A nurse strongly encourages a pregnant client to avoid eating swordfish and tilefish because these fish contain which component?.
Mercury, which could harm the developing fetus if eaten in large amounts.
Excess folic acid, which could increase the risk for neural tube defects.
Low-quality protein that does not meet the woman's requirements.
Lactose, which leads to abdominal discomfort, gas, and diarrhea.
The Correct Answer is A
Choice A rationale:
Mercury, which could harm the developing fetus if eaten in large amounts, is indeed found in high levels in swordfish and tilefish. Pregnant women are advised to avoid these types of fish due to the risk of mercury poisoning.
Choice B rationale:
Excess folic acid, which could increase the risk for neural tube defects, is not typically associated with swordfish and tilefish. Folic acid is a nutrient that is actually beneficial for pregnant women.
Choice C rationale:
Low-quality protein that does not meet the woman’s requirements is not a concern with swordfish and tilefish. These fish are actually high in quality protein.
Choice D rationale:
Lactose, which leads to abdominal discomfort, gas, and diarrhea, is not found in swordfish and tilefish. Lactose is a sugar found in milk and dairy products.
Nursing Test Bank
Naxlex Comprehensive Predictor Exams
Related Questions
Correct Answer is B
Explanation
Choice A rationale:
While placental abruption is a serious condition, it is not directly linked to high HbA1c levels in early pregnancy.
Choice B rationale:
Congenital anomalies are a significant concern for pregnancies with high HbA1c levels, as high blood sugar around the time of conception increases the risk of birth defects.
Choice C rationale:
Placenta previa is not directly associated with high HbA1c levels in early pregnancy.
Choice D rationale:
An incompetent cervix is not directly linked to high HbA1c levels in early pregnancy.
Correct Answer is ["mLs\/hr."]
Explanation
Step 1 is to convert the order from milliunits/minute to units/hour. So, 12 milliunits/minute is equal to 0.72 units/hour. Step 2 is to calculate the total units in the IV bag, which is 20 units. Step 3 is to calculate the total volume of the IV bag, which is 500 mL. Step 4 is to calculate the flow rate. So, (0.72 units/hour ÷ 20 units) × 500 mL = 18 mL/hr. So, the correct flow rate to set on the IV pump is 18 mL/hr.
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