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  2. Stall (fluid dynamics) - Wikipedia

    en.wikipedia.org/wiki/Stall_(fluid_dynamics)

    A fixed-wing aircraft can be made to stall in any pitch attitude or bank angle or at any airspeed but deliberate stalling is commonly practiced by reducing the speed to the unaccelerated stall speed, at a safe altitude. Unaccelerated (1g) stall speed varies on different fixed-wing aircraft and is represented by colour codes on the airspeed ...

  3. Stall turn - Wikipedia

    en.wikipedia.org/wiki/Stall_turn

    The aircraft begins at the dot, and pulls into a vertical climb. The small angled line at the top indicates a stall turn (without indicating the orientation after the turn). The plane then descends, pulls into horizontal flight, and ends at the small vertical line. The hammerhead turn, stall turn, or Fieseler is an aerobatics turn-around maneuver.

  4. Spin (aerodynamics) - Wikipedia

    en.wikipedia.org/wiki/Spin_(aerodynamics)

    The wing that stalls first drops, increasing its angle of attack and deepening the stall. [6] At least one wing must be stalled for a spin to occur. The other wing rises, decreasing its angle of attack, and the aircraft yaws towards the more deeply stalled wing. The difference in lift between the two wings causes the aircraft to roll, and the ...

  5. Wing configuration - Wikipedia

    en.wikipedia.org/wiki/Wing_configuration

    A fixed-wing aircraft may have more than one wing plane, stacked one above another: Biplane: two wing planes of similar size, stacked one above the other. The biplane is inherently lighter and stronger than a monoplane and was the most common configuration until the 1930s. The very first Wright Flyer I was a biplane.

  6. Radio-controlled aerobatics - Wikipedia

    en.wikipedia.org/wiki/Radio-controlled_aerobatics

    In a stall turn the plane goes upward, decelerates, yaws 180° under stall, and comes down nearly the same path it goes up, as if it gets hammered on the head. To perform a stall turn; From level flight input up elevator and reduce power until the aircraft stalls. The angle, speed, and abruptness at which stall occurs depends on the aircraft.

  7. Falling leaf - Wikipedia

    en.wikipedia.org/wiki/Falling_leaf

    Due to the low speed and high angle of attack (the angle of the wings to the relative wind), the aircraft loses its boundary layer, making the control surfaces barely responsive to pilot inputs. Therefore, the controls are usually pushed to their maximum limit to get the plane to respond. As the aircraft stalls, the nose will begin to drop.

  8. Skid (aerodynamics) - Wikipedia

    en.wikipedia.org/wiki/Skid_(aerodynamics)

    In the slip, the raised wing — the left one if the airplane is turning to the right — will stall before the lowered one, and the airplane will reduce the bank angle, which prevents the stall. In the skid, the lowered wing will stall before the raised one, and the airplane will tighten the turn, and the stall can develop to a spin.

  9. Washout (aeronautics) - Wikipedia

    en.wikipedia.org/wiki/Washout_(aeronautics)

    The wing is designed so that the angle of incidence is greater at the wing roots and decreases across the span, becoming lowest at the wing tip. This is usually to ensure that at stall speed the wing root stalls before the wing tips, providing the aircraft with continued aileron control and some resistance to spinning.