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lift, thrust, drag and weight(gravity)

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What are the forces on a airplane when it is still?

When an airplane is still on the ground, the main forces acting on it are the gravitational force acting downwards and the normal force exerted by the ground acting upwards to support the weight of the airplane. There are typically no aerodynamic forces acting on the airplane until it starts moving.


What are 4 forces acting in an airplane during flight?

The four forces that act on an airplane during flight are lift (upward force generated by the wings), weight (downward force due to gravity), thrust (forward force generated by the engines), and drag (rearward force resisting motion).


List and describe the four forces acting on an airplane during flight?

Lift: Generated by the wings and counteracts the force of gravity, allowing the airplane to stay airborne. Weight: Force of gravity acting on the airplane's mass, pulling it downwards towards the earth. Thrust: Generated by the engines and propels the airplane forward through the air. Drag: Resistance force opposing the airplane's forward motion, caused by friction between the airplane and the air it moves through.


What is the force that counter acts the weight of a airplane?

The force that counteracts the weight of an airplane is lift, which is generated by the wings as the airplane moves through the air. Lift opposes the force of gravity acting on the airplane, allowing it to remain airborne.


What are The four forces acting on an airplane in flight are?

The four forces acting on an airplane in flight are lift, weight (or gravity), thrust, and drag. Lift is generated by the wings and opposes the force of gravity. Thrust is produced by the engines and overcomes the force of drag, which is caused by air resistance.


What are the four forces acting on an airplane?

Lift Gravity Thrust Drag Lift is the lifting force that allows airplanes to fly, gravity is the force pulling it back down. Thrust is the force that propels an airplane forward, drag is the aerodynamic friction slowing it down. These variables are constantly interacting with eachother, when an airplane is in straight and level flight, these forces are said to be in balance.


Why must lift be equal to the force of gravity on an airplane?

For an airplane to maintain level flight, the lift force generated by the wings must equal the force of gravity acting on the airplane. This balance ensures that the airplane neither climbs nor descends while in flight.


Which is the upward force acting on the wing of an airplane in flight?

The upward force acting on the wing of an airplane in flight is called lift. It is generated due to the difference in air pressure between the top and bottom surfaces of the wing caused by the shape of the wing and its angle of attack. This lift force allows the airplane to overcome gravity and stay aloft.


The formula for load or the total force acting on the airplane is l equals gxw?

The formula for load, also known as total force acting on the airplane, is calculated by multiplying the acceleration due to gravity (g) by the weight of the airplane (w). This formula helps in understanding the stress and strain on the airplane during flight due to the influence of gravity.


The upward force acting on the wing of an airplane in flight is called?

The upward force acting on the wing of an airplane in flight is called lift. It is generated by the flow of air over the wing due to differences in air pressure created by the wing's shape and angle of attack.


What is the net force on the model airplane?

The net force on the model airplane is the vector sum of all the forces acting on it, such as lift, weight, thrust, and drag. If the net force is zero, the airplane will remain in a state of constant velocity or at rest, according to Newton's first law of motion.


What is the upward force acting on the wing of an airplane in flight?

The upward force acting on the wing of an airplane is called lift. It is generated by the flow of air over the wing, due to the difference in air pressure between the upper and lower surfaces of the wing. This lift force is what enables the airplane to overcome gravity and stay in the air.