The decomposition of hydrogen iodide follows the equation: 2 HI (g) → H₂ (g) + I₂ (g) The reaction is second order and a 1.00 L solution of 0.15 M HI has a rate constant of 0.00159 sec-¹M-1. How many grams of 12 are produced in 95 min? Report your answer to the one's place. 1 = 126.9 g/mol

Chemistry by OpenStax (2015-05-04)
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ISBN:9781938168390
Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
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Chapter12: Kinetics
Section: Chapter Questions
Problem 63E: Hydrogen iodide, HI, decomposes in the gas phase to produce hydrogen, H2, and iodine, I2. The value...
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The decomposition of hydrogen iodide follows the equation:
2 HI(g)
H₂ (g) + I2 (g)
The reaction is second order and a 1.00 L solution of 0.15 M HI has a rate constant
of 0.00159 sec-¹M-1. How many grams of I₂ are produced in 95 min? Report your
answer to the one's place.
1 = 126.9 g/mol
Transcribed Image Text:The decomposition of hydrogen iodide follows the equation: 2 HI(g) H₂ (g) + I2 (g) The reaction is second order and a 1.00 L solution of 0.15 M HI has a rate constant of 0.00159 sec-¹M-1. How many grams of I₂ are produced in 95 min? Report your answer to the one's place. 1 = 126.9 g/mol
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