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Gravity and Motion Ms. Mudd 6th Astronomy.

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Presentation on theme: "Gravity and Motion Ms. Mudd 6th Astronomy."— Presentation transcript:

1 Gravity and Motion Ms. Mudd 6th Astronomy

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3 Gravity A force is a push or pull.
Newton hypothesized that the force that pulls an apple to the ground also pulls the moon toward the Earth, keeping it in orbit. This force is called gravity. Newton’s law of universal gravitation states that every object in the universe attracts every other object. The force of gravity is measured in units called Newton. The strength of the force of gravity between two objects depends on two factors: the masses of the objects and the distance between them.

4 Gravity, Mass, and Weight
According to the law of universal gravitation, all of the objects around you are pulling on you. Why don’t we notice this pull? The strength of gravity depends in part on the masses of the objects. Mass is the amount of matter in an object. Because Earth is so massive it exerts a greater force than your book or other objects. The Earth also exerts a gravitational force on the moon, strong enough to keep it in orbit. The moon also exerts a gravitational force on Earth (tides).

5 Gravity, Mass, and Weight
The force of gravity on an object is known as its weight. Mass does not change. Weight can change depending on its location. On the moon you would weigh about 1/6 of your weight on Earth. This is because the moon is less massive than Earth, so the pull of the moon’s gravity would be less than that of Earth’s gravity. The strength of gravity is affected by the distance between two objects as well as their masses.


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