If the smaller cells' total volume is at least that of the larger cell then the smaller cells have the greater surface area.
they have a greater surface-to-volume ratio
To occupy a large surface.
Yes, large cells and small cells both carry out diffusion and osmosis, but the rates can differ. Smaller cells generally have a higher surface area-to-volume ratio, allowing for more efficient and faster diffusion and osmosis compared to larger cells. As cells increase in size, the volume grows faster than the surface area, which can slow down these processes. Therefore, smaller cells typically exchange materials more rapidly than larger cells.
The efficiency of large versus small cells in performing tasks depends on the specific context and functions of the cells. Larger cells may have more organelles and resources, allowing for greater metabolic capacity and faster processing of certain tasks. However, smaller cells often benefit from a higher surface area-to-volume ratio, which can enhance nutrient uptake and waste removal. Ultimately, the efficiency varies based on the cell type and the demands of the task.
No, an elephant is not large because it has large cells.
they have a greater surface-to-volume ratio
small cells have a greater surface-to-volume ratio than larger cells.
A greater surface area allows for greater energy transfer.
A smaller cell has a higher surface area to volume ratio. A reason for this is volume is cubic (3D) and surface area is 2D so when surface area increases a little bit, the volume increases exponentially. And when the surface area shrinks a little bit, the volume decreases exponentially.
There is more total surface area on the eight smaller cells than there is on the one large cell.
Small cells have a higher surface area to volume ratio, which allows for a more efficient exchange of substances with their environment. This is because the surface area of a cell determines the rate at which substances can be exchanged, and smaller cells have a greater surface area relative to their volume compared to larger cells.
They have a greater surface-to-volume ratio
To occupy a large surface.
With smaller cells, there is a greater surface area.
Yes, large cells and small cells both carry out diffusion and osmosis, but the rates can differ. Smaller cells generally have a higher surface area-to-volume ratio, allowing for more efficient and faster diffusion and osmosis compared to larger cells. As cells increase in size, the volume grows faster than the surface area, which can slow down these processes. Therefore, smaller cells typically exchange materials more rapidly than larger cells.
An object with a large surface area experiences greater air resistance because there is more surface for the air to push against as the object moves. This can slow down the object's motion more significantly compared to an object with a smaller surface area.
Cells are most efficient when they a greater surface area and smaller volume. The larger a cell gets, the more difficult transport becomes and the longer it takes to reach homeostasis. !00 smaller (Faster) cells are the most efficient of the options given.