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- Question: A Nurse Is Caring For A Client With COPD. The Client Is Receiving Oxygen. The Nurse Assess The Oxygen Flow Rate To Ensure That It Does Not Exceed: IF A) 1 Liter Per Minute B) 2 Liters Per Minute C) 6 Liters Per Minute D) 10 Liters Per Minute A Nurse Is Caring For A Client With COPD. The Client Is Receiving Oxygen. The Nurse Assess The Oxygen Flow Rate …
- Question: The Doctor Orders Heparin 1800 Units/hr. The Solution Available Is 24000 Units In 1200 ML D5W. Set Calibration Is 20 Gtt/mL. Calculate The Flow Rate In Gtt/min. Options: 60 Gtt/min None Of The Other Four Answers Are Correct 20 Gtt/min 10 Gtt/min 90 Gtt/min
- Question: 3. Round All ML/h Calculations To The Nearest Tenth ML/h. Calculate The Flow Rate In ML/h. A). 1000mL Infused Over 4 Hours. B). 250 ML Infused Over 90 Minutes.
- Question: 19. Infuse 45 ML Over 30 Minutes Using A 20 Gtt/mL Set. Calculate The Flow Rate In Gtt/min 20. Infuse 20 ML Over 10 Min Using A 60 Gtt/mL Set. Calculate The Flow Rate In Gtt/min
- Question: 11. An IV Of D5W 1000 ML Was Ordered To Infuse Over 8 Hr At A Rate Of 42 Gtt/min (42 Macrogtt/min). Drop Factor: 20 Gtt/mL. After 4 Hr, You Notice That Only 400 ML Has Infused. Recalculate The Rate In Gtt/min For The Remaining Solution 12. An IV Of 1000 ML D5W Is To Infuse In 10 Hr. Drop Factor: 15 Gtt/mL. The IV Was Started At 4 AM. At 10 AM 600 ML …
- Question: The Nurse Enters The Client’s Room And Notes That 400 ML Is Left In The IV Bottle. The Client Is Receiving 25 Gtt/min, And The Drop Factor Of The Tubing Is 15 Gtt/mL. How Many Hours Will The IV Last? The Order Reads “1,000 ML Of D5W Every 10 Hours.” The Drop Factor Is 15 Gtt/mL. The Flow Rate Is 25 Gtt/min. After 4 Hours The Nurse Expects To See 600 …
- Question: Calculate The IV Flow Rate In Gtt/min For The Following IV Administrations, Unless Another Unit Of Meas 6. 1000 ML D5RL To Infuse In 8 Hr. Drop Factor: 20 Gtt/mL. 7. 1000 ML RL To Infuse In 10 Hr. Drop Factor: 20 Gtt/mL_ 8. A Unit Of Packed Cells (250 ML) To Infuse In 4 Hr. Drop Factor: 20 Gtt/mL.
- Question: The Nurse Starts An Infusion Of 1000mL D5W/ 0.9% Sodium Chloride Solution At 2100. The Infusion Is To Run Over 8 Hours. No Electronic Pump Is Available, So The Fluid Will Be Infused Under Manual Control. The Tubing Drop Factor Is 15gtt/ml. Calculate The Flow Rate In Gtt/min.
- Question: An IV Is Infusing At A Flow Rate Of 125 ML/hr. The Nurse Is Planning To Switch The Infusion To A Gravity Drip. The Drop Factor Of The IV Tubing Is 15 Gtt/mL. The Nurse Calculates The Drip Rate (gtt/min) To Be? (Round To The Nearest Whole Number)
- Question: The Order Reads “1,000 ML Of D5W Every 10 Hours.” The Drop Factor Is 15 Gtt/mL. The Flow Rate Is 25 Gtt/min. After 4 Hours The Nurse Expects To See 600 ML Remaining In The IV Bottle But Instead Finds 540 ML. What Should The New Flow Rate Be?