
Student Pilot
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- Rate your skills
as you work through the syllabus. - Learn the language of aviation.
Every term in plain English.
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Skills - rate how you're doing
▸Preflight inspection
How this maneuver goes - Airplane Flying Handbook- Confirm airworthiness — required inspections (annual, ADs) current and required documents aboard. `[verify POH]`
- Note the airplane's general condition on approach — damage, misalignment, fuel/oil stains.
- Check the cabin — doors, seats/rails, belts/harnesses; set switches, controls, trim, breakers for inspection. `[verify POH]`
- Master ON: check fuel quantity, gauges, lights, flight instruments; master OFF. `[verify POH]`
- Walk around per the POH sequence — wings, tail, fuselage, control surfaces, attach points. `[verify POH]`
- Check fuel quantity/grade/quality — sump each drain for water; check oil; secure caps. `[verify POH]`
- Inspect gear, tires, brakes, struts; then engine, prop, spinner, cowling for leaks/security. `[verify POH]`
▸Cockpit management
How this maneuver goes - Airplane Flying Handbook- Adjust and lock the seat; secure belt and shoulder harness before starting.
- Stow and secure loose items so nothing can jam the controls.
- Organize charts, checklists, and equipment within reach, in order of use.
- Brief occupants on seatbelts, doors, and sterile-cockpit expectations.
- Confirm doors and windows latched.
- Set radios, avionics, and instruments for the phase of flight. `[verify POH]`
▸Engine start
How this maneuver goes - Airplane Flying Handbook- Confirm the ramp ahead and behind is clear of people, equipment, and hazards.
- Anti-collision lights ON (position lights ON at night).
- Set fuel, mixture, throttle, and switches to the start configuration. `[verify POH]`
- Hold brakes, hand on throttle, call "CLEAR," and wait for a response.
- Engage the starter — crank no more than 30 seconds, then let it cool before retrying.
- After start, set ~1,000 rpm to warm up. `[verify POH]`
- Confirm oil pressure rises within 30 seconds — shut down immediately if it doesn't. `[verify POH]`
▸Taxiing
How this maneuver goes - Airplane Flying Handbook- Have the airport diagram out and review the full taxi route before moving.
- Test the brakes as soon as the airplane begins to roll.
- Steer with the rudder pedals (nosewheel); use power/brakes only to control speed.
- Keep speed slow — throttle to idle before braking, so closing the throttle stops you promptly.
- Keep centered on the taxiway line; scan near and far for traffic and obstructions.
- Slow before turns to avoid side loads or a ground loop.
- Set ailerons for the wind — quartering headwind: upwind aileron up; quartering tailwind: upwind aileron down, elevator down.
▸Before-takeoff (run-up) check
How this maneuver goes - Airplane Flying Handbook- Position into the wind on a firm, clear surface, away from other aircraft.
- Roll forward slightly to straighten the nosewheel, then set the brakes.
- Confirm oil temp/pressure in the normal range before applying high power. `[verify POH]`
- Run up to the specified rpm; check magnetos, carb heat, and engine instruments. `[verify POH]`
- Cycle the propeller; check ammeter/alternator and suction/vacuum as applicable. `[verify POH]`
- Set controls, trim, flaps, fuel selector, mixture, and avionics for takeoff. `[verify POH]`
- Check flight controls free and correct; complete the before-takeoff checklist. `[verify POH]`
Words for this area
- ground operations
- margin of safety
- preflight assessment
- airworthy
- airworthiness status
- appliance logbooks
- encoder
- transponder certification
- AD — Airworthiness Directives
- airport ramp
- Current Airworthiness Certificate
- doorpost
- crazing
- light refraction
- magneto
- detents
- gyro instruments
- hazing
- avionics master
- retractable gear
- annunciator panel
- barometric setting
- pitot/static
- rivets
- spar lines
- avionics cooling fans
- delamination
- concentrated radii
- rivet heads
- aerodynamic devices
- misfueling
- fuel strainer quick drain
- fuel tank sump
- sumping
- vented fuel caps
- pinging
- oil dipstick
- kerosene-based fuel
- squat switches
- reciprocating airplane engines
- fuel filler nozzles
- shimmy damper
- elastomeric
- bungee cords
- tank sealant
- pitting
- controllable pitch propeller
- alternator/generator drive belts
- landing gear strut
- heat muffs
- fuel leakage
- risk management
- risk assessment
- risk mitigation
- human resource management
- taxiway
- Runway
- stick-and-rudder skills
- rotor downwash
- engine preheat
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Skills - rate how you're doing
▸Straight-and-level flight
How this maneuver goes - Airplane Flying Handbook- Set your nose and wingtip reference points against the natural horizon.
- Set a constant cruise power so airspeed stays constant.
- Hold the controls lightly with your fingertips, not a tight grip.
- Keep the nose reference fixed to the horizon for pitch; keep both wingtips level for bank.
- Scan outside, taking quick snapshots of the instruments to confirm heading and altitude.
- Correct small deviations with smooth, proportional, coordinated aileron-and-rudder pressures, then relax to neutral.
▸Climbs
How this maneuver goes - Airplane Flying Handbook- Smoothly raise the nose to the climb attitude while advancing to climb power together.
- Add right rudder to counter P-factor/torque and keep the nose from yawing left.
- Reference the wingtips to hold attitude and wings level, cross-checking instruments.
- Trim off the nose-up pressure so the attitude holds hands-off.
- With power fixed, control airspeed to the target (Vy/Vx) with elevator.
- Lead the level-off by ~10% of the climb rate, lowering the nose to let airspeed build, then set cruise power and re-trim.
▸Descents
How this maneuver goes - Airplane Flying Handbook- Reduce power to the target setting; hold altitude with back pressure until airspeed slows to descent speed.
- Lower the nose to the descent attitude referenced to the horizon.
- Keep the pitch/power/airspeed combination constant (≈500 fpm partial-power).
- Add slight rudder to keep the ball centered as power/airflow change.
- Trim off the pressure so the descent holds hands-off.
- Lead the level-off by ~10% of the descent rate, raising the nose and adding power to stop the descent and hold airspeed.
▸Turns
How this maneuver goes - Airplane Flying Handbook- Clear the airspace in the direction of the turn.
- Roll into the bank with coordinated aileron and rudder.
