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What is the takeoff speed of a fully loaded 747?

What speed does a Boeing 747 take off at? A fully loaded Boeing 747 'Jumbo Jet' on a normal long haul flight would take off at a speed of around 160 knots which is 184 mph. The calculated take-off speeds vary depending on environmental conditions, runway length and weight.



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The chart notes that if a Boeing 747-400 had an operational landing weight of 475,000 lbs (215,456 kg) and wanted to land at a runway located at sea level, then the suggested runway length would be a little over 1,500 meters, or roughly 5,000 feet.

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Absolutely. Pretty much any airplane can easily fly in 25 mph winds. If that is a direct crosswind that might make landing smaller aircraft more challenging, but airliners, no problems.

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There is no single maximum wind limit as it depends on the direction of wind and phase of flight. A crosswind above about 40mph and tailwind above 10mph can start to cause problems and stop commercial jets taking off and landing. It can sometimes be too windy to take-off or land.

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Yes, a 'plane can land in 50 mph winds. Specifically, different airlines will set the parameters for maximum crosswind factors flight crews can land in and not all airlines have the same criteria. The B-52 can. The wings are so long it could easily hit the ground in a crosswind landing.

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On average, the typical cruising speed of a large commercial aircraft, like a Boeing 747, is somewhere between 475 and 500 knots (roughly 575 mph). So what is the cruising speed of a 747? Depending on passenger load, the average cruise speed of a 747 is 490 nautical miles or Mach 0.85.

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But seriously, as stated previously, the typical take-off speed is between 150-170 knots, or just under 200 mph.

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The top speed of the Boeing 747 itself is about 570 mph, and this flight maxed out at 825 mph. The difference between “ground speed” (zero bonus) and “air speed” (200+ mph bonus) is also why this speed, while technically faster than the speed of sound, didn't ever go supersonic.

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Different airplanes have different maximum altitudes, depending on their construction. For example, the Airbus A320 has a maximum altitude of 39,000 feet (11,900m) and the Boeing 747 45,000 feet (13,700m).

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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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Aeroplanes are made to run on the runway before take off, so that they acquire the necessary lift.

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An American Airlines Boeing 787 accelerates from rest to lift-off speed of 75.01 m/s in 29.20 s. Each of the plane's two jet engines provides a forward force (thrust) of 111.00 kN.

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For some airlines, the A380 offered too much capacity, while for Emirates, the airline can't get enough of the plane. Unfortunately for Emirates (and us passengers), the days of the Airbus A380 are numbered. Airbus stopped A380 production in 2021, as there weren't sufficient orders to keep production going.

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Also known as the Queen of the Skies, the 747 boasts a maximum fuel capacity of 63,000 gallons with slight variations between models. With today's fuel prices, it costs about $450,000 to fill up a Boeing 747, depending on your market.

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But after five decades, customer demand for the 747 eroded as Boeing and Airbus (AIR.PA) developed more fuel efficient two-engine widebody planes. When Boeing confirmed in July 2020 that it would end 747 production, it was already only producing at a rate of half an aircraft a month.

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Rain is just water, no matter the pressure. Modern aircraft can generate lift regardless of the heaviness of the rain. Planes can and will take off and land in the rain. The only real problem with heavy rainfall is the decrease in visibility for the pilots.

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Wind speed and direction – key parameters for flight safety During take-offs and landings, wind speed higher than 30 KT (approximately 55 km/h) is considered dangerous. Most communication airports indicate this value as a criterion for issuing an airport warning, distinguishing between the mean wind speed and gusts.

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