Forces Flashcards

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1
Q

What do forces do

A

They act on bodies
Make them change shape
Make them change speed
Make them change direction

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2
Q

What happens when body A exerts a force onto Body B

A

B exerts an equal and opposite force onto body A

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3
Q

What is a friction

A

When 2 objects rub against each other
Always opposes motion

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4
Q

Examples of friction

A

Pushing a cardboard box
Driving a car along the road

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5
Q

What are forces measured in?

A

Newtons - N

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6
Q

What type of quantity are forces?

A

They are vector quantities, as such we must consider direction

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7
Q

How do you determine the resultant force on a object

A

Add together all the forces acting on the object

Fr = F1 + F2 + F3 …. + FN

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8
Q

What are the qualities of Newtons 1st law?

A

The forces are balanced
Fr = 0
The system is said to be in a “state of equilibrium”

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9
Q

What are the 2 possible states of motion when a body complies with Newtons 1st Law

A

At rest/ stationary

Moving with a constant velocity

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10
Q

What happens when a body complies with Newtons 2nd Law

A

The forces are unbalanced
There is a restaurant force - Fr
The object with be forced to accelerate or decelerate

It will change speed and change direction

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11
Q

What is direct proportionality

A

When the amount of one quantity increases/decreases the other quantity also increases/decreases by the same amount

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12
Q

What is the equation for FR

A

FR =ma
Resultant force = mass x acceleration

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13
Q

What is inverse/indirect proportionality

A

E.g S = d/t S ∝ 1/t

“S is inversely proportional to t”

When s is x2 , t is /2

When s is x4.1, t is /4.1

When s is /13.3, t is x13.3

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14
Q

State Newton’s first law of motion?

A

the forces on a system are balanced and so FR = 0, the
object will not accelerate. The object has 2 possible states of motion;
➢ Stationary.
➢ Moving at a constant velocity.

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15
Q

State Newton’s second law of motion?

A

FR = m a, and so FR / m = a
The acceleration, a of a body is directly proportional to the resultant force, FR, and inversely proportional to the mass, m.

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