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A sample of 0.134 g of CuCl2•2H2O is added to 0.10 L of an 1.0 M ammonia solution. It completely dissolves to give aqueous Cu2+ ions which react with the ammonia to form the coppertetraammine complex ion:Cu2+ (aq) + 4 NH3 (aq) A sample of 0.134 g of CuCl<sub>2</sub>•2H<sub>2</sub>O is added to 0.10 L of an 1.0 M ammonia solution. It completely dissolves to give aqueous Cu<sup>2</sup><sup>+ </sup>ions which react with the ammonia to form the coppertetraammine complex ion:Cu<sup>2+</sup><sup> </sup><sub>(</sub><sub>aq</sub><sub>)</sub> + 4 NH<sub>3 </sub><sub>(</sub><sub>aq</sub><sub>)</sub>   Cu(NH<sub>3</sub>)<sub>4</sub><sup>2+</sup><sub>(</sub><sub>aq</sub><sub>)</sub> K<sub>f</sub> = 5.0 x 10<sup>13</sup>What are the concentrations of copper (II), ammonia, and the complex ion, Cu(NH<sub>3</sub>) <sub>4</sub><sup>2+</sup>, at equilibrium? Cu(NH3)42+(aq) Kf = 5.0 x 1013What are the concentrations of copper (II), ammonia, and the complex ion, Cu(NH3) 42+, at equilibrium?

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[Cu2+]=1.6 x 10-16 M; [NH...

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