2.3 Use the steady state approximation to determine the rate law for the decomposition of S3 in the reaction 253(g) → 3S2(g) given the following mechanism: S3 S2 +S S₂ + SS3 C rate constant k₁ rate constant k2 constant k

Principles of Modern Chemistry
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Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter18: Chemical Kinetics
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2.3
Use the steady state approximation to determine the rate law for the
decomposition of S3 in the reaction 253(g) → 3S2(g) given the following
mechanism:
S3 → S₂ + S
S2 + S→ S3
rate constant k₁
rate constant k2
S + S3 → S2 + S₂ rate constant k3
F
Transcribed Image Text:2.3 Use the steady state approximation to determine the rate law for the decomposition of S3 in the reaction 253(g) → 3S2(g) given the following mechanism: S3 → S₂ + S S2 + S→ S3 rate constant k₁ rate constant k2 S + S3 → S2 + S₂ rate constant k3 F
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