- Add back pressure to hold altitude; add power for steeper banks to hold airspeed.
- Set controls for the bank (hold slight into a shallow turn, neutral in a medium turn, slight opposite in a steep turn).
- Reference the horizon, cross-checking instruments for bank and altitude.
- Lead the rollout by ~half the bank angle; roll out coordinated toward the high wing.
- Relax back pressure as the wings level and neutralize the controls.
▸Coordination (rudder use / adverse yaw)
How this maneuver goes - Airplane Flying Handbook- Rest heels on the floor, balls of the feet on the pedals, legs relaxed.
- Apply rudder smoothly with one foot, relaxing the opposite pedal proportionally.
- Apply rudder simultaneously with, and in the same direction as, aileron to cancel adverse yaw entering a turn.
- Use right rudder in climbs/high power to offset P-factor and torque.
- Feel for slip/skid (being pushed sideways) and adjust rudder to center the ball.
- Never substitute rudder alone for a coordinated bank.
▸Trim
How this maneuver goes - Airplane Flying Handbook- First establish and hold the desired attitude and airspeed with control pressure.
- Once stable, trim off the elevator pressure so pitch holds without input.
- If equipped, trim in sequence: rudder, then aileron, holding wings level while trimming.
- Make small adjustments and re-check the controls are pressure-free.
- Re-trim after any change in power, configuration, or airspeed.
- Fly to the attitude with the controls first, then trim — never steer with the trim.
Words for this area
- ACS — Airman Certification Standards
- yoke
- back pressure
- pitch (lateral) axis
- rudder pedal
- Elevator/stabilator
- roll (longitudinal) axis
- yaw (vertical) axis
- streamlined position
- kinesthesis
- proprioception
- natural horizon
- integrated flight instruction
- whiteouts
- electronically-generated instruments
- yaw control
- attitude flying
- flightpath
- straight flight
- level turn
- marked centerline
- level flight
- overbanking
- resultant
- perpendicular
- rudder trim
- turn radius
- skidding flat turns
- climb rate
- uncoordinated flight
- VX — best angle of climb airspeed
- rollout
- asymmetric thrust
- outboard wing
- parallax error
- cruise airspeed
- climbing turn
- descent at minimum safe airspeed
- 1.3 VSO
- VSO
- yawing moment
- minimum sink airspeed
- gliding turn
- aerodynamic
- emergency descent airspeed
- glide
- downward inertia
- flat approaches
- basic airmanship
- low-level gliding steep turn
- unrecoverable spin
- flightpath-airspeed profiles
- irreversible deceleration
- leveling off from a descent
- constant airspeed climb
- mgh
- constant altitude and airspeed
- T — D
- surplus energy
- PS = (T — D)V/W
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Skills - rate how you're doing
- Radio communications & ATC light signals
▸Traffic patterns
How this maneuver goes - Airplane Flying Handbook- Determine the runway, pattern direction/altitude; monitor CTAF; report ~10 miles out.
- Enter downwind on a 45° angle at pattern altitude, aimed abeam the runway midpoint.
- Fly downwind parallel to the runway ~½–1 mile out; complete before-landing checks and extend gear.
- Abeam the approach end, reduce power and begin the descent; ~45° past the runway end, turn base.
- On base, descend on a track perpendicular to the centerline, correcting for drift; check final before turning.
- Turn final and fly a stabilized descent to the touchdown point.
- Go around any time the approach is unsafe or the runway isn't clearly yours.
- Airport markings, signs & lighting
Words for this area
- heliports
- seaplane bases
- airport operations
- Downwind Leg
- nongovernment air/ground radio communication station
- Multicom
- nontowered
- intrastate
- Reliever Airports
- Enplanements
- aeronautical chart legend
- Notices to Airmen
- midfield crosswind
- Chart Supplement U.S
- high-performance retractable
- Traffic Pattern
- Upwind Leg
- aeronautical chart bulletins
- VOR receiver checkpoints
- LAHSO — Land and Hold Short Operations
- Relocated Runway Threshold
- Displaced Threshold
- centerline
- ATIS code
- en route
- Runway Holding Position Sign
- collocated
- taxiways
- magnetic azimuth
- runway designation marking
- runway distance remaining signs
- runway holding position marking
- Destination Signs
- ILS critical area
- runway incursions
- VOR receiver checkpoint markings
- Approach Light System
- airport beacon
- Airport Lighting
- three-bar VASI
- PAPI — Precision Approach Path Indicator
- two-bar VASI
- Visual Approach Slope Indicator
- sequenced flashing lights
- nonprecision instrument runway
- noise abatement procedures
- Runway Lighting
- Visual Glideslope Indicators
- runway edge lights
- REIL — Runway End Identifier Lights
- pulsating VASIs
- In-Runway Lighting
- New Lighting Technologies
- Omnidirectional
- taxiway lights
- RWSL — Runway Status Lights
- obstruction lights
- stop bar lights
- conspicuity
- runway guard lights
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Skills - rate how you're doing
▸Normal takeoff & climb
How this maneuver goes - Airplane Flying Handbook- Line up on centerline, release brakes, advance throttle smoothly to takeoff power.
- Use rudder to track straight down the centerline, anticipating the left-turning tendency.
- Keep hands light, feet off brakes; let airspeed build.
- As controls become effective, apply smooth back-elevator to rotate to the takeoff attitude and lift off.
- Hold pitch for Vy, level the wings, stay coordinated on the extended centerline.
- With a positive rate confirmed, retract flaps/gear if equipped.
- Hold takeoff power to ≥500 ft, then set climb power, trim, and hold Vy.
▸Normal approach & landing
How this maneuver goes - Airplane Flying Handbook- On base, complete before-landing checklist, reduce power, descend at ~1.4 Vso with drift correction.
- Roll onto final, align with centerline, set final flaps, stabilize at ~1.3 Vso, re-trim.
- Control descent angle with pitch and power together to track the aiming point — never stretch the glide with elevator alone.
- At 10–20 ft, begin the roundout with gradual back-elevator to arrest the descent.
- Hold the wheels just off the runway; increase back pressure so the mains touch first at/near stall speed.
- Hold back-elevator for aerodynamic braking; lower the nose-wheel as speed decreases.
- Maintain directional control; brake smoothly once the nose-wheel is down.
