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Will flying ever get faster?

Until we have hypersonic airliners that skip off the top of the Earth's atmosphere, the velocity of most airliners will remain Subsonic. There will be some Business jets in the near future (10 years) that will be flying at or near Mach 2.



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The wings of a 747 are nowhere near strong enough to mount an engine capable of supersonic flight. Generally, engines used in aircraft like the Concorde or the F-22 are skinny and long. They also weigh quite a fair amount, further requiring a complete overhaul of the way the engines would be supported.

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No airplane has ever gone this fast. The speediest airplane ever built is Lockheed's SR-71 Blackbird, which traveled at Mach 3.2. Anything above Mach 9 and you lose communications with the ground, as plasma starts enveloping the vehicle, as if it were a spacecraft returning to Earth through the upper atmosphere.

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Flight faster than sound was thought to be impossible. In fact, the sound barrier was only an increase in the drag near sonic conditions because of compressibility effects. Because of the high drag associated with compressibility effects, aircraft do not cruise near Mach 1.

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In jet aircraft, an overspeed results when the axial compressor exceeds its maximal operating rotational speed. This often leads to the mechanical failure of turbine blades, flameout and total destruction of the engine.

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Because the Earth is a three-dimensional sphere and not merely a two-dimensional flat, East-West surface. Because of this spherical shape, often times the shortest distance is flying more north and south, up over the Northern latitudes and the North Pole, rather than flying east/west over the Pacific.

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Taxi. Limiting the amount of time spent on the ground is the easiest way for pilots to make up for lost time. While the routing in the flight plan has largely determined the time spent flying, taxiing presents an opportunity to erase a delay.

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That means if your plane takes off 35 to 50 minutes after its scheduled departure, you can expect to make up about 20 minutes of that time in the air. But if the delay is any longer than 50 minutes, you shouldn't get your hopes up.

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Hybrid and all-electric planes
Experts believe hybrid and fully battery-powered planes, which offer less range than conventional aircraft, will begin to dominate the short-haul flight sector by 2030, becoming the go-to craft for flights under three hours.

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Fifty years ago, the federal government banned all civilian supersonic flights over land. The rule prohibits non-military aircraft from flying faster than sound so their resulting sonic booms won't startle the public below or concern them about potential property damage.

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Usually, no. The closer to the departure date, the more expensive the price. More seats tend to fill the closer to the departure date. As more tickets sell for any given flight, the demand increases creating a jump in ticket prices.

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When an aircraft experiences turbulence, the plane can drop or change altitude suddenly. This is why pilots always caution passengers to buckle up and stay seated when they are experiencing flight turbulence. The sudden movements put passengers at risk.

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So in summary, the sinking feeling you get after takeoff is a result of your inner ear's response to the sudden change in acceleration and gravity as the plane leaves the ground. It's a completely normal sensation and nothing to be concerned about.

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Shorter flights result in higher carbon emissions per passenger compared to long-haul flights, said an international group concerned about the impact of air pollution and other environmental hazards. “Short-haul flights are the biggest culprits of carbon emissions.

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According to FAR 91.117(a), unless otherwise authorized by the Administrator, no person may operate an aircraft below 10,000 feet MSL at an indicated airspeed of more than 250 knots (288 mph). If you're flying a piston aircraft, this might not mean a lot to you. However, it's an important factor for turbine aircraft.

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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).

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If human manoeuvre that speed Mach 1(1225 Kph), the air friction will increase the body temperature enormously. It will almost boil the body. The strange symptoms including temporary vision loss, loss of consciousness and weightlessness. The turbulence causes parts of the body swell out.

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It hurts,, a lot ! But current ejection systems are designed to operate at any time during an aircrafts envelope, from zero speed and zero altitude to the top speed. arms and legs are often broken or dislocated,, and there is a lot of internal bruising. It's risky, but ejecting at any speed is risky.

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