1 :

Hint : 🧐Consider drugs that don’t affect clotting.

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2 :

Hint : 💡Focus on routes that involve injections rather than oral or tube methods.

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3 :

Hint : 💡Divide the required units per hour by the solution’s units-per-milliliter concentration to find the rate.

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4 :

Hint : 🔎Focus on an electrolyte abnormality that heightens digoxin’s cardiac effects.

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5 :

Hint : 🧒Convert pounds to kilograms before determining the dose volume.

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6 :

Hint : 💡Remember to convert ounces to milliliters and include both pitcher and IV volumes.

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7 :

Hint : 💡Convert minutes to hours before calculating mL per hour.

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8 :

Hint : 💡Shift the decimal three places to the left to convert grams to kilograms.

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9 :

Hint : 🎯Focus on biological characteristics that alter how medications are processed in the body.

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10 :

Hint : 🧮Divide the total infusion volume by the prescribed hours to find the hourly rate.

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11 :

Hint : 🔍Choose sources that are peer-reviewed and professionally curated, not general websites.

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12 :

Hint : 🩺Think about how removing fluid affects blood pressure control.

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13 :

Hint : 🚰After finding mL/hr, multiply by the drop factor, then divide by 60.

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14 :

Hint : 🩸Convert mcg/kg/min to mg/hr before using the mg/mL concentration.

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15 :

Hint : 🔑Divide the total units per hour by the units per milliliter concentration.

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16 :

Hint : 💦Multiply volume by drop factor, then divide by minutes to find drops per minute.

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17 :

Hint : 🧮Divide the total prescribed dose by the medication strength per unit to find the number of capsules.

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18 :

Hint : 🫀Consider which serious health condition results from cholesterol-laden arteries.

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19 :

Hint : ⚗️Multiply the pump’s mL/hr rate by the solution’s units/mL to find units per hour.

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20 :

Hint : 🔍Think of the ADME acronym for how the body handles a drug.

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21 :

Hint : 📝Convert mcg/min to mL/min using the concentration, then multiply by 60 for mL/hr.

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22 :

Hint : 🧐Consider which route delivers medication directly into systemic circulation without delay.

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23 :

Hint : 🔑Divide the prescribed milligrams by the mg/mL concentration, then adjust by the solution volume.

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24 :

Hint : 🔍Convert the dose in mcg/min to mL/min using the concentration, then multiply by 60 to find mL/hr.

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25 :

Hint : 📏Determine how many milliliters contain the prescribed 5 mg based on the elixir’s hydrocodone strength.

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26 :

Hint : 💡Divide the desired dose by the strength per tablet.

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27 :

Hint : 🔍Use the ratio of prescribed mg to mg per mL to calculate the required volume.

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28 :

Hint : 🩸Convert each ounce amount to milliliters and include both oral and IV volumes.

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29 :

Hint : 🎯Consider both physiologic transit, membrane permeability, and drug characteristics when evaluating absorption.

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30 :

Hint : ⏱️Find mL/hr first, then multiply by the drop factor and divide by 60 for drops per minute.

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31 :

Hint : 🔑Combine adherence with vigilance for signs of superinfection.

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32 :

Hint : 🎯Divide the desired dose by the mg/mL concentration to find the volume.

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33 :

Hint : 🔑Think about where the pH shifts from acidic to more alkaline in the GI tract.

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34 :

Hint : 🚑Choose the rapid-acting benzodiazepine used first-line in status epilepticus.

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35 :

Hint : 🔄Use the ordered mL/hr directly to set your infusion pump.

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36 :

Hint : ⏰Space antacid and digoxin doses by a couple of hours to avoid binding issues.

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37 :

Hint : 🤔Divide the prescribed milligrams by the milligrams per milliliter to determine the volume.

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38 :

Hint : 🔢Shift the decimal two places left to express hundredths.

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39 :

Hint : 📅Multiply the number of daily doses by the ounces per dose, then convert to mL.

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40 :

Hint : 🔑Consider which federal agency approves and regulates drug manufacturing and labeling.

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41 :

Hint : 🔎Watch for an unusually slow heart rate when taking beta-blockers.

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42 :

Hint : 🔑Think of agents that thin the blood and slow clot formation.

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43 :

Hint : 🕒Multiply the child’s weight in kg by the mL/kg dose, then divide by hours.

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44 :

Hint : 📏Look for the format: Drug Name + space + number + space + lowercase unit.

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45 :

Hint : 🎯Calculate mg per dose first, then divide by mg/mL to find the volume in mL.

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46 :

Hint : 🔑Think of LMWH as a subcutaneous anticoagulant used to prevent and treat venous clots.

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47 :

Hint : ⛑️Think about the trade-off when clot-breaking agents affect the body’s ability to stop bleeding.

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48 :

Hint : 🤔Divide the desired dose by the strength per tablet to find the number of tablets.

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49 :

Hint : 🔍Always include a zero before the decimal for doses under one and never add unnecessary zeros after it.

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50 :

Hint : 💡Think about how opening blood vessels affects systemic pressure.

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51 :

Hint : 📝Label reconstituted medication with details about the solution, expiration, and preparer.

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52 :

Hint : 💡Convert mg to mcg/mL, then multiply by the infusion rate to find mcg/hr.

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53 :

Hint : 🤔Convert weight, find mg per dose, then divide by mg/mL to get mL.

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54 :

Hint : 🕵️Set up a ratio of desired dose to concentration, then solve for volume.

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55 :

Hint : ⏳Compute mL/hr, multiply by drop factor, then divide by 60.

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56 :

Hint : 💉The antidote for digoxin toxicity is an antibody fragment preparation.

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57 :

Hint : 🧪Divide volume by minutes, then multiply by the drop factor.

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58 :

Hint : 📌Use desired dose ÷ strength × volume to find mL.

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59 :

Hint : 🌊Subtract the formula volume from total, then convert to mL.

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60 :

Hint : ⏲️Convert mcg/min to mg/min, divide by mg/mL, then multiply by 60.

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Total Questions: 60

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