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When you make a concentrated product do you reduce the amount of solute or solvent?

When making a concentrated product, you typically increase the amount of solute while keeping the amount of solvent the same or reducing it. This increases the concentration of the solute in the solution.


What are the factors on which rate of dissolving a solute in a solvent depends?

The rate of dissolving a solute in a solvent depends on factors such as temperature (higher temperatures usually increase the rate of dissolution), surface area of the solute (finely powdered solutes dissolve faster), stirring or agitation (increases the contact between solute and solvent), and the nature of the solute and solvent (like solubility and polarity).


What increases is more solute dissolves in the solvent?

As more solute dissolves in a solvent, the solubility of the solute in the solvent increases. This leads to an increase in the concentration of the solution. The solution becomes more concentrated as more solute particles are dispersed in the solvent.


How can you create a more concentrated solution?

To create a more concentrated solution, you can add more solute (substance being dissolved) to the solvent (liquid medium). This increases the amount of solute particles in the solution, making it more concentrated. Alternatively, you can decrease the amount of solvent in the solution, which also increases the concentration of the solute.


Why grinding help a solution dissolve rapidly?

Grinding increases the surface area of the solute particles, which allows for more contact with the solvent. This increased surface area facilitates faster dissolution since more solute particles can come into contact with the solvent, leading to a quicker saturation and dissolution process.


Increasing the surface area between solute and solvent increases what?

Increasing the surface area between solute and solvent increases the rate of dissolution, as it provides more contact for the solute molecules to interact with the solvent molecules. This can lead to a faster dissolution process and a more efficient mixing of the solute in the solvent.


What is the the maximum amount of solute dissolved in a solvent at a given temperature measures the?

The maximum amount of solute that can be dissolved in a solvent at a given temperature is known as the solubility of that solute in the solvent. Solubility is typically expressed in terms of concentration, such as grams of solute per 100 grams of solvent. It varies with temperature; generally, solubility increases with temperature for solids, while it may decrease for gases.


How much solvent can dissolve a given amount of solute?

The amount of solvent that can dissolve a given amount of solute depends on the solubility of the solute in the solvent. Solubility is a property that describes how much of a solute can dissolve in a solvent at a given temperature. It is typically expressed as grams of solute per 100 grams of solvent. It is important to note that solubility can vary for different solutes and solvents.


Determine the amount of solute that can dissolve in a given amount of solvent given solubility?

The amount of solute that can dissolve in a given amount of solvent is determined by the solubility of the solute in that solvent at a specific temperature. Solubility is expressed as grams of solute per 100 grams of solvent. By knowing the solubility, you can calculate how much solute can dissolve in the specified amount of solvent.


How does increasing the amount of solvent speed up the dissolving process?

By breaking up the solute, the surface area between the solute and solvent is increased, meaning the solute can more easily dissolve into it's components.


What is small amount of solute in solvent called?

A small amount of solute in solvent is called a dilute solution. This means the concentration of the solute is low compared to the amount of solvent.


What is the greatest amount of solute that can dissolve in solvent?

The amount of solute that can be dissolved in a solvent has many factors. These include: the strength of the solvent, the temperature of the solvent, whether the solute is soluble or not. There is no definite answer to the question.