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How are planes not affected by lightning?

Lightning usually strikes an aircraft on the front side of the plane's cockpit. The edge of the cockpit window is a typical point of impact. The aluminium fuselage of the aircraft conducts electricity well, and due to that, the lightning discharge does not affect the inside of the aircraft.



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What does IATA say about airport lightning rules? The International Air Transport Association (IATA) says to issue lightning alerts at 5 miles (8 km) and stop operations at 3 miles (5 km). They suggest using a 3-mile critical radius and resuming operations once the lightning activity has moved beyond this radius.

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Ultimately, it is usually perfectly safe for planes to fly in storms. Today's aircraft, especially big passenger airplanes, are designed to deal with lightning strikes, rain, and other conditions. Plus, pilots haveextensive training in how to handle storms and can be trusted to make the right call.

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Severe turbulence can cause a plane to drop so suddenly that pilots temporarily lose control. But, again, that's not enough to crash the plane. That's not to say it's never happened. In 1966, human error and turbulence combined to bring a plane down over Mount Fuji.

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The inner pane basically safeguards the load from the passengers during flight. When both the outer and middle panes break, then all the pressurization in the airplane would escape leading to decompression in the passenger cabin. A plane is pressurized for passengers' comfort as it climbs to a higher altitude.

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Reflecting this increase in miles flown, preliminary estimates of the total number of accidents involving a U.S. registered civilian aircraft increased from 1,139 in 2020 to 1,225 in 2021. The number of civil aviation deaths increased from 349 in 2020 to 376 in 2021.

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NCAR's analyses so far determined that lightning-induced ramp closures cause notable air traffic impacts on both departures and arrivals. The inability to ready aircraft for departure during ramp closures will result in a delayed gate pushback time (on average amounting to several tens of minutes per affected fight).

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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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On many aircraft types, pilots can open the side windows in the cockpit. The main reason for this is not for ventilation or vision; it is related to aircraft safety law.

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Families of victims and survivors may bring a lawsuit against the airline or aircraft. In some cases, it may be appropriate to sue a parts manufacturer. The federal government provides support to the families of those injured in airplane crashes.

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The maximum height that a commercial airplane is allowed to reach when they fly is 42,000 feet, as this is the universally approved maximum altitude. This max altitude for airplanes is known as the “service ceiling.” Most commercial air jets fly at such a high altitude because it is known to optimize efficiency.

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Turbulence is a sudden and sometimes violent shift in airflow. Those irregular motions in the atmosphere create air currents that can cause passengers on an airplane to experience annoying bumps during a flight, or it can be severe enough to throw an airplane out of control. (The pilots) aren't scared at all.

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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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You might not even know that we have “slowed” down. Aircraft are fully designed to fly in turbulence. We have turbulence “levels” for our cabin crew as well. You might even hear a PA that commands flight attendants to take an immediate seat.

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With extremely rare accidents, flying has advanced significantly in terms of safety measures and protocols. As discussed previously, in 2022 there were only 5 fatal accidents among 32.2 million flights, which is an infinitesimal percentage of 0.000016%.

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While modern aircraft are capable of flying over, or even through, hurricanes, safety risks remain, and carriers usually halt operations are the affected airports instead.

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