Unit 4: Fabrication of non-powered Gliders - Practice Quiz

ASE103 — Fly Against Gravity 60 Questions
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1 What provides the initial motion for a non-powered plastic glider?

Fabrication of non-powered glider and flying using plastic Easy
A. A compressed-air engine
B. A gentle hand launch
C. A small electric motor
D. A rotating propeller

2 Which property is most desirable in plastic used for a small glider?

Fabrication of non-powered glider and flying using plastic Easy
A. Lightweight and fairly stiff
B. Soft and highly stretchable
C. Heavy and highly flexible
D. Thick and easily melted

3 Why should the left and right wings of a plastic glider be symmetrical?

Fabrication of non-powered glider and flying using plastic Easy
A. To produce balanced lift
B. To move the tail forward
C. To increase surface roughness
D. To reduce the wing area

4 Which tool is suitable for marking a wing outline on a plastic sheet?

Fabrication of non-powered glider and flying using plastic Easy
A. A file and chisel
B. A marker and ruler
C. A hammer and nail
D. A drill and bit

5 What should be done before cutting a plastic glider part?

Fabrication of non-powered glider and flying using plastic Easy
A. Bend its edges sharply
B. Launch the complete model
C. Add weight to its tail
D. Mark its outline clearly

6 Where should a small plastic glider first be test-flown?

Fabrication of non-powered glider and flying using plastic Easy
A. In a clear open area
B. Beside overhead power lines
C. Inside a narrow hallway
D. Near a crowded roadway

7 How should a plastic glider usually be launched for its first test?

Fabrication of non-powered glider and flying using plastic Easy
A. Fast and directly downward
B. Gently and nearly level
C. Hard and steeply upward
D. Sideways with rapid spin

8 What is the main purpose of the tail on a plastic glider?

Fabrication of non-powered glider and flying using plastic Easy
A. To improve flight stability
B. To supply engine power
C. To increase launch speed
D. To shorten the wingspan

9 If a plastic glider repeatedly turns left, what should be checked first?

Fabrication of non-powered glider and flying using plastic Easy
A. Length of the launch field
B. Wing and tail alignment
C. Temperature of the ground
D. Color of the plastic

10 Why are small adjustments preferred when trimming a plastic glider?

Fabrication of non-powered glider and flying using plastic Easy
A. They allow controlled corrections
B. They remove the need for testing
C. They make the model heavier
D. They eliminate air resistance

11 Why is balsa wood commonly used for model gliders?

Fabrication of non-powered glider and flying using balsa wood Easy
A. It is clear and flexible
B. It is soft and rubbery
C. It is dense and metallic
D. It is light and workable

12 Which tool is commonly used to smooth the edges of a balsa glider part?

Fabrication of non-powered glider and flying using balsa wood Easy
A. A powered soldering iron
B. A heavy steel hammer
C. A large metal drill
D. Fine-grit sandpaper

13 What is the fuselage of a balsa glider?

Fabrication of non-powered glider and flying using balsa wood Easy
A. The left wing tip
B. The main central body
C. The rear horizontal surface
D. The upright tail surface

14 What is the main function of a glider's wings?

Fabrication of non-powered glider and flying using balsa wood Easy
A. To power a motor
B. To provide fuel
C. To hold a propeller
D. To generate lift

15 Why should glue be applied sparingly when building a balsa glider?

Fabrication of non-powered glider and flying using balsa wood Easy
A. To make the wood softer
B. To change the wood grain
C. To reduce the wingspan
D. To avoid unnecessary mass

16 What should be done while glued balsa parts are drying?

Fabrication of non-powered glider and flying using balsa wood Easy
A. Soak them fully in water
B. Launch them several times
C. Twist them in opposite directions
D. Keep them correctly aligned

17 What does the center of gravity describe on a balsa glider?

Fabrication of non-powered glider and flying using balsa wood Easy
A. Its forward flight speed
B. Its highest wing point
C. Its total wing area
D. Its balance point

18 If a balsa glider stalls after launch, what is a likely cause?

Fabrication of non-powered glider and flying using balsa wood Easy
A. Its wings are too smooth
B. Its glue is completely dry
C. Its fuselage is correctly aligned
D. Its nose is too light

19 Which direction should a balsa glider be launched in a light breeze?

Fabrication of non-powered glider and flying using balsa wood Easy
A. Straight down toward the ground
B. Directly across the breeze
C. Generally into the breeze
D. Always with the breeze

20 Why should cracks be repaired before flying a balsa glider?

Fabrication of non-powered glider and flying using balsa wood Easy
A. They can improve its balance
B. They can weaken its structure
C. They can increase its lift
D. They can smooth its surface

21 A plastic glider repeatedly climbs sharply after launch and then drops its nose. What is the most appropriate first adjustment?

