QUESTION IMAGE
Question
- true or false: the cell membrane primarily functions to synthesize proteins.
- true or false: selective permeability of the cell membrane allows all molecules to pass through unrestricted.
- true or false: active transport mechanisms rely on the concentration gradient to move molecules.
- true or false: simple diffusion involves the movement of large, polar molecules through the lipid bilayer.
- true or false: the sodium - potassium pump is an example of active transport found in plant cells.
- true or false: facilitated diffusion relies on integral membrane proteins to assist in molecule transport.
- true or false: passive transport processes do not require energy input from the cell.
- true or false: the fluid mosaic model describes the cell membrane as a rigid and unchanging structure.
- true or false: active transport is essential for maintaining cellular homeostasis.
- true or false: peripheral proteins are embedded within the lipid bilayer of the cell membrane.
Brief Explanations
- The cell - membrane's main function is to regulate the movement of substances in and out of the cell, not to synthesize proteins. So, False.
- Selective permeability means only certain molecules can pass through, not all. So, False.
- Active transport moves molecules against the concentration gradient and does not rely solely on it. So, False.
- Simple diffusion is the movement of small, non - polar molecules down the concentration gradient. Large, polar molecules do not move by simple diffusion through the lipid bilayer. So, False.
- The sodium - potassium pump is an example of active transport in animal cells, not plant cells. So, False.
- Facilitated diffusion uses integral membrane proteins to help molecules cross the membrane. So, True.
- Passive transport, like diffusion and osmosis, does not require energy input from the cell. So, True.
- The fluid mosaic model describes the cell membrane as a fluid and dynamic structure, not rigid. So, False.
- Active transport helps maintain ion gradients and other cellular conditions, essential for homeostasis. So, True.
- Peripheral proteins are attached to the surface of the lipid bilayer, not embedded within it. So, False.
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- False
- False
- False
- False
- False
- True
- True
- False
- True
- False