Consider the reaction in aqueous solution: 31+ S208² → 13+2 S04² Under a given set of conditions, the concentration of 13 changes from 0.0 M to 5.9 × 10-4 M in 35 seconds. Calculate A[SO42]/At (in mol/L.s) for this time interval (I know the answer is 3.4 x 10-5 mol/L second I just wanna know how you get to it/how to solve)
Consider the reaction in aqueous solution: 31+ S208² → 13+2 S04² Under a given set of conditions, the concentration of 13 changes from 0.0 M to 5.9 × 10-4 M in 35 seconds. Calculate A[SO42]/At (in mol/L.s) for this time interval (I know the answer is 3.4 x 10-5 mol/L second I just wanna know how you get to it/how to solve)
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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![Consider the reaction in aqueous solution:
31+ S208² → 13+2 S04²
Under a given set of conditions, the concentration of 13 changes from 0.0 M to 5.9
× 10-4 M in 35 seconds. Calculate A[SO42]/At (in mol/L.s) for this time interval
(I know the answer is 3.4 x 10-5 mol/L second I just wanna know how you get to
it/how to solve)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa6ad3aad-056a-425a-846c-6b8223cfb5df%2F8bb633b3-9765-47e1-8524-5db2379c0623%2Fvd72xvd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider the reaction in aqueous solution:
31+ S208² → 13+2 S04²
Under a given set of conditions, the concentration of 13 changes from 0.0 M to 5.9
× 10-4 M in 35 seconds. Calculate A[SO42]/At (in mol/L.s) for this time interval
(I know the answer is 3.4 x 10-5 mol/L second I just wanna know how you get to
it/how to solve)
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