IL.XIV.B.R5
Risk managementDividing attention inside and outside the aircraft.
From the FAA library
- Chapter 9: Techniques of Flight Instruction › Use of Distractions
attention was diverted from the primary task of flying the aircraft. Sixty percent of stall/spin accidents occurred during takeoff and landing, and twenty percent were preceded by engine failure. Preoccupation inside or outside the flight deck while changing aircraft configuration ... creating distractions while the learner is practicing certain maneuvers. Instructor responsibilities include teaching the learner to divide his or her attention between the distracting task and maintaining control of the aircraft. The following are examples of distractions that…
- Chapter 1: Introduction To Flying › Aircraft Classifications and Ultralight Vehicles
Airplane—an engine-driven fixed-wing aircraft heavier than air, that is supported in flight by the dynamic reaction of the air against its wings. • Glider—a heavier-than-air aircraft, that is supported in flight by the dynamic reaction ... against its lifting surfaces and whose free flight does not depend principally on an engine. • Lighter-than-air aircraft—an aircraft that can rise and remain suspended by using contained gas weighing less than the air that is displaced…
- Chapter 11: Aircraft Performance › Performance › Straight-and-Level Flight
Level Flight All of the principal components of flight performance involve steady-state flight conditions and equilibrium of the aircraft. For the aircraft to remain in steady, level flight, equilibrium must be obtained by a lift equal to the aircraft ... weight and a powerplant thrust equal to the aircraft drag. Thus, the aircraft drag defines the thrust required to maintain steady, level flight. As presented in Chapter 4, Aerodynamics of Flight, all parts of an aircraft contribute to the drag…
- Chapter 5: Aerodynamics of Flight › Aircraft Design Characteristics › Lateral Stability (Rolling)
result, the low wing acquires more lift, rises, and the aircraft is restored to its original flight attitude. Keel Effect and Weight Distribution A high wing aircraft always has the tendency to turn the longitudinal axis of the aircraft into ... relative wind, which is often referred to as the keel effect. These aircraft are laterally stable simply because the wings are attached in a high position on the fuselage, making the fuselage behave like a keel exerting a steadying influence…
- Appendix C: Certificates, Ratings, and Endorsements › Flight Instructor Endorsements › Aircraft Checkouts/Transitions
Flight Instructors as Certifying Officials for Student Pilot and Remote Pilot Applicants, has process details for instructors and applicants. Aircraft Checkouts/Transitions Certificated pilots depend on flight instructors for aircraft checkouts and transition training including high performance airplanes, tail wheel airplanes ... motor gliders, and aircraft capable of flight at high altitudes. The flight instructor who checks out and certifies the competency of a pilot in an aircraft for which a type rating is not required by regulation accepts major responsibility…
- Chapter 3: Aircraft Construction › Lift and Basic Aerodynamics
Weight pulls the aircraft downward because of the force of gravity. It opposes lift and acts vertically downward through the aircraft’s center of gravity (CG). Lift opposes the downward force of weight, is produced by the dynamic effect ... wing, and acts perpendicular to the flight path through the wing’s center of lift (CL). An aircraft moves in three dimensions and is controlled by moving it about one or more of its axes. The longitudinal, or roll, axis…