QuestionAugust 24, 2025

Question 16 (1 point) A nurse is preparing to administer 80 mEq of potassium chloride in 0.9% sodium chloride (NSS) in 500 mL IV to infuse at 10mEq/hr. The nurse should set the IV pump to deliver how many mL/hr ? (Round the answer to the nearest whole number. Use a leading zero if it applies. Do not use a trailing zero.) square

Question 16 (1 point) A nurse is preparing to administer 80 mEq of potassium chloride in 0.9% sodium chloride (NSS) in 500 mL IV to infuse at 10mEq/hr. The nurse should set the IV pump to deliver how many mL/hr ? (Round the answer to the nearest whole number. Use a leading zero if it applies. Do not use a trailing zero.) square
Question 16 (1 point)
A nurse is preparing to administer 80 mEq of potassium chloride in 0.9%  sodium
chloride (NSS) in 500 mL IV to infuse at 10mEq/hr. The nurse should set the IV
pump to deliver how many mL/hr ? (Round the answer to the nearest whole number.
Use a leading zero if it applies. Do not use a trailing zero.)
square

Solution
4.4(183 votes)

Answer

63 mL/hr Explanation 1. Determine the infusion time Calculate the total infusion time using the formula: **Infusion Time (hr) = \frac{\text{Total mEq}}{\text{mEq/hr}}**. Here, Infusion Time = \frac{80 \text{ mEq}}{10 \text{ mEq/hr}} = 8 \text{ hr}. 2. Calculate the flow rate in mL/hr Use the formula: **Flow Rate (mL/hr) = \frac{\text{Total Volume (mL)}}{\text{Infusion Time (hr)}}**. Flow Rate = \frac{500 \text{ mL}}{8 \text{ hr}} = 62.5 \text{ mL/hr}. 3. Round to the nearest whole number Round 62.5 mL/hr to the nearest whole number, which is 63 mL/hr.

Explanation

1. Determine the infusion time<br /> Calculate the total infusion time using the formula: **Infusion Time (hr) = \frac{\text{Total mEq}}{\text{mEq/hr}}**. Here, Infusion Time = $\frac{80 \text{ mEq}}{10 \text{ mEq/hr}} = 8 \text{ hr}$.<br />2. Calculate the flow rate in mL/hr<br /> Use the formula: **Flow Rate (mL/hr) = \frac{\text{Total Volume (mL)}}{\text{Infusion Time (hr)}}**. Flow Rate = $\frac{500 \text{ mL}}{8 \text{ hr}} = 62.5 \text{ mL/hr}$.<br />3. Round to the nearest whole number<br /> Round 62.5 mL/hr to the nearest whole number, which is 63 mL/hr.
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