Having two smaller skin cells instead of one large skin cell increases the overall surface area, which enhances nutrient absorption and waste removal. Smaller cells can also divide and regenerate more easily, promoting faster healing and repair. Additionally, smaller cells can communicate more effectively with neighboring cells, coordinating responses to environmental changes and injury. This improved functionality contributes to healthier skin overall.
No, an elephant is not large because it has large cells.
Muscle cells would benefit from having multiple nuclei because they are large cells that require a lot of genetic material to support their functions, such as protein synthesis and energy production. Having multiple nuclei helps to efficiently regulate gene expression and coordinate cellular activities across a large cell volume.
no they do not
27 smaller cells would have a greater surface area than one large cell. This is because the total surface area of the smaller cells would be greater due to the additional surface area of the cell membranes around each individual cell.
Cells can only grow so large because the surface to volume ratio decreases with size. This ratio needs to remain large because it allows a better interface w/ other cells per size: the cell could not survive if it was too large.
No, an elephant is not large because it has large cells.
It takes less cells to do the job. If you cut yourself, then your body can send less cells to heal the wound compared to when the cells are smaller. You need more cells when you are smaller then when you have the larger cells.
Muscle cells would benefit from having multiple nuclei because they are large cells that require a lot of genetic material to support their functions, such as protein synthesis and energy production. Having multiple nuclei helps to efficiently regulate gene expression and coordinate cellular activities across a large cell volume.
no they do not
27 smaller cells would have a greater surface area than one large cell. This is because the total surface area of the smaller cells would be greater due to the additional surface area of the cell membranes around each individual cell.
Cells can only grow so large because the surface to volume ratio decreases with size. This ratio needs to remain large because it allows a better interface w/ other cells per size: the cell could not survive if it was too large.
Vacuoles are small in animal cells but large in plant cells. They play a role in maintaining turgor pressure in plant cells and storing water, ions, and nutrients. In animal cells, vacuoles are smaller and more specialized in function.
The breakdown of large molecules into smaller ones to be absorbed by cells is called digestion. This process involves the breakdown of carbohydrates, proteins, and fats into their smaller components (such as glucose, amino acids, and fatty acids) that can be readily absorbed and used by the body.
No, bacterial cells are typically very small in size, ranging from about 0.5 to 5 micrometers in diameter. They are much smaller than most eukaryotic cells, such as human cells.
lysomes
the answer is lysosomes
The large cells did not destroy the small aerobic cells they engulfed because of a mutualistic relationship where both cells benefit from each other. The small aerobic cells provide energy in the form of ATP through aerobic respiration, benefiting the large cells by increasing their efficiency. In return, the large cells offer protection and a stable environment for the small aerobic cells to thrive.