Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω...

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Angular Kinematics Angular Kinematics Ch 4 Notes Ch 4 Notes

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Angular Kinematics Definitions Angular Velocity: “amount of twist per time” ώ = ΔΘ / Δt units: _____ Angular Acceleration: “amount of change in twist per time” Angular Acceleration: “amount of change in twist per time” α = Δώ / Δt Units: ______

Transcript of Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω...

Page 1: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Angular KinematicsAngular Kinematics

Ch 4 NotesCh 4 Notes

Page 2: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Angular Angular

VariablesVariables1 1 ΘΘradrad = _____ = _____ ͦ of ͦ of twisttwist1 1 ωω = ____ ͦ of twist = ____ ͦ of twist in a second’s time in a second’s time = = ΘΘradrad / 1 s / 1 s1 1 αα = = changechange in in angular speed angular speed equal to equal to ________ of of twist per second = twist per second = ΔωΔω / 1 s / 1 s

The radian itself The radian itself has_______ unitshas_______ units

S

θrad

Page 3: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Angular Kinematics DefinitionsAngular Kinematics DefinitionsAngular Velocity: “amount of twist Angular Velocity: “amount of twist per time”per time”ώώ = = ΔΘΔΘ / / ΔΔttunits: _____units: _____

• Angular Acceleration: “amount of Angular Acceleration: “amount of change in twist per time”change in twist per time”α = α = ΔώΔώ / / ΔΔtt

Units: ______Units: ______

Page 4: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Linking Linear with Angular…Linking Linear with Angular…

vvt t = = ΔΔx/x/ΔΔt = C/T = 2t = C/T = 2ππr/Tr/T

1 rev = 21 rev = 2ππ radians = 6.28 radians radians = 6.28 radiansCentripetal or radial accelerationCentripetal or radial acceleration

aac = a = arr = v = v22/r in linear units /r in linear units aac c = a= arr = r = rώώ22 in angular units in angular unitsCCW = _____, CW = _____CCW = _____, CW = _____

Page 5: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Clockwise (CW) vs. Clockwise (CW) vs. Counterclockwise (CCW)Counterclockwise (CCW)

CCW is +, CW is – throughout courseCCW is +, CW is – throughout course

Page 6: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

1. Finding radial acceleration-1. Finding radial acceleration-linear unitslinear units

What is the radial acceleration of an What is the radial acceleration of an object that spins with a linear speed object that spins with a linear speed of 4.00 m/s at a 0.80 m distance of 4.00 m/s at a 0.80 m distance from the axis of rotation?from the axis of rotation?

Page 7: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

2. Finding radial acceleration-2. Finding radial acceleration-angular unitsangular units

What is the radial acceleration of a What is the radial acceleration of a motorcycle proceeding in a circular motorcycle proceeding in a circular cage of diameter 14.0 m if it is cage of diameter 14.0 m if it is moving at an angular velocity of 2.0 moving at an angular velocity of 2.0 rad/s?rad/s?

Page 8: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

A closer look at acceleration…A closer look at acceleration…For objects that are moving, the For objects that are moving, the acceleration can be broken down into acceleration can be broken down into components parallel to and components parallel to and perpendicular to motion.perpendicular to motion.// to motion: tangential acceleration// to motion: tangential acceleration– Leads to more/less rpm, units m/sLeads to more/less rpm, units m/s22

Perp. to motion: radial acceleration Perp. to motion: radial acceleration or centripetal accelerationor centripetal acceleration– Gives inward acceleration needed to Gives inward acceleration needed to

make circular motion, units m/smake circular motion, units m/s22

Page 9: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Galileo’s Formulas Work for Galileo’s Formulas Work for Rotation!!!!Rotation!!!!

Angular displacement: Angular displacement: ΘΘ (# radians spun) (# radians spun) radradAngular velocity: Angular velocity: ώώ (radians spun per second) (radians spun per second)

rad/srad/sAngular acceleration: Angular acceleration: αα ( (ΔΔ in rps per sec) in rps per sec) rad/srad/s22

VVff = v = vii + a + aΔΔtt ________________________________________________

VVff22 = V = Vii

22 + 2ax + 2ax ________________________________________________

x = vx = viit + ½att + ½at22 ____________________________________

Page 10: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Rotation and GraphingRotation and Graphing

Θ for x

ώ for v

α for a

SLOPES TO GO UP

AREAS UNDER CURVE TO GO DOWN

Page 11: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

3. What is angular acceleration?3. What is angular acceleration?An piece of tape at the edge of the An piece of tape at the edge of the disk of radius 0.19 m slows from a disk of radius 0.19 m slows from a speed of 2.00 m/s to a speed of 1.00 speed of 2.00 m/s to a speed of 1.00 m/s in a 6.00 second time frame. m/s in a 6.00 second time frame. What is the angular acceleration of What is the angular acceleration of the tape? the tape? What is the angular acceleration of What is the angular acceleration of the inside edge of the disk (r = 0.03 the inside edge of the disk (r = 0.03 m)?m)?

