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The lift force on a plane is equal to its weight when it is flying at a constant speed and altitude. This balance is necessary for the plane to maintain level flight. If the lift force becomes greater than the weight, the plane will climb; if the lift force becomes less than the weight, the plane will descend.
When a plane is flying, lift and weight must be balanced to keep the plane level and maintain altitude. Lift is generated by the wings and opposes the force of weight, which is the gravitational force acting on the plane.
The main forces acting on a plane in flight are lift, weight, thrust, and drag. Lift is produced by the wings, opposing the weight of the plane. Thrust is provided by the engines, moving the plane forward and countering drag, which is the aerodynamic force slowing the plane down.
Answers:* Disassemble the plane and load it onto a cargo ship. The ship will sink lower into the water with the plane on board than it was before. The change in freeboard will translate into a tonnage loaded. * Compact the plane into as tight a cube as possible. The volume of the cube multiplied by the density of the main component of the plane (e.g. aluminum) will provide a good estimate of the weight. * Toe the plane down a long runway at increasing speed. At the wind speed that the plane lifts off the back calculation of the engineering for the wings will tell you the "lift" provided. This will equal the weight
When a plane is still on the ground, the main forces acting on it are weight and normal force. Weight is the force due to gravity acting downward, while the normal force is the force exerted by the ground perpendicular to the plane to support its weight. Additionally, there may be frictional forces acting on the wheels to prevent the plane from moving.
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As long as your infant has a plane ticket, their luggage is aloud. However, for certain items you may have to consalt the plane board, or someone at the airport.
The lift force on a plane is equal to its weight when it is flying at a constant speed and altitude. This balance is necessary for the plane to maintain level flight. If the lift force becomes greater than the weight, the plane will climb; if the lift force becomes less than the weight, the plane will descend.
Knee. the 'n' is silent :)
If you were on a plane and had no weight to you you would float in the plane like there was no gravity, even though there is but if the plane was angled precisely you can float in the plane as if gravity was turned off. But this only lasts a few minutes as you come closer to land.
The weight limit for plane seats varies depending on the airline and aircraft. Generally, most seats have a weight limit of around 250-300 pounds per seat. It is important to check with the specific airline for their policies on weight limits for plane seats.
It makes the plane weigh more.
When a plane is flying, lift and weight must be balanced to keep the plane level and maintain altitude. Lift is generated by the wings and opposes the force of weight, which is the gravitational force acting on the plane.
The main forces acting on a plane in flight are lift, weight, thrust, and drag. Lift is produced by the wings, opposing the weight of the plane. Thrust is provided by the engines, moving the plane forward and countering drag, which is the aerodynamic force slowing the plane down.
Answers:* Disassemble the plane and load it onto a cargo ship. The ship will sink lower into the water with the plane on board than it was before. The change in freeboard will translate into a tonnage loaded. * Compact the plane into as tight a cube as possible. The volume of the cube multiplied by the density of the main component of the plane (e.g. aluminum) will provide a good estimate of the weight. * Toe the plane down a long runway at increasing speed. At the wind speed that the plane lifts off the back calculation of the engineering for the wings will tell you the "lift" provided. This will equal the weight