Answer:
During active transport, substances move against the concentration gradient, from an area of low concentration to an area of high concentration. This process is “active” because it requires the use of energy (usually in the form of ATP). It is the opposite of passive transport.
Explanation:
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active transport...hope this helps!!
a population
biological diversity
a habitat
(2) it is enclosed in an organelle such as a vacuole
(3) the concentration of the substance is greater outside the cell than inside
(4) the pH of the substance is greater than the pH of the cell
Answer;
(3) the concentration of the substance is greater outside the cell than inside
Explanation;
-When a substance is of low molecular weight and has a higher concentration of the substance outside the cell as opposed to inside the cell then it is most likely to diffuse into a cell.
-Diffusion involves the movement of molecules from a region of high concentration to a region of low concentration, therefore if molecules are highly concentrated outside the cell then they are likely to move into the cell. Additionally, the size or the molecular weight of the molecules determines whether they will move into to the cell as the cell membrane only allows movement of materials in or out of the cell selectively.
B. A phosphate group is added to adp to fprm atp.
c. A phosphate group is removed from adp to form atp.
D. A phosphate group is removed from atp to form adp.
The correct answer is:
D. A phosphate group is removed from atp to form adp.
Explanation:
ATP normally produces energy by breaking down the weak phosphate cell present. The energy delivered due to the breaking down of the phosphate cell is then applied. The ATP is modified to ADP. Whenever a cell feels the necessity for energy it loses a phosphate to assume the energy. It is an automatic and ongoing process. The weak bond between the secondary and the third phosphate is always targeted for converting ATP to ADP. This is the reason ATP is reflected in the main energy money for the cell.