▸Crosswind takeoff & landing
How this maneuver goes - Airplane Flying Handbook- *Takeoff:* enter the roll with full aileron into the wind, advancing to takeoff power.
- Reduce aileron as speed builds; use rudder to stay straight down the centerline.
- Hold the mains on slightly longer, make a positive lift-off; after breaking ground, crab into the wind and track the centerline.
- *Landing:* on final, wing-low method — lower the upwind wing to stop drift, opposite rudder to align with the runway.
- Continue the correction through the roundout, increasing aileron/rudder as the airplane slows.
- Touch down on the upwind main first, wings banked into the wind; let the downwind main settle.
- During rollout, add aileron into the wind (full by stop) and hold direction with rudder/nose-wheel.
▸Soft-field takeoff & climb
How this maneuver goes - Airplane Flying Handbook- Set flaps as recommended; taxi onto the surface with continuous motion (never stop).
- Apply takeoff power smoothly, holding back-elevator to unload the nose-wheel.
- Hold the nose-high attitude so the airplane flies itself off at low speed in ground effect.
- After lift-off, gently lower the nose to stay in ground effect and accelerate.
- Hold in ground effect until at least Vx (or obstacle-clearance speed).
- Climb at Vx to clear obstacles, then lower the nose to Vy.
- With positive rate and Vy, retract gear/flaps and set normal climb power.
▸Soft-field approach & landing
How this maneuver goes - Airplane Flying Handbook- Fly a normal approach at the recommended speed with flaps as recommended; avoid excess speed.
- Level off and fly 1–2 ft above the surface in ground effect, carrying some power.
- Hold a nose-high attitude; touch down at the lowest possible airspeed with wings still carrying weight.
- After the mains touch, hold back-elevator to keep the nose-wheel off.
- Use back pressure and power together to control the weight transfer.
- Gently lower the nose-wheel, adding a little power to ease it down.
- Avoid braking — let the soft surface slow the airplane; keep it moving to avoid getting stuck.
▸Short-field takeoff & climb
How this maneuver goes - Airplane Flying Handbook- Set recommended flaps; taxi to the very beginning of usable runway, aligned.
- Hold brakes, apply full power, confirm engine instruments.
- Release brakes; accelerate on all wheels in a low-drag attitude.
- At Vx, rotate smoothly to the Vx attitude for a positive lift-off.
- Hold Vx wings-level until obstacles are cleared (or to ≥50 ft).
- Lower pitch to accelerate to Vy; continue climb.
- Retract flaps (in increments) and gear, set normal climb power.
▸Short-field approach & landing
How this maneuver goes - Airplane Flying Handbook- Set up a stabilized final from ≥500 ft with the flap setting before full.
- When the field is made, extend full flaps and hold airspeed to keep the aiming point stationary.
- Fly to the aiming point at ≤1.3 Vso, adjusting pitch and power together.
- Judge the roundout accurately from the steeper angle — minimal float confirms correct speed.
- Touch down at minimum controllable airspeed in the power-off-stall attitude.
- Hold the positive pitch attitude for aerodynamic braking.
- On lowering the nose-wheel, apply maximum braking (stick back) to stop in the shortest safe distance.
▸Forward slip to landing
How this maneuver goes - Airplane Flying Handbook- Plan the descent for a slip on final; flaps usually retracted. `[verify AFM/POH slip-with-flaps limits]`
- Reduce power to idle; if descent rate is insufficient, enter the slip.
- Lower a wing with aileron, apply opposite rudder to hold the nose off the flightpath, control airspeed with elevator.
- In a crosswind, lower the upwind wing so the airplane slips into the wind.
- Continue the slip as needed on base/final if still high.
- Adjust slip steepness with bank angle (steeper = more sink), up to the rudder-travel limit.
- As the roundout begins, remove the slip: level the wings, release rudder, readjust pitch, transition to a normal landing.
▸Go-around / rejected landing
How this maneuver goes - Airplane Flying Handbook- Recognize the condition and decide without delay.
- Apply full/maximum allowable power smoothly (carb heat off as applicable).
- Apply forward pressure for a safe pitch attitude against the nose-up tendency; right rudder for torque/P-factor.
- Rough-trim once a climb attitude and airspeed are established.
- Retract flaps in small increments (to takeoff position), letting the airplane accelerate.
- With a positive rate established, retract the gear.
- Account for ground effect on a low go-around — don't try to climb out prematurely.
Words for this area
- Takeoff Roll
- Terms and Definitions
- initial climb
- attitude
- safe maneuvering altitude
- POH/AFM
- Pilot's Handbook of Aeronautical Knowledge
- Normal Takeoff
- gusty wind
- Crosswind Takeoff
- crosswind correction
- Crosswind effect
- crabbing
- crosswind climb flightpath
- elevator trimming
- aileron pressure
- upwind wing
- downwind wing
- downwind rudder pressure
- wheel barrowing
- slush
- Rejected Takeoff/Engine Failure
- steepest angle of climb
- Noise Abatement
- positive AOA
- surface irregularities
- adhesion
- taxiway hold positions
- flap deflection
- wing downwash
- stabilized approach
- Base Leg
- Final Approach
- round out
- Touchdown
- after-landing roll
- configuration
- 1.4 VSO
- manufacturer's recommended airspeed
- AOA
- trapezoid
- go-around
- AGL
- approved placards/markings
- nose-wheel
- ground loop
- flap retraction
- ground effect
- maximum allowable takeoff power
- Intentional Slips
- uncoordinated
- skidding stall
- upwind main wheel
- cornering angle
- Maximum Safe Crosswind Velocities
- demonstrated crosswind velocity
- crosswind component chart
- wheelbarrowing
- downwind main wheel
- tricycle-geared airplane
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▸Steep turns
How this maneuver goes - Airplane Flying Handbook- Clear the area, pick a rollout reference, establish entry speed at/below Va/Vo.
- Smoothly roll into a 45°–60° bank.
- As the bank passes ~30°, add back pressure and power to hold altitude/airspeed.
- Hold the bank constant with aileron against overbanking; coordinate with rudder.
- Reference nose and wings to the horizon; small pitch corrections while holding bank.
- If the nose drops, first shallow the bank, then raise the nose.
- Lead rollout by ~half the bank angle; reduce back pressure/power to arrive wings-level on heading at altitude.
