k Cell membrane semipermeability, illustration Illustration depicting the semipermeability of cell membranes. Cell membranes are formed primarily from a phospholipid bilayer. They serve as barriers and gatekeepers to cells. They are semipermeable, which means that some molecules can diffuse across the lipid bilayer but others cannot. Small low molecular weight molecules such as oxygen, water and carbon dioxide are soluble in the lipid bilayer and therefore can readily cross cell membranes. Larger higher molecular weight molecules such as glucose and chargecarrying ions cannot., by FRANCIS LEROY, BIOCOSMOSSCIENCE PHOTO LIBRARY Stock Photo - Afloimages
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Cell membrane semi permeability, illustration Illustration depicting the semi permeability of cell membranes. Cell membranes are formed primarily from a phospholipid bilayer. They serve as barriers and gatekeepers to cells. They are semi permeable, which means that some molecules can diffuse across the lipid bilayer but others cannot. Small  low molecular weight  molecules such as oxygen, water and carbon dioxide are soluble in the lipid bilayer and therefore can readily cross cell membranes. Larger  higher molecular weight  molecules such as glucose and charge carrying ions cannot., by FRANCIS LEROY, BIOCOSMOS SCIENCE PHOTO LIBRARY
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Cell membrane semi-permeability, illustration

Illustration depicting the semi-permeability of cell membranes. Cell membranes are formed primarily from a phospholipid bilayer. They serve as barriers and gatekeepers to cells. They are semi-permeable, which means that some molecules can diffuse across the lipid bilayer but others cannot. Small (low molecular weight) molecules such as oxygen, water and carbon dioxide are soluble in the lipid bilayer and therefore can readily cross cell membranes. Larger (higher molecular weight) molecules such as glucose and charge-carrying ions cannot., by FRANCIS LEROY, BIOCOSMOS/SCIENCE PHOTO LIBRARY

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