Write the net ionic equation for the precipitation of nickel(II) sulfide from aqueous solution:

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**Chemical Reaction and Net Ionic Equation for Nickel(II) Sulfide Precipitation**

In this exercise, you are tasked with writing the net ionic equation for the precipitation of nickel(II) sulfide from an aqueous solution. 

### Visual Representation:
The image presents a blank equation format depicted as:

- A box representing the reactant ion for nickel.
- A plus sign (+).
- Another box representing the reactant ion for sulfide.
- An arrow indicating the formation of a product.
- A final box representing the product, nickel(II) sulfide.

### Context:
Nickel(II) sulfide is formed when nickel ions in solution react with sulfide ions, resulting in an insoluble compound that precipitates out of the solution.

### Net Ionic Equation:
\[ \text{Ni}^{2+} (aq) + \text{S}^{2-} (aq) \rightarrow \text{NiS} (s) \]

This equation highlights the direct reaction between nickel ions and sulfide ions to form solid nickel(II) sulfide, emphasizing the ionic participants involved in this specific chemical change.
Transcribed Image Text:**Chemical Reaction and Net Ionic Equation for Nickel(II) Sulfide Precipitation** In this exercise, you are tasked with writing the net ionic equation for the precipitation of nickel(II) sulfide from an aqueous solution. ### Visual Representation: The image presents a blank equation format depicted as: - A box representing the reactant ion for nickel. - A plus sign (+). - Another box representing the reactant ion for sulfide. - An arrow indicating the formation of a product. - A final box representing the product, nickel(II) sulfide. ### Context: Nickel(II) sulfide is formed when nickel ions in solution react with sulfide ions, resulting in an insoluble compound that precipitates out of the solution. ### Net Ionic Equation: \[ \text{Ni}^{2+} (aq) + \text{S}^{2-} (aq) \rightarrow \text{NiS} (s) \] This equation highlights the direct reaction between nickel ions and sulfide ions to form solid nickel(II) sulfide, emphasizing the ionic participants involved in this specific chemical change.
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