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Drag is a crucial aerodynamic force that helps control flight by opposing thrust and reducing speed. It allows pilots to manage altitude and descent rates during maneuvers, such as landing or slowing down. By manipulating drag through the use of flaps, slats, or by altering the aircraft's configuration, pilots can achieve better stability and control, enhancing overall safety and performance. Additionally, understanding drag helps in optimizing fuel efficiency during flight.

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4w ago

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Why is drag an important concept in flight?

Drag is a crucial concept in flight as it represents the resistance an aircraft encounters as it moves through the air. Understanding drag helps engineers design more efficient aircraft, allowing them to minimize fuel consumption and improve performance. By managing drag through aerodynamic shapes and surfaces, pilots can enhance stability and control during flight. Ultimately, minimizing drag is essential for achieving optimal lift-to-drag ratios, which are vital for safe and efficient air travel.


Why do birds need drag for flight?

Birds need drag for flight as it helps them control their speed and maneuverability during flight. Drag, which is the resistance encountered as they move through the air, allows birds to slow down and stabilize their descent when landing. Additionally, it aids in maintaining a steady glide, enabling them to efficiently navigate their environment while conserving energy. Overall, drag is essential for achieving balance and precision in their aerial movements.


increase drag on airplane?

Increasing drag on an airplane can be achieved through various means, such as extending flaps or slats, deploying spoilers, or adjusting the angle of attack. This increased drag can be useful during landing and descent phases, allowing for slower speeds and improved control. However, excessive drag can lead to reduced fuel efficiency and performance, so it's essential to manage it carefully. Ultimately, pilots and engineers must balance drag with lift and thrust to maintain optimal flight conditions.


Which forces hinder flight?

drag


What would happen if there was no drag on a plane?

If there were no drag on a plane, it would be able to maintain its speed indefinitely without needing additional thrust, as there would be no air resistance to slow it down. This would allow for more efficient flight, potentially enabling higher speeds and reduced fuel consumption. However, the absence of drag could also lead to challenges in maneuverability and control, as drag plays a role in stabilizing the aircraft during various flight conditions. Overall, while it might seem advantageous, the lack of drag would fundamentally alter flight dynamics.


Explain drag and how it relates to flight.?

Drag is the force that resists an object moving through a fluid, such as air. In the context of flight, drag is the force that acts opposite to the aircraft's direction of motion and is caused by air resistance. Pilots and aircraft designers must consider drag as it affects the performance and efficiency of an aircraft in flight.


How do you control the drag from increasing on aircraft?

using controller to control it.. decrease weight to reduce drag


How does blue jays create drag?

Blue jays create drag primarily through their wing structure and flapping motion during flight. Their broad wings and distinctive feather arrangement can disrupt airflow, increasing resistance as they move through the air. Additionally, their ability to change wing position and angle while in flight allows them to control drag for maneuverability, aiding in their agile flight patterns. This combination of wing design and flight techniques enables blue jays to navigate effectively in various environments.


Olympic runners wear spandex clothing to counteract the same force that also affects airplanes in flight. what force is it?

Drag- APEX :)


What are the 4 aerodynamic forces of flight?

the four forces of flight are lift,drag,weight/gravity and thrust.I have no clue how to describe them.........i hope that helps!


What has the author John A Mulqueen written?

John A. Mulqueen has written: 'Applications of low lift to drag ratio aerobrakes using angle of attack variation for control' -- subject(s): Space flight to the moon, Space flight to Mars


What does flight require?

Flight requires four fundamental aerodynamic forces: lift, weight, thrust, and drag. Lift must overcome weight to elevate the aircraft, while thrust must exceed drag to maintain forward motion. Additionally, a suitable airfoil shape and sufficient speed are essential to generate the necessary lift. Lastly, control surfaces are needed to maneuver and stabilize the aircraft during flight.