9. A 250 ml flask containing 1.0 g of excess BN(s) is injected with 0.21 mol of Cl,g). 2 BN(s) + 3 CI,(g) 2 BCI,(9) + N,g) 13 0.0C K- 0.045 (a) What will the (BCI,] equal when the system attains equilibrium? (Hint: The math is a bit trickier on this one; you need to take the cube root of each side.)

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9. A 250 ml flask containing 1.0 g of excess BN(s) is injected with 0.21 mol of Cl,9).
2 BN(s) + 3 CI,(g) 2 2 BCI,(g) + N,(g)
(a) What will the (BCI,) equal when the system attains equilibrium? (Hint: The math is a bit trickier on this one; you need to take
K=0.045
the cube root of each side.)
Transcribed Image Text:9. A 250 ml flask containing 1.0 g of excess BN(s) is injected with 0.21 mol of Cl,9). 2 BN(s) + 3 CI,(g) 2 2 BCI,(g) + N,(g) (a) What will the (BCI,) equal when the system attains equilibrium? (Hint: The math is a bit trickier on this one; you need to take K=0.045 the cube root of each side.)
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