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A

Anonymous

Oct 25, 2024

When ATP loses a phosphate, energy is released and phosphates.

What happens when ATP loses a phosphate group? How is energy released during this process, and what role do the resulting phosphate molecules play?

5 Answers

A
Anonymous

Dec 01, 2024

The correct answer for the blank is ADP ( adenosine diphosphate).ATP is the energy currency of the cell. It stores energy in its high energy phosphoanhydride bond, which are present between phosphate. During ATP hydrolysis, the high energy bond is broken down and the large amount of stored energy is liberated. Therefore, ATP loses a phosphate and gets converted into ADP and inorganic phosphate.Thus, ADP is formed when ATP loses a phosphate.
A
Anonymous

Nov 09, 2024

The correct answer is ADP ( adenosine diphosphate). ATP ( adenosine triphosphate) is the energy currency of the cell. It stores energy in its high energy phosphoanhydride bonds, which are formed between phosphate. During hydrolysis, it loses a phosphate and the large amount of stored chemical energy is released. During this reaction, ATP is converted into ADP and inorganic phosphate.Thus, ADP is formed when ATP loses a phosphate.  
A
Anonymous

Jan 14, 2025

Answer;-ADP When ATP loses a phosphate, energy is released and ADP is formed Explanation; In a process called cellular respiration, chemical energy in food is converted into chemical energy that the cell can use, and stores it in molecules of ATP. The most common is a molecule that we call ATP (Adenosine triphosphate). ATP is a nucleic acid containing three high energy phosphate groups. It breaks off these groups to release measured amounts of energy. When ATP loses one phosphate group, it becomes Adenosine diphosphate (ADP).
A
Anonymous

Feb 02, 2025

When ATP loses a phosphate, energy is released and ADP is formed
A
Anonymous

Feb 02, 2025

Adenosine diphophate (ADP) is formedAdenosine triphosphate (ATP) is the energy currency of the cell. It is used to store energy, until the energy is needed. The energy is extracted by hydrolyzing the ATP molecule and releasing one phosphate group and forming ADP. ADP may again be hydrolyzed to form adenosine monophosphate (AMP).

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