Page 12: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

4. What is the final angular 4. What is the final angular velocity?velocity?

An object being swung around with a An object being swung around with a radius of 0.50 m is subject to an radius of 0.50 m is subject to an angular acceleration of 0.25 rad/sangular acceleration of 0.25 rad/s22 for a for a 3.00 second time frame. If it started 3.00 second time frame. If it started with a speed of 8.00 m/s, what is its with a speed of 8.00 m/s, what is its angular velocity after the three seconds angular velocity after the three seconds have elapsed?have elapsed?What number of rotations will have occurred in this 3.0 sec time span?

Page 13: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

5. What is the angular 5. What is the angular acceleration?acceleration?

A disk is spun for a total of 62 A disk is spun for a total of 62 rotations. It begins at an angular rotations. It begins at an angular velocity of 1.8 rad/s and due to velocity of 1.8 rad/s and due to friction this value drops to 1.2 rad/s friction this value drops to 1.2 rad/s by the 62by the 62ndnd rotation. What is this rotation. What is this disk’s angular acceleration?disk’s angular acceleration?

Page 14: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Mad Libs Mad Libs Round II Round II TopicsTopics

Kinematics/GraphingKinematics/GraphingForces Forces FrictionFrictionEnergyEnergyMomentumMomentumCircular MotionCircular MotionFluid MechanicsFluid MechanicsHeat/ThermodynamicsHeat/ThermodynamicsGeometric OpticsGeometric Optics Physical OpticsPhysical OpticsElectrostaticsElectrostatics Universal GravitationUniversal GravitationCurrent ElectricityCurrent ElectricityMagnetismMagnetismModern PhysicsModern Physics ProjectilesProjectiles

Page 15: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Moment of InertiaMoment of Inertia

““Inertia of Spin”Inertia of Spin”Measure of the unwillingness of a Measure of the unwillingness of a material to want to rotatematerial to want to rotateIncreases with greater overall mass, no Increases with greater overall mass, no matter what the shape of the materialmatter what the shape of the materialShape affects momentShape affects momentIf all mass on outside of orbit, If all mass on outside of orbit, I = mrI = mr22

Others p. 298Others p. 298

Page 16: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.
Page 17: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

What has more kinetic energy, What has more kinetic energy, a knuckleball pitched at 70 a knuckleball pitched at 70

mph, or a changeup pitched at mph, or a changeup pitched at 70 mph?70 mph?

Close but not identical!!!!!!Close but not identical!!!!!!

Page 18: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Rotational Kinetic EnergyRotational Kinetic Energy““Energy of Spin” as opposed to Energy of Spin” as opposed to

“Energy of Motion”“Energy of Motion”KEKErotrot = ½ I = ½ I ωω22

Objects that are rolling tend to have Objects that are rolling tend to have both forms of KE!both forms of KE!

Page 19: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Example: Total KEExample: Total KEWhat is the total KE of a basketball What is the total KE of a basketball (0.60 kg, diameter 30.0 cm) that is (0.60 kg, diameter 30.0 cm) that is rolling at a speed of 2.00 m/s on the rolling at a speed of 2.00 m/s on the ground?ground?

Page 20: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Moment of InertiaMoment of InertiaMoment of inertia generally higher Moment of inertia generally higher the more mass is distributed further the more mass is distributed further from the axis of rotationfrom the axis of rotation

Page 21: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Moment of Moment of inertia inertia changes for changes for the same the same material material according according to what to what spin axis spin axis you choose you choose for it.for it.

Page 22: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Shapes & Moments of InertiaShapes & Moments of Inertia

Page 23: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

The disk The disk cylinder has cylinder has a lower a lower moment due moment due fact that fact that mass closer mass closer to axis of to axis of rotation is rotation is easier to easier to rotate rotate ΤΤ = F = F llT = I T = I αα

Page 24: Angular Kinematics Ch 4 Notes. Angular Variables Angular Variables 1 Θ rad = _____ ͦ of twist 1 ω = ____ ͦ of twist in a second’s time = Θ rad / 1 s 1.

Extras: Ch 10-11Extras: Ch 10-11Angular Momentum: tendency for a Angular Momentum: tendency for a

system to rotatesystem to rotateL = I L = I ώώL = r m vL = r m vunits are kg munits are kg m22/s/s

Angular Momentum for a system is Angular Momentum for a system is conservedconserved

Figure skatersFigure skatersElliptical orbitsElliptical orbitsBike tireBike tire