Because that's where the primary combustion (of hydrogen with oxygen) is taking place.
The highest concentration of mitochondria in the human body is found in muscle cells, particularly in the muscles used for endurance activities like the heart and skeletal muscles.
Cells in the human body that have a large number of mitochondria are typically found in tissues that require a lot of energy, such as muscle cells and liver cells.
DNA is found within the cell nucleus of human cells. It is also present in small organelles called mitochondria, which are known as the powerhouse of the cell. DNA carries the genetic instructions that determine an individual's traits and characteristics.
Yes, blood cells are alive within the human body.
In human, mature RBC (Red Blood Corpuscles) do not have mitochondria.
ATP is produced in human body cells through a process called cellular respiration. This process involves the breakdown of glucose molecules in the presence of oxygen, occurring in the mitochondria of the cells. ATP is generated as a result of the electron transport chain and oxidative phosphorylation.
no
The highest concentration of mitochondria in the human body is found in muscle cells, particularly in the muscles used for endurance activities like the heart and skeletal muscles.
Muscle Cells
the muscle
Cells in the human body that have a large number of mitochondria are typically found in tissues that require a lot of energy, such as muscle cells and liver cells.
DNA is found within the cell nucleus of human cells. It is also present in small organelles called mitochondria, which are known as the powerhouse of the cell. DNA carries the genetic instructions that determine an individual's traits and characteristics.
Mitochondria is a structure used to provide energy for the various functions of the human body, so it is a structure.
Mitochondria
Yes, blood cells are alive within the human body.
Mitochondria is known as power house of cell. They use carbohydrates and fats present in the cell to CO2 and water vapour. Oxidation releases energy, a portion of which is used to form ATP. Since the mitochondria synthesize, energy-rich compounds (ATP), they are known as 'power house ' of cell.
The chloroplasts in plant cells share a similar role to the mitochondria in that they both function as the powerhouse of the cell by producing energy through cellular respiration (for mitochondria) and photosynthesis (for chloroplasts).