Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN: 9780134580999
Author: Elaine N. Marieb, Katja N. Hoehn
Publisher: PEARSON
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- 6. Please answerarrow_forwardTell me the type of transport based on the following diagramsarrow_forwardIn the image provided what membrane property is being demonstrated? membrane selective permeability of membrane for water molecules by diffusion O selective permeability of membrane for water molecules by osmosis fluid mosaic model of membrane fluidity O the effect of cholesterol in buffering membranesarrow_forward
- What is the role of lysozyme and a low ionic strength extraction buffer? Select all that apply. Cells absorb water from a low ionic strength extraction buffer, by osmosis, swell and lyse, releasing their contents Lysozyme breaks down bonds in the cellulose cell wall of plants, weakening the structure Cells release water into a low ionic strength extraction buffer by osmosis, shrink and lyse, releasing their contents Lysozyme is an enzyme found in lysosomes in cells Lysozyme breaks down bonds in the peptidoglycan cell wall of bacteria, weakening the structure Lysozyme is an antibiotic found in tears, saliva, human milk and mucus.arrow_forwardLabel the parts and indicate the movement of water in and out of the cellarrow_forwardWhat is the independent variable of the experiment?arrow_forward
- Mark the flow of water with an arrow for cells that have been placed in solutions of differing tonicity. Indicate what will happen to a plant and animal cell under each of these conditions. Direction of osmosis Plant cell Animal cell shape shape minor swelling The solute concentration outside the cell is isotonic (or equal) to the inside of the cell. No change swelling and lysis plasmolysis crenation Reset Zoom (a) Outside isotonic The solute concentration outside the cell is hypertonic to the inside of the cell. (b) Outside hypertonic The solute concentration outside the cell is hypotonic to the inside of the cell. (c) Outside hypotonic Oo Solute Cytosol ©2018 McGraw-Hill Education. Check marrow_forwardSo I know that Dapagliflozin is a inhibitor of the sodium glucose cotransporter so does Dapagliflozin cause glucose to just stay in the cell or does it cause glucose to exit the cell? Also if does cause glucose to exit the cell is this a passive or active process. I would think that it would be passive since the glucose is going from high to low?? So is it faciliated passive diffusion?? Please help I am not sure if I am on the right track or not I could be totally wrong so please correct me.arrow_forward* Passive movement of molecule across membrane occurs by none of the other choices simple diffusion all of the other choices vesicle transport exоcytosis Cell membrane contains sodium chloride all of the other choices none of the other choices vitamin phospholipid * Flagella is all of the other choices none of the other choices found in all cell cellular organell Oarrow_forward
- How is transport across the cell membrane controlled? Diffusion Concentration gradient Permeability What can and can not diffuse through plasma membrane? Factors affecting diffusion: concentration gradient, temperature, molecule size, surface areaarrow_forwardOsmosis in Osmosis is the movement of water from an area of A Animal Cells high water concentration to an area of low process so it doesn't need energy.||water concentration. Osmosis is aarrow_forwardDistilled water is to the relative ionic concentration inside of the cell. hypotonic O isotonic O hypertonicarrow_forward
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