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  1. phosphorylation. The energy released by the hydrolysis of ATP is. (a) primarily stored between the alpha and beta phosphates. (b) equal to −57 kcal/mol. (c) harnessed as heat energy by the cell to perform work. (d) providing energy to coupled reactions.

  2. Study with Quizlet and memorize flashcards containing terms like ATP Hydrolysis Reaction, What is Lactic Acidosis?, What happens if there is too much ATP hydrolysis? and more.

  3. Study with Quizlet and memorize flashcards containing terms like ATP, Hydrolysis of Phosphoric Anhydrides, ATP phosphoryl transfer potential and more.

  4. The energy derived from exergonic ATP hydrolysis is used to pump sodium and potassium ions across the cell membrane. The hydrolysis of one ATP molecule releases 7.3 kcal/mol of energy (∆G = −7.3 kcal/mol of energy).

  5. 30 Ιουλ 2022 · The hydrolysis of ATP produces ADP, together with an inorganic phosphate ion (P i), and the release of free energy. To carry out life processes, ATP is continuously broken down into ADP, and like a rechargeable battery, ADP is continuously regenerated into ATP by the reattachment of a third phosphate group.

  6. The bonds that connect the phosphate have high-energy content, and the energy released from the hydrolysis of ATP to ADP + P i (Adenosine Diphosphate + phosphate) is used to perform cellular work, such as contracting a muscle or pumping a solute across a cell membrane in active transport.

  7. ADP is combined with a phosphate to form ATP in the reaction ADP+Pi+free energy→ATP+H2O. The energy released from the hydrolysis of ATP into ADP is used to perform cellular work, usually by coupling the exergonic reaction of ATP hydrolysis with endergonic reactions.