At a certain temperature, the equilibrium constant for the chemical reaction shown is 6.46 x 10-3. At equilibrium, the concentration of AB is 3.125 M, the concentration of BC is 1.425 M, and the concentration of AC is 0.210 M. Calculate the concentration of B at equilibrium. AB(aq) + BC(aq) = AC(aq) + 2 B(aq) [B] = M

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At a certain temperature, the equilibrium constant for the chemical reaction shown is 6.46 × 10⁻³. At equilibrium, the concentration of AB is 3.125 M, the concentration of BC is 1.425 M, and the concentration of AC is 0.210 M. Calculate the concentration of B at equilibrium.

\[ \text{AB(aq) + BC(aq) } \rightleftharpoons \text{ AC(aq) + 2 B(aq)} \]

\[ [B] = \quad \text{M} \]
Transcribed Image Text:At a certain temperature, the equilibrium constant for the chemical reaction shown is 6.46 × 10⁻³. At equilibrium, the concentration of AB is 3.125 M, the concentration of BC is 1.425 M, and the concentration of AC is 0.210 M. Calculate the concentration of B at equilibrium. \[ \text{AB(aq) + BC(aq) } \rightleftharpoons \text{ AC(aq) + 2 B(aq)} \] \[ [B] = \quad \text{M} \]
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