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Q: What happens when objects of identical objects are dropped under different gravitational conditions?
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What happen when identical objects are dropped under different gravitational conditions?

when you drop an identical object in different gravitational conditions it will not have a similar acceleration because the gravity are different.


What happens when idenical objects are dropped under different gravitational conditions?

The stronger gravitational condition would make the object fall faster. The weaker the gravitational condition the slower the object would fall.


What happens when identical objects are dropped on planets with different gravitational conditions?

Without the interference of air or any other force, they should fall at the same speed. All objects accelerate at the same rate regarding their masses. To conclude, If this was made in a vacuum they should fall at the same speed but in different conditions it may have different results due to air resistance.


What happens when two objects with different masses are dropped under the same gravitational conditions?

They'll both hit the ground at the same time.


What would happen if the same objects are dropped under different gravitational conditions?

one object will go slower and one object will go slower


What happen if the same objects are dropped under the same gravitational conditions?

one object will go slower and one object will go slower


What is the gravitational potential energy to a car that is 1500kg and is dropped from 50 meters?

After the car is dropped, it has NO gravitational potential energy.Before it's dropped, you can calculate the potential energy as mgh (mass x gravity x height). You can use 9.8 for gravity.


What would you measure to determine egg's gravitational potential energy?

Gravitational energy is U = mgh. Therefore, you need the egg's mass and the height at which it will be dropped. g=9.8


Will gravitational energy have more or less energy if its dropped higher?

Gravitational energy basically refers to gravitational potential energy. The formula is: GPE = mgh (i.e., mass x gravity x height) In other words at a higher position, an object has more gravitational potential energy. Please note that once an object is dropped, it no longer has such gravitational potential energy. The potential energy is converted to kinetic (movement) energy; which of course will be greater if the initial potential energy was greater.


A stone is thrown upward from a roof at the same time as another identical stone is dropped from there What is true of the two stones?

A) the dropped one hits the ground first B) the tossed one hits harder


When dropped from the same heights why don't all of the beans land in the same location?

it determine the size and the shape that there is gravitational force of beans


What can you use for ballast?

Sandbags work best as they can be dropped overboard if weather conditions deteriorate.