

Health Sciences Math
Exam Materials
Course Introduction
Health Sciences Math is a foundational course designed to equip students with essential mathematical skills and concepts used in health science fields. Emphasizing practical application, the course covers topics such as basic arithmetic, algebra, dosage calculations, conversions between units of measurement, statistics, and data analysis pertinent to healthcare settings. Students learn to solve real-world problems related to medication administration, vital signs interpretation, and health data management, ensuring proficiency in mathematical reasoning required for clinical decision-making and patient safety.
Recommended Textbook
Currens Math for Meds Dosages and Solutions 11th Edition by Anna M. Curren
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23 Chapters
585 Verified Questions
585 Flashcards
Source URL: https://quizplus.com/study-set/3434

Page 2
Chapter 1: Relative Value, Addition and Subtraction of Decimals
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25 Verified Questions
25 Flashcards
Source URL: https://quizplus.com/quiz/68211
Sample Questions
Q1) Determine how many tablets are needed to give the following dose: A dosage of 3 mg is ordered. Tablets are labeled 1.5 mg.
Answer: 2 tabs
2
1.5 mg + 1.5 mg = 3 mg
Therefore, 2 tabs are needed.
Q2) Determine how many tablets will be needed to give the following dose: Tablets are labeled 0.25 mg. You must give 0.125 mg.
Answer: 1/2 tab
1/2
0.5
Because 0.25 mg is greater than 0.125 mg, subtract: 0.25 mg - 0.125 mg = 0.125 mg
0.125 mg is 1/2 of 0.25 mg; therefore, give 1/2 tab.
Q3) Determine how many tablets will be needed to give the following dose: Tablets are labeled 0.1 mg. You must give 0.2 mg.
Answer: 2 tabs
2
0.1 mg + 0.1 mg = 0.2 mg
Therefore, 2 tabs are needed.

Page 3
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Chapter 5: Unit, Percentage, Milliequivalent, Ratio, and Household Measures
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25 Verified Questions
25 Flashcards
Source URL: https://quizplus.com/quiz/68215
Sample Questions
Q1) Express the dosage using the official symbol/abbreviation. ten percent
Q2) Identify the household measure. 10 gtt
Q3) Identify the household measure.
2 t
Q4) Express the dosage using the official symbol/abbreviation. three hundred twenty-five milliequivalents
Q5) Identify the household measure.
2 TBS
Q6) Express the dosage using the official symbol/abbreviation. three milliequivalents
Q7) Express the dosage using the official symbol/abbreviation. 1 part drug to 30 parts solution
Q8) Express the dosage using the official symbol/abbreviation. fifty-five milliequivalents
Page 4
Q9) Express the dosage using the official symbol/abbreviation. 1 part drug to 5 parts solution
Q10) Express the dosage using the official symbol/abbreviation. five thousand units
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Page 5

Chapter 6: Oral Medication Labels and Dosage Calculation
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) A medication label contains the following information: LomotilĀ® Liquid
Each 5 mL contains diphenoxylate hydrochloride USP 2.5 mg
Warning-May be habit forming
How much medication must be administered for the following order?
Order: Lomotil 2.5 mg
Q2) How much medication must be administered for the following order?
Order: Procardia 20 mg
Dosage Strength: Procardia 10 mg capsules
Q3) How much medication must be administered for the following order?
Order: Antivert 12.5 mg
Dosage Strength: Antivert 25 mg tablets
Q4) How much medication must be administered for the following order?
Order: Acetaminophen 650 mg
Dosage Strength: Acetaminophen 325 mg tablets
Q5) What is the generic name of this medication?
Q6) How much medication must be administered for the following order?
Order: Cipro 500 mg
Dosage Strength: Cipro 250 mg tablets
Q7) What is the quantity of capsules according to the label?
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Chapter 7: Safe Medication Administration
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25 Flashcards
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Sample Questions
Q1) Name the six rights of medication administration.
Q2) What is the correct conversion of 2245 (military time) to standard time?
Q3) How is a medication administered when it is ordered by the sublingual route?
Q4) What is the correct conversion of 1730 (military time) to standard time?
Q5) What is an MAR?
Q6) Name three precautions that should be considered when using a transdermal patch.
Q7) What is the correct conversion of 4:30 p.m. (standard time) to military time?
Q8) What is the correct conversion of 5:10 a.m. (standard time) to military time?
Q9) What is the correct conversion of 2:45 p.m. (standard time) to military time?
Q10) What is the correct conversion of 11:00 a.m. (standard time) to military time?
Q11) According to The Joint Commission (2005), the medical abbreviation "QOD" has been eliminated. What term should be used instead?
Q13) Find the error in the following order. NPH insulin 56 u subcutaneous 1800 Page 7
Q12) What is the correct conversion of 2300 (military time) to standard time?
Q14) What is the correct conversion of 9:00 p.m. (standard time) to military time?
Q15) What is the correct conversion of 0700 (military time) to standard time?
Q16) What is the correct conversion of 6:00 p.m. (standard time) to military time?
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8
Chapter 9: Parenteral Medication Labels and Dosage
Calculation
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) How much is needed for this dose?
Order:
Furosemide 20 mg IVP
Give: Q2) How many mL are needed for a 20 mg dose?
Q3) How many doses of 25 mg could be administered using the total quantity from this vial?
Q4) According to the label, the dosage strength of chlorpromazine HCl is 25 mg/mL.
Calculate the amount ordered.
Order:
Chlorpromazine HCl 50 mg IM stat
Give:

