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for each of the salts on the left, match the salts on the right that ca…

Question

for each of the salts on the left, match the salts on the right that can be compared directly, using ( k_{sp} ) values, to estimate solubilities. (if more than one salt on the right can be directly compared, include all the relevant salts by writing your answer as a string of characters without punctuation, e.g. abc.)
c 1. copper(ii) sulfide
d 2. magnesium hydroxide

write the expression for ( k ) in terms of the solubility, ( s ), for each salt, when dissolved in water.
copper(ii) sulfide
( k_{sp}= )
( 8^{2} )
magnesium hydroxide
( k_{sp}= )
( 4s^{3} )

note: multiply out any number and put it first in the ( k_{sp} ) expression. combine all exponents for ( s ).

no error has been detected in your answer. check for typos,
miscalculations etc. before submitting your answer.

Explanation:

Part 1: Matching Copper(II) Sulfide (CuS)

To directly compare solubilities using \( K_{sp} \), salts must have the same dissociation stoichiometry (same number of cations and anions). Copper(II) sulfide dissociates as \( \text{CuS}(s)
ightleftharpoons \text{Cu}^{2+}(aq) + \text{S}^{2-}(aq) \), so its \( K_{sp} = [\text{Cu}^{2+}][\text{S}^{2-}] = s^2 \) (where \( s \) is solubility). We need a salt with the same 1:1 cation - anion ratio.

  • Option A (\( \text{Ni(CN)}_2 \)): Dissociates as \( \text{Ni(CN)}_2(s)

ightleftharpoons \text{Ni}^{2+}(aq) + 2\text{CN}^-(aq) \), ratio 1:2.

  • Option B (\( \text{BaCO}_3 \)): Dissociates as \( \text{BaCO}_3(s)

ightleftharpoons \text{Ba}^{2+}(aq) + \text{CO}_3^{2-}(aq) \), ratio 1:1.

  • Option C (\( \text{MnS} \)): Dissociates as \( \text{MnS}(s)

ightleftharpoons \text{Mn}^{2+}(aq) + \text{S}^{2-}(aq) \), ratio 1:1.

  • Option D (\( \text{Mn(OH)}_2 \)): Dissociates as \( \text{Mn(OH)}_2(s)

ightleftharpoons \text{Mn}^{2+}(aq) + 2\text{OH}^-(aq) \), ratio 1:2.

Since \( \text{CuS} \) and \( \text{MnS} \) have the same 1:1 dissociation stoichiometry, they can be directly compared. Also, \( \text{BaCO}_3 \) has a 1:1 ratio too, but let's check the second part for magnesium hydroxide.

Part 2: Matching Magnesium Hydroxide (\( \text{Mg(OH)}_2 \))

Magnesium hydroxide dissociates as \( \text{Mg(OH)}_2(s)
ightleftharpoons \text{Mg}^{2+}(aq) + 2\text{OH}^-(aq) \), so \( K_{sp} = [\text{Mg}^{2+}][\text{OH}^-]^2 = (s)(2s)^2 = 4s^3 \) (where \( s \) is solubility). We need a salt with a 1:2 cation - anion ratio.

  • Option A (\( \text{Ni(CN)}_2 \)): Dissociates as \( \text{Ni(CN)}_2(s)

ightleftharpoons \text{Ni}^{2+}(aq) + 2\text{CN}^-(aq) \), ratio 1:2.

  • Option D (\( \text{Mn(OH)}_2 \)): Dissociates as \( \text{Mn(OH)}_2(s)

ightleftharpoons \text{Mn}^{2+}(aq) + 2\text{OH}^-(aq) \), ratio 1:2.

Final Answers
  1. For copper(II) sulfide, the salts with the same dissociation stoichiometry (1:1) are \( \text{MnS} \) (Option C) and \( \text{BaCO}_3 \) (Option B). But from the options given and the common comparison, \( \text{MnS} \) (C) is a better match as it also has a sulfide ion. Also, \( \text{BaCO}_3 \) (B) can be included. But looking at the options, the most probable for direct comparison (same ion type and ratio) is C (MnS) and also B (BaCO₃) has the same ratio. But let's re - check:

Wait, the problem says "more than one salt on the right can be directly compared". For \( \text{CuS} \) (1:1 ratio), the salts with 1:1 ratio are B (\( \text{BaCO}_3 \)) and C (\( \text{MnS} \)).

For \( \text{Mg(OH)}_2 \) (1:2 ratio), the salts with 1:2 ratio are A (\( \text{Ni(CN)}_2 \)) and D (\( \text{Mn(OH)}_2 \)).

So:

  1. Copper(II) sulfide (1) can be matched with B (BaCO₃) and C (MnS) (since they have 1:1 ratio). So the answer for 1 is BC.
  1. Magnesium hydroxide (2) can be matched with A (Ni(CN)₂) and D (Mn(OH)₂) (since they have 1:2 ratio). So the answer for 2 is AD.
For the \( K_{sp} \) expressions (already given but just to confirm):
  • Copper(II) sulfide: \( \text{CuS}(s)

ightleftharpoons \text{Cu}^{2+}(aq) + \text{S}^{2-}(aq) \), let solubility be \( s \), then \( [\text{Cu}^{2+}] = s \), \( [\text{S}^{2-}] = s \), so \( K_{sp}=s\times s = s^{2} \).

  • Magnesium hydroxide: \( \text{Mg(OH)}_2(s)

ightleftharpoons \text{Mg}^{2+}(aq) + 2\text{OH}^-(aq) \), let solubility be \( s \), then \( [\text{Mg}^{2+}] = s \), \( [\text{OH}^-]=2s \), so \( K_{sp}=s\times(2s)^{2}=4s^{3} \).

