what shapes plant cells
active transport requires energy to move stuff and the energy is ATP
The type of chemical reaction that breaks down nutrients and stores their energy as ATP is called cellular respiration. This process occurs in the presence of oxygen and involves a series of reactions, including glycolysis, the Krebs cycle, and oxidative phosphorylation. Through these reactions, the energy released from the breakdown of nutrients is used to produce ATP, the primary energy currency in cells.
Adenosine triphosphate (ATP) is the energy carrier molecule used by mitochondria. It stores and releases energy within cells, making it an essential molecule for various cellular processes. mitochondria produce ATP through cellular respiration, where energy from nutrients is converted into ATP.
Yes, ATP is synthesized in the mitochondria through the process of cellular respiration. This process involves the conversion of energy from nutrients into ATP, which serves as the cell's main energy source.
Energy and ATP are produced in the mitochondria of cells through a process called cellular respiration. This process involves breaking down glucose and other nutrients to generate ATP, which is the primary energy currency for the cell.
ATP (adenosine triphosphate), or ultimately it would be glucose.
An electric motor.
The transfer of energy from nutrients to ATP is most directly accomplished through the process of cellular respiration, which occurs in the mitochondria of eukaryotic cells. During cellular respiration, energy is extracted from nutrients in the form of electrons, which drive the production of ATP through a series of enzyme-catalyzed reactions.
active transport requires energy to move stuff and the energy is ATP
The type of chemical reaction that breaks down nutrients and stores their energy as ATP is called cellular respiration. This process occurs in the presence of oxygen and involves a series of reactions, including glycolysis, the Krebs cycle, and oxidative phosphorylation. Through these reactions, the energy released from the breakdown of nutrients is used to produce ATP, the primary energy currency in cells.
Adenosine triphosphate (ATP) is the energy carrier molecule used by mitochondria. It stores and releases energy within cells, making it an essential molecule for various cellular processes. mitochondria produce ATP through cellular respiration, where energy from nutrients is converted into ATP.
Humans obtain energy from the molecule adenosine triphosphate (ATP). ATP is produced through cellular respiration, a process that converts nutrients from food into a form of energy that cells can use for various functions.
The nutrients help the cells to mature and grow. They also need these nutrients to create ATP for energy to work.
The circulatory system uses ATP to power the contraction of the heart muscle for pumping blood throughout the body. ATP is required for the maintenance of the ion gradients necessary for muscle contraction and relaxation in the heart. Additionally, ATP is used for the active transport of ions across cell membranes to regulate blood pressure and flow.
The substance that stores energy released by mitochondria is adenosine triphosphate (ATP). ATP acts as the primary energy currency of the cell, providing the necessary energy for various biochemical processes. Mitochondria produce ATP through cellular respiration, converting nutrients into energy in the form of ATP, which can then be utilized by the cell for different functions.
Yes, ATP is synthesized in the mitochondria through the process of cellular respiration. This process involves the conversion of energy from nutrients into ATP, which serves as the cell's main energy source.
The body primarily obtains ATP for energy production from the process of cellular respiration, which occurs in the mitochondria of cells. This process involves breaking down glucose and other nutrients to create ATP molecules that can be used for energy.