Active cells such as muscle and liver cells have more mitochondria than others because they use up a lot more energy to carry out their roles and stay alive. Thus needing the extra mitochondria to produce more energy.
Muscle cells often contain many mitochondria because muscle cells often require a lot of energy, and since mitochondria create ATP which is the form of energy used by our bodies, it is essential to have many of them in cells that constantly require more energy than, as an example, skin cells.
Muscle cells have lots of mitochondria. Mitochondria is known as a "powerhouse" of the cell. In the inner membrane matrix of the mitochondria there are ATP synthases that generate ATP energy.
Muscle cells have the highest concentration of mitochondria.
Cells that require a lot of energy, such as muscle cells or cells in the heart, would likely have the most mitochondria.
Mitochondria is a procaryotic remnant in our cells with the purpose of creating energy needed by cells to perform their function. Some sells need more energy that others and therefore tend to have more mitochondria. Cells that need lot of energy (ATP) has more mitochondria than cells that require less.
All complex cells contain mitochondria.
Plant cells and eukaryotic algae that conduct photosynthesis are the two types of cells that contain choloplasts.
Mitochondria are in eukariyotes.They are not in prokariyotes.
Muscle cells often contain many mitochondria because muscle cells often require a lot of energy, and since mitochondria create ATP which is the form of energy used by our bodies, it is essential to have many of them in cells that constantly require more energy than, as an example, skin cells.
Muscle cells have lots of mitochondria. Mitochondria is known as a "powerhouse" of the cell. In the inner membrane matrix of the mitochondria there are ATP synthases that generate ATP energy.
Muscle cells have the highest concentration of mitochondria.
Eukaryotic cells have mitochondria (singular mitochondrion).
The number of mitochondria in a cell can vary widely depending on the cell type and its energy demands. For instance, muscle cells may contain thousands of mitochondria, while less active cells, like skin cells, may have only a few hundred. Generally, the average cell contains anywhere from hundreds to thousands of mitochondria to meet its energy requirements.
They are found in both type of cells. Mitochondria are essential for cellular respiration
Cells that require a lot of energy, such as muscle cells or cells in the heart, would likely have the most mitochondria.
plants and animal cells
Mitochondria would be most numerous in highly active cells that require significant energy, such as muscle cells, particularly cardiac muscle cells. These cells rely on aerobic respiration to meet their energy demands during contraction. Additionally, neurons in the brain also contain numerous mitochondria to support their high metabolic activity.