Q5) Calculate the amount needed for this order.
Order:
Heparin 500 units subcut b.i.d.
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Chapter 10: Reconstitution of Powdered Drugs
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) How many vials will be needed for the usual adult dosage of 1 gram?
Q2) If the Solu-Medrol is reconstituted at 0200 on March 6, when will the vial expire?
Q3) You have reconstituted the cytarabine with 10 mL of bacteriostatic water for injection with benzyl alcohol. What volume will you draw up for an ordered dose of 275 mg?
Q4) You have added 5 mL of diluent to the vial. By what route will the medication be administered?
Q5) What is the volume needed for a 35 mg dose?
Q6) If this drug is reconstituted on September 10 at 6 a.m., when must it be discarded if it is stored at room temperature?
Q7) What volume of diluent is recommended?
Q8) What is the usual adult dosage of nafcillin?
Q9) If a 375 mg dose is required, what volume will you draw up?
Q10) If you add 33 mL of diluent to the vial, what volume will you draw up for a dose of 3.5 million units?
Q11) What is the expiration date and time if this medication is reconstituted on May 27 at 1415?
Q13) What volume is needed for a dose of 70 mg? Page 10
Q12) What size of syringe will you use to draw up the recommended amount of diluent?
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Chapter 12: Ratio and Proportion
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25 Verified Questions
25 Flashcards
Source URL: https://quizplus.com/quiz/68222
Sample Questions
Q1) A dosage strength of 0.2 mg per 3 mL is available. Give 0.7 mg. Express your answer to the nearest tenth.
Q2) Prepare a 10,000 unit dose from a supply of 35,000 units per 5 mL. Express your answer to the nearest tenth.
Q3) Prepare a dose of 30 mEq from a supply of 40 mEq per 10 mL. Express your answer to the nearest tenth.
Q4) The available strength is 900,000 units per 5 mL. Prepare a 750,000 unit dose. Express your answer to the nearest tenth.
Q5) Prepare a 2 g dose from a supply of 10 g per 6 mL. Express your answer to the nearest tenth.
Q6) A dosage strength of 10 mg per 4 mL is available. Prepare a dose of 44 mg. Express your answer to the nearest tenth.
Q7) The drug label reads 40 mEq per 15 mL. The order is for 55 mEq. Calculate the dosage volume. Express your answer to the nearest tenth.
Q8) The drug label reads 1 mg per 3 mL. Prepare a dose of 700 mcg. Express your answer to the nearest tenth.
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Chapter 13: Dimensional Analysisunits Conversion
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) A drug label reads 10 mg tablets. Prepare a 20 mg dose.
Q2) A dosage of 0.5 g is ordered. Solution available is 500 mg/10 mL. Calculate the dosage volume.
Q3) The ordered dose is 7500 units. Solution available is 5000 units/mL. Calculate the dosage volume.
Q4) The strength available is 250 mg/5 mL. Prepare a 0.2 g dose.
Q5) Prepare a 0.2 mg dose from a solution labeled 400 mcg/mL.
Q6) A dosage of 30 mg has been ordered. Solution available is 15 mg/mL. Calculate the dosage volume.
Q7) A dosage of 0.75 g is ordered. Solution available is 500 mg/mL. Calculate the dosage volume.
Q8) The ordered dose is 0.1
g. The dose available is 1000 mg/mL. Calculate the dosage volume.
Q9) The ordered dose is 10 mEq. The available dose is 1 mEq/mL. Calculate the dosage volume.
Q10) The dosage ordered is 75 mg. Solution available is 25 mg/mL. Calculate the dosage volume.
Page 13
Q11) The ordered dose is 3 mg. Solution available is 25 mg/5 mL. Calculate the dosage volume.
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Page 14

