Every student pilot is told what to do. Very few are told why, and the difference shows up at the worst possible moment: on a warm afternoon at a high field when the airplane will not climb, or on the turn from base to final when a little bottom rudder feels like the obvious correction.
Aerodynamics is usually taught as a list of facts to be memorized before a test and then set aside. Stall speed becomes a number on a dial instead of an angle the wing reaches. Density altitude, trim and load factor stay as separate rules rather than consequences of a handful of relationships that could be rebuilt in a minute. The result is a pilot who can pass the test and still be surprised by the airplane, and an instructor who can demonstrate a maneuver but struggles to explain it.
This handbook was written to close that gap. Across seventeen chapters in five parts it explains why airplanes behave the way they do, with the reasoning shown rather than asserted, so that a reader who has understood a few relationships can derive the rest instead of remembering it. Every equation is followed by a definition of every symbol with its units, and every worked example carries the arithmetic through with the units shown.
What you will take from it:
Five recurring features in every chapter connect the physics to the cockpit and to the lesson, including an instructor's brief on how to teach and demonstrate each point and the misreading the topic reliably produces. Suggested reading routes cover stall and spin awareness, performance and flight planning, a flight review, and teaching.
It is written for student pilots who want the reasons behind the procedures, for certificated flight instructors who have to teach them, and for rated pilots returning to flying or preparing for a flight review. The mathematics is algebra and trigonometry, with no calculus. Units are United States customary aviation units, with an appendix mapping them to practice elsewhere. It is an explanation, not a flight manual: the aircraft's own approved manual always governs.
Open the first chapter and start building the working model of your airplane that lets new situations make sense on first acquaintance.
"Sinopsis" puede pertenecer a otra edición de este libro.
Librería: California Books, Miami, FL, Estados Unidos de America
Condición: New. Print on Demand. Nº de ref. del artículo: I-9798171464387
Cantidad disponible: Más de 20 disponibles
Librería: PBShop.store UK, Fairford, GLOS, Reino Unido
PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000. Nº de ref. del artículo: L2-9798171464387
Cantidad disponible: Más de 20 disponibles
Librería: Grand Eagle Retail, Bensenville, IL, Estados Unidos de America
Paperback. Condición: new. Paperback. Every student pilot is told what to do. Very few are told why, and the difference shows up at the worst possible moment: on a warm afternoon at a high field when the airplane will not climb, or on the turn from base to final when a little bottom rudder feels like the obvious correction.Aerodynamics is usually taught as a list of facts to be memorized before a test and then set aside. Stall speed becomes a number on a dial instead of an angle the wing reaches. Density altitude, trim and load factor stay as separate rules rather than consequences of a handful of relationships that could be rebuilt in a minute. The result is a pilot who can pass the test and still be surprised by the airplane, and an instructor who can demonstrate a maneuver but struggles to explain it.This handbook was written to close that gap. Across seventeen chapters in five parts it explains why airplanes behave the way they do, with the reasoning shown rather than asserted, so that a reader who has understood a few relationships can derive the rest instead of remembering it. Every equation is followed by a definition of every symbol with its units, and every worked example carries the arithmetic through with the units shown.What you will take from it: The air before the wing: pressure, temperature and humidity as one working number, and density altitude computed on the ramp rather than discovered on the runway.Lift and drag as cause and cost: angle of attack, the coefficient of lift curve, parasite and induced drag, the total drag curve and the region of reversed command.The airplane as a machine: wing planform and high-lift devices, stability and the center of gravity, trim, adverse yaw, and the propeller's four left-turning tendencies taught separately.Performance you can compute: takeoff roll, best angle against best rate of climb, range and endurance in wind, best glide, the stabilized approach, ground effect, crosswinds and wake turbulence.The edge of the envelope: load factor, maneuvering speed and what it does not protect, the V-g diagram, the stall as an angle rather than a speed, slow flight, spins, the cross-control stall and the turn-back examined with numbers.Energy management as the single model that ties the subject together: altitude, airspeed and power as one budget, and the decision that has to be made early.A working apparatus: fifty worked examples, one hundred and