Answer:
0.392 moles of KNO3.
Step-by-step explanation:
To find the moles of a solute based on the volume and concentration of a solution, we use the following formula:
![Molarity\text{ \lparen M\rparen=}\frac{mole\text{s of solute}}{liter\text{s of solution}}=\frac{mo\text{l }}{L}.](https://img.qammunity.org/2023/formulas/chemistry/college/c7fdjhk6ap3dkg03hltyqmr8awjcwtpjy7.png)
The given data is: molarity = 0.560 M and volume (liters of solution) = 0.70 L. So, let's solve for 'moles of solute' and replace the values that we have. The solute in this case, would be KNO3:
![\begin{gathered} mole\text{s of solute=Molarity \lparen M\rparen}\cdot liter\text{s of solution} \\ mole\text{s of KNO}_3\text{=0.560M}\cdot0.70\text{ L = 0.392 moles KNO}_3. \end{gathered}](https://img.qammunity.org/2023/formulas/chemistry/college/zeenupclrekbvd0xlokhmdnmzpn3m9q65q.png)
We're going to use 0.392 moles of KNO3 to prepare 0.70 L of a 0.560 M solution.