SA:V can be calculated by multiplying the surface area of the cell by the volume of the cell. :: Small molecules can move through the cell cytoplasm via simple diffusion. :: SA:V is directly related to the efficiency of diffusion through the cell.
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Extra Insights
Did you know that the surface area-to-volume ratio (SA:V) is crucial in various biological processes? As cells grow larger, their volume increases faster than their surface area, which can compromise their ability to absorb nutrients and expel waste efficiently. For this reason, many cells, like those of single-celled organisms, tend to remain small, or even adopt different shapes to maintain a high SA:V ratio! In the world of multicellular organisms, cells have evolved interesting adaptations. For instance, in the human lungs, the alveoli are tiny air sacs that increase surface area for gas exchange. This massive increase in surface area allows for more efficient oxygen absorption and carbon dioxide removal, showcasing just how essential that SA:V concept is in real-world biology!
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