Unit 5: Aircraft Performance in Accelerated Flight - Practice Quiz

ASE305 — Flight Mechanics 60 Questions
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1 What is the take-off distance of an aircraft?

Take-off performance Easy
A. Distance from touchdown to complete aircraft stop
B. Distance traveled during the steady climb segment
C. Distance from cruise descent to runway threshold
D. Distance from brake release to clearing a specified obstacle

2 Which condition generally increases the take-off distance?

Take-off performance Easy
A. Lower air temperature
B. Lower airport altitude
C. Higher aircraft weight
D. Stronger headwind

3 For constant acceleration from rest, which equation gives the take-off ground roll ?

Calculation of ground roll Easy
A.
B.
C.
D.

4 An aircraft accelerates uniformly from rest at until it reaches . What is its ground roll?

Calculation of ground roll Easy
A.
B.
C.
D.

5 For a straight climb at angle , which expression gives the horizontal distance needed to gain obstacle height ?

Calculation of airborne distance to clear an obstacle Easy
A.
B.
C.
D.

6 If the climb angle increases while obstacle height remains unchanged, what happens to the airborne distance required?

Calculation of airborne distance to clear an obstacle Easy
A. It decreases
B. It becomes zero
C. It remains constant
D. It increases

7 What condition defines a balanced field length?

Balanced field length Easy
A. Approach distance equals landing ground roll
B. Accelerate-stop distance equals accelerate-go distance
C. Ground roll equals airborne climb distance
D. Take-off distance equals normal landing distance

8 Which take-off speed is central to determining balanced field length?

Balanced field length Easy
A. Cruise speed
B. Stall speed
C. Decision speed
D. Never-exceed speed

9 Which change generally increases landing distance?

Landing performance Easy
A. Higher touchdown speed
B. Lower aircraft weight
C. Greater braking force
D. Stronger headwind

10 Which runway condition generally produces the longest landing distance?

Landing performance Easy
A. Wet and slippery runway
B. Level runway with braking
C. Dry runway with headwind
D. Dry and rough runway

11 An aircraft descends from a height of along a path with . What is the horizontal approach distance?

Calculation of approach distance Easy
A.
B.
C.
D.

12 If an aircraft follows a shallower approach angle from the same height, what happens to its horizontal approach distance?

Calculation of approach distance Easy
A. It becomes negative
B. It decreases
C. It stays unchanged
D. It increases

13 During landing, what is the main purpose of the flare?

Calculation of flare distance Easy
A. Reduce the descent rate before touchdown
B. Increase the acceleration along the runway
C. Increase the descent angle before touchdown
D. Raise the stall speed before touchdown

14 If an aircraft's average horizontal speed during a flare is , what is the flare distance?

Calculation of flare distance Easy
A.
B.
C.
D.

15 For constant deceleration of magnitude from touchdown speed to rest, which equation gives the landing ground roll ?

Calculation of landing ground roll Easy
A.
B.
C.
D.

16 An aircraft touches down at and decelerates uniformly at . What is its landing ground roll?

Calculation of landing ground roll Easy
A.
B.
C.
D.

17 What happens to induced drag when an aircraft flies close to the ground?

Ground effects Easy
A. It increases
B. It equals parasite drag
C. It decreases
D. It remains unchanged

18 During landing, ground effect commonly causes an aircraft to do what?

Ground effects Easy
A. Float farther along the runway
B. Descend more steeply at once
C. Lose all lift near touchdown
D. Stop before wheel contact

19 For an aircraft accelerating along a climb path, what produces forward acceleration?

Acceleration in climb Easy
A. Lift acting normal to the flight path
B. Drag acting along the flight path
C. Excess thrust along the flight path
D. Weight acting vertically upward

20 Which equation represents acceleration along a climb path at angle ?

Acceleration in climb Easy
A.
B.
C.
D.

21 An aircraft takes off from a hot, high-altitude airport. Assuming the same aircraft weight and configuration, how will the increased density altitude generally affect take-off distance?

Take-off performance Medium
A. It increases because lift-off ground speed rises and available thrust may decrease
B. It decreases because reduced air density increases the aircraft's acceleration
C. It decreases because aerodynamic drag becomes smaller at every indicated airspeed
D. It remains unchanged because the required indicated lift-off speed is constant

22 In a simplified constant-acceleration take-off model, an aircraft lifts off at an airspeed of . If a headwind is introduced without changing acceleration, approximately how much does the ground-roll distance decrease?

Take-off performance Medium
A.
B.
C.
D.

23 An aircraft starts its take-off roll from rest and reaches with a constant average acceleration of . What is its ground-roll distance?