Final Answers for Matching:
  1. 1. copper(II) sulfide: BC
  2. 2. magnesium hydroxide: AD

(If we consider…

Answer:

Part 1: Matching Copper(II) Sulfide (CuS)

To directly compare solubilities using \( K_{sp} \), salts must have the same dissociation stoichiometry (same number of cations and anions). Copper(II) sulfide dissociates as \( \text{CuS}(s)
ightleftharpoons \text{Cu}^{2+}(aq) + \text{S}^{2-}(aq) \), so its \( K_{sp} = [\text{Cu}^{2+}][\text{S}^{2-}] = s^2 \) (where \( s \) is solubility). We need a salt with the same 1:1 cation - anion ratio.

  • Option A (\( \text{Ni(CN)}_2 \)): Dissociates as \( \text{Ni(CN)}_2(s)

ightleftharpoons \text{Ni}^{2+}(aq) + 2\text{CN}^-(aq) \), ratio 1:2.

  • Option B (\( \text{BaCO}_3 \)): Dissociates as \( \text{BaCO}_3(s)

ightleftharpoons \text{Ba}^{2+}(aq) + \text{CO}_3^{2-}(aq) \), ratio 1:1.

  • Option C (\( \text{MnS} \)): Dissociates as \( \text{MnS}(s)

ightleftharpoons \text{Mn}^{2+}(aq) + \text{S}^{2-}(aq) \), ratio 1:1.

  • Option D (\( \text{Mn(OH)}_2 \)): Dissociates as \( \text{Mn(OH)}_2(s)

ightleftharpoons \text{Mn}^{2+}(aq) + 2\text{OH}^-(aq) \), ratio 1:2.

Since \( \text{CuS} \) and \( \text{MnS} \) have the same 1:1 dissociation stoichiometry, they can be directly compared. Also, \( \text{BaCO}_3 \) has a 1:1 ratio too, but let's check the second part for magnesium hydroxide.

Part 2: Matching Magnesium Hydroxide (\( \text{Mg(OH)}_2 \))

Magnesium hydroxide dissociates as \( \text{Mg(OH)}_2(s)
ightleftharpoons \text{Mg}^{2+}(aq) + 2\text{OH}^-(aq) \), so \( K_{sp} = [\text{Mg}^{2+}][\text{OH}^-]^2 = (s)(2s)^2 = 4s^3 \) (where \( s \) is solubility). We need a salt with a 1:2 cation - anion ratio.

  • Option A (\( \text{Ni(CN)}_2 \)): Dissociates as \( \text{Ni(CN)}_2(s)

ightleftharpoons \text{Ni}^{2+}(aq) + 2\text{CN}^-(aq) \), ratio 1:2.

  • Option D (\( \text{Mn(OH)}_2 \)): Dissociates as \( \text{Mn(OH)}_2(s)

ightleftharpoons \text{Mn}^{2+}(aq) + 2\text{OH}^-(aq) \), ratio 1:2.

Final Answers
  1. For copper(II) sulfide, the salts with the same dissociation stoichiometry (1:1) are \( \text{MnS} \) (Option C) and \( \text{BaCO}_3 \) (Option B). But from the options given and the common comparison, \( \text{MnS} \) (C) is a better match as it also has a sulfide ion. Also, \( \text{BaCO}_3 \) (B) can be included. But looking at the options, the most probable for direct comparison (same ion type and ratio) is C (MnS) and also B (BaCO₃) has the same ratio. But let's re - check:

Wait, the problem says "more than one salt on the right can be directly compared". For \( \text{CuS} \) (1:1 ratio), the salts with 1:1 ratio are B (\( \text{BaCO}_3 \)) and C (\( \text{MnS} \)).

For \( \text{Mg(OH)}_2 \) (1:2 ratio), the salts with 1:2 ratio are A (\( \text{Ni(CN)}_2 \)) and D (\( \text{Mn(OH)}_2 \)).

So:

  1. Copper(II) sulfide (1) can be matched with B (BaCO₃) and C (MnS) (since they have 1:1 ratio). So the answer for 1 is BC.
  1. Magnesium hydroxide (2) can be matched with A (Ni(CN)₂) and D (Mn(OH)₂) (since they have 1:2 ratio). So the answer for 2 is AD.
For the \( K_{sp} \) expressions (already given but just to confirm):
  • Copper(II) sulfide: \( \text{CuS}(s)

ightleftharpoons \text{Cu}^{2+}(aq) + \text{S}^{2-}(aq) \), let solubility be \( s \), then \( [\text{Cu}^{2+}] = s \), \( [\text{S}^{2-}] = s \), so \( K_{sp}=s\times s = s^{2} \).

  • Magnesium hydroxide: \( \text{Mg(OH)}_2(s)

ightleftharpoons \text{Mg}^{2+}(aq) + 2\text{OH}^-(aq) \), let solubility be \( s \), then \( [\text{Mg}^{2+}] = s \), \( [\text{OH}^-]=2s \), so \( K_{sp}=s\times(2s)^{2}=4s^{3} \).

Final Answers for Matching:
  1. 1. copper(II) sulfide: BC
  2. 2. magnesium hydroxide: AD

(If we consider the options strictly based on ratio:

  1. Copper(II) sulfide (1:1 ratio) matches with B (BaCO₃, 1:1) and C (MnS, 1:1).
  1. Magnesium hydroxide (1:2 ratio) matches with A (Ni(CN)₂, 1:2) and D (Mn(OH)₂, 1:2).)