<u>Answer:</u>
When cells are in an <u>isotonic</u> solution, they are maintaining homeostasis.
<u>Explanation:</u>
"Homeostasis" is the process to maintain a stable and relatively constant internal environment. In addition to temperature it is maintained for many other factors too. "Isotonic solution" comprised of two solutions having the similar osmotic pressure across a semipermeable membrane.
Such solution maintain homeostasis of a cell via diffusion process. As in such solution the overall concentration on both sides of the membrane remains equal. The cell membrane command the movement regrading entrance and exit of anything in cell, the membrane control water and ion transport because of its phospholipid bilayer structure.
Given what we know, we can assume that the most likely reason why Chris did not get a rash was that the medication he is taking allowed his body extra resistance to the toxins in the river.
<h3>How does this explain why he didn't get a rash?</h3>
The most likely reason why he did not get a rash when Chris's friends did, is because Chris is taking a medication that his friends are not. This most likely doubles as an effective medication to fight off the toxins present in the river, since his friends did not take this medication, they were unable to resist said toxins.
Therefore, we can confirm that the most likely reason why Chris did not get a rash was that the medication he is taking allowed his body extra resistance to the toxins in the river.
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<span>Change in landscape due to construction causes a very significant impact on the ecosystem, which has a lasting effect. Construction leads to soil erosion, deforestation, pollution, and decrease in flora and fauna of the ecosystem.</span><span />
<u>Answer:</u>
<em>Carbohydrates are stored in the liver and skeletal muscles in the form of </em><em><u>Glycogen.</u></em>
<u>Explanation:</u>
The carbohydrates are stored in the form of fats when the muscles and liver are full. When we consume carbohydrate giving foods, the food is broken down into molecular form of sugar and the sugar is turned into glucose by liver.
The glucose is converted into glycogen for long term storage in our body. The glucose is converted into fats and stored in body when the liver and skeletal muscles are full.