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Yes, that is known as the terminal velocity. At that speed, the air resistance (pulling up) would be in equilibrium with the gravitation (pulling down), so there is no further acceleration. The terminal velocity depends on the object's size and shape. In general, heavier objects will fall faster.

Yes, that is known as the terminal velocity. At that speed, the air resistance (pulling up) would be in equilibrium with the gravitation (pulling down), so there is no further acceleration. The terminal velocity depends on the object's size and shape. In general, heavier objects will fall faster.

Yes, that is known as the terminal velocity. At that speed, the air resistance (pulling up) would be in equilibrium with the gravitation (pulling down), so there is no further acceleration. The terminal velocity depends on the object's size and shape. In general, heavier objects will fall faster.

Yes, that is known as the terminal velocity. At that speed, the air resistance (pulling up) would be in equilibrium with the gravitation (pulling down), so there is no further acceleration. The terminal velocity depends on the object's size and shape. In general, heavier objects will fall faster.

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14y ago
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11y ago

In the case of Earth, it's about 11.2 kilometers per second.

That same number is called the 'escape speed' or 'escape velocity'

for a launch from Earth.

If an object way out there at infinity started being drawn to the Earth

by Earth's gravity, then when it finally arrived here, it would be falling

at 11.2 km/sec when it hit the ground. And if you want to toss a spacecraft

off the launch pad hard enough so that it escapes the Earth's gravity

and never falls back, it needs to launch at that same speed.

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14y ago

Yes, that is known as the terminal velocity. At that speed, the air resistance (pulling up) would be in equilibrium with the gravitation (pulling down), so there is no further acceleration. The terminal velocity depends on the object's size and shape. In general, heavier objects will fall faster.

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Q: Is there a maximum speed an object can achieve if dropped from a great height and if so what is it?
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What is the kinetic energy of an object weighing 65 kg dropped from a height of 40m?

Kinetic energy is dependent on which point you are talking about. When it is about to be dropped, kinetic energy is zero. When it reaches almost hits the ground, there is maximum kinetic energy.


What happens to the object's potential energy when it is dropped?

When an object is dropped, its potential energy decreases. This is because potential energy is a result of an object's position or height above the ground. As the object falls, it loses height, which leads to a decrease in potential energy. At the same time, the object gains kinetic energy, which is the energy of motion.


How could you determine if it will take the same time for the lighter and heavier object to reach the ground when dropped at the same height in the same time?

drop a heavy object and a light object from the same height at the same time. time it with a stopwatch, or just watch them.


The amount of gravitaional potential energy that an object has depends on its weight and?

On the object's weight and height above the chosen reference level (for example, above ground level).On the object's weight and height above the chosen reference level (for example, above ground level).On the object's weight and height above the chosen reference level (for example, above ground level).On the object's weight and height above the chosen reference level (for example, above ground level).


A small object is able to remain suspended when dropped into a container of water. What does this tell you about the object's density in relation to the density of water?

It means that the object has an equal density to the water.

Related questions

How high an object bounces depends on?

the height from which it was dropped


Why does an object dropped from a certain height have more than twice the speed of an object dropped from half the height of the previous object?

Because they undergo an acceleration. Free fall velocity is the function of a square.


What is the kinetic energy of an object weighing 65 kg dropped from a height of 40m?

Kinetic energy is dependent on which point you are talking about. When it is about to be dropped, kinetic energy is zero. When it reaches almost hits the ground, there is maximum kinetic energy.


What would have the most potential energy?

Potential energy is the amount of energy stored in an object due to its height. This is maximum for an object which has maximum height and vice versa. So the most potential energy would be for object with greatest height.


An object with a mass of fifteen kilograms is dropped from a building neglecting friction which is the buildings height?

It's not possible to calculate the answer with the information given.An object with a mass of 15 kg can be dropped from a building of any height.


When an object ids dropped from a height it accelerates when it fall down name the force which accelerates the object?

That is called gravity.


An object is dropped from rest at a height of 128 m. Find the distance it falls during its final second in the air.?

If an object is dropped from rest at a height of 128 m, the distance it falls during its final second in the air is still 128 m.


How long will it take an object dropped from a height of 500 feet to hit the ground?

4 seconds


How will a package look after it was dropped from an airplane?

That would depend on the package, its contents and how it is wrapped. An empty, sturdy box will soon achieve terminal speed and look much like the box would after being dropped from a height of a few meters. A poorly wrapped heavy object would be seriously damaged.


What happens to the object's potential energy when it is dropped?

When an object is dropped, its potential energy decreases. This is because potential energy is a result of an object's position or height above the ground. As the object falls, it loses height, which leads to a decrease in potential energy. At the same time, the object gains kinetic energy, which is the energy of motion.


What is the minimum velocity required to project a body from a height h so that it will not fall back on earth?

if it was a continuous velocity then 10mps i guess because that is the terminal velocity when an object is dropped this is another person who answer actuallyn you are wrong terminal velocity is the maximum


How could you determine if it will take the same time for the lighter and heavier object to reach the ground when dropped at the same height in the same time?

drop a heavy object and a light object from the same height at the same time. time it with a stopwatch, or just watch them.