▸Rectangular course
How this maneuver goes - Airplane Flying Handbook- Clear the area, pick a rectangular field, set up ½–¾ mile outside the boundaries at constant altitude/airspeed.
- Enter downwind (highest groundspeed); hold the leg parallel to the boundary.
- Downwind→base: steeper bank, shallowing through the turn; roll out crabbed, turning >90°.
- Base→upwind: medium bank, shallowing as groundspeed drops; turn <90°.
- Upwind→crosswind: shallow bank (lowest groundspeed); turn <90°.
- Crosswind→downwind: medium bank, steepening as groundspeed builds; turn >90°.
- Throughout, match bank to groundspeed (faster = steeper) to hold equal distance from the field.
▸S-turns
How this maneuver goes - Airplane Flying Handbook- Clear the area, pick a straight reference perpendicular to the wind, set constant altitude/airspeed.
- Cross the line at 90° from the downwind side; begin a 180° constant-radius turn.
- Roll in steeply at the start (highest groundspeed), shallowing as groundspeed decreases.
- Time the rollout to re-cross the line wings-level at 90°.
- Immediately roll into the opposite 180° turn on the other side.
- Starting upwind, roll in shallow, steepening as the turn carries back toward downwind.
- Re-cross the line wings-level at 90°; continue alternating equal half-circles.
▸Turns around a point
How this maneuver goes - Airplane Flying Handbook- Clear the area, pick a prominent small reference; choose radius/altitude that keeps it visible.
- Enter downwind at the chosen radius (fastest groundspeed) with the steepest bank.
- Turning downwind→upwind, progressively shallow the bank (shallowest directly upwind).
- Turning upwind→downwind, progressively steepen back to the steepest at the entry point.
- On the downwind half keep the nose ahead of ground position; on the upwind half, behind.
- Hold coordinated aileron/rudder, constantly adjusting bank to keep a constant radius.
- Complete at least one full 360° (fly two+ to refine wind corrections).
Words for this area
- aerodynamic load
- fixate
- tactile feedback
- Coordination
- congested areas
- hazy day
- Drift and Ground Track Control
- gliding distance
- flightpath corrections
- maneuvering altitude
- wind drift
- constant-radius turn
- upwind
- downwind
- rectangular course
- coordinated aileron and rudder pressure
- skids
- Turns Around a Point
- rollout timing
- Elementary Eights
- eights along a road
- wingtip references
- eights across a road
- eights around pylons
- shallow-banked turn
- S-turn
- ground-based radius
- crosswind position
- pylons
- tangent
- Eights on Pylons
- taut string
- tapered-wing
- maneuvering airspeeds
- steepening bank
- outside rudder pressure
- pylon turn
- pitch, roll, and yaw attitudes
- segmented building blocks of instruction
- operating maneuvering speed
- terminating heading
- steep spiral
- constant radius
- Chandelle
- gliding spiral
- Lazy Eight
- aerodynamically stall
- constant rate rollout
- right rudder pressure
- left adverse yaw
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▸Maneuvering during slow flight
How this maneuver goes - Airplane Flying Handbook- Clear the area, gradually reduce power, raise pitch to hold altitude as airspeed bleeds off.
- Near the target (~5–10 kt above stall warning), add power to hold altitude and trim.
- Configure as required (gear/flaps), anticipating the pitch/AOA change with each change.
- Hold coordinated flight with steady right rudder; use larger, smoother inputs as the controls go mushy.
- Practice shallow turns, climbs, descents — add power in turns and counter yaw with rudder.
- React immediately to any stall warning by relaxing back pressure to lower the AOA.
- To exit: add power, ease forward to hold altitude as lift builds, clean up, re-trim.
▸Power-off stalls
How this maneuver goes - Airplane Flying Handbook- Clear the area; set landing configuration; hold altitude until speed slows to approach speed.
- Pitch to a normal approach descent attitude at idle power.
- Smoothly raise the nose to induce the stall, wings level and coordinated.
- Hold pitch until the full stall (uncommanded nose-down that can't be arrested).
- At the stall, reduce AOA with nose-down elevator until the stall warning stops.
- Level the wings with aileron, coordinate with rudder (right rudder as power comes in).
- Smoothly add power, return to the flightpath (or positive-rate go-around), retract flaps/gear, avoid a secondary stall.
▸Power-on stalls
How this maneuver goes - Airplane Flying Handbook- Clear the area; set takeoff/climb configuration; slow to normal lift-off speed.
- At lift-off speed, apply takeoff/climb power while rotating into the climb attitude.
- Raise the nose to increase AOA (elevator progressively aft), adding right rudder to stay coordinated.
- Hold until the full stall — recognize by sight, sound, feel.
- At the stall, immediately reduce AOA with nose-down elevator until the warning stops.
- Level the wings with aileron, coordinate with rudder (right rudder for yaw).
- Return to the desired flightpath with adequate airspeed and control, avoiding a secondary stall.
▸Spin awareness
How this maneuver goes - Airplane Flying Handbook- Recognize the setup: stalled wing + yaw (uncoordinated stall), most common in an overshooting base-to-final turn.
- At the first sign of an approaching stall, prevent yaw and hold coordinated flight — averting yaw prevents the spin.
- If a spin begins, recognize it by low constant airspeed and rotation; read direction from the turn coordinator, not the ball.
- Recover at the incipient phase (before 360°): reduce power to idle. `[verify POH]`
- Neutralize the ailerons.
- Apply and hold full rudder opposite the rotation, briskly, until rotation stops.
- Briskly apply forward elevator to break the stall (don't wait for rotation to stop).
