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Saunders NCLEX Dosage Calculations Test Bank | 2025 Comprehensive Review with Step-by-Step Solutions, Dimensional Analysis, and Rationales for Safe Medication Administration

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“Saunders NCLEX Dosage Calculations Test Bank | 2025 Comprehensive Review with Step-by-Step Solutions, Dimensional Analysis, and Rationales for Safe Medication Administration” 8 High-Impact SEO Keywords NCLEX dosage calculation questions Saunders NCLEX review test bank Nursing math practice questions Medication administration safety guide IV flow rate and reconstitution problems Pediatric dosage calculations (mg/kg) NCLEX-RN pharmacology math practice Nursing dimensional analysis workbook 10 Optimized Hashtags #NCLEXPrep #NursingMath #DosageCalculations #SaundersNCLEX #NursingStudents #MedAdminSafety #PediatricNursing #IVFlowRates #StudyWithSaunders #FutureRN Compelling Product Description Mastering dosage calculations is the foundation of safe and confident nursing practice—and now you can practice like the pros. This comprehensive NCLEX Dosage Calculation Test Bank, based on the latest Saunders Comprehensive Review for the NCLEX-RN Examination, transforms complex math problems into step-by-step, easy-to-follow learning experiences. Designed by expert NCLEX item writers and nurse educators, this resource covers every major calculation type tested on the 2025 NCLEX-RN: dosage by weight (mg/kg), IV flow rates (gtt/min and mL/hr), and reconstitution problems. Each question includes full dimensional analysis, clear unit conversions, and in-depth rationales that teach why the correct answer is safest—not just what it is. You’ll gain confidence applying clinical judgment, reinforcing safe medication administration, and minimizing errors through precise calculations. Whether you’re a nursing student preparing for your final NCLEX attempt, an educator designing classroom or simulation assessments, or a practicing nurse seeking a refresher in safe medication practice, this test bank offers everything you need to succeed. Strengthen your math skills, boost your test performance, and approach every medication order with confidence, accuracy, and professional readiness. Download now to build mastery in NCLEX dosage calculations and guarantee safe, error-free practice—because your patients deserve precision, and your career deserves success.

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Saunders Comprehensive Review for the NCLEX-PN®
Examination
9th Edition
• Author(s)Linda Anne Silvestri; Angela Silvestri


TEST BANK


1
A 22-lb child is ordered 5 mg/kg amoxicillin PO. The pharmacy
supplies 10 mg scored tablets. How many tablets should the
nurse administer?
A. 2 tablets
B. 1 tablet
C. 0.5 tablet
D. 5 tablets
Solution (dimensional analysis)
1. Convert weight:
22 lb×1 kg2.20462 lb=9.98 kg22 \text{ lb} \times \dfrac{1\
\text{kg}}{2.20462\ \text{lb}} = 9.98\
\text{kg}22 lb×2.20462 lb1 kg=9.98 kg (round to 2 decimals
for intermediate use).

, 2. Calculate total dose:
5 mg/kg×9.98 kg=49.90 mg5\ \text{mg/kg} \times 9.98\
\text{kg} = 49.90\ \text{mg}5 mg/kg×9.98 kg=49.90 mg.
3. Tablets needed:
49.90 mg10 mg/tablet=4.99 tablets\dfrac{49.90\
\text{mg}}{10\ \text{mg/tablet}} = 4.99\
\text{tablets}10 mg/tablet49.90 mg=4.99 tablets.
Final answer (rounding for tablets)
Round to nearest half or whole tablet per facility; 4.99 ≈ 5
tablets.
Answer: D. 5 tablets
Rationale
• Correct: 5 tablets is the dose required to deliver ~49.9 mg
when only 10 mg tablets are available.
• Distractors: A (2 tablets = 20 mg) and B (1 tablet = 10 mg)
and C (0.5 tablet = 5 mg) are all well below the ordered
dose.
• Safety checks: Confirm pediatric weight in kg from the
medical record, verify allergy status to penicillins, and
consider whether tablet splitting is allowed; if tablet
splitting for 4.99 tablets seems impractical, consult
pharmacy for liquid formulation.


2

,A client is to receive 1000 mL normal saline IV over 8 hours
using tubing with a drop factor of 20 gtt/mL. What rate in
gtt/min should the nurse set?
A. 21 gtt/min
B. 42 gtt/min
C. 125 gtt/min
D. 167 gtt/min
Solution
1. Calculate mL/hr: 1000 mL÷8 hr=125.0 mL/hr1000\
\text{mL} \div 8\ \text{hr} = 125.0\
\text{mL/hr}1000 mL÷8 hr=125.0 mL/hr.
2. Convert to gtt/min:
125.0 mL/hr×20 gtt/mL60 min/hr=41.666 gtt/min\dfrac{12
5.0\ \text{mL/hr} \times 20\ \text{gtt/mL}}{60\
\text{min/hr}} = 41.666\
\text{gtt/min}60 min/hr125.0 mL/hr×20 gtt/mL
=41.666 gtt/min.
3. Round to nearest whole drop: 42 gtt/min.
Final answer
Answer: B. 42 gtt/min
Rationale
• Correct: 42 gtt/min rounds 41.667 to whole drops.
• Distractors: A (21) is about half the needed rate; C and D
are much higher.

, • Safety checks: Reconfirm drop factor on tubing, use
infusion pump if available for accuracy, check IV site
patency.


3
Dopamine ordered at 5 mcg/kg/min by continuous infusion for
a 70-kg patient. Pharmacy sends a bag containing 400 mg
dopamine in 250 mL. What mL/hr should the pump be set to
deliver the ordered dose?
A. 6.5 mL/hr
B. 13.1 mL/hr
C. 21.0 mL/hr
D. 0.8 mL/hr
Solution
1. Calculate mcg/min: 5 μg/kg/min×70 kg=350 μg/min5\
\mu\text{g/kg/min} \times 70\ \text{kg} = 350\
\mu\text{g/min}5 μg/kg/min×70 kg=350 μg/min.
2. Convert to mg/hr:
350 μg/min×1 mg1000 μg=0.35 mg/min350\
\mu\text{g/min} \times \dfrac{1\ \text{mg}}{1000\
\mu\text{g}} = 0.35\
\text{mg/min}350 μg/min×1000 μg1 mg=0.35 mg/min.
0.35 mg/min×60 min/hr=21.0 mg/hr0.35\ \text{mg/min}
\times 60\ \text{min/hr} = 21.0\
\text{mg/hr}0.35 mg/min×60 min/hr=21.0 mg/hr.

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Publisher: 2024 ISBN: 9780443113864 Edition: Unknown

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