Order: 1000 mL D5NS with 15 mEq KCL IV to run over 8 hours a) ML/hr b) Macro drop (20 gtt/mL) c) Micro drip (50 gtt/mL)
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Order: 1000 mL D5NS with 15 mEq KCL IV to run over 8 hours
a) ML/hr
b) Macro drop (20 gtt/mL)
c) Micro drip (50 gtt/mL)
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Solved in 3 steps with 3 images
- A serum is diluted 1:20 then 2 parts of the resulting dilution is added to 40 parts saline. Then 3 parts of the last dilution was added to saline to have a total volume of 6 parts. What is the final dilution?Indicate 3 ways of visualizing a TLC after elution. Name three types of chromatography (excluding TLC)11 PM Mon Apr 18 * L 85% +: 0 23) Five hundred milliliters of an IV solution is to be infused over a period of 4h. A check of the time tape after 2 h showed that only 150 mL of the solution has been infused. (a) Recalculate a new drop rate that will finish the infusion in 2 h. The drop factor is 10 gtt/mL. (b) What was the drop rate in first 2 hour?
- Q.11You are working a shift from 0900 – 1700. Mr. Loughran has been prescribed 250 mL of D5N/S to run over 5 hours. Infusion is scheduled to begin at 0900 and the IV tubing drop factor is 25 gtt/mL. On hand, you have a 250 mL bag of D5N/S. Show all calculations. a) What is the prescribed drip rate (gtt/min)? (3 marks) At 1100, you observe 120 mL left in the IV bag. b) Is the IV on time, ahead or behind, and by how much? (3 marks) c) What is the new flow rate (mL/hr)? (4 marks) d) Calculate the variance. Is it safe to adjust the flow rate? (3 marks)2. 3. 4 6. In this image, the bacteria in circles 1 and 4 is demonstrating: presence of catalase • presence of coagulase O absence of catalase O absence of coagulase presence of hydrogen peroxide absence of hydrogen peroxide presence of antibodies absence of antibodies Icst