A nurse is preparing to administer ampicillin 500 mg in 50 mL of dextrose 5% in water (D5W) to infuse over 15 min. The drop factor of the manual IV tubing is 10 gtt/mL. How many gtt/min should the nurse set the manual IV infusion to deliver?
- A. 30 gtt/min
- B. 32 gtt/min
- C. 33 gtt/min
- D. 35 gtt/min
Correct Answer: C
Rationale: Calculation: 10 gtt/mL 50 mL · 15 min = 33.33, rounded to 33 gtt/min. This ensures proper delivery of the medication over the prescribed time. Choice A is incorrect because it does not factor in the precise calculation based on the given data. Choice B is incorrect as it does not reflect the accurate rate of infusion required. Choice D is incorrect as it does not align with the correct calculation based on the drop factor and infusion parameters provided in the question.
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A healthcare professional is preparing to administer heparin 8,000 units subcutaneously every eight hrs. The amount available is heparin injection 10,000 units/mL. How many milliliters should the healthcare professional administer per dose?
- A. 0.7 mL
- B. 0.8 mL
- C. 1.0 mL
- D. 1.2 mL
Correct Answer: B
Rationale: Calculation: 8000 units / 10,000 units per mL = 0.8 mL. To correctly administer the prescribed dose of 8000 units, the healthcare professional should draw up 0.8 mL from the 10,000 units/mL vial. Options A, C, and D are incorrect as they do not accurately reflect the calculation based on the available concentration of heparin.
A nurse in an outpatient facility is assessing a client who is prescribed furosemide 40 mg daily, but the client reports she has been taking extra doses to promote weight loss. Which of the following indicates she is dehydrated?
- A. Urine specific gravity of 1.035
- B. Oliguria, increased urine concentration, and an increase in urine specific gravity greater than 1.030
- C. Polyuria
- D. Hypotension
Correct Answer: B
Rationale: Oliguria (reduced urine output), increased urine concentration, and a urine specific gravity greater than 1.030 are indicative of dehydration, particularly in clients using diuretics excessively. Choice A is incorrect because a urine specific gravity of 1.035 is high, indicating concentrated urine but not specifically dehydration. Choice C, polyuria, refers to increased urine output and is not consistent with dehydration. Choice D, hypotension, is a sign of fluid volume deficit but is not specific to dehydration as described in the scenario.
A nurse is preparing to administer an enteral tube feeding through an NG tube at 250 mL over 4 hr. The nurse should set the pump to deliver how many mL/hr?
- A. 60 mL/hr
- B. 62 mL/hr
- C. 63 mL/hr
- D. 65 mL/hr
Correct Answer: C
Rationale: Calculation: 250 mL / 4 hours = 62.5 mL/hr, which should be rounded up to 63 mL/hr. This ensures the correct rate is set for continuous feeding. Choice A (60 mL/hr) is incorrect as it does not reflect the accurate calculation. Choice B (62 mL/hr) is close but does not round up to the nearest whole number as required. Choice D (65 mL/hr) is higher than the correct calculation and would deliver the feeding solution at a faster rate than prescribed.
A nurse is preparing to administer lactated Ringer's (LR) 1,000 mL IV to infuse over 8 hr. The drop factor of the manual IV tubing is 10 gtt/mL. The nurse should set the manual IV infusion to deliver how many gtt/min?
- A. 19 gtt/min
- B. 20 gtt/min
- C. 21 gtt/min
- D. 22 gtt/min
Correct Answer: C
Rationale: Calculation: 1000 mL / 480 minutes 10 gtt/mL = 20.83, rounded to 21 gtt/min. This ensures proper IV fluid administration over the prescribed time. Choice C is the correct answer as it reflects the accurate calculation based on the given parameters. Choice A is incorrect because it does not accurately calculate the infusion rate. Choice B is incorrect as it does not consider the precise calculation required. Choice D is incorrect as it deviates from the correct calculation.
A nurse is preparing to administer furosemide 4 mg/kg/day PO divided into 2 equal doses daily to a toddler who weighs 22 lb. How many mg should the nurse administer per dose?
- A. 10 mg
- B. 20 mg
- C. 30 mg
- D. 40 mg
Correct Answer: B
Rationale: To calculate the correct dose, first, convert the toddler's weight from pounds to kilograms: 22 lb / 2.2 lb/kg = 10 kg. Next, multiply the weight in kilograms by the dosage: 4 mg/kg x 10 kg = 40 mg/day. Since the total daily dose is divided into 2 equal doses, each dose would be 20 mg. Therefore, the correct answer is 20 mg. Choice A (10 mg) is incorrect because it does not account for the correct weight-based dosage. Choice C (30 mg) and Choice D (40 mg) are incorrect as they do not correctly calculate the dose based on the weight of the toddler and the prescribed dosage per kg.
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