The image shows the concentration of a solute on both sides of a semi-permeable membrane. What do you predict concentrations will be at 15 seconds? (Homeostasis Gizmos)

The image shows the concentration of a solute on both sides of a semipermeable membrane What do you predict concentrations will be at 15 seconds Homeostasis Giz class=

Respuesta :

Answer:

According to the image it can be predicted that the concentration of a solute on both sides of a semi-permeable membrane at 15 seconds will be equal on both sides (60/60), since the equilibrium reached at 10 seconds is maintained.

Explanation:

When a solute exists in different concentrations on both sides of a semipermeable membrane, the solute will be pushed from the place of higher concentration to the place of lower concentration, following a concentration gradient. Particle movement in this case will stop when equilibrium has been reached, i.e. when the solute has the same concentration on both sides of the membrane.

What the image shows is a solute that was on both sides of the semipermeable membrane at different concentrations. In the second 10 the concentrations on both sides were already equal, equilibrium had been reached and the concentration gradient disappears. At 15 seconds the concentrations should remain the same, since equilibrium has been maintained.

The semi-permeable membrane is a type of membrane which allows only to pass solute molecules. The flow of water from a high concentration to a low concentration is called osmosis.

According to the image, we can predict that the concentration of a solute on both sides of a semi-permeable membrane at 15 seconds will be equal on both sides (60/60) since the equilibrium reached at 10 seconds is maintained.

This condition is stated as an isotonic solution.

When a solute exists in different concentrations on both sides of a semipermeable membrane.

The solute will be pushed from the place of higher concentration to the place of lower concentration, following a concentration gradient.

Particle movement in this case will stop when equilibrium has been reached, i.e. when the solute has the same concentration on both sides of the membrane.  

In the second 10, the concentrations on both sides were already equal, equilibrium had been reached and the concentration gradient disappears.

At 15 seconds the concentrations should remain the same since equilibrium has been maintained.

For more information, refer to the link:-

https://brainly.com/question/15804584