- When rotation stops, neutralize rudder, then smoothly raise the nose to level flight. `[verify — always follow the manufacturer's spin recovery procedure]`
Words for this area
- maneuvering
- stall
- airspeeds inappropriate for the conditions
- recovery
- startle effect
- microbursts
- overspeeds
- instrument flight
- Mechanical factors
- Human factors
- asymmetrical flaps
- autothrottles
- vertigo
- spatial disorientation
- task saturation
- annunciations
- autoflight system
- cross-check
- aerodynamic buffet
- Angle of attack indicator
- startle response
- marginal VMC
- aerobatic training
- diversion of attention
- Sensory Overload/Deprivation
- aerobatic category
- startle
- coordinated flight
- counterintuitive control movements
- ADM — aeronautical decision making
- overstressing the airplane
- backside of the power curve
- unload the airplane
- aerobatic-capable airplane
- unplanned excursions
- airplane-based UPRT
- basic airmanship skills
- slipstream effect
- FSTD-based UPRT
- angle of attack
- pre-stall buffeting
- kinesthesia
- multiengine airplanes
- yaw effects
- aileron inputs
- washout
- speedbrakes
- secondary stall
- practical test
- approach/landing phases of flight
- accelerated stall
- aural warning
- uncommanded nose down pitch
- uncommanded rolling motion
- VO — operating maneuvering speed
- stall recognition
- aural alert
- cross-control stall
- stall characteristics
- seat of the pants sensations
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▸Emergency descent
How this maneuver goes - Airplane Flying Handbook- Reduce power to idle and set the propeller to low pitch/high rpm as an aerodynamic brake.
- Roll into a 30–45° bank to hold positive load factor and clear the area below.
- Extend gear and flaps as the manufacturer recommends for maximum drag.
- Descend at the maximum airspeed the configuration allows — below Vne, Vle, Vfe (and Va in turbulence).
- Announce descent intentions on the radio while scanning below for traffic and a landing area.
- Begin recovery high enough to level off safely or set up a precautionary landing.
▸Emergency approach & landing
How this maneuver goes - Airplane Flying Handbook- Lower the nose, establish best glide speed, and trim for it. `[verify best glide speed for make/model]`
- Pick the most suitable landing area within gliding range; commit, and change your mind no more than once.
- Run the engine-failure/restart checklist as time and altitude permit. `[verify against AFM/POH]`
- Plan the approach around wind, field size/slope, and obstacles, leaving margin rather than stretching the glide.
- When the landing is assured, add flaps (and gear per POH/terrain); avoid premature flaps that shorten the glide.
- Before touchdown, shut off fuel, ignition, and master to reduce fire risk (keep master on until no longer needed).
- Touch down at the lowest controllable airspeed, wings level, sink rate under positive control.
- Systems & equipment malfunctions
- Emergency equipment & survival gear
Words for this area
- Emergency Procedures
- precautionary landing
- Psychological Hazards
- Basic Safety Concepts
- rapid deceleration
- survivability
- dispensable structure
- controllable airspeed
- Terrain Selection
- Airplane Configuration
- Terrain Types
- engine failure after takeoff
- confined area
- ground-looping
- emergency descent
- in-flight fire
- asymmetrical flap failure
- Engine Fire
- electrical fire
- Cabin Fire
- Flight Control Malfunction/Failure
- Electrical System
- pitot-static system
- Abnormal Engine Instrument Indication
- Maintaining Airplane Control
- cartwheeling
- aerodynamic brake
- Combined Maneuvers
- Emergency Response Systems
- gliding steep turn
- ballistic parachute
- total flap failure
- asymmetric flap
- asymmetric stall
- flaps-up stall speed
- alternator/generator
- foamed
- attitude instrument flying
- amperage load
- vestibular sense
- squawk 7700
- pitot tubes
- MOAs — military operations areas
- fuel nozzle
- cowl flap
- fingertip pressure
- nose heaviness
- acclimatization
- electronic avionics
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Skills - rate how you're doing
- Weather briefing & go/no-go decision
- Cross-country flight planning
- Weight & balance calculation
- Performance & limitations calculation
- Airworthiness & required documents
This area is about doing, not vocabulary - its words live in the ground areas.
Skills - rate how you're doing
▸Pilotage & dead reckoning
How this maneuver goes - Airplane Flying Handbook- Note the time overhead the departure point and start timing to the first checkpoint.
- Fly the precomputed heading and hold it steady rather than chasing the ground.
- Look ahead and positively identify the next prominent checkpoint by its surrounding features.
- At each checkpoint, note the time, compare to your estimate, and recompute groundspeed.
- Compare track to the course line; if drifted, turn to re-intercept and add a wind-correction angle.
- Revise ETE and fuel remaining for the next leg using the new groundspeed.
- If a checkpoint is missed, hold heading and look for the next one — don't turn to search.
▸Navigation systems (VOR / GPS)
How this maneuver goes - Airplane Flying Handbook- Tune the VOR to the selected station's frequency.
- Identify the station by its Morse/voice ident before relying on it.
- Rotate the OBS until the CDI centers with a TO indication; turn to that heading.
- Hold heading, keep the needle centered, add a wind-correction angle (turn toward the needle to re-intercept).
- Watch for needle fluctuation and a TO→FROM flip to confirm station passage.
- For GPS, select Direct-To the destination/fix and fly the magenta course line. `[verify GPS unit procedures]`
- Monitor GPS distance/ETE/cross-track and cross-check against pilotage or VOR — never rely on one system.
▸Diversion
How this maneuver goes - Airplane Flying Handbook- Recognize the need to divert (weather, malfunction, fuel) and pick the best nearby airport.
- Turn promptly toward the alternate — in an emergency, divert first and compute en route.
- If time allows, start the turn over a prominent ground feature for a known starting point.
- Estimate the magnetic course using a nearby VOR compass rose or a paralleling airway.
- Note the time; use winds aloft to calculate a heading and groundspeed.
- Work out arrival time and fuel required; confirm adequate fuel plus reserve.
- Choose a diversion altitude for terrain, clouds, wind, and reception — and fly the airplane first.
▸Lost procedures
How this maneuver goes - Airplane Flying Handbook- **Climb** — to a safe altitude (traffic/weather permitting) to extend radio, nav, and radar range.
- **Communicate** — call any facility shown on the sectional, or 121.5 if needed.
- **Confess** — tell ATC you're unsure of position; request vectors or a DF steer; squawk 7700 if an emergency.
- **Comply** — follow the vectors and instructions given.
- **Conserve** — set economical power to conserve fuel and extend your options.
- Fix your position — use VOR/GPS to locate yourself and the nearest airport (read a town name off a water tower if low).
This area is about doing, not vocabulary - its words live in the ground areas.
