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A chemical reaction occurs where iron III iodide is formed and potassium nitrate is produced as a byproduct. The balanced chemical equation for this reaction is 2KI + Fe(NO3)3 -> 2KNO3 + FeI3. Iron III iodide is a dark brown solid, whereas potassium nitrate remains in solution.

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Q: A solution of potassium iodide is treated with iron III nitrate solution?
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What is the liquid left when you mix potassium iodide and led nitrate?

When potassium iodide and lead nitrate are mixed, a yellow precipitate of lead iodide forms in the solution, while potassium nitrate remains dissolved in the liquid.


When potassium iodine solution is added to a solution of lead nitrate in a test tube what will be the compound precipitate?

The compound precipitate formed when potassium iodide is added to a solution of lead nitrate is lead iodide, which is a yellow precipitate. This reaction is a double displacement reaction where the potassium ion and nitrate ion switch partners to form potassium nitrate and lead iodide.


Lead nitrate is treated with potassium iodide solution?

A yellow precipitate of lead(II) iodide is formed, according to the following balanced chemical equation: Pb(NO3)2 + 2KI -> PbI2 + 2KNO3


Reacting lead II nitrate solution with potassium iodide solution?

This is a double displacement reaction. 2KI + Pb(NO3)2 --> 2KNO3 + PbI2 Potassium iodide + Lead(II) nitrate --> Potassium nitrate + Lead(II) iodide A bright yellow precipitate will form when these two react.


How do you separate lead iodide precipitate and potassium nitrate solution?

You can separate lead iodide precipitate and potassium nitrate solution by filtration. Pour the mixture through a filter paper in a funnel to trap the solid lead iodide, allowing the clear potassium nitrate solution to pass through. The lead iodide will be left on the filter paper, which can then be washed with water to remove any remaining potassium nitrate before drying the solid lead iodide.

Related questions

What is the Symbol equation for silver nitrate solution and potassium iodide?

The symbol equation for silver nitrate solution and potassium iodide is: AgNO3(aq) + KI(aq) -> AgI(s) + KNO3(aq).


What is the liquid left when you mix potassium iodide and led nitrate?

When potassium iodide and lead nitrate are mixed, a yellow precipitate of lead iodide forms in the solution, while potassium nitrate remains dissolved in the liquid.


When potassium iodine solution is added to a solution of lead nitrate in a test tube what will be the compound precipitate?

The compound precipitate formed when potassium iodide is added to a solution of lead nitrate is lead iodide, which is a yellow precipitate. This reaction is a double displacement reaction where the potassium ion and nitrate ion switch partners to form potassium nitrate and lead iodide.


What happens when a solution of potassium iodide is added to a solution of lead nitrate taken in a test tube?

A yellow precipitate of lead iodide is formed due to the reaction between potassium iodide and lead nitrate. This reaction is a double displacement reaction, where the potassium from potassium iodide swaps places with the lead from lead nitrate, forming the insoluble lead iodide.


Lead nitrate is treated with potassium iodide solution?

A yellow precipitate of lead(II) iodide is formed, according to the following balanced chemical equation: Pb(NO3)2 + 2KI -> PbI2 + 2KNO3


What happens when silver nitrate solution is added to potassium iodide solution?

A white precipitate of silver iodide forms due to the reaction between silver ions and iodide ions, leaving potassium nitrate in solution. This reaction is a double displacement reaction and is used as a test for iodide ions.


Reacting lead II nitrate solution with potassium iodide solution?

This is a double displacement reaction. 2KI + Pb(NO3)2 --> 2KNO3 + PbI2 Potassium iodide + Lead(II) nitrate --> Potassium nitrate + Lead(II) iodide A bright yellow precipitate will form when these two react.


What are the changes in adding potassium iodide to lead nitrate?

When potassium iodide is added to lead nitrate, a precipitation reaction occurs resulting in the formation of lead iodide, a yellow insoluble solid, and potassium nitrate, which remains in solution. This reaction can be visually identified by the formation of a yellow precipitate.


How do you separate lead iodide precipitate and potassium nitrate solution?

You can separate lead iodide precipitate and potassium nitrate solution by filtration. Pour the mixture through a filter paper in a funnel to trap the solid lead iodide, allowing the clear potassium nitrate solution to pass through. The lead iodide will be left on the filter paper, which can then be washed with water to remove any remaining potassium nitrate before drying the solid lead iodide.


What is observed when a solution of potassium iodide is added to lead nitrate name the type of reaction solution?

When a solution of potassium iodide is added to lead nitrate, a yellow precipitate of lead iodide is formed. This is a double displacement reaction where the cations and anions switch partners to form the products.


When lead(II) nitrate solution is added to potassium iodide solution solid lead(II) iodide forms and potassium nitrate solution remains.?

The reaction that occurs is a double displacement reaction where lead(II) nitrate and potassium iodide switch partners to form solid lead(II) iodide and potassium nitrate solution. This reaction can be represented by the equation Pb(NO3)2 + 2KI -> Pbl2 + 2KNO3.


What are the products of mercury 2 nitrate solutions with potassium iodide to give mercury to iodide and potassium nitrate?

The products are Mercury(II) iodide and Potassium nitrate