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- An infusion was ordered at 1.5 mcg/kg/min for a patient weighing 180lb. The available solution strength is 400 mg in 250 mL. What is the dosage in mcg/min?Complete the dilution series using a maximum amount of 20 mL of dilutent so that the dilution in the final tube is 10^-9750mL is being infused at a rate of 45 gtt/min. The drop factor is 20gtt/mL. How many mL per hour will the patient receive?
- A dosage of 3 mcg/kg/min has been ordered for an 87.4 kg adult. The solution has a strength of 50 mg in 250 mL. Calculate the flow rate in mL/hr.An IV infusion is to contain 40 mEq of potassium ion and 10 mEq of sodium ion in 500 mL of D5W.Using a 20% w/v potassium chloride injection (MW 74.5, valence of 1) and 0.45% sodium chlorideinjection (MW 58.5, valence of 1), how many milliliters of each should be added to the 500mL bag ofD5W to supply the required ions?Fill in the blank with the correct dilution for each tube in the series. (4 blanks, 4 tubes total)
- Draw a serial dilution that would give a dilution of 1/153 000 000. Each tube in your dilution series must have a volume of 50 ml or less.A solution of 100mg in 40mL is ordered to infuse at 5mcg/kg/min. For an adult weighing 77.1kg. Calculate the mL/hr flow rateUsing the fraction conversion method solve the following Convert 500 mL=______qt
- One litre of sodium chloride 0.9% is to be given over 8 hours. What drip rate is required using an SGS, 20 drops/mL?With reference to Table 2, what was the total extract volume in mL? Enter a number (no decimal places)Calculate the final dilution in the following dilution series: a. 1 mL in 9 mL dilution & 100uL spread onto the plate b. 1 mL in 9 mL dilution followed by a 100ul in 900ul dilution & 100uL spread onto the plate (note bacteria are counted on plates as cfu/mL)