Words for this area
- Airplane Flight Manual
- inoperative equipment
- operating limitations
- limitations
- placard
- wheelbase length
- powerplant
- turning radius
- symbology
- VS1 — stalling speed with landing gear and flaps retracted
- VS0 — stalling speed with landing gear and flaps in the landing configuration
- VYSE — single-engine best rate of climb speed at maximum weight at sea level
- Airspeed
- takeoff power
- Maximum continuous power
- reference datum
- certificated weights
- Flight Limits
- Airworthiness Directive
- ditching
- normal procedures
- Preflight inspection
- balked landing
- engine failure
- Weight and Balance/Equipment List
- Systems Description
- preventive maintenance
- Supplements
- calibrated stall speed
- certificated pilots
- Safety Tips
- Certificate of Aircraft Registration
- AFS-750
- airworthiness certificate
- FSDO — Flight Standards District Office
- Authority and Basis for Issuance
- aircraft maintenance
- Aircraft Inspections
- Instructions for Continued Airworthiness
- annual inspection
- 100-hour inspection
- standard of airworthiness
- certificated repair station
- turbojet/turbopropeller-powered
- Emergency locator transmitter
- maintenance deferral
- altimeter system inspection
- transponder inspection
- deployable automatic type transmitters
- deferral provision
- MMELs — master minimum equipment lists
- Maintenance Entries
- prefabricated fuel lines
- Troubleshooting
- DME — Distance Measuring Equipment
- navigational software databases
- shock struts
- cotter keys
- cowlings
- rib stitching
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Words for this area
- airspace
- Controlled Airspace
- Class a Airspace
- Class B Airspace
- ATC Clearance
- Class C Airspace
- contiguous states
- Class E Airspace
- IAPs — Instrument Approach Procedures
- Class A
- Class B
- FL 600
- Class C
- Uncontrolled Airspace
- Class G Airspace
- Class E
- Special Use Airspace
- Prohibited Area
- Restricted Area
- NACG — National Aeronautical Charting Group
- en route chart
- VFR on top
- IFR clearance
- MOAs — Military Operation Areas
- CFAs — Controlled Firing Areas
- MTR — military training route
- Warning Area
- Military Operations Area
- NSA — National Security Area
- temporary flight restriction
- VFR terminal area
- Camden Ridge MOA
- Class D Airspace
- controlled firing areas (CFAs)
- spotter aircraft
- other airspace areas
- 3 NM
- IFR separation
- published VFR routes
- LAA — Local Airport Advisory
- DVFR — Defense VFR
- MTRs — Military Training Routes
- VFR sectional charts
- VOR/DME
- tethered balloons
- IR
- VR
- IR1206
- VR1207
- IR206
- VR207
- VFR flyway
- VFR corridor
- terminal area VFR route
- terminal area charts
- Terminal radar service areas (TRSA)
- ICAO Documents
- ARINC — Aeronautical Radio Incorporated
- Basic VFR Weather Minimums
- Special VFR Weather Minimums
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Skills - rate how you're doing
▸Straight-and-level flight (instruments)
How this maneuver goes - Airplane Flying Handbook- Establish a level-flight pitch and power setting, then trim.
- Cross-check attitude indicator, altimeter, VSI for pitch; correct small deviations on the attitude indicator.
- Cross-check attitude indicator, heading indicator, turn coordinator to keep wings level and heading constant.
- Cross-check airspeed, adjusting power to hold the target.
- Small smooth inputs, re-trim to hold altitude/heading hands-off.
- Continue the scan, avoiding fixation, correcting before deviations grow.
▸Constant-airspeed climbs & descents (instruments)
How this maneuver goes - Airplane Flying Handbook- From level flight, adjust pitch on the attitude indicator and set climb/descent power together.
- Cross-check airspeed; refine pitch to hold the target airspeed.
- Cross-check attitude indicator, heading indicator, turn coordinator to hold wings level/heading.
- Trim once airspeed/vertical speed stabilize.
- Lead the level-off by adjusting pitch, then set cruise power and re-trim.
- Cross-check altimeter, airspeed, VSI to confirm the level-off.
▸Turns to headings (instruments)
How this maneuver goes - Airplane Flying Handbook- Note the target heading and shorter direction of turn.
- Roll to the desired bank on the attitude indicator (standard-rate / ≤~25–30°), confirm rate on the turn coordinator.
- Cross-check attitude indicator, altimeter, VSI to hold altitude (slight back-pressure for the bank).
- Scan the heading indicator; lead the rollout by ~half the bank angle.
- Roll smoothly to wings level, stopping on the target heading.
- Cross-check heading indicator, attitude indicator, altimeter; re-trim.
▸Recovery from unusual flight attitudes
How this maneuver goes - Airplane Flying Handbook- Recognize the attitude on the attitude indicator, confirm against airspeed trend/altimeter/VSI; disconnect autopilot.
- **Nose-high** (airspeed decreasing): add power, forward-elevator to lower the nose/reduce AOA, and roll to wings level (coordinated) on the attitude indicator.
- **Nose-low** (airspeed increasing — spiral dive): reduce power toward idle.
- Nose-low: apply small forward-elevator to unload to ~+1G before rolling (don't aggravate the dive with aft-elevator).
- Nose-low: roll to wings level (coordinated) — complete the roll before raising the nose.
- Nose-low: gently raise the nose to level to avoid over-stressing the airframe; add climb power as airspeed stabilizes.
- Return to a normal cross-check and straight-and-level, avoiding a secondary stall or over-control.
