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This section includes 15 Mcqs, each offering curated multiple-choice questions to sharpen your Aircraft Performance knowledge and support exam preparation. Choose a topic below to get started.
1. |
What is the value that maintains minimum power speed of the aircraft? |
A. | u/ ( sqrt[4]{3} ) |
B. | u/ ( sqrt[3]{3} ) |
C. | u<sup>2</sup>/ ( sqrt[4]{3} ) |
D. | u<sup>2</sup>/ ( sqrt[3]{3} ) |
Answer» B. u/ ( sqrt[3]{3} ) | |
2. |
What is the benefit of flying at minimum power speed? |
A. | Increases gliding flight time |
B. | Decreases gliding flight time |
C. | Does not change the gliding flight time |
D. | Decreases the aircraft performance |
Answer» B. Decreases gliding flight time | |
3. |
The minimum sink rate is attained by flying at a relative airspeed of u/ ( sqrt[4]{3} ). |
A. | True |
B. | False |
Answer» B. False | |
4. |
What is the correct formula for dimensionless rate of climb? |
A. | = ( frac{dH/dt}{V_{md}} ) |
B. | v= ( frac{V_{md}}{dH/dt} ) |
C. | v= ( frac{-V_{md}}{dH/dt} ) |
D. | v= ( frac{-dH/dt}{V_{md}} ) |
Answer» B. v= ( frac{V_{md}}{dH/dt} ) | |
5. |
Which of the following is the correct rate of climb equation? |
A. | u- ( frac{1}{2} )[u<sup>3</sup>+u<sup>-1</sup>]=E<sub>max</sub>v |
B. | - ( frac{1}{2} )[u<sup>2</sup>+u<sup>-2</sup>]=E<sub>max</sub>sin <sub>2</sub> |
C. | + ( frac{1}{2} )[u<sup>2</sup>+u<sup>-2</sup>]=E<sub>max</sub>sin <sub>2</sub> |
D. | u- ( frac{1}{2} )[u<sup>3</sup>+u<sup>-1</sup>]=E<sub>max</sub>v |
Answer» E. | |
6. |
At what airspeed does maximum gradient of climb occurs? |
A. | 1 |
B. | 2 |
C. | 3 |
D. | 4 |
Answer» B. 2 | |
7. |
Which of the following is the correct climb gradient equation? |
A. | - ( frac{1}{2} )[u<sup>2</sup>+u<sup>-2</sup>]=E<sub>max</sub>sin <sub>2</sub> |
B. | + ( frac{1}{2} )[u<sup>2</sup>+u<sup>-2</sup>]=E<sub>max</sub>sin <sub>2</sub> |
C. | + ( frac{1}{2} )[u<sup>2</sup>+u<sup>-2</sup>]=E<sub>max</sub> |
D. | - ( frac{1}{2} )[u<sup>2</sup>+u<sup>-2</sup>]=E<sub>max</sub> |
Answer» B. + ( frac{1}{2} )[u<sup>2</sup>+u<sup>-2</sup>]=E<sub>max</sub>sin <sub>2</sub> | |
8. |
In which of the following the maximum rate of climb occurs? |
A. | It occurs when difference in thrust power and drag power is minimum |
B. | It occurs when difference in thrust power and drag power is maximum |
C. | It occurs when difference in thrust power is minimum |
D. | It occurs when difference in drag power is minimum |
Answer» C. It occurs when difference in thrust power is minimum | |
9. |
What is the relation between thrust power and true airspeed? |
A. | Thrust power increases with increase in true airspeed |
B. | Thrust power decreases with increase in true airspeed |
C. | Thrust power increases with decrease in true airspeed |
D. | Thrust power is independent of true airspeed |
Answer» B. Thrust power decreases with increase in true airspeed | |
10. |
The best gradient of climb is predicted to be at an airspeed greater than minimum drag speed. |
A. | True |
B. | False |
Answer» B. False | |
11. |
The best rate of climb occurs when the excess thrust power is minimum than drag power. |
A. | True |
B. | False |
Answer» C. | |
12. |
The best gradient of climb is attained at the time of maximum drag speed of the aircraft. |
A. | True |
B. | False |
Answer» C. | |
13. |
What should be the value of thrust- to-weight ratio for a normal take-off so that the acceleration associated with the rate of climb is neglected? |
A. | 0.1 |
B. | 0.2 |
C. | 0.3 |
D. | 0.4 |
Answer» D. 0.4 | |
14. |
Which of the following is the correct lift balancing equation for thrust producing engines? |
A. | L=Wcos <sub>2</sub> |
B. | L=Wsin <sub>2</sub> |
C. | L= ( frac{cos gamma _2}{W} ) |
D. | L= ( frac{sin gamma_2}{W} ) |
Answer» B. L=Wsin <sub>2</sub> | |
15. |
Which of the following is the correct thrust balancing equation for thrust producing engines? |
A. | F<sub>N</sub>+D=Wsin <sub>2</sub>+mV |
B. | F<sub>N</sub>-D=Wsin <sub>2</sub>+mV |
C. | F<sub>N</sub>-D=Wsin <sub>2</sub>-mV |
D. | F<sub>N</sub>+D=Wsin <sub>2</sub>-mV |
Answer» C. F<sub>N</sub>-D=Wsin <sub>2</sub>-mV | |