It was found that an equilibrium solution contained 3.00 x 10-4 M Fe3+ (3.00 times 10 to the minus 4th power M Fe 3+), 3.00 x 10-4 M SCN" (3.00 times 10 to the minus 4th power M SCN minus) and 5.00 x 105 M FESCN2+ (5.00 times 10 to the minus 5th power M Fe SCN 2+ ). What is Kc for this solution? 556 0.00234 0.00180 0.000300 0.0000500 750. 9.00 x 10-9 (9.00 times 10 to the minus 9th power)
It was found that an equilibrium solution contained 3.00 x 10-4 M Fe3+ (3.00 times 10 to the minus 4th power M Fe 3+), 3.00 x 10-4 M SCN" (3.00 times 10 to the minus 4th power M SCN minus) and 5.00 x 105 M FESCN2+ (5.00 times 10 to the minus 5th power M Fe SCN 2+ ). What is Kc for this solution? 556 0.00234 0.00180 0.000300 0.0000500 750. 9.00 x 10-9 (9.00 times 10 to the minus 9th power)
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Question
![It was found that an equilibrium solution contained 3.00 x 10-4 M Fe3+ (3.00 times
10 to the minus 4th power M Fe 3+), 3.00 x 10-4 M SCN (3.00 times 10 to the
minus 4th power M SCN minus) and 5.00 x 10-5 M FESCN2+ (5.00 times 10 to the
minus 5th power M Fe SCN 2+ ). What is Kc for this solution?
556
0.00234
0.00180
0.000300
0.0000500
750.
9.00 x 10-9 (9.00 times 10 to the minus 9th power)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3f7858f2-4558-4a97-afcd-256e507c1a66%2Fa3ae9089-98bd-4169-be58-02572264ec78%2Fijdt3gh_processed.png&w=3840&q=75)
Transcribed Image Text:It was found that an equilibrium solution contained 3.00 x 10-4 M Fe3+ (3.00 times
10 to the minus 4th power M Fe 3+), 3.00 x 10-4 M SCN (3.00 times 10 to the
minus 4th power M SCN minus) and 5.00 x 10-5 M FESCN2+ (5.00 times 10 to the
minus 5th power M Fe SCN 2+ ). What is Kc for this solution?
556
0.00234
0.00180
0.000300
0.0000500
750.
9.00 x 10-9 (9.00 times 10 to the minus 9th power)
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The equilibrium constant of a chemical reaction is the value of its reaction quotient at chemical equilibrium. In the equilibrium constant expression, the stoichiometry coefficients of the reactants and the products are written as a power of the concentration term.
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