Fabrication of non-powered glider and flying using plastic Medium
A. Add a small amount of clay to each wingtip
B. Add a small amount of clay to the nose
C. Launch the glider with substantially more force
D. Increase the upward bend of both wingtips

22 When cutting a balsa-wood wing, how should the grain normally be oriented for maximum bending strength?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Diagonally from the root to the trailing edge
B. Along the span from one wingtip to the other
C. Across the chord from front edge to rear edge
D. Vertically through the thickness of the wing

23 A plastic glider has a mass of kg and a rectangular wing measuring m by m. What is its wing loading?

Fabrication of non-powered glider and flying using plastic Medium
A.
B.
C.
D.

24 Two balsa wing panels must be joined at a dihedral angle. Which method gives the strongest lightweight joint?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Cover the gap using a thick lump of modeling clay
B. Sand the roots accurately and add a light dihedral brace
C. Join the panels edge-to-edge without preparing the roots
D. Join the panels using paint across the upper surface

25 A plastic glider consistently rolls to one side because one wingtip is visibly twisted. What should be done before changing the ballast?

Fabrication of non-powered glider and flying using plastic Medium
A. Increase the launch angle to overcome the roll
B. Attach equal masses beneath both wingtips
C. Shorten both wings by the same amount
D. Remove the twist and restore wing symmetry

26 Which selection of balsa is most suitable for a glider requiring a strong wing and a lightweight tail?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Straight medium balsa for the wing and light balsa for the tail
B. Heavy balsa for every component to maintain equal density
C. Very light balsa for the wing and hard balsa for the tail
D. Soft cross-grain balsa for the wing and dense balsa for the tail

27 A thin plastic-sheet wing flexes excessively during launch. Which modification will increase stiffness with the smallest mass increase?

Fabrication of non-powered glider and flying using plastic Medium
A. Coat the entire wing with a thick adhesive layer
B. Attach modeling clay along the leading edge
C. Replace the tail with a larger plastic sheet
D. Form shallow spanwise folds in the wing sheet

28 A student is sanding matching balsa wings. Which procedure best prevents one wing from producing more lift than the other?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Use identical templates and compare both wings frequently
B. Round only the trailing edge of the heavier wing
C. Make one wing thicker to compensate for wood grain
D. Sand each wing without comparing their profiles

29 Before using an unfamiliar adhesive on a plastic glider, what is the safest fabrication procedure?

Fabrication of non-powered glider and flying using plastic Medium
A. Heat the bonded parts until the plastic becomes soft
B. Mix the adhesive with water before applying it
C. Test the adhesive on a scrap of the same plastic
D. Apply a thick layer directly to the completed wing

30 A balsa glider has masses of g at cm, g at cm, and g at cm from its nose. Approximately where is its center of gravity?

Fabrication of non-powered glider and flying using balsa wood Medium
A. cm from the nose
B. cm from the nose
C. cm from the nose
D. cm from the nose

31 A correctly assembled plastic glider enters a steady, steep dive during gentle test launches. Which trimming change is most suitable?

Fabrication of non-powered glider and flying using plastic Medium
A. Add equal weights to the left and right wingtips
B. Move the ballast rearward in very small increments
C. Increase the glider's mass at the same balance point
D. Move both wingtips downward by equal angles

32 A balsa wing spar cracks near its middle. Which repair best preserves strength while limiting added mass?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Wrap the entire wing with several layers of tape
B. Fill the crack with paint and sand it smooth
C. Use an aligned tapered splice with a light reinforcement
D. Remove the spar and leave the wing unsupported

33 Every linear dimension of a plastic glider template is reduced to of its original value. What percentage of the original wing area will the new wing have?

Fabrication of non-powered glider and flying using plastic Medium
A.
B.
C.
D.

34 Which fabrication practice best reduces humidity-related warping of a thin balsa tailplane?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Seal only the upper surface and leave it unsupported
B. Seal both surfaces evenly and store the part flat
C. Soak the tailplane before every test flight
D. Attach a heavy weight permanently beneath the tail

35 A student wants to compare two plastic wing designs fairly. Which testing method produces the most useful comparison?

Fabrication of non-powered glider and flying using plastic Medium
A. Keep mass, balance, launch conditions, and test area consistent
B. Test one design indoors and the other outdoors
C. Use different ballast so both gliders look level
D. Launch each design from a different height

36 A redesigned balsa glider is heavier but has the same wing area and lift coefficient. Approximately how much faster must it fly to produce the same relative lift?

