Suppose an animal and a plant cell is placed in a hypotonic , hypertonic and isotonic solution. Using a diagram, show the net direction of motion of the water molecules and the final effect on the cells
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Suppose an animal and a plant cell is placed in a hypotonic , hypertonic and isotonic solution. Using a diagram, show the net direction of motion of the water molecules and the final effect on the cells
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- The beaker in the diagram has a selectively permeable membrane separating two solutions. Assume that the salt molecules can pass freely through the membrane. Will the water level on either side of the membrane change? Explain your answer.What is meant by 'free water molecules" in relationship to the movement of water between a hypertonic and hypotonic solution? You can diagram and explain or just explainDefine the following terms: a. osmosis b. osmotic pressure c. membrane potential d. isotonic solution e. structured water
- Explain the behavior of water molecules in the isotonic solution.The video clip mentioned a disaster scenario of a saltwater fish being placed in fresh water. What would occur if, instead, a freshwater fish was placed in saltwater? Your answer needs to have an arrow indicating the direction of water flow in osmosis, a label of "hypertonic," and a label for "hypotonic."Using the appropriate osmotic terms (hypertonic, hypotonic, or isotonic) describe what would happen to each organism in the following settings: a. A bunch of carrots are placed soaked a sink of distilled water.
- Compare and contrast a plant cell and an animal cell in a hypertonic solution.part 1 Reaching osmotic balance across a semipermeable membrane for non-charged molecules depends on: a.Relative solute concentration gradient across the membrane b.Relative electrical gradient across the membrane c.Relative solute concentration and electrical gradient across the membrane part 2 The equilibrium of a charged molecule across a semipermeable membrane depends on: a.Relative solute concentration gradient across the membrane b.Relative electrical gradient across the membrane c.Relative solute concentration and electrical gradient across the membraneIn osmosis, water moves from a _____ concentration to a _____ lower concentration. Select one: higher, lower higher, higher lower, higher lower, lower
- Why can humans not survive by drinking seawater? Explain using osmosis.A solution is ________ when there is low osmolarity outside a cell and overall water moves into the cell. a. hypotonic b. hypertonic c. isotonicWhat general conclusion can you make concerning the movement of water? There is always a net movement of water by osmosis toward (a) an isotonic solution, (b) a hypotonic solution, or (c) a hypertonic solution.