3. Calculate the molar concentration of Co+ at equilibrium when 0.12 moles Co3+ is mixed with 0.98 moles NHs in 100 mL total volume of solution. Kf Co(NH3).+ = 1.0 x 105 * Co3* + 6NH3 2 Co(NH3)6³* 3.9 x 10-3 M O 3.9 x 10-8 M O 3.0 x 10-11 M O 4.6 x 10- M
3. Calculate the molar concentration of Co+ at equilibrium when 0.12 moles Co3+ is mixed with 0.98 moles NHs in 100 mL total volume of solution. Kf Co(NH3).+ = 1.0 x 105 * Co3* + 6NH3 2 Co(NH3)6³* 3.9 x 10-3 M O 3.9 x 10-8 M O 3.0 x 10-11 M O 4.6 x 10- M
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![3. Calculate the molar concentration of Co+ at equilibrium when 0.12
moles Co3+ is mixed with 0.98 moles NHs in 100 mL total volume of
solution. Kf Co(NH3)6+ = 1.0 x 105 *
Co3* + 6NH3 2 Co(NH3)63*
3.9 x 10-3 M
3.9 x 10 M
O 3.0 x 10-11 M
O 4.6 x 10-M](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc4cd60a4-6eb0-46df-ace9-6037b2b14902%2Fff93c462-0226-4716-9737-4e38ffc7c70b%2Flvm4wvh_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. Calculate the molar concentration of Co+ at equilibrium when 0.12
moles Co3+ is mixed with 0.98 moles NHs in 100 mL total volume of
solution. Kf Co(NH3)6+ = 1.0 x 105 *
Co3* + 6NH3 2 Co(NH3)63*
3.9 x 10-3 M
3.9 x 10 M
O 3.0 x 10-11 M
O 4.6 x 10-M
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