2nd Edition Complete Exam Study Guide
2026/2027 – Comprehensive Exam-Style
Practice Questions with Verified Answers,
Detailed Rationales & Proven Test-Taking
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1.
A patient develops severe metabolic acidosis after prolonged
tissue hypoperfusion. Which cellular response occurs first to
help limit the fall in intracellular pH?
A. Increased mitochondrial oxidative phosphorylation
B. Increased activity of the sodium-potassium ATPase
C. Activation of intracellular buffering systems
D. Increased renal bicarbonate generation
Correct answer: C. Activation of intracellular buffering
systems
Rationale: Intracellular buffers, particularly proteins and
phosphate compounds, respond immediately to excess
hydrogen ions and help minimize changes in intracellular pH.
Renal compensation occurs much later, while severe
,hypoperfusion generally impairs rather than increases oxidative
phosphorylation. The sodium-potassium ATPase does not
constitute the primary immediate defense against systemic
acidosis.
2.
A patient with severe hypoalbuminemia has a measured total
serum calcium concentration below the reference range but no
symptoms of hypocalcemia. Which explanation is most
appropriate?
A. Increased intracellular calcium sequestration
B. Reduced protein-bound calcium with relatively preserved
ionized calcium
C. Increased renal calcium excretion caused by
hyperparathyroidism
D. Increased intestinal calcium absorption
Correct answer: B. Reduced protein-bound calcium with
relatively preserved ionized calcium
Rationale: Approximately 40% of circulating calcium is normally
protein bound, primarily to albumin. When albumin
concentration decreases, total serum calcium can fall even
though biologically active ionized calcium remains relatively
,normal. Ionized calcium is therefore more clinically informative
when significant hypoalbuminemia is present.
3.
A patient with persistent vomiting develops metabolic alkalosis.
Which renal response contributes most directly to maintenance
of the alkalosis?
A. Increased bicarbonate excretion
B. Increased hydrogen ion secretion and bicarbonate
reabsorption
C. Suppression of distal sodium reabsorption
D. Increased ammonium excretion caused by acidosis
Correct answer: B. Increased hydrogen ion secretion and
bicarbonate reabsorption
Rationale: Volume depletion and chloride loss associated with
vomiting promote renal sodium and bicarbonate retention.
Increased distal hydrogen ion secretion further favors
maintenance of alkalosis. Effective correction generally requires
restoration of extracellular volume and chloride, particularly
when the alkalosis is chloride responsive.
4.
, A patient with chronic hypercapnia from advanced pulmonary
disease has a near-normal arterial pH despite persistently
elevated PaCO₂. Which mechanism best explains this finding?
A. Increased pulmonary bicarbonate excretion
B. Renal retention of bicarbonate
C. Increased renal hydrogen ion excretion with generation of
new bicarbonate
D. Decreased proximal tubular bicarbonate reabsorption
Correct answer: C. Increased renal hydrogen ion excretion
with generation of new bicarbonate
Rationale: Chronic respiratory acidosis activates renal
compensation. The kidneys increase hydrogen ion secretion,
ammonium production and excretion, and generation and
retention of bicarbonate. This compensation develops over
several days and is substantially greater than the compensation
occurring during acute respiratory acidosis.
5.
A patient develops muscle weakness after receiving a
medication that causes hyperkalemia. Which electrophysiologic
effect of elevated extracellular potassium most directly
contributes to the weakness?