generates more lifting force
Greater lift
Generates more lifting force
Increasing an airplane's speed can help it cover more distance in a shorter amount of time and reduce fuel consumption. Increasing the wing size can increase lift and improve stability during flight, allowing the plane to carry heavier loads or fly more efficiently.
Generates more lifting force
They reduce engine speed and extend 'flaps' which allows the wing to keep lift at lower speed.
Wing size, lift, and speed are crucial factors in an airplane's performance. Larger wings generate more lift, enabling the aircraft to take off and maintain flight at lower speeds. However, increased wing size can also lead to greater drag, affecting speed and fuel efficiency. Thus, a balance must be achieved between wing size and speed to optimize an airplane's design for its intended purpose.
There were many different airplanes developed during the war - bombers and fighters. They came in single wing (monoplanes), two wing (biplanes) and three wing (triplane) varieties.
Shape as in the curvature of the wing (camber), Size as in the wing's size, Speed,Thrust , the weight of the aircraft, may be drag too.
The kind of plane that have delta are the airplanes that fly very fast, usually over or near the supersonic speed (faster than the speed of sound). The type of airplanes that have the most delta wings are fighters, and some of the bombers such as the XB-70.
The best way to answer this question would be to say what does effect the lift of a wing. Pretty much the only things that effect the lift of a wing are the density of the air over the wing, the surface area of the wing, the speed of air over the wing and the angle of attack. Everything else has no effect on the amount of lift on a wing.
wings engine and body.Also wing tips