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Forces
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Force: A Push or Pull in a Given Direction
Forces are vector quantities since they have both magnitude (size) and direction.
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Gravity Force (Weight): The Earth’s Pull on an Object
Mass is the amount of material or stuff in an object. Mass is measured by a balance. Mass is measured in grams (g) or kilograms (kg).
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Inertia : The Tendency of an Object to Resist a Change in Motion
An object’s inertia is directly proportional to its mass.
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Measuring Mass with an Inertial Balance
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Gravity Force (Weight): The Earth’s Pull on an Object
Gravity is the earth’s pull on an object. This pull is an object’s weight. Weight is a force measured by a spring balance. Weight is measured in newtons (N).
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The Relationship Between Mass and Weight
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Defining The Force Unit, Newton (N)
A newton is the amount of force that will accelerate a 1 kg mass at a rate of 1m/s/s (1m/s2).
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What is Earth’s Gravity Force on 1 Kg?
Since the earth accelerates all objects at 9.8 m/s2, there must be a force of 9.8 N on 1 kg.
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Calculating an Object’s Weight From its Mass
An object’s weight in N is equal to its mass in kg x 9.8 N/kg. W = m x 9.8 N/kg
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Mass vs Weight The mass of an object remains the same anywhere in space, but the weight of an object varies depending on the gravity pull on the object.
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Gravitational Field Strength
The Gravitational Field Strength is the force of gravity on a mass of 1 kg at some point near a large mass (like a planet). The gravitational field strength varies on planet Earth and from planet to planet. It also varies (gets less) as a 1 kg mass is moved away from planet Earth. The units of gravitational field strength are N/kg
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Gravity: A force of attraction between two masses
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Gravity: Depends on Quantity of Mass and Distance
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Newton’s Law of Universal Gravitation
The force of gravity is directly proportional to the product of the masses and inversely proportional to the square of the distance between their centres.
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Gravity Varying With Mass and Distance
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Cavendish’s Experiment to Measure G, the Gravitation Constant
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A Escaping Gravity – orbits and final escape are dependent on velocity of object.
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