Unit 6: Basic Aerodynamic Components - Subjective Questions

ASE103 — Fly Against Gravity • Practice Questions with Detailed Answers

20 questions

1

Define an airfoil and explain the purpose of its main geometrical features.

2

Distinguish between symmetrical and cambered airfoils.

3

Explain angle of attack and discuss how it affects lift, drag, and stall.

4

Describe how an airfoil generates lift using pressure distribution and airflow deflection.

5

Define wing span, area, aspect ratio, taper ratio, and wing loading. State the aerodynamic significance of each.

6

Compare rectangular, tapered, elliptical, and swept wing planforms.

7

Explain the aerodynamic purposes and possible disadvantages of wing sweep.

8

Distinguish between dihedral, anhedral, and wing incidence, and explain their effects.

9

Compare high-wing, mid-wing, and low-wing aircraft configurations.

10

Explain the causes of wingtip vortices and induced drag. How does aspect ratio affect them?

11

What is wing twist? Distinguish between washout and wash-in, and explain their influence on stall behavior.

12

Describe the principal fuselage shapes and explain how each balances drag, volume, and structural requirements.

13

Explain the aerodynamic and structural functions of the fuselage.

14

Compare truss, monocoque, semi-monocoque, and geodesic fuselage construction.

15

Name and explain the three primary flight control surfaces, including the axis controlled by each.

16

Explain adverse yaw and describe methods used to reduce or counteract it.

17

Describe the construction and operation of a conventional tail, a T-tail, and a V-tail.

18

Explain the purpose and operation of flaps, leading-edge slats, and slots.

19

Using the lift equation, derive the relationship between stall speed, aircraft weight, air density, wing area, and maximum lift coefficient. Explain the result.

20

Compare spoilers, speed brakes, trim tabs, balance tabs, and servo tabs as secondary control devices.