A Removing water is to osmosis A Adding water is to osmolarity B. Gated channels are to mediated transport B: Lipid bilayers are to net flux. CA 600 mOsm cell is to a 200 mOsm solution. (all nonpenetraing) C 53 molar (H₂0) cell is to a 54 molar (H2O) solution (all nonpenetralng). D Transporters are to simple diffusion. D Voltage-gated channels are to secondary active i transport A Removing water is to concentration A Adding solute is to dilution B. Heat energy is to diffusion B Transporters are to downhill gradients. CA 350 mOsm solution is to an 300 mOsm cell (all nonpenetraing) C 550 mOsm.cell is to a 550 mOsm solution (all nonpenetraing) D: Channels are to facilitated diffusion D Aquaporins are to membrane potentials A: Adding solute is to molarity as: B: ATP is to active transport as: C: Hypertonicity is to cell size as: D: Pumps are to active transport as: Reset
A Removing water is to osmosis A Adding water is to osmolarity B. Gated channels are to mediated transport B: Lipid bilayers are to net flux. CA 600 mOsm cell is to a 200 mOsm solution. (all nonpenetraing) C 53 molar (H₂0) cell is to a 54 molar (H2O) solution (all nonpenetralng). D Transporters are to simple diffusion. D Voltage-gated channels are to secondary active i transport A Removing water is to concentration A Adding solute is to dilution B. Heat energy is to diffusion B Transporters are to downhill gradients. CA 350 mOsm solution is to an 300 mOsm cell (all nonpenetraing) C 550 mOsm.cell is to a 550 mOsm solution (all nonpenetraing) D: Channels are to facilitated diffusion D Aquaporins are to membrane potentials A: Adding solute is to molarity as: B: ATP is to active transport as: C: Hypertonicity is to cell size as: D: Pumps are to active transport as: Reset
Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
Related questions
Question
![A Removing water is to
osmosis
A Adding water is to
osmolarity
B. Gated channels are to
mediated transport
B Lipid bilayers are to net
flux.
C.A 600 mOsm cell is to a
200 mOsm solution. (all
nonpenetraing)
C 53 molar (H₂0) cell is
to a 54 molar (H2O)
solution (all
nonpenetraing)
D Transporters are to
simple diffusion.
D Voltage-gated channels
are to secondary active i
transport
A Removing water is to
concentration
A Adding solute is to
dilution
B. Heat energy is to
diffusion
B Transporters are to
downhill gradients.
CA 350 mOsm solution is
to an 300 mOsm cell (all)
nonpenetraing)
C 550 mOsm.cell is to a
550 mOsm solution (all
nonpenetraing)
D: Channels are to
facilitated diffusion
D Aquaporins are to
membrane potentials
A: Adding solute is to molarity as:
B: ATP is to active transport as:
C: Hypertonicity is to cell size as:
D: Pumps are to active transport as:
Reser](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff02e664a-da86-4a4d-812d-9a7d5f9f5a46%2Fd0293324-a57c-4aaa-ae98-c275fb801b32%2F6ins4md_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A Removing water is to
osmosis
A Adding water is to
osmolarity
B. Gated channels are to
mediated transport
B Lipid bilayers are to net
flux.
C.A 600 mOsm cell is to a
200 mOsm solution. (all
nonpenetraing)
C 53 molar (H₂0) cell is
to a 54 molar (H2O)
solution (all
nonpenetraing)
D Transporters are to
simple diffusion.
D Voltage-gated channels
are to secondary active i
transport
A Removing water is to
concentration
A Adding solute is to
dilution
B. Heat energy is to
diffusion
B Transporters are to
downhill gradients.
CA 350 mOsm solution is
to an 300 mOsm cell (all)
nonpenetraing)
C 550 mOsm.cell is to a
550 mOsm solution (all
nonpenetraing)
D: Channels are to
facilitated diffusion
D Aquaporins are to
membrane potentials
A: Adding solute is to molarity as:
B: ATP is to active transport as:
C: Hypertonicity is to cell size as:
D: Pumps are to active transport as:
Reser
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