AP.IV.A.S4
SkillPerform the Task in the opposite direction, as specified by evaluator.
From the FAA library
- Chapter 17: Aeromedical Factors › Health and Physiological Factors Affecting Pilot Performance › Vestibular Illusions
turning. During the recovery to level flight, the pilot will then experience the sensation of turning in the opposite direction causing the disoriented pilot to return the aircraft to its original turn. Because an aircraft tends to lose altitude ... nose-low or dive attitude. A rapid deceleration by quick reduction of the throttle(s) can have the opposite effect, with the disoriented pilot pulling the aircraft into a nose-up or stall attitude. Figure 17-5. Graveyard spiral. Turn…
- Chapter 11: Aircraft Performance › Performance › Climb Performance Factors
Climb Performance Factors Since weight, altitude and configuration changes affect excess thrust and power, they also affect climb performance. Climb performance is directly dependent upon the ability to produce either excess thrust or excess power. Earlier in the book ... flaps all decrease both excess thrust and excess power for all aircraft. Therefore, maximum AOC and maximum ROC performance decreases under any of these conditions. Weight has a very pronounced effect on aircraft performance. If weight is added…
- Chapter 11: Aircraft Performance › Performance Charts
Performance Charts Performance charts allow a pilot to predict the takeoff, climb, cruise, and landing performance of an aircraft. These charts, provided by the manufacturer, are included in the AFM/POH. Information the manufacturer provides on these charts has been gathered ... piloting skills, and with the aircraft and engine in good working order. Engineers record the flight data and create performance charts based on the behavior of the aircraft during the test flights. By using these performance charts, a pilot…
- Chapter 11: Aircraft Performance › Performance
Performance Performance is a term used to describe the ability of an aircraft to accomplish certain things that make it useful for certain purposes. For example, the ability of an aircraft to land and take off in a very short ... carry heavy loads, fly at high altitudes at fast speeds, and/or travel long distances is essential for the performance of airline and executive type aircraft. The primary factors most affected by performance are the takeoff and landing distance, rate…
- Chapter 11: Aircraft Performance › Performance › Rate of Climb (ROC)
that altitude. ROC is simply the vertical component of the aircraft’s flight path velocity vector. For maximum ROC performance, a pilot flies the aircraft at VY so as to achieve a maximum gain in altitude over a given period ... differences between max ROC and max AOC lie primarily in the velocity (airspeed) and AOA combination the aircraft manual specifies. [Figure 11-7] Figure 11-8. Comparison of maximum AOC between jet and propeller airplanes. ROC performance depends upon excess…
- Chapter 3: Identifying Hazards & Associated Risks › Aircraft Hazards › Performance
intake and supply. Figure 3-3. IMSAFE checklist. Aircraft Hazards “A” hazards can be classified in terms of both performance and equipage. Performance Aircraft performance hazards may include: • Fuel and Range–As previously described, fuel issues continue ... failure to achieve “book” speeds and fuel consumption can lead to an incident or accident. • Takeoff and Landing Performance– Takeoffs and landings become more hazardous when the calculated performance approaches the available runway length. • Altitude Performance–Operating to or from…