Determine the rate of formation of I3− if the initial concentration of I− was 0.5583 M and decreased to 0.4566 M after 0.3335 hours. Use the reaction below. 3I−(aq)+ S2O82−(aq) ↔ I3−(aq) + 2SO42−(aq)
Determine the rate of formation of I3− if the initial concentration of I− was 0.5583 M and decreased to 0.4566 M after 0.3335 hours. Use the reaction below. 3I−(aq)+ S2O82−(aq) ↔ I3−(aq) + 2SO42−(aq)
Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter14: Chemical Kinetics: The Rates Of Chemical Reactions
Section14.3: Effect Of Concentration On Reaction Rate
Problem 14.3CYU: The initial rate ( [NO]/ t] of the reaction of nitrogen monoxide and oxygen NO(g) + 2O2(g) NO2(g)...
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Determine the rate of formation of I3− if the initial concentration of I− was 0.5583 M and decreased to 0.4566 M after 0.3335 hours. Use the reaction below.
3I−(aq)+ S2O82−(aq) ↔ I3−(aq) + 2SO42−(aq)
Expert Solution
Step 1
The balanced reaction taking place is given as,
=> 3I−(aq)+ S2O82−(aq) ↔ I3−(aq) + 2SO42−(aq)
Given: Initial concentration of I- = 0.5583 M
Final concentration of I- = 0.4566 M
And time taken = 0.3335 hr.
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