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Multiple Choice
How does the ATP molecule provide energy for cellular processes?
A
By converting into ADP and releasing a water molecule
B
By hydrolyzing its terminal phosphate group
C
By forming a covalent bond with glucose
D
By donating electrons to the electron transport chain
Verified step by step guidance
1
Understand the structure of ATP (adenosine triphosphate), which consists of an adenine base, a ribose sugar, and three phosphate groups.
Recognize that the energy stored in ATP is primarily in the bonds between its phosphate groups, especially the bond between the second and third phosphate groups.
Learn that ATP provides energy through a process called hydrolysis, where the terminal phosphate group is removed, converting ATP into ADP (adenosine diphosphate) and releasing energy.
Note that the hydrolysis of ATP involves the addition of a water molecule, which breaks the bond between the terminal phosphate group and the rest of the molecule.
Understand that the energy released during ATP hydrolysis is used to power various cellular processes, such as muscle contraction, active transport, and biochemical reactions.