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Calculating Drug Dosages: A Patient-Safe Approach 3rd Edition Test Bank — Step-by-Step Nursing Math, Rationales & Practice

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Calculating Drug Dosages: A Patient-Safe Approach 3rd Edition Test Bank — Step-by-Step Nursing Math, Rationales & Practice Mastering medication math is essential for safe, accurate nursing practice. This chapter-by-chapter test bank is fully aligned with Calculating Drug Dosages: A Patient-Safe Approach to Nursing and Math, 3rd Edition by Martinez de Castillo & Werner-McCullough. Designed for undergraduate nursing students, NCLEX candidates, and faculty, it provides step-by-step calculations, dimensional analysis, and unit conversions with verified rationales for every correct answer. This resource strengthens exam readiness, prevents common calculation errors, and builds confidence in clinical safety. Each chapter offers a progressive set of questions that mirror textbook content, making it ideal for coursework, certification prep, or skills labs. Core Features: Chapter-by-chapter organization covering all major dosage calculation topics 20–40 original questions per chapter with detailed solutions Step-by-step worked examples for dimensional analysis and conversions Explanations of common errors to improve accuracy and safety Printable quizzes and instructor answer key for flexible use This test bank is optimized to improve your accuracy, build clinical confidence, and prepare you for nursing exams. Download today and start practicing smarter. #NursingStudents #DosageCalculations #NCLEXPrep #NursingMath #MedicationSafety #PharmacologyReview #NursingSchoolHelp #ClinicalSkills #NursingEducation #TestBank calculating drug dosages test bank, nursing math practice questions, drug dosage calculations NCLEX, dimensional analysis nursing, patient-safe medication calculations, dosage calculation chapter test bank, nursing pharmacology practice quizzes, clinical dosage calculation workbook

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Institution
NCLEX-RN
Course
NCLEX-RN

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TEST BANK BASED ON:
Calculating Drug Dosages
A Patient-Safe Approach to
Nursing and Math
3rd Edition
• Author(s)Sandra Luz
Martinez de Castillo;
Maryanne Werner-
McCullough

, Chapter 1 —Medication Orders & Tablet
Calculations
1. Stem: A provider orders 0.75 g of medication PO. The
pharmacy supplies 250 mg tablets. How many tablets
should the nurse give?
A. 2 tablets
B. 3 tablets
C. 4 tablets
D. 0.75 tablet
Correct Answer: B
Rationales:
• Correct (B): Convert grams to milligrams: 0.75 g × 1000
mg/g = 750 mg. Number of tablets = 750 mg ÷ 250
mg/tablet = 3 tablets.
• (A) 2 tablets reflects under-calculation (250 mg × 2 = 500
mg; nurse would underdose).
• (C) 4 tablets reflects thinking 250 × 4 = 1000 mg (extra 250
mg; overdosing).
• (D) 0.75 tablet reflects misreading units (confusing grams
with tablet count).
Teaching Point: Always convert to the same unit before dividing
by tablet strength.

, 2. Chapter 1 — Section 1.2: IV Flow Rate Basics
Stem: Infuse 1,200 mL of IV fluid over 8 hours. What pump
rate (mL/hr) should be programmed?
A. 100 mL/hr
B. 125 mL/hr
C. 150 mL/hr
D. 160 mL/hr
Correct Answer: C
Rationales:
• Correct (C): mL/hr = total volume ÷ hours = 1200 mL ÷ 8 hr
= 150 mL/hr.
• (A) 100 mL/hr would deliver 800 mL in 8 hours
(underdose).
• (B) 125 mL/hr would deliver 1000 mL in 8 hours
(underdose).
• (D) 160 mL/hr would deliver 1280 mL (slightly too fast).
Teaching Point: Divide total volume by total infusion time to
find mL/hr.


3. Chapter 1 — Section 1.3: Pediatric Weight-Based Dosing &
Liquid Volumes
Stem: Order: Amoxicillin 25 mg/kg/day PO divided every
12 hours for an 18-kg child. Suspension: 125 mg/5 mL.

, How many mL per dose?
A. 7.5 mL
B. 9 mL
C. 10 mL
D. 4.5 mL
Correct Answer: B
Rationales:
• Correct (B): Daily dose = 25 mg/kg × 18 kg = 450 mg/day.
Dose every 12 hr = 450 ÷ 2 = 225 mg/dose. Volume = (225
mg ÷ 125 mg) × 5 mL = 1.8 × 5 mL = 9 mL.
• (A) 7.5 mL reflects calculation 225 mg ÷ (150 mg/5 mL) or
incorrect unit conversion.
• (C) 10 mL reflects rounding up incorrectly (10 mL would be
250 mg, a small overdose).
• (D) 4.5 mL reflects halving the volume incorrectly.
Teaching Point: Convert to mg/kg/day, split doses, then use
concentration to find mL.


4. Chapter 1 — Section 1.4: Units, Concentration & Infusion
Rates
Stem: Heparin 25,000 units are mixed in 500 mL. The order
is to infuse 1,000 units/hour. What mL/hour should be set
on the pump?
A. 2 mL/hr

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