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The less air resistance the faster he can go. By pointing his face or feet down and holding his arms close to his body he minimizes air resistance and falls faster. By positioning his body parallel to the ground and spreading out his limbs he maximizes air resistance and will fall slower.

The type of clothing worn also has an effect. A loose fitting fabric jumpsuit will tend to reduce terminal velocity and a tight fitting nylon jumpsuit will increase it.

Some jumpers wear lead weight to adjust their fallrate. This is usually so slim light jumpers can match their fallrate with heavier jumpers.

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Q: How Can A Skydiver Increase his or her terminal velocity?
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A skydiver steps from a helicopter and falls for 5 seconds before reaching her terminal velocity During this 5 second interval her acceleration will?

increase- your speed will increase until terminal velocity is reached. From there it will stay constant.


Why won't a skydiver's speed continue to increase until his or her parachute opens?

Once a skydiver jumps off the plane, they will begin picking up speed. However, as the speed of the skydiver increases, the amount of air resistance acting upon them will also increase. The skydiver will continue to accelerate while his or her weight is greater than the air resistance. When the force of the air resistance becomes equal to the weight of the skydiver, the skydiver will stop accelerating and will continue falling at a constant speed, this is known as the terminal velocity. While travelling at terminal velocity, the skydiver will be able to adjust his or her body position in a way that will increase or decrease the air resistance and allow the diver to alter their speed. Releasing his or her parachute will drastically increase the amount of air resistance and therefore slow their descent significantly.


A skydiver who weighs 500 N reaches terminal velocity of 90kmh the air resistance on the diver is then?

250N


Is it true that the steady speed reached by a skydiver is called the terminal velocity?

Yes. Not just a skydiver; anything that falls long enough will eventually reach "terminal velocity", which means that it will continue falling at a constant speed, because the force of gravity and the force of air resistance are in balance.


A skydiver steps from a helicopter and falls for 5 seconds before reaching her terminal velocity during this 5 second interval her acceleration?

the crate will reach terminal velocity last, but hit the ground frist.

Related questions

How does a skydiver increase his or her terminal velocity?

adding weight and by decresing air recistance


A skydiver steps from a helicopter and falls for 5 seconds before reaching her terminal velocity During this 5 second interval her acceleration will?

increase- your speed will increase until terminal velocity is reached. From there it will stay constant.


what force is increased after the skydiver open parachute?

To start with there is gravitational attraction. As soon as the skydiver starts falling, (s)he will experience the drag force due to air resistance. The gravitational force is essentially constant but the drag increases as the diver's velocity increases until it equals gravity. The diver is the falling at terminal velocity and will continue to do so until the parachute is operated.


Why won't a skydiver's speed continue to increase until his or her parachute opens?

Once a skydiver jumps off the plane, they will begin picking up speed. However, as the speed of the skydiver increases, the amount of air resistance acting upon them will also increase. The skydiver will continue to accelerate while his or her weight is greater than the air resistance. When the force of the air resistance becomes equal to the weight of the skydiver, the skydiver will stop accelerating and will continue falling at a constant speed, this is known as the terminal velocity. While travelling at terminal velocity, the skydiver will be able to adjust his or her body position in a way that will increase or decrease the air resistance and allow the diver to alter their speed. Releasing his or her parachute will drastically increase the amount of air resistance and therefore slow their descent significantly.


What happens to a skydiver before they open their parachute?

They jump out of the plane and accelerate to terminal velocity.


How could a skydiver increase a his or her terminal velocity?

The more streamlined the body, the less the air resistance, and the greater the speed. Carrying a heavy weight would also help. Whilst performing the sky dive on Jupiter would also increase the terminal velocity, (because of greater g) it would cost too much to do it.


A skydiver who weighs 500 N reaches terminal velocity of 90kmh the air resistance on the diver is then?

250N


Is it true that the steady speed reached by a skydiver is called the terminal velocity?

Yes. Not just a skydiver; anything that falls long enough will eventually reach "terminal velocity", which means that it will continue falling at a constant speed, because the force of gravity and the force of air resistance are in balance.


A skydiver steps from a helicopter and falls for 5 seconds before reaching her terminal velocity during this 5 second interval her acceleration?

the crate will reach terminal velocity last, but hit the ground frist.


Is it possible for the sky diver in this picture to be falling at a constant velocity?

Any skydiver can fall at a constant velocity. This is called the, "Terminal velocity". Since we do not have the picture that you mention, nothing more can be assumed.


How much air resistance acts on a 500 N skydiver that falls at her terminal velocity?

500 N is pressumably the weight, due to gravity. "Terminal velocity" means that the forces are in balance; the total force acting on the skydiver are zero. This is only possible if there is a 500 N force due to friction, to counteract the weight.


What is a skydivers velocity after 2 seconds?

Acceleration due to gravity is 9.8m/s/s, which is the same as 9.8m/s2. An acceleration of 9.8m/s/s means that with each passing second, the velocity of the skydiver increases by 9.8m/s. Therefore, after two seconds. a skydiver's velocity would be 19.6m/s. The acceleration will continue at 9.8m/s/s until the skydiver reaches terminal velocity, at which point the weight of the skydiver and the air resistance will be balanced, so the net force acting on the skydiver will be zero, at which point there will be no further acceleration.