Fabrication of non-powered glider and flying using balsa wood Medium
A. faster
B. faster
C. faster
D. faster

37 A plastic glider has flat wings and tends to remain banked after a small disturbance. Which change would most improve its roll stability?

Fabrication of non-powered glider and flying using plastic Medium
A. Reduce the wing area near both wing roots
B. Move the vertical fin farther below the fuselage
C. Raise both wingtips to create moderate dihedral
D. Add identical masses to both outer wingtips

38 While cutting a thin balsa tailplane, the wood repeatedly splits ahead of the blade. Which technique should the student use?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Use a blunt blade with one forceful cutting stroke
B. Wet the wood fully and tear along the cut line
C. Cut across the grain without supporting the sheet
D. Use a sharp blade and make several light passes

39 An adhesive that worked in a scrap test peels from a smooth plastic wing during assembly. What surface preparation is most likely to improve the joint?

Fabrication of non-powered glider and flying using plastic Medium
A. Polish the surfaces until they become more glossy
B. Lightly scuff and clean the surfaces before bonding
C. Bend the joint repeatedly while the adhesive cures
D. Apply oil to the surfaces before adding adhesive

40 A balsa glider flew well until its tail was replaced with a heavier part. It now stalls repeatedly. Which correction is most appropriate?

Fabrication of non-powered glider and flying using balsa wood Medium
A. Add equal masses to both outer wing panels
B. Sand the nose shorter to reduce forward weight
C. Increase the dihedral angle at only one wingtip
D. Lighten the tail or add a small nose weight

41 A flat plastic wing has thickness and flexural rigidity proportional to . Sanding reduces its thickness uniformly by . Assuming the elastic modulus and wing geometry remain unchanged, what fraction of the original flexural rigidity remains?

Fabrication of non-powered glider and flying using plastic Hard
A.
B.
C.
D.

42 A plastic glider has mass and its center of gravity is behind the nose. Ballast is placed behind the nose. Approximately how much ballast is required to move the center of gravity to ?

Fabrication of non-powered glider and flying using plastic Hard
A.
B.
C.
D.

43 A thin plastic wing flies normally at low speed but develops rapid twisting oscillations after a strong launch. Which fabrication change most directly addresses the likely cause without adding excessive mass?

Fabrication of non-powered glider and flying using plastic Hard
A. Shorten the fuselage immediately behind the wing
B. Increase the vertical stabilizer area near its tip
C. Add a spanwise folded spar near the aerodynamic center
D. Add concentrated ballast at both outer wing tips

44 After heat-forming a plastic wing, the left panel cools with a greater positive incidence than the right panel. With all other alignments correct, what is the most likely initial behavior in a gentle glide?

Fabrication of non-powered glider and flying using plastic Hard
A. Both wings unload and the glider pitches downward
B. Both wings stall and the glider pitches upward
C. The right wing rises and the glider rolls left
D. The left wing rises and the glider rolls right

45 A plastic glider is enlarged geometrically by a linear scale factor of , including material thickness, while retaining the same material. How do wing loading and characteristic stall speed scale?

Fabrication of non-powered glider and flying using plastic Hard
A. Wing loading becomes times and stall speed remains unchanged
B. Wing loading remains unchanged and stall speed becomes times
C. Wing loading becomes times and stall speed becomes times
D. Wing loading becomes times and stall speed becomes times

46 A solvent-based adhesive produces white cracks around a joint in a clear plastic fuselage, although the bond initially feels strong. Which response is most technically appropriate?

Fabrication of non-powered glider and flying using plastic Hard
A. Apply more of the same solvent to redistribute the joint stress
B. Heat the bonded region until the white cracks become transparent
C. Replace it with a plastic-compatible adhesive after testing scrap material
D. Cover the cracked region with paint and continue flight testing

47 A plastic glider repeatedly stalls after launch. Moving a small test mass forward eliminates the stall but produces an excessively steep, fast glide. Which permanent correction best balances stability and performance?

Fabrication of non-powered glider and flying using plastic Hard
A. Return to the original mass position and increase launch force
B. Move the mass farther aft and reduce the wing's dihedral
C. Keep the forward mass position and substantially enlarge the rudder
D. Set the center of gravity between the two test positions and retrim the tail

48 A wing is cut from corrugated plastic sheet. For maximum resistance to spanwise bending with minimal reinforcement, how should the internal flutes normally be oriented?

Fabrication of non-powered glider and flying using plastic Hard
A. Radially from the wing root
B. Parallel to the wingspan
C. At to the wingspan
D. Parallel to the wing chord

49 A heat-formed plastic wing is symmetric when removed from its mold but becomes warped several hours later. Which fabrication change most directly reduces this delayed distortion?

