Pilbeams Mechanical Ventilation 5th Edition By Cairo
Pilbeams Mechanical Ventilation 5th Edition By Cairo
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Chapter 6; Initial Ventilator Settings
Complete Chapter Questions With Answers
Sample Questions Are Posted Below
MULTIPLE CHOICE
| a. | 0.0015 mL/cm H2O |
| b. | 0.65 cm H2O/mL |
| c. | 1.5 mL/cm H2O |
| d. | 6.5 mL/cm H2O |
ANS: C
Calculate tubing compliance (CT) by dividing measured volume by measured static pressure.
DIF: 2 REF: pg. 87| pg. 88
| a. | 0.003 mL/cm H2O |
| b. | 0.35 cm H2O/mL |
| c. | 2.8 mL/cm H2O |
| d. | 7.95cm H2O/mL |
ANS: C
Calculate tubing compliance (CT) by dividing measured volume by measured static pressure.
DIF: 2 REF: pg. 88| pg. 89
| a. | 13 mL |
| b. | 60 mL |
| c. | 147 mL |
| d. | 168 mL |
ANS: B
Calculate tubing compliance (CT) by dividing measured volume by measured static pressure. The amount of volume lost to the circuit equals the pressure reached during a tidal volume (VT) delivery multiplied by the CT factor.
DIF: 2 REF: pg. 89
| a. | 0.064 mL |
| b. | 7.5 mL |
| c. | 64.7 mL |
| d. | 95.7 mL |
ANS: C
Calculate tubing compliance (CT) by dividing measured volume by measured static pressure. The amount of volume lost to the circuit equals the pressure reached during a tidal volume (VT) delivery multiplied by the CT factor.
DIF: 2 REF: pgs. 88-90
| a. | 2.5 mL |
| b. | 12.8 mL |
| c. | 64 mL |
| d. | 80 mL |
ANS: D
The amount of volume lost to the circuit equals the pressure reached during a tidal volume (VT) delivery multiplied by the tubing compliance (CT) factor.
DIF: 2 REF: pg. 89| pg. 90
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