Words for this area
- control instruments
- performance instruments
- calibrated
- navigation instruments
- Attitude Control
- declutter
- CDI
- FMS
- fuselage dot
- bank control
- vertical (yaw) axis
- trim control
- reversionary displays
- XPDR — Transponder
- servo-assisted
- .5 (½ of a thousand or 500 fpm)
- rapid change in airspeed
- glideslope indicator
- Pitch Attitude Instrument Cross-Check
- magnetic compass
- engine instruments
- airplane trim
- multiengine airplane
- yaw axes
- helicopter trim
- cyclic-centering button
- cyclic pressures
- primary bank
- fundamental skills
- instrument cross-check
- primary pitch
- instrument interpretation
- positive control responses
- prescribed flightpath
- airspeed trend
- Common Cross-Check Errors
- precession error
- CRS
- HDG
- MFD — Multifunction display
- VOR/NDB
- adjust
- NAV frequency window
- NAV controls
- glideslope/vertical guidance indicator
- GPS/NDB
- DME tuning window
- 5-degree increments
- bank axis
- primary yaw
- instantaneous indication
- scanning techniques
- inset map
- trend indicators
- timed turn
- pitch
- attitude gyro
- heading indicator
- straight-and-level flight
- attitude indicator
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Skills - rate how you're doing
- Night preparation & equipment
- Night local flight
- Night cross-country
Words for this area
- Air Almanac
- sole manipulator of the controls
- certificated
- night vision
- dilation
- photosensitive
- photosensitive cells
- macula
- occipital lobes
- foveal cones
- myopia
- searchlights
- hyperopia
- astigmatism
- nearsightedness
- presbyopia
- farsightedness
- refractive eye disorders
- monovision contact lenses
- Hertz
- low barometric pressure
- windscreen haze
- LED — light-emitting diode
- flickering light
- Night Illusions
- taxiway edge lighting system
- incandescent
- VFR flight at night
- IFR Flight
- centerline lighting
- maximum allowable power
- dual peaked (two quick) white flashes
- IMC
- hazardous to aerial navigation
- nonprecision instrument approach
- downwind landing
- chuckholes
- Orientation and Navigation
- Night Emergencies
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Skills - rate how you're doing
- After-landing procedures
- Parking & securing
Words for this area
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Words for this area
- cloudiness
- atmosphere
- troposphere
- stratosphere
- mesosphere
- thermosphere
- atmospheric circulation
- convection
- atmospheric pressure
- Coriolis force
- air mass
- northeasterly trade winds
- prevailing westerly winds
- conterminous United States
- frictional force
- mercurial barometer
- prevailing upper level westerly winds
- aneroid cell
- aircraft altimeter
- incapacitation
- convective currents
- anticyclonic circulation
- cyclonic circulation
- tailwinds
- updrafts
- cumulus
- cumulus cloud layers
- ballooning effect
- wind gusts
- ground topography
- windward
- leeward
- windward side
- Wind Shear
- headwind losses
- low-level wind shear
- temperature inversion
- Microburst
- VIRGA
- ASR-9 WSP
- isobars
- atmospheric stability
- adiabatic heating
- adiabatic cooling
- front
- pennant
- surface analysis
- convective activity
- dry adiabatic lapse rate
- moist adiabatic lapse rate
- inversion layer
- frontal inversions
- evaporation
- Sublimation
- condensation
- latent heat of evaporation
- Relative humidity
- unsaturated air
- Visibility
- fog
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Words for this area
- airmen
- Rotorcraft
- gyroplane
- utility category
- acrobatic category
- aerodynamics
- airworthiness standards
- normal category
- acrobatic
- transport category
- standard airworthiness certificate
- Special airworthiness certificate
- type certificated
- provisional airworthiness certificate
- consensus of standards
- airframe
- conformity inspection
- CG — center of gravity
- CL — center of lift
- unaccelerated flight
- longitudinal axis
- relative wind
- monoplane
- roll axis
- lateral axis
- cantilever
- pitch axis
- vertical axis
- yaw axis
- dynamically unstable
- fuselage
- trailing edge
- wing
- empennage
- open truss structure
- Monocoque
- aerodynamic forces
- semimonocoque
- airfoil
- wing struts
- semi-cantilever
- Cantilever wing
- spar
- stringers
- AOA — angle of attack
- billowing
- vertical stabilizer
- horizontal stabilizer
- aircraft/powerplant combination
- control wheel
- APUs — auxiliary power units
- Antiservo tab
- Kevlar™
- tensile strength
- Truss Structure
- compressive strength
- tricycle gear
- well-braced framework
- unibody
- nacelle
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Words for this area
- Viscosity
- Friction
- argon
- millibars
- inches of mercury
- "Hg
- nonstandard temperature and pressure
- SDP — standard datum plane
- barometer
- Barometric scale
- 29.92 "Hg
- Indicated Altitude
- Altimeter Setting
- flight levels
- aerodynamic performance
- air density
- ICAO Standard Atmosphere
- Newton's Basic Laws of Motion
- law of universal gravitation
- inertia
- Bernoulli's Principle of Differential Pressure
- deceleration
- Airfoil Design
- Bernoulli's principle
- venturi tube
- constriction
- camber
- Kreuger flaps
- universal gravitation
- concave
- streamlined
- Clark 'Y' airfoil
- laminar flow airfoil
- circular arc airfoil
- double wedge airfoil
- Low Pressure Above
- supersonic
- downwash
- streamlined object
- Stagnation point
- teardrop
- High Pressure Below
- aerodynamic force
- aerodynamic balance
- Symmetrical airfoil
- airfoil profile
- deflection
- Airfoil Behavior
- winglets
- taper
- A Third Dimension
- Effect of Pressure on Density
- concave airfoil
- Early airfoil
- Later airfoil
- pressure distribution
- controllability
- symmetrical wings
- symmetrical rotor blades
- airfoil tip
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Words for this area
- aircraft performance
- takeoff
- endurance
- landing
- pressure altitude
- density altitude
- Structure of the Atmosphere
- Fahrenheit
- 1013.2 millibars
- Celsius
- molecular cohesion
- density altitude chart
- Effect of Temperature on Density
- Effect of Humidity (Moisture) on Density
- rate of climb
- aerodynamic configuration
- minimum level flight airspeed
- climb performance
- kilowatts
- kw — kilowatts
- angle of climb
- VX
- VY
- propulsive power
- compressibility effects
- supercharging
- region of reversed command
- unaccelerated condition
- rate of acceleration/deceleration
- Runway Surface and Gradient
- Airport/Facility Directory
- grooved
- minimum hydroplaning speed
- hydroplaning speed
- aerodynamic braking
- lift-off speed
- minimum dynamic hydroplaning speed
