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Why do pilots fly above the clouds?

The biggest reason for flying at higher altitudes lies in fuel efficiency. The thin air creates less drag on the aircraft, which means the plane can use less fuel in order to maintain speed. Less wind resistance, more power, less effort, so to speak.



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Numerous accidents have occurred in the vicinity of thunderstorms due to the density of clouds. It is often said that the turbulence can be extreme enough inside a cumulonimbus to tear an aircraft into pieces, and even strong enough to hold a skydiver.

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Pilots have a unique viewpoint while flying private or commercial aircraft. They get an unobstructed view of stunning natural sights, such as pink lakes and rectangular-shaped icebergs. Some have reported seeing UFOs, while others have flown over swirling hurricanes.

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This air should contain more mass per unit volume (that is, higher density fluid). This changes the amount of lift experienced as the plane passes through it. This would produce sudden changes in the amount of lift, causing shaking when entering or exiting the clouds.

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Discussion: In some cases pilots may need to reject a landing due to rapidly deteriorating weather conditions which reduce the visibility required for a safe landing.

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If you ever gazed at the window during a night flight, you'll be welcomed by pitch black darkness. That's why most passengers wonder– how do pilots see at night? The answer is quite simple, no, they don't actually see anything at night.

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This shaking is caused by turbulence. While this might make some uneasy, there is nothing to worry about as modern airplanes are designed to withstand all types of turbulence.

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While rain has a very slim chance of canceling a flight, there can be a minor chance that rain will delay it. 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.

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The reason planes cruise at high altitudes is that they burn less fuel and can fly faster, as the air is less dense. At 30,000 feet and higher, it is also possible for aircraft to avoid weather systems, making it more comfortable onboard.

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But extending the flaps also increases drag and slows the plane down, thereby reducing the control over the aircraft that you want. So to counteract that, pilots will throttle up to maintain speed and control.

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Pilots walk around the aircraft to ensure that the aircraft's exterior is safe and secure. Pilots are looking for various problems such as: Loose parts. Fluid Leaks, such as hydraulic or fuel.

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Two principle reasons: 1. It aids egress, which can be difficult with a jammed door. 2. It allows better energy absorption of the front part of the fuselage, by permitting it to crumple better.

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Turbulence might occur during your flight in rainy weather due to the presence of different air masses mixing together and causing disturbances aloft. Warm and cold air masses interacting with each other can result in turbulent conditions high in the sky, making your flight potentially more uncomfortable.

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In reality, airplanes, especially large airliners, are built with enough strength to withstand almost all naturally occurring turbulence.

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The most important thing to know is that turbulence isn't dangerous. It might be a bit uncomfortable, but your plane is built to handle the worst. Even in the most severe turbulence, your plane isn't moving nearly as much as you think! Much of how we experience turbulence is subjective.

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