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Showing posts with label gravitation. Show all posts
Showing posts with label gravitation. Show all posts

Wednesday, March 10, 2010

what is the gravitational force?

The gravitational force is an attractive force that a mass exerts on another mass when the former is placed in the latter’s gravitational field.

clip_image001 

Fig 1

In fig 1 above we have two masses m1 and m2 that are situated at a distance r apart. As you know these two masses will create gravitational fields around themselves such that mass M1 will exert a gravitational force F2 on mass M2 while the mass M2 will exert a gravitational force F1 on mass M1. That is each mass will exert a gravitational force on the other mass. 

And from the third law of motion we know that “For every action there is an equal and opposite reaction.

Hence the gravitational force F2 will be equal to the gravitational force F1 .

F1  = F2

If the two forces are equal then they have the same magnitude and as a result

|F1 | = |F2 | = F

We can thus replace F1 and  F2  by F as shown in fig 2 below.

clip_image001[9]

Fig 2

Law of gravitation

In order to calculate the magnitude of the force that each mass will exert on the other the law of gravitation must be used.

It merely states that the gravitational force that the two objects will exert on each other is directly proportional to the product of the two masses and inversely proportional to the square of their distance of separation.

Simply written in an equation it will be as shown below:

clip_image002

Removing the proportionality sign you will obtain the equation below:

clip_image002[4]

Where G is the universal gravitational constant

G = 6.67 x 10-11N m2 kg-2

Example 1

The moon and the earth are separated by a distance of 3.8x 108 m. The mass of the moon is 6.4 x 1022 kg while that of the earth is 6.0x1024 kg. Calculate the gravitational force between the moon.

image

Thursday, January 28, 2010

What is the weight of an object?

Every object has a quantity known as the mass. The mass is simply the quantity of matter that it contains.

When according to the law of gravitation, a mass that is situated inside the gravitational field of the earth would experience an attractive force, a pull, as shown in fig 1 below.

clip_image001

Fig 1

Now this pull on the object is called the weight.

Hence the weight can be defined as the gravitational pull that the earth exerts on an object. 

Since it is gravitational pull it is a  thus a force and its unit is the Newton (N).

The weight is calculated according to the equation below:

weight = mass * acceleration due to gravity

w  = mg 

Example

A stone has a mass of 5.0 kg. Calculate it weight if the acceleration due to gravity is 9.81 m s-2 .

Weight w = mg

               = 5.0 * 9.81

                = 49.05 N

                = 49 N

Friday, January 22, 2010

gravitation

What is gravitational force ?

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