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Can a plane stop in air before landing?

Techincally, there is only one way for the aircraft to remain hanging motionless in the air: if weight and lift cancel each other out perfectly, and at the same time thrust and drag cancel each other out too. But this is incredibly rare. To stay in the air and sustain its flight, an aircraft needs to be moving forward.



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The planes aren't stuck in the sky - such an incident would no doubt be alarming to all the passengers on board. What's most likely happening is that the plane is caught up in very strong headwinds - this is the wind that blows against an object in travel - which results in it moving very slowly.

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In the event of an engine malfunction, the recognition of a significant abnormality, or an ATC instruction to stop the aircraft during the take off roll, transport aircraft in Performance Category 'A' should be able to safely reject the take off if the decision to do so is made at a speed not greater than the correctly ...

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Landing. While landing, speed is largely affected by the aircrafts current weight, commercial airplanes typically land between 130 and 160 mph (112 to 156 knots).

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Wreckage from the crash of two airplanes mid-air is visible at Lake Hartridge in Winter Haven. The pilots of two small airplanes that collided mid-air in Florida Tuesday may not have been aware that the other was nearby when they crashed into each other, according to an air safety inspector.

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Turbulence, which causes planes to suddenly jolt while in flight, is considered a fairly normal occurrence and nothing to fear. The movement is caused by atmospheric pressure, jet streams, air around mountains, cold or warm weather fronts, or thunderstorms, according to The Federal Aviation Administration.

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On December 16, 1960, a United Airlines Douglas DC-8 bound for Idlewild Airport (now John F. Kennedy International Airport) in New York City collided in midair with a TWA Lockheed L-1049 Super Constellation descending toward LaGuardia Airport.

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Slowest aircraft The Ruppert Archaeopteryx has a certified stall speed of 30–39 kilometres per hour (19–24 mph). The Vought XF5U can fly as slow as 32 kilometres per hour (20 mph). The Tapanee Pegazair-100 stall speed is 45 kilometres per hour (28 mph).

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In order for a plane to take off, it must be going fast enough for the wings to generate enough lift to overcome the force of weight. A Boeing 747 under standard conditions must be going 296kph (184 mph) to take off. Additionally, weather factors can affect the ground speed need for takeoff.

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With this in mind, horizontal winds (also known as “crosswinds”) in excess of 30-35 kts (about 34-40 mph) are generally prohibitive of take-off and landing.

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Night flight restrictions There are two time periods: 23:00 - 07:00 and 23:30 - 06:00 both with restrictions on certain types of aircraft; The more restrictive period (23:30 - 06:00) is known as the Night Quota Period (NQP) and has limits on the number of movements which are set by the DfT.

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Planes have headlights so that pilots can see what is in front of them. Unfortunately, they are only effective during takeoffs and landings. Even with the slight illumination offered by the headlights, only darkness is visible when looking out the front window of a cockpit.

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So overall, turning off the lights during takeoff and landing is a necessary measure to improve visibility and safety for pilots, ATC controllers and passengers. It is an important part of the safety protocols that help ensure air travel is as safe as possible.

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Transferring too much weight onto the nosewheel causes a situation called wheelbarrowing, which can lead to a loss of directional control, prop strike, or nose gear collapse. On top of those problems, with little to no weight on your main landing gear, you have little braking action.

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The MLW is set in order to ensure safe landings; if an aircraft weighs too heavy during touchdown, it may suffer structural damage or even break apart upon landing.

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If anything goes wrong, the likely result is a runway accident, which can have deadly consequences. According to a study published by Boeing Commercial Airplanes, nearly half of all aviation accidents occur during the final approach or landing and 14 percent occur during takeoff or initial climb.

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As the plane descends into ground effect, it may actually accelerate if the engines are producing enough thrust, since in ground effect the plane requires much less power to keep flying. Power from the engines will translate into speed, if not height.

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