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NBRC TMC CRT/RRT Examination – Latest Updated Comprehensive Study Guide and Practice Exam (PDF Format)

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NBRC TMC CRT/RRT Examination – Latest Updated Comprehensive Study Guide and Practice Exam (PDF Format)

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NBRC TMC CRT/RRT Examination – Latest Updated
Comprehensive Study Guide and Practice Exam (PDF Format)



1. A patient receiving oxygen from an E cylinder at 4 L/min through a nasal cannula has a cylinder pressure of 1900

psig. How long will the cylinder run until completely empty?




A. 47 minutes


B. 1.7 hours


C. 2.2 hours


D. 3.6 hours




C. 2.2 hours The E cylinder constant is 0.28; multiply 1900 by 0.28 to get 532 L, then divide by the flow rate of 4

L/min to get 133 minutes, which equals 2.21 hours.




2. After setting up a nonrebreathing mask on a patient at 10 L/min, the reservoir bag collapses before inspiration

ends. What should the respiratory therapist do?




A. Change to a simple mask at 10 L/min


B. Remove the one-way valve from the exhalation port


C. Place the patient on continuous positive airway pressure

,2


D. Increase the flow rate to 15 L/min




D. Increase the flow rate to 15 L/min The reservoir bag collapsing indicates inadequate flow to meet the patient's

inspiratory demand; increasing the flow rate to 15 L/min will ensure the bag remains inflated during inspiration.




3. A patient with carbon monoxide poisoning would best benefit from which oxygen therapy device?




A. Nasal cannula at 6 L/min


B. Simple oxygen mask at 10 L/min


C. CPAP with 60% oxygen


D. Nonrebreathing mask




D. Nonrebreathing mask Carbon monoxide has a higher affinity for hemoglobin than oxygen; a nonrebreathing

mask delivers the highest possible FiO2 (approaching 100%) to displace CO from hemoglobin binding sites.




4. Blood gas results from a patient on a 60% aerosol mask show pH 7.47, PaCO2 31 mmHg, and PaO2 58 mmHg.

What should the therapist recommend?

,3


A. Place the patient on CPAP


B. Increase oxygen to 70%


C. Intubate and initiate mechanical ventilation


D. Change to a nonrebreathing mask




A. Place the patient on CPAP The patient is hypoxemic despite high FiO2, indicating refractory hypoxemia likely

from shunting; CPAP recruits alveoli and improves oxygenation by reducing intrapulmonary shunting.




5. Using the following data, calculate the total arterial oxygen content: pH 7.41, PaCO2 37 mmHg, PaO2 88 mmHg,

HCO3 26 mEq/L, SaO2 95%, Hb 14 g/dL.




A. 12 mL/dL


B. 14 mL/dL


C. 16 mL/dL


D. 18 mL/dL




D. 18 mL/dL Using the oxygen content formula: (Hb × 1.36 × SaO2) + (0.003 × PaO2) = (14 × 1.36 × 0.95) +

(0.003 × 88) = 18.088 + 0.264 = 18.35 mL/dL.

, 4




6. A tachypneic patient in the ED breathing at 35 breaths/min needs moderate oxygen delivery. Which device is most

appropriate?




A. Simple oxygen mask at 10 L/min


B. Nasal cannula at 4 L/min


C. Nonrebreathing mask at 15 L/min


D. Air-entrainment mask at 40% oxygen




D. Air-entrainment mask at 40% oxygen Tachypneic patients have variable inspiratory flow demands; air-

entrainment masks deliver a fixed FiO2 with high total flow that meets or exceeds the patient's peak inspiratory

flow.




7. A severe COPD patient on 2 L/min nasal cannula has ABG results: pH 7.32, PaCO2 67 mmHg, PaO2 62 mmHg,

HCO3 38 mEq/L. What is the most appropriate recommendation?




A. Increase the liter flow to 4 L/min


B. Maintain the current oxygen level


C. Institute noninvasive positive pressure ventilation


D. Place on a nonrebreathing mask at 12 L/min

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