Groups of small cells are more effective at moving materials in and out due to their larger surface area-to-volume ratio. This increased ratio allows for more efficient diffusion and transport of substances across the cell membrane. Additionally, smaller cells can facilitate quicker communication and coordination within the group, enhancing their overall responsiveness to environmental changes. Overall, this organization supports better nutrient uptake and waste removal.
Groups of small cells are better than one large cell because they have a higher surface area to volume ratio, enabling more efficient exchange of materials in and out of the cells. This increased surface area allows for faster diffusion of nutrients, gases, and waste products, leading to improved cellular functions. Additionally, small cells are more flexible and adaptable to changing environmental conditions.
they have a greater surface-to-volume ratio
Today I just did a lab viewing elodea cells and human cheek cells. When I viewed the Elodea cells on the highest power, I saw chloroplasts moving. They looked like tiny green spheres moving in little groups of two or more on a set of "tracks". I hope this answers the question.
All cells are divided into two major groups: prokaryotic cells and eukaryotic cells. Prokaryotic cells lack a nucleus and membrane-bound organelles, with their genetic material floating freely in the cytoplasm, while eukaryotic cells have a defined nucleus and various membrane-bound organelles. Prokaryotes include bacteria and archaea, whereas eukaryotes encompass animals, plants, fungi, and protists.
They have greater surface area-to-volume ratios.
They have a greater surface-to-volume ratio
Groups of small cells are more effective at moving materials in and out due to their larger surface area-to-volume ratio. This increased ratio allows for more efficient diffusion and transport of substances across the cell membrane. Additionally, smaller cells can facilitate quicker communication and coordination within the group, enhancing their overall responsiveness to environmental changes. Overall, this organization supports better nutrient uptake and waste removal.
small cells have a greater surface-to-volume ratio than larger cells.
Groups of small cells are better than one large cell because they have a higher surface area to volume ratio, enabling more efficient exchange of materials in and out of the cells. This increased surface area allows for faster diffusion of nutrients, gases, and waste products, leading to improved cellular functions. Additionally, small cells are more flexible and adaptable to changing environmental conditions.
they have a greater surface-to-volume ratio
no, bacterial cells do not have genetic material
A. Storing energy
Today I just did a lab viewing elodea cells and human cheek cells. When I viewed the Elodea cells on the highest power, I saw chloroplasts moving. They looked like tiny green spheres moving in little groups of two or more on a set of "tracks". I hope this answers the question.
Vacuolecantain stored food for cells or wast material form cells.
Which structure contains a eukaryotic cells genetic material
All cells are divided into two major groups: prokaryotic cells and eukaryotic cells. Prokaryotic cells lack a nucleus and membrane-bound organelles, with their genetic material floating freely in the cytoplasm, while eukaryotic cells have a defined nucleus and various membrane-bound organelles. Prokaryotes include bacteria and archaea, whereas eukaryotes encompass animals, plants, fungi, and protists.