ttps://blackboard.liu.edu/bbcswebdav/pid-3293771-dt-content-rid-40608391 2/courses/CHM_4 01L_BK_SPRG2022/EXPT%2016%20SPETROP... 2. Consider the reaction: A +B = C+3D A solution was prepared by mixing 50.00 mL of 1.00 x 10 M A, 100 mL of 2.00 x 10 M B, 10.0 mL of 1.0 M C and 75 mL of 1.50 x 10 M D. At equilibrium, the concentration of D was measured to be 6.0 x 10 M. a) Calculate the equilibrium concentrations of each species b) Calculate the equilibrium constant.

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2. Consider the reaction:
A +B = C + 3D
A solution was prepared by mixing 50.00 mL of 1.00 x 10° M A, 100 mL of 2.00 x 10³M B,
10.0 mL of 1.0 MC and 75 mL of 1.50 x 10 M D. At equilibrium, the concentration of D was
measured to be 6.0 x 10M.
a) Calculate the equilibrium concentrations of each species
b) Calculate the equilibrium constant.
Transcribed Image Text:Q What's the weather like today? Find out here... Search Bb WordPerfect Office Document https://blackboard.liu.edu/bbcswebdav/pid-3293771-dt-content-rid-40608391 2/courses/CHM_4 01L_BK_SPRG2022/EXPT%2016%20SPETROP.. 2. Consider the reaction: A +B = C + 3D A solution was prepared by mixing 50.00 mL of 1.00 x 10° M A, 100 mL of 2.00 x 10³M B, 10.0 mL of 1.0 MC and 75 mL of 1.50 x 10 M D. At equilibrium, the concentration of D was measured to be 6.0 x 10M. a) Calculate the equilibrium concentrations of each species b) Calculate the equilibrium constant.
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