Calculation of ground roll Medium
A.
B.
C.
D.

24 During take-off, a aircraft has an average thrust of , aerodynamic drag of , and rolling resistance of . If these forces are constant, what distance is required to reach from rest?

Calculation of ground roll Medium
A.
B.
C.
D.

25 After lift-off, an aircraft follows a straight flight path at a climb angle of . What horizontal distance is required to gain of height?

Calculation of airborne distance to clear an obstacle Medium
A.
B.
C.
D.

26 At the end of its take-off transition, an aircraft is above the runway and horizontally from lift-off. It then climbs at . What total airborne distance from lift-off is needed to clear a obstacle?

Calculation of airborne distance to clear an obstacle Medium
A.
B.
C.
D.

27 For a given runway condition and aircraft configuration, when is the take-off field considered balanced?

Balanced field length Medium
A. When take-off distance equals normal landing distance
B. When all-engine distance equals engine-out climb distance
C. When accelerate-stop distance equals accelerate-go distance
D. When ground-roll distance equals airborne obstacle distance

28 All other conditions remaining unchanged, what is the usual effect of increasing the decision speed ?

Balanced field length Medium
A. Accelerate-stop distance decreases, while accelerate-go distance increases
B. Both accelerate-stop and accelerate-go distances increase equally
C. Accelerate-stop distance increases, while accelerate-go distance decreases
D. Both accelerate-stop and accelerate-go distances decrease equally

29 An aircraft's landing weight increases by . If the same landing configuration and lift coefficient are used, approximately how much does the required approach speed increase?

Landing performance Medium
A.
B.
C.
D.

30 How does a downhill runway slope generally affect landing ground-roll distance?

Landing performance Medium
A. It decreases the distance because aerodynamic drag rises along the slope
B. It leaves the distance unchanged because braking depends only on airspeed
C. It increases the distance because gravity reduces the net decelerating force
D. It decreases the distance because gravity increases the wheel normal force

31 An aircraft begins a straight approach at a height of above the runway. Neglecting the flare, what is the horizontal approach distance?

Calculation of approach distance Medium
A.
B.
C.
D.

32 During a constant approach, an aircraft has a horizontal ground speed of and a descent rate of . How much horizontal distance is covered while descending through the final ?

Calculation of approach distance Medium
A.
B.
C.
D.

33 An aircraft performs a circular flare of radius , changing its flight-path angle from to horizontal. What is the approximate horizontal flare distance?

Calculation of flare distance Medium
A.
B.
C.
D.

34 During a shallow circular flare, an aircraft travels at with a load factor of . Using , what is the approximate horizontal distance required to change the flight-path angle by ?

Calculation of flare distance Medium
A.
B.
C.
D.

35 An aircraft touches down at and experiences a constant average deceleration of . What is the landing ground-roll distance?

Calculation of landing ground roll Medium
A.
B.
C.
D.

36 Deployment of reverse thrust increases an aircraft's average landing deceleration from to . For the same touchdown speed, by approximately what percentage is the ground roll reduced?

Calculation of landing ground roll Medium
A.
B.
C.
D.

37 An aircraft enters ground effect while maintaining approximately the same speed and lift coefficient. What aerodynamic change should the pilot expect?

Ground effects Medium
A. Higher parasite drag because dynamic pressure rises near the ground
B. Higher induced drag because the effective aspect ratio decreases
C. Lower parasite drag because surface friction becomes negligible
D. Lower induced drag because wingtip downwash is reduced

38 Why may an aircraft that lifts off prematurely settle back toward the runway after climbing out of ground effect?

Ground effects Medium
A. Air density decreases abruptly and prevents the wing from producing lift
B. Parasite drag disappears and the aircraft loses its required pitching moment
C. Rolling resistance increases and slows the aircraft after the wheels leave
D. Induced drag increases and the available excess thrust may become insufficient

39 A aircraft climbs at a flight-path angle of . Thrust is and drag is . Using , what is its acceleration along the flight path?

Acceleration in climb Medium
A.
B.
C.
D.

40 An aircraft has a specific excess power of while climbing at with an airspeed of . Using , what is its acceleration?

Acceleration in climb Medium
A.
B.
C.
D.

41 An aircraft lifts off at an airspeed of . Assume constant ground-referenced acceleration and neglect changes in aerodynamic forces caused by wind. Compared with a no-wind take-off, what percentage reduction in ground-roll distance results from a steady headwind?

