Cells break down the higher-energy molecules and store the energy that is released in molecules of ATP. This is called cellular respiration.
When a cell has energy available, it can store small amonts of energy by adding a third phosphate group to ADP, producing ATP. I got this answer from my textbook (9th grade). It is 100% right. :D
Cells keep a small amount of energy in hand in the form of adenosine triphosphate (ATP), which serves as a readily available source of energy for various cellular processes.
Releasing energy from glucose in small amounts allows cells to efficiently produce ATP without overwhelming the cell with excessive energy. Controlled release of energy prevents damage to the cell from excessive heat production and oxidative stress. Additionally, small amounts of energy release help maintain a balance in cellular processes and support overall cell function.
Enzymes are catalysts that speed up chemical reactions by lowering the activation energy required for the reaction to occur. This means that only small amounts of enzymes are required to facilitate reactions in cells efficiently. Additionally, enzymes can be reused multiple times, further reducing the need for large quantities.
Starch grains are primarily found in plant cells, where they serve as a form of energy storage. Animals do not store energy as starch; instead, they primarily store energy in the form of glycogen. While some animal cells can contain small amounts of starch due to dietary intake or specific metabolic processes, it is not a typical characteristic of animal cells. Therefore, starch grains are not present in both animal and plant cells.
When a cell has energy available, it can store small amonts of energy by adding a third phosphate group to ADP, producing ATP. I got this answer from my textbook (9th grade). It is 100% right. :D
When a cell has energy available, it can store small amonts of energy by adding a third phosphate group to ADP, producing ATP. I got this answer from my textbook (9th grade). It is 100% right.
TRUE aPEX
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true
Cells keep a small amount of energy in hand in the form of adenosine triphosphate (ATP), which serves as a readily available source of energy for various cellular processes.
Releasing energy from glucose in small amounts allows cells to efficiently convert that energy into usable forms like ATP. This gradual process helps to regulate metabolic reactions and minimize the risk of cellular damage from excessive heat or free radicals produced by high-energy reactions.
because energy is stupid and you are to
When a cell has energy available, it can store small amonts of energy by adding a third phosphate group to ADP, producing ATP. I got this answer from my textbook (9th grade). It is 100% right. :D
Releasing energy from glucose in small amounts allows cells to efficiently produce ATP without overwhelming the cell with excessive energy. Controlled release of energy prevents damage to the cell from excessive heat production and oxidative stress. Additionally, small amounts of energy release help maintain a balance in cellular processes and support overall cell function.
Enzymes are catalysts that speed up chemical reactions by lowering the activation energy required for the reaction to occur. This means that only small amounts of enzymes are required to facilitate reactions in cells efficiently. Additionally, enzymes can be reused multiple times, further reducing the need for large quantities.
low small amounts of