Like many other complex ions, the formation of complexes between tin (II) cation and hydroxide anions are very favorable. If a solution is 0.00303 M in tin (II) nitrate and is 0.719 M in sodium hydroxide, what will the concentration of free tin (II) cation be at equilibrium? (23) Sn" (aq) + 3 OH (aq) > (Sn(OH)3J (aq) K = 3.0 x 1025 (V) 1.42 x 1028 M (a) 2.72 x 10 28 M 8.38 x 1025 M 9.90 x 1027 M (E) 2.82 x 1028 M

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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(23)
Like many other complex ions, the formation of complexes between tin (II) cation and hydroxide anions are
very favorable. If a solution is 0.00303 M in tin (II) nitrate and is 0.719 M in sodium hydroxide, what will the
concentration of free tin (II) cation be at equilibrium?
Sn2* (aq) + 3 OH (aq) → [Sn(OH)3] (aq)
Kr = 3.0 x 1025
(v)
1.42 x 1028 M
(a)
2.72 x 1028 M
8.38 x 1025 M
()
(a)
9.90 x 1027 M
2.82 x 1028 M
(3)
Using the provided tabulated values, what is the value of the Gibbs free energy change (AGrn) that occurs
when 2.18 g of carbon tetrachloride (153.81 g/mol) reacts with an excess of chlorine gas according to the
(24)
following balanced chemical equation:
CCl. (g) + S2CI2 (g) <→ CS2 (g) + 3 Cl2 (g)
154.25 kJ
()
(B)
-0.293 kJ
0.947 kJ
()
336.27 kJ
Transcribed Image Text:(23) Like many other complex ions, the formation of complexes between tin (II) cation and hydroxide anions are very favorable. If a solution is 0.00303 M in tin (II) nitrate and is 0.719 M in sodium hydroxide, what will the concentration of free tin (II) cation be at equilibrium? Sn2* (aq) + 3 OH (aq) → [Sn(OH)3] (aq) Kr = 3.0 x 1025 (v) 1.42 x 1028 M (a) 2.72 x 1028 M 8.38 x 1025 M () (a) 9.90 x 1027 M 2.82 x 1028 M (3) Using the provided tabulated values, what is the value of the Gibbs free energy change (AGrn) that occurs when 2.18 g of carbon tetrachloride (153.81 g/mol) reacts with an excess of chlorine gas according to the (24) following balanced chemical equation: CCl. (g) + S2CI2 (g) <→ CS2 (g) + 3 Cl2 (g) 154.25 kJ () (B) -0.293 kJ 0.947 kJ () 336.27 kJ
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