Fabrication of non-powered glider and flying using plastic Hard
A. Remove the wing early and bend it repeatedly in the opposite direction
B. Apply adhesive along one surface before the plastic has cooled
C. Increase launch speed so aerodynamic load straightens the wing
D. Cool the wing fully while it remains constrained in the forming jig

50 Two plastic wings have identical planforms and material, but Wing B is twice as thick as Wing A. Ignoring geometric nonlinearities, how do Wing B's mass per unit area and flexural rigidity compare with Wing A?

Fabrication of non-powered glider and flying using plastic Hard
A. Mass is times and rigidity is times
B. Mass is times and rigidity is times
C. Mass is times and rigidity is times
D. Mass is times and rigidity is times

51 A rectangular balsa wing spar must resist spanwise bending. Which grain orientation gives the best primary load path?

Fabrication of non-powered glider and flying using balsa wood Hard
A. Continuous grain running from leading edge toward trailing edge
B. Short grain running vertically through the spar thickness
C. Continuous grain running from wing root toward wing tip
D. Alternating grain directions at every rib location

52 A built-up balsa wing twists under aerodynamic load even though its upper and lower spar caps resist bending adequately. Which addition most efficiently improves torsional rigidity?

Fabrication of non-powered glider and flying using balsa wood Hard
A. Install shear webbing to create a closed or nearly closed box
B. Cut lightening holes through both existing spar caps
C. Attach small ballast masses at the outer rib locations
D. Reduce the chord of the horizontal stabilizer

53 Two balsa gliders have equal total mass and identical center-of-gravity positions. Glider X concentrates ballast near its center of gravity, while Glider Y divides the ballast between the nose and tail. Which difference is expected?

Fabrication of non-powered glider and flying using balsa wood Hard
A. Glider X has lower pitch inertia and responds more quickly to disturbances
B. Glider Y has greater static margin because its ballast is separated
C. Glider Y has lower pitch inertia and responds more quickly to disturbances
D. Glider X has greater static margin because its ballast is concentrated

54 A balsa wing remains straight in a humid workshop but develops one raised trailing edge after drying in sunlight. Which preventive method is most effective during fabrication?

Fabrication of non-powered glider and flying using balsa wood Hard
A. Seal both surfaces uniformly and store the wing constrained while curing
B. Soak the completed wing and allow it to dry without supports
C. Seal only the upper surface and leave the lower surface porous
D. Use dense balsa on one panel and light balsa on the other panel

55 A balsa glider tends to drop a wing abruptly near minimum flying speed. Both panels are straight, but their tips have the same incidence as their roots. Which modification best promotes a more controllable root-first stall?

Fabrication of non-powered glider and flying using balsa wood Hard
A. Add slight washout so each wing tip has lower incidence
B. Add slight wash-in so each wing tip has higher incidence
C. Increase incidence uniformly across the entire wingspan
D. Reduce dihedral while retaining uniform wing incidence

56 A cracked balsa fuselage longeron must be repaired without creating a severe local stress concentration. Which joint geometry is generally preferable?

Fabrication of non-powered glider and flying using balsa wood Hard
A. A transverse cut reinforced only with surface paint
B. A square butt joint perpendicular to the longeron's grain
C. A long scarf joint aligned with the longeron's grain
D. A shallow notch filled entirely with brittle adhesive

57 During a calm-air test, a balsa glider loses of altitude while traveling horizontally after the launch transient. What is its approximate glide ratio?

Fabrication of non-powered glider and flying using balsa wood Hard
A.
B.
C.
D.

58 A balsa glider has a mean aerodynamic chord of . Its neutral point is behind the leading edge, and its center of gravity is behind the leading edge. What is its static margin?

Fabrication of non-powered glider and flying using balsa wood Hard
A.
B.
C.
D.

59 A designer can select balsa of different densities for a built-up glider wing. Which distribution best combines structural efficiency with low mass?

Fabrication of non-powered glider and flying using balsa wood Hard
A. Uniform high-density wood for all parts regardless of loading
B. Uniform low-density wood for all parts regardless of loading
C. Lighter soft wood for spar caps and denser wood for every rib
D. Denser straight-grained wood for spar caps and lighter wood for ribs

60 A balsa glider consistently turns left. Viewed from the front, the left wing has less dihedral than the right, and the rudder is centered. Which correction most directly addresses the fabrication error before adding trim tabs?

Fabrication of non-powered glider and flying using balsa wood Hard
A. Increase the incidence of both stabilizer halves equally
B. Move the center of gravity rearward along the fuselage
C. Add equal ballast masses to both outer wing tips
D. Re-jig the wing panels so their dihedral angles are equal