To verify the existence of silver in your solution, one should first form a white precipitate by addition of NaCl. Next, the precipitate should dissolve in aqueous ammonia. Silver can re- precipitate by addition of 6M HNO,. Using chemical equations, describe the identity of the product formed in each step. E (Your three steps should be after addition of NaCl, after addition of ammonia and after addition of HNO,.)

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**Verification of Silver in Solution**

To verify the presence of silver in your solution, follow these steps:

1. **Formation of White Precipitate**: Add NaCl to the solution. A white precipitate indicates the presence of silver.

2. **Dissolution in Ammonia**: The white precipitate should dissolve when you add aqueous ammonia.

3. **Re-precipitation with HNO₃**: Add 6M HNO₃. Silver should re-precipitate, confirming its presence.

**Task**: Using chemical equations, describe the identity of the products formed at each stage (following the addition of NaCl, ammonia, and HNO₃).
Transcribed Image Text:**Verification of Silver in Solution** To verify the presence of silver in your solution, follow these steps: 1. **Formation of White Precipitate**: Add NaCl to the solution. A white precipitate indicates the presence of silver. 2. **Dissolution in Ammonia**: The white precipitate should dissolve when you add aqueous ammonia. 3. **Re-precipitation with HNO₃**: Add 6M HNO₃. Silver should re-precipitate, confirming its presence. **Task**: Using chemical equations, describe the identity of the products formed at each stage (following the addition of NaCl, ammonia, and HNO₃).
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