol hydrogen gas is collected. Using the provided
skeletal equation, determine the value of the equilibrium constant, at 62.5 °C, to 2 decimal
Br2(8)
HBr f Bre)
Brie) + H,
2(8)
[K5]
places:](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F753fe01a-442e-4a38-997f-3f5343ac4503%2Fbbc47a90-5491-4d35-9777-06a811ab4f5a%2Fuvc9ow_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2) 2.44 mol of gaseous hydrogen bromide is added to an empty 3.16 L container. When values
are no longer changing, at 62.5 °C, 0.55 mol hydrogen gas is collected. Using the provided
skeletal equation, determine the value of the equilibrium constant, at 62.5 °C, to 2 decimal
Br2(8)
HBr f Bre)
Brie) + H,
2(8)
[K5]
places:
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