nineteen practice problems every one solved in full in the answer key, and appendices covering symbols, a formula reference, V-speeds, the standard atmosphere and international units.Five recurring features in every chapter connect the physics to the cockpit and to the lesson, including an instructor's brief on how to teach and demonstrate each point and the misreading the topic reliably produces. Suggested reading routes cover stall and spin awareness, performance and flight planning, a flight review, and teaching.It is written for student pilots who want the reasons behind the procedures, for certificated flight instructors who have to teach them, and for rated pilots returning to flying or preparing for a flight review. The mathematics is algebra and trigonometry, with no calculus. Units are United States customary aviation units, with an appendix mapping them to practice elsewhere. It is an explanation, not a flight manual: the aircraft's own approved manual always governs.Open the first chapter and start building the working model of your airplane that lets new situations make sense on first acquaintance. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Nº de ref. del artículo: 9798171464387
Cantidad disponible: 1 disponibles
Librería: CitiRetail, Stevenage, Reino Unido
Paperback. Condición: new. Paperback. Every student pilot is told what to do. Very few are told why, and the difference shows up at the worst possible moment: on a warm afternoon at a high field when the airplane will not climb, or on the turn from base to final when a little bottom rudder feels like the obvious correction.Aerodynamics is usually taught as a list of facts to be memorized before a test and then set aside. Stall speed becomes a number on a dial instead of an angle the wing reaches. Density altitude, trim and load factor stay as separate rules rather than consequences of a handful of relationships that could be rebuilt in a minute. The result is a pilot who can pass the test and still be surprised by the airplane, and an instructor who can demonstrate a maneuver but struggles to explain it.This handbook was written to close that gap. Across seventeen chapters in five parts it explains why airplanes behave the way they do, with the reasoning shown rather than asserted, so that a reader who has understood a few relationships can derive the rest instead of remembering it. Every equation is followed by a definition of every symbol with its units, and every worked example carries the arithmetic through with the units shown.What you will take from it: The air before the wing: pressure, temperature and humidity as one working number, and density altitude computed on the ramp rather than discovered on the runway.Lift and drag as cause and cost: angle of attack, the coefficient of lift curve, parasite and induced drag, the total drag curve and the region of reversed command.The airplane as a machine: wing planform and high-lift devices, stability and the center of gravity, trim, adverse yaw, and the propeller's four left-turning tendencies taught separately.Performance you can compute: takeoff roll, best angle against best rate of climb, range and endurance in wind, best glide, the stabilized approach, ground effect, crosswinds and wake turbulence.The edge of the envelope: load factor, maneuvering speed and what it does not protect, the V-g diagram, the stall as an angle rather than a speed, slow flight, spins, the cross-control stall and the turn-back examined with numbers.Energy management as the single model that ties the subject together: altitude, airspeed and power as one budget, and the decision that has to be made early.A working apparatus: fifty worked examples, one hundred and nineteen practice problems every one solved in full in the answer key, and appendices covering symbols, a formula reference, V-speeds, the standard atmosphere and international units.Five recurring features in every chapter connect the physics to the cockpit and to the lesson, including an instructor's brief on how to teach and demonstrate each point and the misreading the topic reliably produces. Suggested reading routes cover stall and spin awareness, performance and flight planning, a flight review, and teaching.It is written for student pilots who want the reasons behind the procedures, for certificated flight instructors who have to teach them, and for rated pilots returning to flying or preparing for a flight review. The mathematics is algebra and trigonometry, with no calculus. Units are United States customary aviation units, with an appendix mapping them to practice elsewhere. It is an explanation, not a flight manual: the aircraft's own approved manual always governs.Open the first chapter and start building the working model of your airplane that lets new situations make sense on first acquaintance. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Nº de ref. del artículo: 9798171464387
Cantidad disponible: 1 disponibles
Librería: AHA-BUCH GmbH, Einbeck, Alemania
Taschenbuch. Condición: Neu. Neuware. Nº de ref. del artículo: 9798171464387
Cantidad disponible: 2 disponibles