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Question
- if the bleach had been an essential nutrient, which cell would most quickly obtain enough of this nutrient to satisfy its needs? why was that cell most effective at maximizing bleach penetration? 3. based on your answers to the last two questions, what is more favorable for cells, a large sa:v ratio or a small sa:v ratio? justify your response. while we wait for the 30 minutes to pass... grouping similar cells scanning electron microscopes are more powerful than the compound microscopes we have available at jrhs and can produce more detailed pictures called micrographs. you will examine micrographs of cells and look for patterns. you will also be sorting slides with your teammates! procedure 1. analyze the micrographs and sort them into groups (as many as you choose). 2. organize the groups of micrographs on one of your desks using chalk markers. make sure it is clear which micrographs belong in each group. 3. write a brief description for each group the desk. 4. take a photo and attach here. 5. take a picture of packet and upload to canvas!
Step1: Understand cell - nutrient uptake
Cells with a larger surface - area - to - volume (SA:V) ratio can absorb nutrients more quickly. This is because a larger SA:V ratio provides more surface area through which nutrients can enter the cell relative to the cell's volume.
Step2: Answer question 2
The cell with the largest SA:V ratio would most quickly obtain enough of the nutrient. It is most effective at maximizing penetration because a larger surface area allows for more contact with the nutrient in the environment, facilitating faster diffusion or active transport of the nutrient into the cell.
Step3: Answer question 3
A large SA:V ratio is more favorable for cells. Justification: A large SA:V ratio means more surface area is available for processes like nutrient uptake, gas exchange, and waste removal. With more surface area relative to volume, cells can more efficiently exchange substances with their surroundings, which is crucial for survival and proper functioning.
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- The cell with the largest SA:V ratio. Because more surface area allows for faster nutrient uptake.
- A large SA:V ratio. Because it enables more efficient substance exchange with the environment.