Chapter 14: Formula Method
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) An order is written to administer 400 mcg. The available dosage is 1 mg in 2 mL.
Q2) The available strength is 50 units in 10 mL. Prepare a dose of 630 units.
Q3) The order is for 6 mg. The drug is labeled 20 mg in 25 mL.
Q4) Draw up 14 units from a vial labeled 20 units in 5 mL.
Q5) Prepare a dose of 0.1 g. Available strength is 250 mg in 5 mL.
Q6) Prepare a 150 mg dose from an available dosage of 800 mg in 100 mL.
Q7) The drug is labeled 50 mEq in 15 mL. Prepare a dose of 90 mEq.
Q8) The ordered dose is 175,000 units. The available strength is 500,000 units in 7.5 mL.
Q9) Prepare a dose of 12 mg from an available supply of 10 mg in 5 mL.
Q10) A dosage of 65 units is ordered. The strength available is 100 units in 5 mL.
Q11) The label reads 20 mg in 50 mL. An 18 mg dose has been ordered.
Q12) The strength available is 60 mEq in 6 mL. Prepare 15 mEq.
Q13) 165 mcg is ordered and you have 0.6 mg in 5 mL available.
Q15) You have available 0.2 g in 2 mL. Draw up a dosage of 100 mg. Page 15
Q14) An order is given for 65 mcg. The available container is labeled 10 mg in 30 mL.
Q16) An order is written for an addition of 70 mEq to an IV solution. The available vial is labeled 40 mEq in 10 mL.
Q17) Prepare a 3.4 mg dosage from an ampule labeled 10 mg in 10 mL.
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Chapter 15: Adult and Pediatric Dosages Based on Body Weight
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) What would the higher per dose dosage in mcg be for a 93 lb client?
Q2) What would be the total daily dosage if this medication were to be given every 4 hours?
Q3) What is this patient's higher per dose dosage?
Q4) Is an order of 1300 mcg every 12 hours within the recommended dosage range?
Q5) What would be the total daily dosage if this medication were to be given every 6 hours?
Q6) If the order is for 800 mcg every 12 hours, is this an accurate dose?
Q7) What is the lower total daily dose?
Q8) What would the lower per dose dosage in mcg be for a 136 lb woman?
Q9) The prescriber orders "6000 mcg every 6 hours" for a patient weighing 51 kg. Is this within the recommended range?
Q10) An infant weighs 14.3 lbs. What is the higher per dose dosage for this infant?
Q11) What is the highest total dosage for the drug administration period for this patient?
Page 17
Q12) The order for this child is to give 6000 mg every 6 hours. Is this an acceptable and safe dose?
Q13) A 7-year-old child weighs 28 kg. What is the recommended 24-hour dosage for this child?
Q14) What is the lower single dosage?
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18

Chapter 16: Adult and Pediatric Dosages Based on Body
Surface Area
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) What is the lower dose for a client weighing 95 kg and measuring 182 cm?
Q2) The child's BSA is 0.84 m<sup>2</sup>. Calculate the fifth dose.
Q3) What is the dose of bleomycin that is recommended for malignant pleural effusion?
Q4) The order is to administer carmustine daily for 2 days. If the client weighs 79 kg and has a height of 183 cm, what will the lowest daily dose be?
Q5) The order is to administer carmustine daily for 2 days. If the client weighs 79 kg and has a height of 183 cm, what will the highest daily dose be?
Q6) Calculate the highest recommended dose for a patient with testicular cancer whose BSA is 1.7 m<sup>2</sup>.
Q7) A 9-year-old child weighs 30 kg and is 100 cm tall.
Q8) What is the highest single dose for a client whose height is 70 in and weight is 166 lb?
Q9) The adult client is 181 cm tall and weighs 174 lb. Calculate the adult's first dose.
Q10) A client weighs 204 lb and is 6 ft tall. The prescriber orders a dose of 2 mcg. Is this an accurate dose?
Q11) A 7-year-old child weighs 39 lb and is 3 ft tall.
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Chapter 17: Introduction to Iv Therapy
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) What is the purpose of the slide clamp on IV tubing?
Q2) Describe the irrigation routine for a saline lock.
Q3) What are the components of 1/4NS 10 mEq KCl?
Q4) What is a volumetric pump?
Q5) What is the benefit of a patient-controlled analgesia device?
Q6) The physician inserts the IV into the patient's subclavian vein.What type of line is this?
Q7) You receive an order to administer an IV medication diluted in 25 mL. The patient has a burette chamber hanging. Can this be used to administer this medication?
Q8) An IV solution contains 25 grams of dextrose in 500 mL of water. How would this be abbreviated?
Q9) The RN is preparing a primary IV line. Does this need to be done using clean or sterile technique?
Q10) A patient is ordered an IV of 1000 mL NS to infuse at 100 mL/hr. What clamp will you use to regulate/set this flow rate?
Q11) In what unit in the hospital are burettes are commonly used?
Page 20
Q12) Parenteral nutrition solutions generally are not used for longer than ____________________ hours due to the risk of bacterial growth.
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Page 21

