ATP molecules have a large quantity of stored energy. ATP is essentially Adenosine Triphosphate. Which meant there are three phosphate molecules attached to adenosine i ATP. When the terminal (or outer most) phosphate is broken there is a release of energy which can be utilized by cells
Photosynthesis is to produce glucose. This glucose is utilized by respiration
The energy in ATP drives three main types of cellular work: mechanical work (such as muscle contraction), transport work (such as pumping ions across membranes), and chemical work (such as driving endergonic reactions).
Chemical work in cells is powered by the energy produced from chemical reactions, specifically the breakdown of molecules such as glucose through processes like cellular respiration. This energy is captured in the form of ATP (adenosine triphosphate) and utilized to drive cellular processes such as protein synthesis, active transport, and muscle contraction.
The process that uses oxygen to break down glucose and other nutrients to release energy for cellular work is called cellular respiration. This metabolic pathway primarily occurs in the mitochondria of cells and involves a series of chemical reactions that convert glucose into adenosine triphosphate (ATP), the energy currency of the cell. During this process, oxygen is utilized, and carbon dioxide and water are produced as byproducts. Cellular respiration is essential for producing the energy needed for various cellular functions.
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Adenosine triphosphate (ATP) provides energy for immediate cellular work.
They use cellular transmission to work. But in fact, many countries call them MOBILE PHONES.
Adenosine triphosphate (ATP) is the molecule responsible for driving transport, synthesis, and mechanical work in cells. It serves as the primary energy currency of the cell, providing the energy needed for various cellular processes. ATP releases energy when its phosphate bonds are broken, powering cellular activities.
ATP
Most cellular work is accomplished by using adenosine triphosphate (ATP) as the primary energy source. ATP is synthesized during cellular respiration and stores energy in its phosphate bonds, which can be broken to release energy for cellular processes. The hydrolysis of ATP releases this energy, providing it to molecules to drive cellular work.
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