NCLEX-PN
NCLEX PN Exam Cram
1. Which of the following is not typically considered one of the main mechanisms of Type II Diabetes treatment?
- A. Medications
- B. Nutrition
- C. Increased activity
- D. Continuous Insulin
Correct answer: D
Rationale: Continuous Insulin is not typically considered one of the main mechanisms for treating Type II Diabetes. While medications, nutrition, and increased activity play crucial roles in managing Type II Diabetes, continuous insulin therapy is more common in Type I Diabetes or in specific cases of Type II Diabetes where other treatments are ineffective. Therefore, the correct answer is Continuous Insulin. Choices A, B, and C are mainstays in the treatment of Type II Diabetes, making them incorrect answers.
2. A client goes to the Emergency Department with acute respiratory distress and the following arterial blood gases (ABGs): pH 7.35, PCO2 40 mmHg, PO2 63mmHg, HCO3 23, and oxygenation saturation (SAO2) 93%. Which of the following represents the best analysis of the etiology of these ABGs?
- A. tuberculosis (TB)
- B. pneumonia
- C. pleural effusion
- D. hypoxia
Correct answer: D
Rationale: A combined low PO2 and low SAO2 indicates hypoxia. The pH, PCO2, and HCO3 are normal. ABGs are not necessarily altered in TB or pleural effusion. In pneumonia, the PO2 and PCO2 might be low because hypoxia stimulates hyperventilation, but the best analysis in this case is hypoxia due to the combination of low PO2 and low SAO2.
3. A healthcare professional is reviewing a patient's arterial blood gas values. Which of the following conditions apply under the following values? pH- 7.49 Bicarbonate ion 24 mEq/dl PaCO2 - 31 mmHg PaO2 - 52 mmHg FiO2 - 0.22
- A. respiratory acidosis
- B. respiratory alkalosis
- C. metabolic acidosis
- D. metabolic alkalosis
Correct answer: B
Rationale: The given blood gas values indicate respiratory alkalosis. A high pH and low PaCO2 level are consistent with respiratory alkalosis. In this scenario, no compensation for the alkalosis is noted, ruling out metabolic acidosis or alkalosis. Metabolic conditions would usually involve changes in bicarbonate levels, which remain within the normal range in this case.
4. When teaching a patient with COPD pulmonary exercises, what should be done?
- A. Teach pursed-lip breathing techniques.
- B. Encourage repetitive heavy lifting exercises to increase strength.
- C. Limit exercises due to respiratory acidosis.
- D. Take breaks every 10-20 minutes during exercises.
Correct answer: A
Rationale: The correct answer is to teach pursed-lip breathing techniques. Pursed-lip breathing helps to decrease the volume of air expelled by keeping the airways open longer, making it easier for patients with COPD to breathe out. Encouraging heavy lifting exercises (Choice B) is not suitable for patients with COPD as it can lead to increased shortness of breath. Limiting exercises due to respiratory acidosis (Choice C) is not correct; instead, exercises should be tailored to the patient's tolerance. Taking breaks every 10-20 minutes (Choice D) is not specific to the management of COPD pulmonary exercises.
5. A client returns to the nursing unit post-thoracotomy with two chest tubes in place connected to a drainage device. The client's spouse asks the nurse about the reason for having two chest tubes. The nurse's response is based on the knowledge that the upper chest tube is placed to:
- A. Remove air from the pleural space
- B. Create access for irrigating the chest cavity
- C. Evacuate secretions from the bronchioles and alveoli
- D. Drain blood and fluid from the pleural space
Correct answer: A
Rationale: The correct answer is 'Remove air from the pleural space.' When a client has two chest tubes in place post-thoracotomy, the upper chest tube is typically positioned to remove air from the pleural space. Air rises, so placing the tube at the top allows for efficient removal of air that has accumulated in the pleural cavity. Choice B, creating access for irrigating the chest cavity, is incorrect as chest tubes are not primarily used for irrigation. Choice C, evacuating secretions from the bronchioles and alveoli, is incorrect as chest tubes are not designed for this purpose. Choice D, draining blood and fluid from the pleural space, is also incorrect as the upper chest tube in this scenario is specifically for removing air, not blood or fluid.
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