, 12) In Figure 1 to the right, a semi-permeable membrane separates sugar solution from pure water. The membrane is permeable to water but not to sugar. Which of the following will prevent all of the pure water from moving to the other side? not permeable to sugar C. ↓↓ a. When concentration equilibrium is reached. b. Higher osmotic pressure of sugar solution. Increasing hydrostatic pressure of sugar solution. Higher osmotic pressure of pure water. → Nothing will stop water movement, all of pure water will move to sugar solution side. d. e.

Biology: The Unity and Diversity of Life (MindTap Course List)
15th Edition
ISBN:9781337408332
Author:Cecie Starr, Ralph Taggart, Christine Evers, Lisa Starr
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Chapter5: Ground Rules Of Metabolism
Section: Chapter Questions
Problem 11SQ: Solutes tend to diffuse from a region where they are _______ concentrated to an adjacent region...
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I am trying to better understand this concept. Why would hydrostatic pressure of the sugar solution prevent all of the pure water from moving to the other side?
diffusion
Channel; Secondary active
aquaparins
a. Oxygen
b. Glucose
C. Water
d. Sodium ions channel
e.
all of the above
2,12) In Figure 1 to the right, a semi-permeable membrane separates sugar
solution from pure water. The membrane is permeable to water but not to
sugar. Which of the following will prevent all of the pure water from
moving to the other side?
not permeable to
Sugar
↓↓↓
a
a. When concentration equilibrium is reached.
b. Higher osmotic pressure of sugar solution. →>>
d.
C. Increasing hydrostatic pressure of sugar solution.
Higher osmotic pressure of pure water. >>
Nothing will stop water movement, all of pure water will move to
sugar solution side.
e.
Transcribed Image Text:diffusion Channel; Secondary active aquaparins a. Oxygen b. Glucose C. Water d. Sodium ions channel e. all of the above 2,12) In Figure 1 to the right, a semi-permeable membrane separates sugar solution from pure water. The membrane is permeable to water but not to sugar. Which of the following will prevent all of the pure water from moving to the other side? not permeable to Sugar ↓↓↓ a a. When concentration equilibrium is reached. b. Higher osmotic pressure of sugar solution. →>> d. C. Increasing hydrostatic pressure of sugar solution. Higher osmotic pressure of pure water. >> Nothing will stop water movement, all of pure water will move to sugar solution side. e.
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