Chapter 18: Iv Flow Rate Calculation
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25 Verified Questions
25 Flashcards
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Sample Questions
Q1) Administer 36 mL in 14 minutes using a microdrip set. Calculate the gtt/min to the nearest whole number.
Q2) Calculate the rate (to the nearest whole number) for an infusion of 2300 mL to run over 20 hours using a 10 gtt/mL set.
Q3) Set calibration is 20 gtt/mL. Administer 72 mL in 53 minutes. Calculate the gtt/min to the nearest whole number.
Q4) The order is to infuse 1300 mL in 8 hours using a 20 gtt/mL set. Calculate the gtt/min to the nearest whole number.
Q5) Administer 125 mL in 45 minutes using a microdrip set. Calculate the gtt/min to the nearest whole number.
Q6) The available set is calibrated to 15 gtt/mL. Calculate the flow rate (to the nearest whole number) for an infusion of 360 mL in 1.5 hours.
Q7) The available set is calibrated to 20 gtt/mL. The ordered infusion is 1250 mL in 19 hours. Calculate the gtt/min to the nearest whole number.
Q8) Infuse 50 mL in 15 minutes using a 10 gtt/mL set. Calculate the gtt/min to the nearest whole number.
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Chapter 19: Calculating Iv Infusion and Completion Times
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Sample Questions
Q1) At 3:15 pm there is 175 mL left in an IV infusing at 55 mL/hr. Calculate the infusion time and the completion time.
Q2) At 1923 there are 240 mL left in an IV that is infusing at 45 mL/hr. Calculate the infusion time and the completion time.
Q3) An IV of 1020 mL is to infuse at 90 mL/hr. It is now 8:19 pm. Calculate the infusion time and the completion time.
Q4) An infusion of 1000 mL is to run at 140 mL/hr. It is now 2130. Calculate the infusion time and the completion time.
Q5) A volume of 480 mL is started at 5:25 pm at a rate of 105 mL/hr. Calculate the infusion time and the completion time.
Q6) The ordered rate for an infusion of 825 mL is 60 mL/hr. It was started at 10:05 am. Calculate the infusion time and the completion time.
Q7) The flow rate ordered for 500 mL is 75 mL/hr. It is started at 4:08 am. Calculate the infusion time and the completion time.
Q8) An infusion of 2000 mL is started at 8:24 am at a rate of 250 mL/hr. Calculate the infusion time and the completion time.
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Chapter 20: IV Medication and Titration Calculations
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Sample Questions
Q1) A drug is ordered to titrate between 4 and 6 mcg/kg/min. The body weight is 78.6 kg and the solution strength is 200 mg/100 mL. Calculate the dosage range in mcg/min and flow rate range in mL/hr.
Q2) A 35 mg/hr dosage is ordered and a 250 mg in 250 mL solution is available. Calculate the flow rate in mL/hr.
Q3) A solution of 100 mg in 500 mL is ordered to infuse at 0.9 mcg/kg/min for a patient weighing 74.3 kg. Calculate dosage (in mcg/min) to the nearest tenth and flow rate (in mL/hr) to the nearest whole number.
Q4) A 4 g in 500 mL dosage is to infuse at 2 mg/min. Calculate the flow rate in mL/hr.
Q5) The order is to titrate a solution of 250 mg in 250 mL at 15-18 mcg/kg/min. The patient weighs 59 kg. Calculate the dosage range in mcg/min and flow rate range in mL/hr.
Q6) An infusion of 300 mg/250 mL is infusing at a rate of 38 mL/hr. Calculate the dose currently infusing in mcg/min to the nearest whole number.
Q7) A solution of 100 mg/250 mL is infusing at 25 mL/hr. Calculate the dose currently infusing in mcg/min to the nearest whole number.
Q8) Infuse 8 mg/min from a 500 mg/250 mL solution. Calculate the flow rate in mL/hr.
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Chapter 21: Heparin Infusion Calculations
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Sample Questions
Q1) The client is to receive 1875 units/hr of heparin using a solution of 30,000 units in 1000 mL. Calculate the flow rate in mL/hr.
Q2) The order is to infuse 500 mL NS with 25,000 units heparin at 950 units/hr. Calculate the flow rate in mL/hr.
Q3) An IV solution of 25,000 units heparin in 1 L is ordered to infuse at 850 units/hr. Calculate the flow rate in mL/hr.
Q4) A solution of 8000 units of heparin in 500 mL D5W is to infuse at 230 units/hr. Calculate the flow rate in mL/hr.
Q5) Heparin 2000 units/hr is to infuse utilizing an available solution of 50,000 units in 500 mL. Calculate the flow rate in mL/hr.
Q6) The patient is to receive a heparin infusion of 580 units/hr from a solution containing 12,000 units of heparin in 500 mL. Calculate the flow rate in mL/hr.
Q7) The order is for 1200 units/hr of heparin. The solution strength is 30,000 units heparin in 1 L D5W. Calculate the flow rate in mL/hr.
Q8) The order is to infuse 650 units/hr of heparin from a solution of 10,000 units in 250 mL D5W. Calculate the flow rate in mL/hr.
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Chapter 22: Pediatric Oral and Parenteral Medications
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Sample Questions
Q1) Prepare a 0.3 mg dose from a supply dosage of 100 mcg/mL.
Q2) Prepare a 2.5 mg dose from a medication with the dosage strength of 5 mg/mL.
Q3) Prepare a 250 mg dose from a dosage strength of 500 mg/15 mL.
Q4) Prepare a 10 mg dose of a medication with the dosage strength of 20 mg/mL.
Q5) Prepare a 75 mg dose of an oral antibiotic with a dosage strength of 125 mg/5 mL.
Q6) Prepare a 50 mg dose. The supply dosage is 250 mg/5 mL.
Q7) Prepare a 25 mg dose of medication with a dosage strength of 100 mg/5 mL.
Q8) Prepare a 2 mg dose from an elixir with a dosage strength of 0.5 mg/mL.
Q9) Prepare an 8 mg dose from a supply dosage of 25 mg/mL.
Q10) Prepare a 0.2 mg dose from a medication dosage strength of 0.25 mg/mL.
Q11) Prepare a 5 mg dose from a medication dosage strength of 10 mg/mL.
Q12) Prepare a 10 mEq dose from a label reading 10 mEq tabs.
Q13) Prepare an 80 mg dose from an oral medication with the supply dose of 100 mg/5 mL.
Q15) Prepare a 200 mg dose from a supply dosage of 100 mg/mL. Page 26
Q14) Prepare a dose of 125 mg from a medication with the dosage strength of 125 mg/5 mL.
Q16) Prepare a 300 mg dose from a dosage supply of 600 mg tabs.
Q17) Prepare a 60 mg dose from a supply dosage of 150 mg/mL.
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27

