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Relias Dysrhythmia Basic Test A Answers (35 Q&A) 2026/2027

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This Relias Dysrhythmia Basic Practice Exam is a focused ECG rhythm‑interpretation prep tool for nurses, telemetry technicians, and other clinicians who must complete Relias’ Dysrhythmia Basic A/B tests as part of orientation, annual competencies, or specialty training. It is designed to reinforce core rhythm‑recognition skills and basic arrhythmia management so learners can approach their Relias exams with confidence. Inside, you’ll find [insert number] multiple‑choice questions with correct answers and clear, plain‑language rationales. Questions are written in an exam‑like style and organized around the most frequently tested rhythms and concepts, including: – Normal sinus rhythm and rate‑calculation methods (big box, small box, 6‑second strip). – Sinus bradycardia and sinus tachycardia. – Atrial rhythms (PACs, atrial flutter, atrial fibrillation, SVT). – Junctional rhythms. – Ventricular rhythms (PVCs, ventricular tachycardia, ventricular fibrillation). – Heart blocks (1st‑degree, Mobitz I/Wenckebach, Mobitz II, 3rd‑degree/complete heart block). – Pacemaker rhythms and common malfunctions (failure to pace, sense, and capture). – Basic ACLS‑aligned interventions and nursing priorities for unstable rhythms.

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Relias Dysrhythmia Basic A
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Relias Dysrhythmia Basic A

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Relias Dysrhythmia Basic Test A Answers

(35 Q&A) 2026/2027


Q1: An ECG strip shows a regular rhythm, a heart rate of 42 bpm, a normal PR

interval of 0.16 seconds, and a narrow QRS complex of 0.08 seconds. What is

this rhythm?


 Answer: Sinus Bradycardia


 Rationale: The rhythm is regular and originating from the SA node (normal

P waves and PR interval), but the rate is less than 60 bpm, meeting the

criteria for sinus bradycardia.


Q2: While calculating a heart rate on an irregular ECG strip, how many large

boxes or seconds should the strip ideally span to use the standard estimation

method?


 Answer: 6 seconds (30 large boxes)

,  Rationale: For irregular rhythms like Atrial Fibrillation, the most accurate

method is counting the number of R waves in a 6-second strip and

multiplying by 10.


Q3: A patient's telemetry monitor displays a sudden run of wide, bizarre QRS

complexes occurring at a rate of 160 bpm with no discernible P waves. The run

lasts for 5 beats before returning to sinus rhythm. How is this documented?


 Answer: A short run of Non-Sustained Ventricular Tachycardia (NSVT)


 Rationale: Ventricular tachycardia is defined as three or more consecutive

ventricular beats (wide QRS > 0.12s) at a rate greater than 100 bpm.

Because it terminated on its own within 30 seconds, it is non-sustained.


Q4: Which of the following best describes the PR interval characteristics found

in a First-Degree AV Block?


 Answer: The PR interval is prolonged (> 0.20 seconds) but remains constant

across every single beat.


 Rationale: In a first-degree heart block, conduction through the AV node is

delayed rather than blocked. This results in a lengthened PR interval that

does not change from beat to beat, and every P wave is followed by a QRS.

, Q5: A patient's ECG strip exhibits a chaotic, wavy baseline with no identifiable P

waves and a highly irregular R-R interval. What is the priority diagnosis for this

rhythm?


 Answer: Atrial Fibrillation (A-Fib)


 Rationale: Atrial fibrillation is characterized by the total absence of distinct

P waves (replaced by chaotic fibrillatory waves) and an irregularly irregular

ventricular response.


Q6: What is the normal physiological duration of a standard QRS complex in an

adult patient?


 Answer: 0.06 to 0.11 seconds (less than 3 small boxes)


 Rationale: A normal QRS complex indicates rapid ventricular depolarization

via the bundle branches and Purkinje network. A width of 0.12 seconds or

greater indicates a conduction delay (such as a bundle branch block) or a

ventricular origin.


Q7: On an ECG strip, you notice that the PR intervals become progressively

longer with each consecutive beat until a P wave appears without an associated

QRS complex. Following the dropped beat, the cycle repeats. What rhythm is

this?

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Relias Dysrhythmia Basic A
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Relias Dysrhythmia Basic A

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