WORK,GRAVITY, VERTICAL AND HORIZONTAL CIRCULAR MOTION Flashcards

1
Q

What is work ?

A

The product of force and displacement

W=Fs

F and s must be in the same dimension

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2
Q

work is done by……

A

something onto something

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3
Q

The Basics of circular motion

A
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4
Q

in Circular motion where is the acceleration directed to?

A

torwards the centre of the circle

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5
Q

what is reqiured to cause an acceleration torwards the centre of the circular path?

A

there must be a net force that acts towards the centre of the circular path.

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6
Q

In Horizontal circular motion what happens when frictional force decrease?

A

1.The vertical componetn of the reaction force is not affect and will continue to balance the weight force
2.The horizontal component of the reaction force is reduced because of the limited friction

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7
Q

Explain how angles that are in Horizontal circular motion would change as the velocity of the ride icreases.

A

a larger velocity requires a larger centripetal force as shown on the Fc formula,This is achieved with a larger horizontal component of the tension in the cable .Therefore the angle will increase

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8
Q

if friction is greater than the Centripetal Force what does this mean?

A

The frictional force can supply the Centripetal force causing it to follow a curve

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9
Q

on this formula for velocity on a banke curve ,usually for cars what happens when the velocity increases ?

A

1.as velocity increases ,Tan theta increases which indicates that the angle increases.
2.A faster velocity requires a larger centripetal force

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10
Q

what is the Centripetal Force?

A

The force that causes the Centripetal acceleration.
‘‘its a calculation of the force required for circular motion”

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11
Q

what is the centripetal force supplied by?

A

Friction

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12
Q

whats the reason ,one cannot complete circular motion hence leading to them falling ?

A

The friction can not supply the required centripetal force

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13
Q

LEANING IN CIRCULAR MOTION.(IMPORTANT)

A

1.The Horizontal component of the Reaction force supplied by friction supplies the required centripetal force
2.The vertical component =the weight

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14
Q

how to find an angle required for Centripetal force

A

1.Use Geometry for circles
2.utilise the triangle by using the horizontal and vertical componet
3.to get a better speed one must have a smaller angle made with the horizontal

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15
Q

Banked Curves (free body diagram and vector Diagram)

A

1.Here there is no Reaction force but the re is a NORMAL FORCE INSTEAD.
2.THE angle of the bank is equal to the top angle of the vector sum diagram
3.

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16
Q

When frictional forces decreases what effect will on the horizontal and vertical compenents of the reaction force acting on a leaning object

A

1.the vertical component wont be affected and will continue to balance the weight force
2.The Horizontal component of the reaction force is reduced because of the limited friction

17
Q

How to get an angle from the conical pendulum

A
18
Q

Diagrams for the Conical pendulum.

A
note there are two triangles in the Horizontal circular motion of a conical pendulum

1.the angle on the second triangle = the angle of the second triangle
2.Tension of string = mg/cos of the angle

19
Q

explain how an angle shown in a conical pendulum situatio would change as the mass of the object increases

A

The increase in mass will scale both sides by the same proportion.Therefore the angle won’t be affected by the change in mass

20
Q

Tension in a pendulum =

A

mg/cos 0

21
Q

HOW to get the TIME PERIOD of an objetc on a conical penduleum

A
22
Q

For vertical cirular motion…

A

1.always draw a vector diagram
2.assign a direction convention(torwards the centre is positive)
3.start the problem by writing a vector sum equation

23
Q

Situation 3 of vertical circular motion:at the bottom of the loop

A
the magnitude of the normal force is Larger than the weight.This gives the sensation of feeling heavier at the bottom of a vertical circle

the fater the ball the more the Centripetal force
also note on a free body diagram N>W

23
Q
A
24
Q

situation for vertical circular motion problems(At the top of a loop inside)

A
1. weight and the normal force both assist in producing the centripetal Force 2. If the weight force is LARGER than the centripetal force then the object will fall away from the circular path

The slowest possible speed Fc=w
v=square root of g and r

24
Q

situation 2 for vertical circular motion objects at the top of a loop(outside)

A
1.the magnitude of the normal force is smaller than the weight This gives the sensation of feeling lighter at the top of a vertical circle 2.If the weight force is SMALLER than the Fc then the object will fly off the circular path

This works for Ferris wheels

25
Q

Its just not a normal force that’s there

A

their is also tension

26
Q

How to get the mass of a planet given the radius and time period do this.

A

1.Calculate the orbital speed which is V using 2pi r/T
2.the Equate the Fc formula to the Fg which is newtons law of Universal Gravitation .Fc=Fg
3.to get the velocity it will be v=Square root of Gm/r
4.Then you can proceed to get the mass
5.

27
Q
A
28
Q
A