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We can identify which solvent can strip solute particles with the greatest surface if we have the option to choose from. This statement is not a definition, it is an analogy question for a given situation.

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You can make solute dissolve more quickly in a solvent by?

increasing the temperature of the solvent, agitating the mixture, or increasing the surface area of the solute particles.


Why does a solid solute dissolve quicker if it is crushed into smaller particles?

When a solid solute is crushed into smaller particles, the surface area available for interaction with the solvent increases. This allows for more solvent-solute contact, enabling faster dissolution. Additionally, the smaller particles have weaker intermolecular forces holding them together, further facilitating their dispersal in the solvent.


Why does size affect a soluble solid from dissolving quicker?

A smaller size exposes more surface area of the solid to the solvent, allowing for faster dissolution. This is because the solvent can more easily interact with and break down the solid particles when they are smaller.


List three factors that determine the rate of formation of a solution?

The rate of formation of a solution is influenced by the surface area of the solute particles, temperature of the solvent, and the degree of mixing or agitation between the solute and solvent. A higher surface area, temperature, and mixing all tend to increase the rate of solution formation.


Which will dissolve faster a substance with little surface area or the one with a large surface area?

A substance with a larger surface area will dissolve faster because it provides more contact points for the solvent to interact with, leading to a faster rate of dissolution compared to a substance with little surface area.

Related Questions

Can particles of a solid solute can escape into the solvent only at the surface of the solute?

Yes, particles of a solid solute can escape into the solvent at the surface of the solute through a process called dissolution. This occurs when the particles of the solute come into contact with the solvent molecules and break free from the solid lattice structure to become dispersed throughout the solvent.


You can make solute dissolve more quickly in a solvent by?

increasing the temperature of the solvent, agitating the mixture, or increasing the surface area of the solute particles.


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.


How does an increase in surface area help a solute dissolve more quickly?

Not necessarily just changing the surface area causes the rate to change. Changing the ratio of surface area volume changes the rate at which a solute dissolves in a solvent. If the surface area is larger and the volume of a solute is smaller or the same, then the rate at which the solute dissolves in a solvent increases. If the surface area is smaller and the volume of the solute is larger or the same, then the rate at which the solute dissolves in a solvent decreases.


What effect will the addition of a solute to the solvent have on the ability of the solvent molecules to escape from the surface of the solution?

by adding solvent, the ability of solvent molecules to escape(i.e its vapour pressure) will decrease.because the solute particles provide hinderance


Why does a solid solute dissolve quicker if it is crushed into smaller particles?

When a solid solute is crushed into smaller particles, the surface area available for interaction with the solvent increases. This allows for more solvent-solute contact, enabling faster dissolution. Additionally, the smaller particles have weaker intermolecular forces holding them together, further facilitating their dispersal in the solvent.


Why do we crush solids before putting them into a solvent?

Crushing solids before putting them into a solvent increases the surface area of the solid particles in contact with the solvent. This allows for better and faster dissolution of the solid into the solvent, leading to more efficient extraction of compounds or dissolution of substances.


How does the size of the particles effect the rate of dissoving?

Actually, it is not the size that matters, but the area of contact. we see that the dissolving of an object happens because there are collisions between the solvent and the solute. When the solute is BIG, for example, a block, the solvent can only collide with the surface of the block, but not the middle of the block. that means it will take a longer time for the solvent to dissolve the solute. When the block is pondered into a powdery state, it is easier for the solvent to dissolve the solute because of the larger area of collisions.


How does size affect the dissolving rate?

Generally, the smaller the particle size of a substance, the faster it will dissolve. This is because smaller particles have a larger surface area for the solvent to interact with, allowing for quicker dissolution. Conversely, larger particles take longer to dissolve due to their reduced surface area for interaction with the solvent.


How does surface area affect dissolution?

Surface area significantly influences the rate of dissolution because a larger surface area allows more solute particles to come into contact with the solvent. When a solid solute is broken into smaller pieces or powdered, it exposes more surface area, facilitating faster interaction with the solvent molecules. This increased interaction leads to quicker dissolution because solvent molecules can surround and separate solute particles more efficiently. Consequently, finer particles typically dissolve more rapidly than larger chunks of the same substance.


What can you do to dissolve a solute faster?

You can crush it, which will increase its surface area. You can stir it, causing agitation. You can heat the solvent, which will make the particles making up the solvent and solute move faster.


for which substance does temperature seem to have the greatest influence on solubility?

cerium sulfate