Take-off performance Hard
A. reduction
B. reduction
C. reduction
D. reduction

42 A aircraft has , , and at a representative take-off speed. The rolling-friction coefficient is . Using constant acceleration at these representative forces, what distance is required to reach ?

Calculation of ground roll Hard
A.
B.
C.
D.

43 During a take-off roll, acceleration varies with ground speed according to in SI units. Starting from rest, what ground distance is required to reach ?

Calculation of ground roll Hard
A.
B.
C.
D.

44 After lift-off at , an aircraft follows a circular transition defined by with , before establishing an climb. How much horizontal airborne distance is required to clear a obstacle if the obstacle is reached during the transition?

Calculation of airborne distance to clear an obstacle Hard
A.
B.
C.
D.

45 An aircraft lifts off at and enters a constant-speed circular transition with until reaching a climb. It then climbs along a straight path. Using , what horizontal airborne distance is required to clear a obstacle?

Calculation of airborne distance to clear an obstacle Hard
A.
B.
C.
D.

46 For a given runway condition, accelerate-stop and accelerate-go distances vary with decision speed as and , with distances in metres and in knots. What are the balanced and balanced field length?

Balanced field length Hard
A. and
B. and
C. and
D. and

47 On a wet runway, suppose and , where distance is in metres and is in knots. Which pair gives the balanced decision speed and field length?

Balanced field length Hard
A. and
B. and
C. and
D. and

48 The approximate dynamic-hydroplaning speed is knots when tire pressure is in psi. For tires inflated to and touchdown at , which statement is correct?

Landing performance Hard
A. Hydroplaning begins only after speed falls below
B. Hydroplaning is possible until speed falls below
C. Hydroplaning is possible until speed falls below
D. Hydroplaning is unlikely because

49 An aircraft crosses a screen height on a straight glide path. The flare begins at above the runway. Neglecting curvature before flare, what is the horizontal approach distance between these points?

Calculation of approach distance Hard
A.
B.
C.
D.

50 An aircraft descends through still air at a TAS of on a air-relative glide path while encountering a steady headwind. Assuming no vertical wind, what ground distance is covered while descending ?

Calculation of approach distance Hard
A.
B.
C.
D.

51 A flare is modelled as a constant-speed circular arc using . If , , and the initial descent angle is , what are the horizontal flare distance and height loss when the flight path becomes horizontal?

Calculation of flare distance Hard
A. and
B. and
C. and
D. and

52 A constant-speed circular flare begins on a descent path at and must lose exactly before becoming horizontal. Using , what load factor is required?

Calculation of flare distance Hard
A.
B.
C.
D.

53 After touchdown at , an aircraft decelerates at until reaching . Reverse thrust is then removed, and deceleration becomes until rest. What is the total landing ground roll?

Calculation of landing ground roll Hard
A.
B.
C.
D.

54 A aircraft touches down at . During the roll, assume constant lift , aerodynamic drag , reverse thrust , and braking coefficient . What stopping distance results under the constant-force approximation?

Calculation of landing ground roll Hard
A.
B.
C.
D.

55 An aircraft's out-of-ground-effect drag consists of parasite drag and induced drag. Ground effect multiplies induced drag by . At , by what percentage does total drag decrease if parasite drag is unchanged?

Ground effects Hard
A.
B.
C.
D.

56 An aircraft becomes airborne below its normal rotation speed while deeply within ground effect. Which outcome best explains why obstacle-clearance capability may remain poor despite the initial lift-off?

Ground effects Hard
A. Induced drag rises as the aircraft leaves ground effect, reducing excess thrust
B. Wing lift falls to zero outside ground effect until normal rotation speed is reached
C. Parasite drag rises abruptly at lift-off, eliminating all available climb thrust
D. Engine thrust decreases solely because wheel loading disappears after lift-off

57 An aircraft weighs and climbs at a constant flight-path angle of . At one instant, thrust is and drag is . Neglecting wind, what is its tangential acceleration?

Acceleration in climb Hard
A.
B.
C.
D.

58 At , an aircraft has specific excess power while its instantaneous climb rate is . Assuming constant mass, what is its tangential acceleration?

Acceleration in climb Hard
A.
B.
C.
D.

59 An aircraft climbing at and increases its flight-path angle at without changing speed. Neglecting thrust normal to the flight path, what lift-to-weight ratio is required?

Acceleration in climb Hard
A.
B.
C.
D.

60 On a level runway, an aircraft has a constant net accelerating force of . It then uses a uphill runway, where only the additional downslope weight component changes. If and lift-off ground speed is unchanged, by what percentage does ground-roll distance increase?

Take-off performance Hard
A.
B.
C.
D.