Chapter 23: Pediatric Intravenous Medications
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Sample Questions
Q1) A child weighing 21 lbs is to receive 100 mL/kg/day. Calculate the 24-hour fluid requirement and the EID setting in mL/hr for the 24-hour period.
Q2) A dose of 500 mg in 25 mL is to infuse in 35 minutes. Calculate the flow rate in gtt/min using a microdrip calibrated at 60 gtt/mL.
Q3) A child weighing 15.4 kg is to receive 150 mL/kg/day. Calculate the 24-hour fluid requirement and the EID setting in mL/hr for the 24-hour period.
Q4) A volume of 50 mL is to infuse in 75 minutes. Calculate the EID settings in mL/hr.
Q5) Make an assessment of the order.
Q6) A child weighing 19.3 kg is to receive 7.5-9 mg/kg/dose. Each dose is to infuse over 50 minutes. The supply is labeled 10 mg/5 mL. Calculate the normal dosage ranges to the nearest tenth and the flow rate ranges in gtt/min using a set calibrated to 60 gtt/mL.
Q7) A volume of 200 mL is to infuse in 5 hours. Calculate the EID settings in mL/hr.
Q8) Calculate the dosage infusing per day.
Q9) A volume of 40 mL is to infuse in 1 hour. Calculate the flow rate in gtt/min using a microdrip calibrated at 60 gtt/mL.
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