How many ml/hour should the nurse set the infusion pump for a client receiving oxytocin (Pitocin) 0.5 milliunits/minute with a 1,000 ml solution containing 10 units?

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Multiple Choice

How many ml/hour should the nurse set the infusion pump for a client receiving oxytocin (Pitocin) 0.5 milliunits/minute with a 1,000 ml solution containing 10 units?

Explanation:
To determine the correct infusion rate in ml/hour, it's essential first to understand the concentration of the oxytocin solution and the prescribed dosage. The solution contains 10 units of oxytocin in a total volume of 1,000 ml. 1. **Calculate the concentration of oxytocin in the solution**: The concentration is given as 10 units in 1,000 ml, which translates to 0.01 units/ml (10 units / 1,000 ml). 2. **Convert the prescribed dose from milliunits to units**: The order is for 0.5 milliunits/minute. Knowing that 1 unit equals 1,000 milliunits, you can convert this dosage as follows: - 0.5 milliunits = 0.0005 units (by dividing by 1,000). 3. **Determine the infusion rate in ml/minute**: Using the concentration, you can find out how many ml are needed to deliver 0.0005 units. - To find out how many ml deliver the desired dose, use the formula: - Desired dose (in units) / Concentration (in units/ml) = Volume (ml). - Thus,

To determine the correct infusion rate in ml/hour, it's essential first to understand the concentration of the oxytocin solution and the prescribed dosage. The solution contains 10 units of oxytocin in a total volume of 1,000 ml.

  1. Calculate the concentration of oxytocin in the solution: The concentration is given as 10 units in 1,000 ml, which translates to 0.01 units/ml (10 units / 1,000 ml).
  1. Convert the prescribed dose from milliunits to units: The order is for 0.5 milliunits/minute. Knowing that 1 unit equals 1,000 milliunits, you can convert this dosage as follows:
  • 0.5 milliunits = 0.0005 units (by dividing by 1,000).
  1. Determine the infusion rate in ml/minute: Using the concentration, you can find out how many ml are needed to deliver 0.0005 units.
  • To find out how many ml deliver the desired dose, use the formula:

  • Desired dose (in units) / Concentration (in units/ml) = Volume (ml).

  • Thus,

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