PL.VII.A.S3c
SkillPlan the maneuver:
Turns around a point: enter at an appropriate distance from the reference point, 600 to 1,000 feet AGL at an appropriate distance from the selected reference area
From the FAA library
- Chapter 11: Aircraft Performance › Performance Charts › Sample Problem 2
Sample Problem 2 Refer to Figure 11-23. This chart is an example of a combined takeoff distance graph. It takes into consideration pressure altitude, temperature, weight, wind, and obstacles all on one chart. First, find the correct temperature ... bottom left side of the graph. Follow the line from 22 °C straight up until it intersects the 2,000 foot altitude line. From that point, draw a line straight across to the first dark reference line. Continue to draw…
- Chapter 17: Aeromedical Factors › Health and Physiological Factors Affecting Pilot Performance › Climbing While Turning
attempt any of these maneuvers at low altitudes or in the absence of an instructor pilot or an appropriate safety pilot. Climbing While Accelerating With the pilot’s eyes closed, the instructor pilot maintains approach airspeed in a straight ... several seconds, then accelerates while maintaining straight-and-level attitude. The usual illusion during this maneuver, without visual references, is that the aircraft is climbing. Climbing While Turning With the pilot’s eyes still closed and the aircraft…
- Chapter 11: Aircraft Performance › Takeoff and Landing Performance › Landing Performance
increase of landing speed by ten percent increases the landing distance by 20 percent. Hydroplaning makes braking ineffective until a decrease of speed that can be determined by using Figure 11-18. For instance, a pilot is downwind for runway ... knots. The pilot accepts because he or she is approaching the extended centerline of runway 27. The turn is tight and the pilot must descend (dive) to get to runway 27. After becoming aligned with the runway…
- Chapter 11: Aircraft Performance › Performance Charts › Sample Problem 12
Sample Problem 12 Using the given conditions and Figure 11-33, determine the landing distance for the aircraft. This graph is an example of 1. Decrease the distances shown by 10% for each 4 knots of headwind. 2. Increase ... distance by 10% for each 60 °F temperature increase above standard. 3. For operation on a dry, grass runway, increase distances (both “ground roll” and “total to clear 50 ft obstacle”) by 20% of the “total to clear…
- Chapter 17: Aeromedical Factors › Health and Physiological Factors Affecting Pilot Performance › Vestibular Illusions
alert for the coriolis illusion. Graveyard Spiral As in other illusions, a pilot in a prolonged coordinated, constant-rate turn may experience the illusion of not turning. During the recovery to level flight, the pilot will then experience the sensation ... turning in the opposite direction causing the disoriented pilot to return the aircraft to its original turn. Because an aircraft tends to lose altitude in turns unless the pilot compensates for the loss in lift, the pilot may notice…
- Chapter 11: Aircraft Performance › Performance Charts › Sample Problem 3
find the corresponding takeoff speeds at lift-off and over the 50 foot obstacle, refer to the table on the top of the chart. In this case, the lift-off speed at 2,600 pounds would be 63 knots ... obstacle would be 68 knots. Figure 11-21. Interpolating charts. Figure 11-22. Density altitude chart. Sample Problem 3 Refer to Figure 11-24. This chart is an example of a takeoff distance table for short-field takeoffs. For this…