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  2. Vacuole - Wikipedia

    en.wikipedia.org/wiki/Vacuole

    Although single large vacuoles are most common, the size and number of vacuoles may vary in different tissues and stages of development. For example, developing cells in the meristems contain small provacuoles and cells of the vascular cambium have many small vacuoles in the winter and one large one in the summer.

  3. Root hair - Wikipedia

    en.wikipedia.org/wiki/Root_hair

    Root hair cells vary between 15 and 17 micrometers in diameter, and 80 and 1,500 micrometers in length. [5] Root hairs are found only in the zone of maturation, also called the zone of differentiation. [6] They are not found in the zone of elongation, possibly because older root hairs are sheared off as the root elongates and moves through the ...

  4. Thiomargarita namibiensis - Wikipedia

    en.wikipedia.org/wiki/Thiomargarita_namibiensis

    These vacuoles are what account for the size that scientists had previously thought impossible, and account for roughly 98% of the cell volume. [32] Because of the vast size of the liquid central vacuole, the cytoplasm separating the vacuole and the cell membrane is a very thin layer reported to be around 0.5-2 micrometers thick.

  5. Contractile vacuole - Wikipedia

    en.wikipedia.org/wiki/Contractile_vacuole

    The smallest known contractile vacuoles belong to Chlamydomonas, with a diameter of 1.5 μm. In Paramecium, which has one of the most complex contractile vacuoles, the vacuole is surrounded by several canals, which absorb water by osmosis from the cytoplasm. After the canals fill with water, the water is pumped into the vacuole.

  6. Lysosome - Wikipedia

    en.wikipedia.org/wiki/Lysosome

    In step two a lysosome with an active hydrolytic enzyme comes into the pictures as the food vacuole moves away from the plasma membrane. Step three consists of the lysosome fusing with the food vacuole and hydrolytic enzymes entering the food vacuole. In the final step, step four, hydrolytic enzymes digest the food particles. [5]

  7. Microparticle - Wikipedia

    en.wikipedia.org/wiki/Microparticle

    Microparticles are particles between 0.1 and 100 μm in size. Commercially available microparticles are available in a wide variety of materials, including ceramics, glass, polymers, and metals. [2] Microparticles encountered in daily life include pollen, sand, dust, flour, and powdered sugar.

  8. Gas vesicle - Wikipedia

    en.wikipedia.org/wiki/Gas_Vesicle

    (B) Cryo-transmission electron micrograph of cells in 3 M NaCl plus 81 mM MgSO 4. The image has the low signal-to-noise ratio due to the high concentration of NaCl. (C) Cryo-transmission electron micrograph of a focused ion beam-thinned cell in 3 M NaCl plus 81 mM MgSO 4. The periodicity of the gas vesicle is clearly discerned.

  9. Biological membrane - Wikipedia

    en.wikipedia.org/wiki/Biological_membrane

    Cross-sectional view of the structures that can be formed by phospholipids in an aqueous solution. A biological membrane, biomembrane or cell membrane is a selectively permeable membrane that separates the interior of a cell from the external environment or creates intracellular compartments by serving as a boundary between one part of the cell and another.