Mitochondria
Cells that contain a large number of mitochondria are typically found in tissues with high energy demands, such as muscle cells and liver cells.
A large number of mitochondria power the flagella of sperm cells.
Mitochondria, as they are responsible for producing energy in the form of ATP through cellular respiration. Cells that require a lot of energy, such as muscle cells or neurons, will have higher concentrations of mitochondria to meet their energy demands.
Parietal cells are acidophilic because they contain a large number of mitochondria. The mitochondria, which are needed to pump hydrogen ions against their concentration gradient, are acidophilic; therefore, parietal cells are acidophilic as well.
Mussel cells contain mitochondria because mitochondria provide the cell with energy in the form of ATP through the process of cellular respiration. Mussel cells are highly active and require a large amount of energy to carry out their functions, such as maintaining muscle contraction for movement and filtration in the water. Mitochondria are known as the powerhouse of the cell because they are responsible for generating the majority of the cell's ATP, making them essential for the survival and function of mussel cells.
Muscle cells and liver cells possess a large quantity of mitochondria. Muscle cells need a lot of energy for movement, and liver cells play a major role in metabolism and detoxification, both of which require a high amount of energy production.
No, platelets do not have a nucleus. They're known as anucleur cells.
Cells in salivary glands would be expected to contain a large amount of secretory vesicles filled with proteins and other molecules that make up saliva. Additionally, these cells may have a high number of mitochondria to meet the energy demands of secretion. Lastly, these cells would also have a well-developed endoplasmic reticulum and Golgi apparatus for protein synthesis and packaging.
Mitochondria is a cite in the cytoplasm also known as power house of the cell because of their energy generating ability in the cell. In humans there are many life activities that goes on in the body in order to make life possible. The prominent activity is that needs large amount of energy is reproduction. This occurs in the tissues, hence mitochondria are mostly found in muscle tissues for this life activity.
The muscle cells responsible for bumblebee flight contain a high density of mitochondria to meet the intense energy demands of rapid wing movement. Mitochondria are the cell's powerhouses, generating ATP through aerobic respiration, which is crucial for sustained flight. The large number of mitochondria enables bumblebees to efficiently produce the energy needed for their high metabolic rate during flight, allowing them to hover and maneuver effectively.
The most prominent roles of mitochondria are to produce ATP from stored energy, through the process of respiration. Since flight requires a large amount of energy, the muscles involved in flight must have a sufficient amount of mitochondria in their cells to produce this energy.
You would expect to find a large number of mitochondria in an eukaryotic cell that needs to produce a large amount of ATP. Mitochondria are the powerhouses of the cell and are responsible for producing ATP through cellular respiration. They are abundant in cells with high energy demands, such as muscle cells.