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Measuring Rotational Motion Chapter 7 Section 1
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Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Dec 23, 2015

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Page 1: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Measuring Rotational Motion

Chapter 7 Section 1

Page 2: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

What is Rotational Motion?

Rotational Motion – The motion of a body that spins about an axis.

Examples:Ferris WheelBicycle WheelMerry-go-roundEtc…

Page 3: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Circular Motion

A point that rotates about a single axis undergoes circular motion around that axis.

Regardless of the shape of the object, any single point on the object travels in a circle around the axis of rotation.

Page 4: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Linear motion here? Think again

Its difficult to describe the motion of a point in a circular path through linear quantities, because the direction of the motion is not in a straight line path.

Therefore it is describe in terms of angle through which the point on an object moves.

Page 5: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Rotational Motion

When rotational motion is described using angles, all points on a ridged rotating object, except the points on the axis move through the same angle during any time interval.

Page 6: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

r = radius θ = angle s = arc length

Reference Liner

θs

Page 7: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Radians

Radian – An angle whose arc length is equal to its radius, which is approximately equal to 57.3º

The radian is a pure number with no dimensions.

Page 8: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Radian Chart

Page 9: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Radian Equations

Any angle θ, measured in radians, is defined as the following:

To convert degrees to radians, or vise versa, use the following equation:

Page 10: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Angular Displacement

Angular Displacement – The angle through which a point, line, or body is rotated in a specific direction and about a specified axis.

In simple terms, angular displacement describes how much an object has rotated. It is not a distance!

Page 11: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Angular Displacement Equation

Δθ = Angular Displacement (rad) Δs = Change in Arc Length (m) r = Distance from Axis (m)

When Δθ rotates: Clockwise – Negative Counter-clockwise – Positive

Page 12: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Recall

Recall that Δ is a capital Greek letter, “delta”

It means, “Change in” It is always the final minus the initial

Example: Δθ = θf-θi

Page 13: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem Earth has an equatorial radius of

approximately 6380km and rotates 360º in 24 hours.

1. What is the angular displacement (in degrees) of a person standing on the equator for 1.0 hour?

2. Convert this angular displacement to radians

3. What is the arc length traveled by this person?

Page 14: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem Answer

1. 15º

2. 0.26 rad

3. Approximately 1700km

Page 15: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem

Earth has an average distance from the sun of approximately 1.5x10^8 km. For its orbital motion around the sun, find the following:

1. Average daily angular displacement

2. Average daily distance traveled

Page 16: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem Answer

1. 1.72x10^-2 rad

2. 2.58x10^6 km

Page 17: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Angular Speed Angular Speed – The rate at which a body

rotates about an axis, usually expressed in radians per second. (rad/s)

Recall that linear speed describes the distance traveled in a specific time, here it is the amount of rotation in a specific time. It describes how quickly the rotation occurs.

Page 18: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Angular Velocity Equation

ω = Angular Velocity (rad/s)Lower case Greek letter called, “omega”

Δθ = Angular Displacement (rad) t = Time Interval (s)

Page 19: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Revolutions

Occasionally angular speeds are given in revolutions per unit time.1 rev = 2πrad

Examples:DVD’sRecordsEngines

2000 rpm (revolutions per minute)

Page 20: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem

An Indy car can complete 120 laps in 1.5 hours on a circular track. Calculate the average angular speed of the Indy car.

Page 21: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem Answer

0.14 rad/s

Page 22: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Angular Acceleration

Angular Acceleration – The time of change of angular speed, expressed in radians per second per second.

Page 23: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Angular Acceleration Equation

α = Angular Acceleration (rad/s2)Lower case Greek letter, “alpha”

Δω = Change in Angular Velocity t = Time Interval

Page 24: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem

A yo-yo at rest is sent spinning at an angular speed of 12 rev/s in 0.25 seconds. What is the angular acceleration of the yo-yo?

Page 25: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem Answer

301.6 rad/s²

Page 26: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

All Points Have Same Speed and Acceleration If a point on the rim of a bicycle wheel had

a greater angular speed than a point closer to the axel, the shape of the wheel would be changing.Which can not happen in normal everyday

riding. All points on a rotating object have the

same angular speed & acceleration.

Page 27: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Comparing Linear and Angular Quantities

Angular Substitutes for Linear Quantities

Angular Linear

Displacement θ (units: rad) d (units: m)

Speed ω (units: rad/s) v (units: m/s)

Acceleration α (units: rad/s²) a (units: m/s²)

Page 28: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Kinematic Equations Can be Used for Circular Motion The same equations used for linear motion

with constant acceleration, can be used for circular motion with constant angular acceleration.

Change the variables, by using the table in the previous slide and you have the new kinematic equations.

Page 29: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Kinematic Equations for Constant Angular Acceleration

Angular Linear

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Page 30: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem

A barrel is given a downhill rolling start of 1.5rad/s at the top of a hill. Assume a constant angular acceleration of 2.9rad/s²

1. If it takes 11.5s to get to the bottom of the hill, what is the final angular speed of the barrel?

2. What angular displacement does the barrel experience during the 11.5s ride?

Page 31: Measuring Rotational Motion Chapter 7 Section 1. What is Rotational Motion? Rotational Motion – The motion of a body that spins about an axis. Examples:

Example Problem Answers

1. 35 rad/s

2. 210 rad