ATI RN
Pharmacology and the Nursing Process 9th Edition Test Bank Questions
Question 1 of 5
For a client with low blood volume, what are the implications of decreasing blood pressure and a rapid heart rate?
Correct Answer: D
Rationale: The correct answer is D: Hypovolemia and shock. Rationale: 1. Low blood volume leads to decreased blood pressure and rapid heart rate as compensatory mechanisms. 2. These signs indicate inadequate perfusion due to reduced blood volume. 3. Hypovolemia can progress to shock if not addressed promptly. Summary: A: Compression of blood vessels is not directly related to low blood volume. B: Increasing circulating blood volume would not occur in a client with low blood volume. C: Inadequate renal perfusion is a consequence of hypovolemia, not an implication of decreasing blood pressure and rapid heart rate.
Question 2 of 5
An adult who has gastroenteritis and is on digitalis ha lab values of: K 3.2 mEq/L, Na 136 mEq/L, Ca 8.8 mg/dl, and Cl 98 mEq/L. the nurse puts which of the following on the client�s plan of care?
Correct Answer: C
Rationale: Step-by-step rationale for why choice C is correct: 1. The lab value of K at 3.2 mEq/L indicates hypokalemia. 2. Digitalis can worsen hypokalemia and lead to toxicity. 3. Avoiding foods rich in potassium will prevent further lowering of potassium levels. 4. This intervention helps prevent potential digitalis toxicity in the client. Summary of why the other choices are incorrect: A. Stopping digitalis therapy abruptly can lead to rebound effects and worsen the condition. B. Trousseau's and Chvostek's signs are not relevant to the client's current lab values. D. While observing for digitalis toxicity is important, addressing the low potassium level is a more immediate concern in this scenario.
Question 3 of 5
The most common buffer system in the body is the:
Correct Answer: D
Rationale: The correct answer is D, the bicarbonate-carbonic system. This buffer system is crucial in maintaining the body's pH balance. When CO2 combines with water in the blood, it forms carbonic acid, which dissociates into bicarbonate ions and hydrogen ions. Bicarbonate acts as a base, accepting excess hydrogen ions to prevent a decrease in pH. Hemoglobin and plasma proteins primarily function as transport molecules, not as buffer systems. Phosphate buffer system is present in intracellular fluids, not as commonly in the body. The bicarbonate-carbonic system is the most prevalent buffer system in the blood and plays a vital role in regulating blood pH.
Question 4 of 5
Which nursing intervention is most appropriate for a client with multiple myeloma?
Correct Answer: D
Rationale: The correct answer is D: Preventing bone injury. In multiple myeloma, abnormal plasma cells can weaken bones, leading to fractures. Preventing bone injury involves educating the client on fall prevention, avoiding heavy lifting, and ensuring a safe environment. Monitoring respiratory status (A) is not the priority in multiple myeloma. Restricting fluid intake (B) is not directly related to managing multiple myeloma. Balancing rest and activity (C) is important for overall well-being but does not directly address the specific needs of a client with multiple myeloma.
Question 5 of 5
Antimetabolites are a diverse group of antineoplastic agents that interfere with various metabolic actions of the cell. The mechanism of action of antimetabolites interferes with:
Correct Answer: D
Rationale: The correct answer is D because antimetabolites interfere with the synthesis of nucleic acids (RNA and/or DNA), affecting multiple stages of RNA and DNA synthesis. This disruption hinders cell division and leads to cell death. Choices A and B are incorrect because antimetabolites do not specifically target cell division during the M phase or normal cellular processes during the S phase. Choice C is also incorrect because antimetabolites primarily target nucleic acid synthesis rather than altering the chemical structure of DNA or the binding between DNA molecules.
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