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Membrane Transport.

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Presentation on theme: "Membrane Transport."— Presentation transcript:

1 Membrane Transport

2 Diffusion With concentration gradient Movement of particles
Unequal distribution of particles Movement of particles From high To Low

3 Osmosis Movement of water From high to low Across a selectively
permeable membrane

4 Isotonic Solutions Iso- equal No change in concentrations
Water still moves Same amount moves in as moves out Both sides of membrane are the same

5 Dynamic Equilibrium Equal concentrations are reached
Not the same volumes Continued movement across the membrane Not gain or loss

6 Hypotonic Solution Hypo- under Out side of cell Water moves into cell
Less dissolved substance More water Water moves into cell

7 Hypertonic Solution Hyper- Over Out side of cell
More dissolved substance Less water Water moves out of cell

8 Osmosis

9 Passive Transport Cell uses no energy From high to low Plasma membrane
Concentration gradient

10 Facilitated Diffusion
Type of passive transport Use transport proteins Channel proteins Carrier proteins Changes shape From high to low

11 Facilitated Diffusion

12 Active Transport Cell uses energy Against concentration gradient
From low to high Carrier Proteins Molecule binds with carrier protein Energy then used to change shape Molecule released on other side Carrier protein returns to original shape

13 Active Transport

14 Large Particle Transport
Not through membrane Requires energy Exocytosis- out

15 Large Particle Transport
Endocytosis- in

16 Types of Endocytosis Pinocytosis: liquid Phagocytosis: Solid


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