- turbofan engine
- continuous peak deceleration
- unsupercharged reciprocating engine
- supercharged reciprocating engine
- thrust reversers
- retarding force
- Crosswinds
- energy dissipation
- IAS — the speed of the aircraft as observed on the ASI
- CAS — the ASI reading corrected for position (or installation) and instrument errors
- VS1 — the calibrated power-off stalling speed or the minimum steady flight speed at which the aircraft is controllable in a specified configuration
- VFE — the highest speed permissible with the wing flaps in a prescribed extended position
- VA — the calibrated design maneuvering airspeed
- EAS — equivalent airspeed
- adiabatic compressible flow
- antilock braking
- performance speeds
- design maneuvering airspeed
- PPH — pounds per hour
- KIAS
- interpolation
- takeoff charts
- 50 ft OBS
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Words for this area
- lateral unbalance
- longitudinal unbalance
- hazardous flight operations
- preflight planning
- stability
- fuselage centerline
- out-of-streamline condition
- aerodynamic efficiency
- laterally unbalanced condition
- minimum airspeed
- approved AFM
- reference datum line
- datum (reference datum)
- tank sumps
- unusable fuel
- undrainable oil
- pound-inches (in-lb)
- fixed ballast
- mean aerodynamic chord (MAC)
- ballast
- drainable oil
- maximum allowable gross weight
- datum reference
- positive inches
- negative inches
- fulcrum
- minus inches
- computational method
- graph method
- table method
- loading schedule placard
- interpolate
- weight shifting
- subtotal ramp weight
- weight addition or removal
- –³CG
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Words for this area
- Dead Reckoning
- VFR terminal area chart
- TAC
- World Aeronautical Chart
- World Aeronautical
- Aeronautical Navigation Products
- Latitude and Longitude (Meridians and Parallels)
- equator
- Measurement of Direction
- reciprocal
- magnetic variation
- Deviation
- Variation
- magnetic heading
- magnetic deviation
- Effect of Wind
- Basic Calculations
- Converting Minutes to Equivalent Hours
- Time T = D/GS
- Distance D = GS X T
- GS GS = D/T
- Converting Knots to Miles Per Hour
- fuel consumption
- E6B
- plotter
- protractor
- Wind Triangle or Vector Analysis
- vector analysis
- Weather Check
- AFM/POH — Airplane Flight Manual or Pilot's Operating Handbook
- NOTAMs — Notices to Airmen
- aeronautical advisory station frequency
- Charting the Course
- course deviation indicator
- Isogonic line
- very high frequency omnidirectional range
- NAVAIDs — navigation aids
- omnidirectional range
- ground-based navigation
- VOT — VOR test facility
- omniranges
- OBS — omnibearing selector
- course selector
- azimuth dial
- VOR/VORTAC NAVAIDS
- dual VOR receiver check
- omninavigation instrument
- CDI needle
- VOR/LOC — VOR/Localizer
- NAV warning flag
- HDG flag
- directional gyro
- pointer function switches
- tracking
- slant-range distance
- course intercept
- rate of intercept
- angle of intercept
- slant range distance
- distance measuring equipment
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Words for this area
- Automatic Dependent Surveillance—Broadcast (ADS-B)
- clearance bar lights
- kHz
- MHz — megahertz
- restricted radiotelephone permit
- Aeronautical Mobile Service
- phonetic alphabet
- radarscope
- Transponder
- Interrogator
- Radar
- attenuated
- ATCRBS — ATC radar beacon system
- Azimuth
- Primary Radar
- Stop Altitude Squawk
- SQUAWK Altitude
- SQUAWK Low/Normal
- SQUAWK Standby
- squawk
- MODE A/3
- Ident
- transponder code
- SQUAWK VFR
- SQUAWK Mayday
- Sectional Aeronautical Charts
- Radar Traffic Advisories
- FIS-B — Flight Information Services–Broadcast
- GPS
- TIS-B — Traffic Information Services–Broadcast
- extended squitter
- 1090ES
- ATC Instructions—Explicit Runway Crossing
- ATC Instructions—"Hold Short"
- unrestricted low approach
- ATC Instructions—"Runway Shortened"
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Words for this area
- aeromedical factors
- paraplegia
- diabetes mellitus
- hypoglycemic
- angina pectoris
- disqualifying medical conditions
- myocardial infarction
- permanent cardiac pacemaker
- oral hypoglycemic medication
- psychosis
- transient loss of control of nervous system function(s)
- CO2 — carbon dioxide
- Parkinson's disease
- multiple sclerosis
- hypoxia
- Hyperventilation
- motion sickness
- CO — carbon monoxide
- inflight emergencies
- heatstroke
- middle ear and sinus problems
- Hypoxic hypoxia
- hypemic hypoxia
- stagnant hypoxia
- histotoxic hypoxia
- carbon dioxide intoxication
- tachycardia
- cardiac arrhythmia
- hemoglobin
- anemia
- ischemia
- convulsions
- pressurization
- cyanosis
- euphoria
- vestibular illusions
- narcotics
- cyanide
- drowsiness
- tingling
- excessive rate and depth of respiration
- Valsalva technique
- frontal sinus
- maxillary sinus
- Eustachian tube
- eardrum
- sinus block
- decongestant
- sinusitis
- auditory canal
- Valsalva maneuver
- vestibular system
- somatosensory system
- semicircular canals
- vestibular nerve
- utricle
- saccule
- otolith organ
- endolymph fluid
- ampulla
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Words for this area
- Crew Resource Management
- recurrency training
- ATC — Air Traffic Control
- RM — risk management
- controlled flight into terrain
- ADM training
- leading edge
- benefits outweigh dangers
- Impulsivity
- Invulnerability
- Macho
- antidote
- good visual flight rules
- IMC — Instrument Meteorological Conditions
- tarmac
- Beechcraft King Air
- CFI — Certificated Flight Instructor
- recency
- VASI/PAPI
- ILS — Instrument Landing System
- Glideslope
- NOTAM — notices to airmen
- MEFs — maximum elevation figures
- risk assessment matrix
- PIC — pilot in command
- get-home-itis
- SOPs — standard operating procedures
- NAVAIDs — navigational aids
- VFR and IFR charts
- AMTs — aviation maintenance technicians
- anthropometry
- let's-go-itis
- nose wheel steering tiller
- P = Pilot in Command (PIC)
- ATIS — Automated Terminal Information Service
- Missed Approach
- FSS — Flight Service Station
- external pressure
- Mitigating Risk
- The 5 Ps Check
- VMC — Visual Meteorological Conditions
- AIRMET SIERRA
- VASI
- PAPI
- C182 Skylane
- TFRs — Temporary Flight Restrictions
- get-there-itis
- VFR flight plan
- VFR flight following
- VORTAC
- post-flight analysis
- Perceive, Process, Perform (3P) Model
- checkride
- P-factor
- asymmetrical thrust
- CARE
- TEAM
- Scud Running
- continuing VFR into instrument conditions
- datalink weather
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