IL.XIV.C.S6
SkillMaintain the airspeed ±10 knots, the specified heading ±10°, and altitude ±100 feet as specified by the evaluator and within the aircraft’s capability.
From the FAA library
- Chapter 9: Flight Manuals and Other Documents › Aircraft Documents › Certificate of Aircraft Registration
Aircraft Documents Certificate of Aircraft Registration Before an aircraft can be flown legally, it must be registered with the FAA Aircraft Registry. The Certificate of Aircraft Registration, which is issued to the owner as evidence of the registration, must ... carried in the aircraft at all times. [Figure 9-8] The Certificate of Aircraft Registration cannot be used for operations when: • The aircraft is registered under the laws of a foreign country Figure 9-8. AC Form 8050-3, Certificate…
- Chapter 3: Aircraft Construction › Aircraft Design, Certification, and Airworthiness › A Note About Light Sport Aircraft
Note About Light Sport Aircraft Light sport aircraft are not designed according to FAA airworthiness standards. Instead, they are designed to a consensus of standards agreed upon in the aviation industry. The FAA has agreed the consensus of standards ... acceptable as the design criteria for these aircraft. Light sport aircraft do not necessarily have individually type certificated engines and propellers. Instead, a TC is issued to the aircraft as a whole. It includes the airframe, engine, and propeller. Aircraft…
- 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 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…
- Chapter 11: Aircraft Performance › Performance › Climb Performance
Positive climb performance occurs when an aircraft gains PE by increasing altitude. Two basic factors, or a combination of the two factors, contribute to positive climb performance in most aircraft: 1. The aircraft climbs (gains PE) using excess power above ... that required to maintain level flight, or 2. The aircraft climbs by converting airspeed (KE) to altitude (PE). As an example of factor 1 above, an aircraft with an engine capable of producing 200 horsepower (at a given altitude…
- 14 CFR Part 91, Appendix G to Part 91—Operations in Reduced Vertical Separation Minimum (RVSM) Airspace
Part 91, Appendix G to Part 91—Operations in Reduced Vertical Separation Minimum (RVSM) Airspace (a) Except as specified in Section 9 of this appendix, an operator may be authorized to conduct RVSM operations if the Administrator finds that ... aircraft comply with this section. (b) The applicant for authorization shall submit the appropriate data package for aircraft approval. The package must consist of at least the following: (1) An identification of the RVSM aircraft group or the nongroup aircraft…