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Question 5 of 50 Determine the molar solubility for BaCO3 by constructing an ICE table, writing t ...
Question 5 of 50 Determine the molar solubility for BaCO3 by constructing an ICE table, writing the solubility constant expression, and solving for molar solubility. Complete Parts 1-3 before submitting your answer. 2 3 NEXT > Assume the solution already contains 1.4 x 10-4 M CO;2-ions. Fill in the ICE table with the appropriate value for each involved species to determine concentrations of all reactants and products. BaCO3(s) Ba2+(aq) + CO;2-(aq) Initial (M) Change (M) Equilibrium (M) RESET 0 1.4 x 10 -1.4 x 10 2.8 x 10 -2.8 x 10 - +x -X +2x -2x 1.4 x 104 + x 1.4 x 10- x 1.4 x 10* + 2x 1.4 x 10-2x 2.8 x 104 + x 2.8 x 10-X 2.8 x 10* + 2x 2.8 x 10-2x
Question 5 of 50 Determine the molar solubility for BaCO3 by constructing an ICE table, writing the solubility constant expression, and solving for molar solubility. Complete Parts 1-3 before submitting your answer. < PREV 1 2 3 NEXT > For BaCO3, the value of Ksp is 5.0 x 10-9. Using the values from the ICE table (Part 1), construct the expression for the solubility constant, Ksp. Each reaction participant must be represented by one tile. Do not combine terms. ?sp = = 5.0 10-9 RESET [0] [1.4 x 10 [2.8 x 10 ) [1.4 x 10-12 [2.8 x 10-12 [x] [x] [2x] [2x] [1.4 x 10* + x] [1.4 x 10-x] [1.4 x 10- + 2x}" [1.4 x 10-2x [2.8 x 10*+ x] [2.8 x 10*- x] [2.8 x 10- + 2x}" [2.8 x 104 - 2x]
Question 5 of 50 Determine the molar solubility for BaCO3 by constructing an ICE table, writing the solubility constant expression, and solving for molar solubility. Complete Parts 1-3 before submitting your answer. < PREV 1 2 3 Based on your ICE table and Ksp expression, determine the molar solubility. SBaco, = | ? RESET 0 7.1 x 105 1.4 x 10- 1.7 x 104 1.7 x 10 2.9 x 10-5 6.9 x 105 7.0 x 105