Unit 6: Concepts of Stability and Control - Subjective Questions

ASE305 — Flight Mechanics • Practice Questions with Detailed Answers

20 questions

1

Define stability and control of an aircraft. Explain their significance in flight mechanics.

2

Distinguish between static stability and dynamic stability.

3

Explain the conditions for positive static stability about the longitudinal, lateral, and directional axes.

4

Describe the possible forms of dynamically stable and unstable aircraft response following a disturbance.

5

Explain longitudinal static stability and discuss the principal factors affecting it.

6

Derive the relation between static margin, center-of-gravity position, and longitudinal pitching-moment slope. Explain the neutral point.

7

Explain control-fixed longitudinal stability and describe the contributions of the wing and horizontal tail.

8

Compare control-fixed stability with control-free stability.

9

Explain lateral static stability and discuss the effects of wing dihedral, sweepback, wing position, and vertical surfaces.

10

Explain directional static stability and the weathercocking effect.

11

Describe the coupling between lateral and directional stability. Why must roll and yaw characteristics be considered together?

12

What is rudder lock? Explain its causes, consequences, and methods of prevention.

13

Describe the purpose and aerodynamic action of a dorsal fin.

14

Analyze the stability and control problems encountered by a multiengine aircraft under a one-engine-inoperative condition.

15

Explain adverse yaw, including its aerodynamic cause and the methods used to reduce it.

16

Define aileron reversal and explain why it occurs at high dynamic pressure.

17

Describe the long-period or phugoid mode of longitudinal motion.

18

Explain the short-period mode of longitudinal motion and identify the aircraft variables that dominate it.

19

Compare the phugoid mode and the short-period mode of longitudinal dynamic stability.

20

Discuss the design trade-off between aircraft stability, controllability, and maneuverability, referring to the major control surfaces.