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Davis Advantage for Pathophysiology: Introductory Concepts and Clinical Perspectives 2nd Edition (Capriotti) Test Bank – Exam Questions and Answers

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Davis Advantage for Pathophysiology: Introductory Concepts and Clinical Perspectives 2nd Edition (Capriotti) Test Bank – Exam Questions and Answers This test bank for Davis Advantage for Pathophysiology: Introductory Concepts and Clinical Perspectives (2nd Edition by Theresa Capriotti) includes a comprehensive set of exam questions and answers covering key pathophysiology concepts. It focuses on topics such as cellular function, disease processes, homeostasis, inflammation, and organ system disorders. This resource is ideal for exam preparation and strengthening understanding of foundational and clinical pathophysiology.

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TEST BANK FOR DAVIS ADVANTAGE FOR PATHOPHYSIOLOGY: INTRODUCTORY CONCEPTS AND CLINICAL
PERSPECTIVES, 2ND EDITION, THERESA CAPRIOTTI
Test Bank for Davis Advantage for Pathophysiology: Introductory Concepts and

Clinical Perspectives, 2nd Edition, Theresa Capriotti




pg. 1

, TEST BANK FOR DAVIS ADVANTAGE FOR PATHOPHYSIOLOGY: INTRODUCTORY CONCEPTS AND CLINICAL
PERSPECTIVES, 2ND EDITION, THERESA CAPRIOTTI



Test Bank for Davis Advantage for Pathophysiology: Introductory Concepts and

Clinical Perspectives, 2nd Edition, Theresa Capriotti

Chapter 1, The Cell in Health and Illness

Multiple Choice

Identify the choice that best completes the statement or answers the question.

____ 1.Which statement regarding the sodium–potassium pump is correct?

1. The cell’s plasma membrane is more soluble to sodium ions than

potassium ions.

2. The concentration of sodium ions should be higher inside the cell

compartment.

3. The concentration of potassium ions should be higher outside the

cell compartment.

4. The active transport involves pumping out three sodium ions and

pumping in two potassium ions.

____ 2. In the absence of oxygen, which cellular function creates the same amount of

energy as is created in the presence of oxygen?

1. Dissipation of pyruvic acid

2. Initiation of the citric acid cycle

3. Activation of acetyl-coenzyme A

4. Creation of acidosis via lactic acid

____ 3. How many adenosine triphosphates (atps) are produced in aerobic energy

metabolism?

pg. 2

, TEST BANK FOR DAVIS ADVANTAGE FOR PATHOPHYSIOLOGY: INTRODUCTORY CONCEPTS AND CLINICAL
PERSPECTIVES, 2ND EDITION, THERESA CAPRIOTTI
1. 2

2. 3

3. 34

4. 53

____ 4.Which cell organelles differ in their number according to the cell’s energy needs?

1. Ribosomes

2. Mitochondria

3. Ribonucleic acids

4. Deoxyribonucleic acids

____ 5. Which option best supports the reason more energy is produced when a person is

exercising?

1. Exercise causes an increase in the synthesis of protein.

2. There is an increase in the production of pyruvic acid in the cells.

3. The conversion of pyruvic acid to lactic acid is increased by

exercise.

4. Muscle cells have more mitochondria to meet energy demands.

____ 6.When does ribosomal protein synthesis cease?

1. During endoplasmic reticulum stress

2. During the synthesis of adenosine triphosphate (ATP)

3. During a severe hypoxic state

4. During the processing of prohormone

____ 7. Which cellular organelles are responsible for propelling mucus and inhaled debris

out of the lungs?

pg. 3

, TEST BANK FOR DAVIS ADVANTAGE FOR PATHOPHYSIOLOGY: INTRODUCTORY CONCEPTS AND CLINICAL
PERSPECTIVES, 2ND EDITION, THERESA CAPRIOTTI
1. Cilia

2. Microfilaments

3. Secretory vesicles

4. Endoplasmic reticula

____ 8.Which are the key proteins in the contractile units of the muscle cells?

1. Actin and myosin

2. Prohormone and tubulin

3. Tubulin and actin

4. Myosin and prohormone

____ 9.Which deficiency causes Tay–Sachs disease?

1. Proteasome

2. Peroxisome

3. Macrophage

4. Lysosomal enzymes

____ 10.Which is a characteristic of adrenoleukodystrophy?

1. Accumulation of ganglioside

2. Cessation of ribosomal protein synthesis

3. Acceleration of cellular proteasome activity

4. Accumulation of long-chain fatty acids in the nervous system

____ 11.Which statement regarding endoplasmic reticulum (ER) stress is correct?

1. During ER stress, proteins are rapidly degraded.

2. During ER stress, lipids cannot travel to their proper intracellular

locations.

pg. 4

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