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TEST BANK FOR Berne & Levy Physiology 8th Edition by Bruce M. Koeppen, Bruce A. Stanton, Julianne M. Hall & Agnieszka Swiatecka-Urban , ISBN: 9780323847902 Chapters 1-44 |All Chapters Verified| Guide A+

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TEST BANK FOR Berne & Levy Physiology 8th Edition by Bruce M. Koeppen, Bruce A. Stanton, Julianne M. Hall & Agnieszka Swiatecka-Urban , ISBN: 9780323847902 Chapters 1-44 |All Chapters Verified| Guide A+

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Berne & Levy Physiology
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Institución
Berne & Levy Physiology
Grado
Berne & Levy Physiology

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Subido en
28 de mayo de 2025
Número de páginas
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Escrito en
2024/2025
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Examen
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TEST BANK
Berne & Levy Physiology

Bruce M. Koeppen , Bruce A. Stanton
8th Edition

Chapters 1-44
PR
O
FD
O
C

,@PROFDOCDIGITALLIBRARIES



Berne and Levy Physiology 8th Edition Koeppen Test Bank

Chapter 01: Principles of Cell Function
Multiple Choice

1. The subcellular structure that degrades proteins is called the:

A. Tight junction
B. Mitochondria
C. Lysosome
D. Plasma membrane
E. Ribosome
ANS: C

2. An experiment is done to measure the uptake of an amino acid into a cell. The following
PR

data are obtained:


N
O
FD

If Na+ is removed from the extracellular bathing solution, or if a drug is added that prevents the
cell from making adenosine triphosphate (ATP), the uptake of amino acid into the cell is
markedly reduced. According to this information, which of the followingmechanisms is
probably responsible for the transport of the amino acid into the cell?
O

A. Passive diffusion through the lipid bilayer
B. Uniporter
C. Transport ATPase
C

D. Na+ symporter
E. Na+ antiporter
ANS: D

3. A membrane permeable by only Na+ separates two compartments containing
Na2SO4,shown as follows:

,@PROFDOCDIGITALLIBRARIES




Electrodes are placed in both compartments, and a voltage is applied (that of compartment A is
held at 0 mV). What voltage applied to compartment B would resultin no net movement of Na+
across the membrane separating the compartments?

A. –60 mV
B. –30 mV
C. 0 mV
D. +30 mV
PR

E. +60 mV
ANS: E

4. The resting membrane potentNial oRf a Ic e l lGis –B
85.m
CV. The intracellular and extracellular
U S N
concentrations of several ions are indicated in the following table, as is the calculated
O

Nernst equilibrium potential (Ei) for each of these ions:

Ion Concentration Concentration Ei
FD

Inside Cell Outside Cell
Na+ 12 mEq/L 145 mEq/L 66 mV
K+ 150 mEq/L 4 mEq/L –96 mV
Cl– 30 mEq/L 105 mEq/L –33 mV
0.0001 mmol/dL 1 mmol/dL 122 mV
O

Ca++

The membrane has channels for Na+, K+, Cl–, and Ca++. The conductance of the
C

membrane is the greatest for which ion?

A. Na+
B. K+
C. Cl–
D. Ca++
ANS: B

5. A cell contains the following membrane transporters:




Na+ channelK+ channel
Na+,K+-ATPase

The resting membrane voltage of the cell is –80 mV, and the intracellular and

, @PROFDOCDIGITALLIBRARIES

extracellular ion concentrations are as follows:

Ion Intracellular Extracellular
Concentration Concentration
Na+ 10 mEq/L 145 mEq/L
K+ 120 mEq/L 4 mEq/L

The cell is treated with a drug to inhibit the Na+,K+-ATPase. What would be the effect ofthis drug
on the following parameters?

Intracellular [Na+] Intracellular [K+] Cell Volume Membrane Voltage
A. Decrease Decrease Decrease Depolarize
B. Increase Decrease Increase Depolarize
C. Increase Increase Increase No change
D. Decrease Increase Decrease Hyperpolarize
E. Increase Increase Decrease Hyperpolarize
PR

ANS: B

6. Which of the labeled proteins (shaded) is attached to the membrane by a
glycosylphosphatidylinositol (GPI) anchor?
O
FD
O

ANS: E
C

7. A cell has channels for Na+, K+, and Cl– in its plasma membrane. The resting membrane
potential is –60 mV (cell interior negative). The intracellular and extracellular
concentrations for these ions, as well as the calculated Nernst potentials, are listed as
follows:
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