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Calculate the flow rate when using an electronic pump (mL/hr): 1. Infuse 600 mL LR over 3 hours.

2. Infuse Ampicillin 500 mg IVPB mixed in 50 mL NS over 10 minutes. Determine the infusion rate in gtts/min for the following: 3. Order: 1000 mL NS to infuse in 10 hours. Drip factor of administration set: 15 gtts/mL.

4. Order: 1000 mL NS to infuse in 8 hours. Drip factor of administration set: 20 gtts/mL.

5. Calculate the drip rate for 100 mls of IV Fluids to be given over a half hour via a giving set which delivers 10 drops/ml.

6. Ordered: 1 liter of Dextrose 5% in water over 8 hours using a giving set which delivers 10 drops/ml. Calculate the rate in drops/minute.

7. Calculate the drip rate for 500 mls of Dextrose 5% in water to be given over 4 hours via a giving set which delivers 15 drops/ml.

8. One liter of Dextrose 5% in water is charted over 3 hours. The drop factor is 10. The IV has been running for 1 hour and 15 minutes. 500 mls remain. How many drops per minute are needed so that the IV finishes in the required time?

9. One hundred milliliters of IV Fluids is charted over 2.5 hours. The drop factor is 15. Calculate the number of drops per minute.

10. The order reads: "Over the next 4 hours, infuse 500 ml of 5% Dextrose in Normal Saline. Add 20 MEq of KCl to solution." You know that the IV tubing set is calibrated to deliver 10gtt/ml. In drops per minute, what is the rate of flow?

11. The physician orders an IV infusion of D5W 1000 ml to infuse over the next eight hours. The IV tubing that you are using delivers 10 gtt/ml. What is the correct rate of flow (drops per minute)?

12. A 500 mL solution of D5NS with 20,000 units of Heparin is infusing at 20ml per hour. The IV set delivers 60 gtts per mL. How many units of Heparin is the patient…...

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