Because ATP stores chemical energy in its chemical bonds.
When the chemical bonds of glucose are broken, potential energy stored in the bonds is released. This energy is in the form of ATP (adenosine triphosphate) molecules, which cells can use as a source of energy for various cellular processes.
Chemical energy is the potential energy stored in the bonds of chemical compounds. Organisms release this energy through processes like cellular respiration, where they break down molecules such as glucose to produce ATP, the energy currency of cells. ATP is then used to power cellular functions and work.
The energy in a glucose molecule is stored in the bonds between the atoms.
The chemical energy of ATP is stored in its phosphate bonds. When these bonds are broken through hydrolysis, energy is released for cellular processes.
Mitochondria are cellular organelles responsible for producing ATP through the process of cellular respiration. They contain enzymes that break down organic molecules to release energy which is used to produce ATP.
ATP (adenosine triphosphate) is an example of chemical potential energy because it stores energy in its phosphate bonds. When these bonds are broken during cellular processes, such as metabolism, the stored energy is released and used by the cell to fuel various activities.
ATP is a chemical, not a form of energy. However, the energy stored in and used from it is chemical energy.
ATP has higher potential chemical energy compared to ADP due to the presence of an extra phosphate group in ATP. This extra phosphate group allows ATP to store and release energy more readily during cellular processes. When ATP is hydrolyzed to ADP, energy is released and can be used by the cell for various functions.
A person converts chemical potential energy into kinetic/mechanical energy when he walks. The chemical potential energy usually takes the form of adenine triphosphate (ATP) stored in the body.
No, ATP represents potential energy.
The final form of chemical energy produced by cells during cellular respiration is adenosine triphosphate (ATP). ATP is the primary energy carrier in biological systems and is used for various cellular processes that require energy.
solar energy → potential energy stored in electrons and ATP → chemical energy stored in sugars
When the chemical bonds of glucose are broken, potential energy stored in the bonds is released. This energy is in the form of ATP (adenosine triphosphate) molecules, which cells can use as a source of energy for various cellular processes.
I think the chemical energy in glucoseI transform to chemical energy in ATP. The chemical energy in ATP is transform to heat and Kinetic energyin the cell.
The bonds between the phosphate groups in ATP have high-energy potential, known as chemical energy. When these bonds are broken through hydrolysis, energy is released that can be used in various cellular processes. This energy release is essential for driving metabolic reactions and providing energy for cellular activities.
Chemical energy is the potential energy stored in the bonds of chemical compounds. Organisms release this energy through processes like cellular respiration, where they break down molecules such as glucose to produce ATP, the energy currency of cells. ATP is then used to power cellular functions and work.
ADP has less potential energy than ATP has. In fact, there are 7.3 kc less energy in ADP than in ATP.