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AA.VII.F.S1

Skill

Recognize and correctly identify powerplant(s) failure, complete memory items (if applicable), and maintain positive airplane control.

Study note

Get a short, cited explanation of this element written from the FAA handbooks: the core idea, the numbers that matter, common test traps, and a quick self-check.

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From the FAA library

  • Chapter 3: Basic Flight Maneuvers › Effect and Use of Flight Controls

    With the pilot’s hand: ⦁ When pulling the elevator pitch control toward the pilot, which is an aft movement of the control wheel, yoke, control stick, or side stick controller (referred to as adding back pressure), the airplane’s nose ... will rotate backwards relative to the pilot around the pitch (lateral) axis of the airplane. Think of this movement from the pilot’s feet to the pilot’s head. ⦁ When pushing elevator pitch control toward the instrument panel, (referred…

  • Chapter 4: Approaches › Approach Control

    Approach Control Approach control is responsible for controlling all instrument flights operating within its area of responsibility. Approach control may serve one or more airports. Control is exercised primarily through direct pilot and controller communication and airport surveillance radar ... Prior to arriving at the initial approach fix (IAF), instructions will be received from the air route traffic control center (ARTCC) to contact approach control on a specified frequency. Where radar is approved for approach control service, it is used…

  • Chapter 9: Approaches and Landings › Turbulent Air Approach and Landing

    Attempted landing in crosswinds that exceed the airplane’s maximum demonstrated crosswind component. 2. Undershooting or overshooting the turn from base leg to final approach. 3. Inadequate compensation for wind drift on final approach. 4. Unstable approach. 5. Excessive sink ... rate or too low an airspeed from increased drag and reduced vertical lift during sideslip. 6. Failure to touch down with the longitudinal axis aligned with the runway. 7. Touching down while drifting. 8. Excessive airspeed on touchdown. 9. Failure…

  • Chapter 13: Transition to Multiengine Airplanes › Low Altitude Engine Failure Scenarios › Landing Gear Control Selected Up, Single-Engine Climb Performance Inadequate

    Landing Gear Control Selected Up, Single-Engine Climb Performance Inadequate When operating near or above the single-engine ceiling and an engine failure is experienced shortly after lift-off, a landing needs to be accomplished on whatever essentially lies ahead ... with the remaining engine producing power, as long as the pilot is not tempted to remain airborne beyond the airplane’s performance capability. Remaining airborne and bleeding off airspeed in a futile attempt to maintain altitude is almost invariably fatal…

  • Chapter 11: Emergency Operations › Analog Instrument Failure

    Pilots can attempt to troubleshoot alternator failure by following the established alternator failure procedure published in the POH/ AFM. If the alternator cannot be reset, advise ATC of the situation and inform them of the impending electrical failure. Figure ... Emergency instrumentation available to the pilot on electronic flight instrumented aircraft. Analog Instrument Failure A warning indicator, or an inconsistency between indications on the attitude indicator and the supporting performance instruments, usually identifies system or instrument failure. Aircraft control must…

  • Chapter 3: Basic Flight Maneuvers › Trim Control

    then hold the wings level with aileron flight control pressure while rudder control pressure is trimmed out. Finally, aileron trim should be adjusted to relieve any aileron flight control pressure. A properly trimmed airplane is an indication of good piloting ... skills. Any control forces that the pilot feels should be a result of deliberate flight control pressure inputs during a planned change in airplane attitude, not a result of forces being applied by the airplane. A common trim control error…