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Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

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Circular Motion Physics Mrs Coyle
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Page 1: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Circular Motion

PhysicsMrs Coyle

Page 2: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

•Earth rotates about its axis

•Satellite revolves about the earth

Page 3: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Part I-Intro to Circular Motion

Tangential Speed and Velocity Frequency and Period Centripetal Force Centripetal Acceleration

Page 4: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Characteristics of Circular Motion

Tangential (linear) Velocity Frequency Period

Page 5: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Frequency, f :#revolutions per unit time

f = # rev / time

Units: (1/sec)=sec-1=Hertz (Hz) rpm (#rev/min) rps (#rev/sec)

r

Page 6: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Period

Period T : time for 1 revolution Unit: sec, min, h

Relating Frequency and period f= 1

T

Page 7: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Arc Length

Arc Length s (unit: meter) Distance traveled along a circular

path.

s

Page 8: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Average Tangential (Linear) Speed

v= s t Unit: m/s

v= 2r/T = 2rf

Page 9: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Uniform Circular Motion

Linear(tangential speed is constant)

v=constant

Page 10: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Tangential (Linear) Velocity

v

v

The tangential velocity vector is tangent to the circle at the point of study.

Page 11: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Problem 1A biker travels once around a circulartrack of radius 20.0m in 3s. Calculate:a) the average tangential speedb) the frequencyc) the period

Answers: 41.9m/s, f=0.33Hz, T=3s

Page 12: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Record Player

Page 13: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Problem 2

A coin sits 0.10m from the center of arecord player spinning at 45rpm.a) What is the frequency in Hertz?b) What is the period?c) What is the linear speed?

Answer: 0.75Hz, 1.33s, 0.47m/s

Page 14: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Merry-go-Round

Page 15: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

How does the v vary with r?

The linear speed increases as r increases.

Example: How does your linear speed change

when you are on a merry-go-round and you move away from the center?

Page 16: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

How does the f vary with r?

f does not depend on r

Example: How does your frequency change

when you are on a merry-go-round and you move away from the center?

Page 17: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Centripetal Force, Fc= m v2

r

Is a center seeking force. (Always points to the center.)

Is perpendicular to the tangential velocity at any given instant.

It is not an extra force. An existing force represents the centripetal force.

Page 18: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

What forces represent the centripetal force in these examples?

Car on bend of road. Coin on record player. Child on merry-go-round. Ball tied on a string.

Page 19: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Centripetal Acceleration, ac= v2

r

Has same direction as centripetal force.(Always points to the center).

Is perpendicular to the tangential velocity at any given instant.

Page 20: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Centripetal Force

Fc=mac

Page 21: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Problem 3

A child on a merry-go-round sits 1.5mfrom the center. They spin 3 times in onemin. The mass of the child is 40kg.Find the friction(centripetal force) acting onthe child.

Answer: 5.9N

Page 22: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Part II More Centripetal Force Problems

Car Rounding a Curve Loop-the- loop Rotor

Page 23: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

What force plays the role of the centripetal force when a car rounds a curve?

Page 24: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Car Rounding a Bend

Page 25: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Example 1: Car Rounding a Curve

A car is travelling with a speed of 45km/h on a circular horizontal track of radius 50m. What is the minimum coefficient of friction, so that the car stays on the track?

Answer: 0.3

Page 26: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

What force plays the role of the centripetal force when a ball is on the top of a loop-the-loop?

Page 27: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Loop the Loop

Page 28: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Example 2: Loop-the-loop What is the critical velocity of a ball

at the top of the loop of radius .3m so that it completes the loop?

Answer: 1.7m/s

Page 29: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Rotor Ride

Page 30: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Rotor Ride

http://www.youtube.com/watch?v=J7k8Oz_73mw&feature=player_embedded#

Page 31: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

What force plays the role of the centripetal force in the rotor ride?

http://upload.wikimedia.org/wikipedia/commons/7/7d/Rotormidcyclelunapraksyd.JPG

Page 32: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Example 3: Rotor

A brave student rides in a rotor of radius 5m whose floor drops when it reaches a speed of 20mi/h. What is the coefficient of friction between the student and the wall of the rotor, so that the student does not fall?

Answer: 0.6

Page 33: Circular Motion Physics Mrs Coyle. Earth rotates about its axis Satellite revolves about the earth.

Recap


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