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Planar Kinetics Of A Rigid Body: Work & Energy

Planar Kinetics Of A Rigid Body: Work and Energy. Friday, June 25, 2010. Planar Kinetics: Work and Energy - Dynamics. A rigid body undergoing planar motion is the sum of the translational and rotational kinetic energy. The motion is in reference to the mass center, G. Translation: rectilinear or curvilinear translation is T = .5 m V G. Rotation about a fixed axis: T = .5 m V G. Ω 2 or T = .5 I O. General Plane Motion: T = .5 m V G. Ω 2 or T = .5I IC. Variable force: U F. Constant Force: U Fc. 2 - 5ks 1.

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Planar Kinetics Of A Rigid Body: Work & Energy | planar-kinetics-work-energy.blogspot.com Reviews
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Planar Kinetics Of A Rigid Body: Work and Energy. Friday, June 25, 2010. Planar Kinetics: Work and Energy - Dynamics. A rigid body undergoing planar motion is the sum of the translational and rotational kinetic energy. The motion is in reference to the mass center, G. Translation: rectilinear or curvilinear translation is T = .5 m V G. Rotation about a fixed axis: T = .5 m V G. Ω 2 or T = .5 I O. General Plane Motion: T = .5 m V G. Ω 2 or T = .5I IC. Variable force: U F. Constant Force: U Fc. 2 - 5ks 1.
<META>
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1 kinetic energy
2 work
3 work done by
4 f cos θ
5 cos θ
6 weight u w
7 work and energy
8 conservation of energy
9 wy g
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Planar Kinetics Of A Rigid Body: Work & Energy | planar-kinetics-work-energy.blogspot.com Reviews

https://planar-kinetics-work-energy.blogspot.com

Planar Kinetics Of A Rigid Body: Work and Energy. Friday, June 25, 2010. Planar Kinetics: Work and Energy - Dynamics. A rigid body undergoing planar motion is the sum of the translational and rotational kinetic energy. The motion is in reference to the mass center, G. Translation: rectilinear or curvilinear translation is T = .5 m V G. Rotation about a fixed axis: T = .5 m V G. Ω 2 or T = .5 I O. General Plane Motion: T = .5 m V G. Ω 2 or T = .5I IC. Variable force: U F. Constant Force: U Fc. 2 - 5ks 1.

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planar-kinetics-work-energy.blogspot.com planar-kinetics-work-energy.blogspot.com
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Planar Kinetics Of A Rigid Body: Work & Energy: Planar Kinetics: Work & Energy - Dynamics

http://www.planar-kinetics-work-energy.blogspot.com/2010/06/planar-kinetics-work-energy-dynamics_25.html

Planar Kinetics Of A Rigid Body: Work and Energy. Friday, June 25, 2010. Planar Kinetics: Work and Energy - Dynamics. A rigid body undergoing planar motion is the sum of the translational and rotational kinetic energy. The motion is in reference to the mass center, G. Translation: rectilinear or curvilinear translation is T = .5 m V G. Rotation about a fixed axis: T = .5 m V G. Ω 2 or T = .5 I O. General Plane Motion: T = .5 m V G. Ω 2 or T = .5I IC. Variable force: U F. Constant Force: U Fc. 2 - 5ks 1.

2

Planar Kinetics Of A Rigid Body: Work & Energy: June 2010

http://www.planar-kinetics-work-energy.blogspot.com/2010_06_01_archive.html

Planar Kinetics Of A Rigid Body: Work and Energy. Friday, June 25, 2010. Planar Kinetics: Work and Energy - Dynamics. A rigid body undergoing planar motion is the sum of the translational and rotational kinetic energy. The motion is in reference to the mass center, G. Translation: rectilinear or curvilinear translation is T = .5 m V G. Rotation about a fixed axis: T = .5 m V G. Ω 2 or T = .5 I O. General Plane Motion: T = .5 m V G. Ω 2 or T = .5I IC. Variable force: U F. Constant Force: U Fc. 2 - 5ks 1.

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Dynamics: June 2010

http://dynamics-1.blogspot.com/2010_06_01_archive.html

Sunday, June 20, 2010. Here are some popular topics and notes from engineering dynamics:. Kinematics of a Particle. Kinetics of a Particle: Force and Acceleration. Kinetics of a Particle: Work and Energy. Kinetics of a Particle: Impulse and Momentum. Planar Kinematics of a Rigid Body. Planar Kinetics of a Rigid Body: Force and Acceleration. Planar Kinetics of a Rigid Body: Work and Energy. Planar Kinetics of a Rigid Body: Impulse and Momentum. For other classes/notes in the engineering field click here.

dynamics-1.blogspot.com dynamics-1.blogspot.com

Dynamics: Dynamics Notes

http://dynamics-1.blogspot.com/2010/06/dynamics-notes.html

Sunday, June 20, 2010. Here are some popular topics and notes from engineering dynamics:. Kinematics of a Particle. Kinetics of a Particle: Force and Acceleration. Kinetics of a Particle: Work and Energy. Kinetics of a Particle: Impulse and Momentum. Planar Kinematics of a Rigid Body. Planar Kinetics of a Rigid Body: Force and Acceleration. Planar Kinetics of a Rigid Body: Work and Energy. Planar Kinetics of a Rigid Body: Impulse and Momentum. For other classes/notes in the engineering field click here.

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Planar Kinematics Of A Rigid Body

Planar Kinematics Of A Rigid Body. Wednesday, June 16, 2010. Planar Kinematics - Dymanics. There are three types of planar rigid body motion:. A line in the body stays parallel to the original orientation during the entire motion. All points on the body move with the same velocity and acceleration. Postion is defined as r B. Is the positions of points A and B on the body and r B/A. Α r) and the normal acceleration (a n. Or as V A. The relative velocity (V A/B. Α x r A/B. Ω x (ω x r A/B. For 2-D: α x r A/B.

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Planar Kinetics Of A Rigid Body: Force & Acceleration

Planar Kinetics Of A Rigid Body: Force and Acceleration. Monday, June 21, 2010. Planar Kinetics: Force and Acceleration - Dynamics. Mass Moment of Inertia. F =ma studies the translational motion. M = Iα studies the rotational motion. M is the moment. I is the mass moment of inertia. The moment of inertia is the measure of resistance to angular acceleration(M = Iα), similar to mass is a measure of resistance to acceleration(F = ma). Α is the angular acceleration. M is the mass of the body. 0 or to sum mom...

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Planar Kinetics Of A Rigid Body:Impulse & Momentum

Planar Kinetics Of A Rigid Body:Impulse and Momentum. Friday, June 25, 2010. Planar Kinetics: Impulse and Momentum - Dynamics. Linear and Angular Momentum:. Linear momentum: L = mV G. Angular momentum: H G. Rotation about a Fixed Axis:. Ω or H IC. This combines kinematics with the equation of motion. Problems involving force, velocity, and time can be solved. Dt Can also be applied to a fixed point O (I O. When the impulses acting on the system is zero then:. Linear Momentum: ∑L 1.

planar-kinetics-work-energy.blogspot.com planar-kinetics-work-energy.blogspot.com

Planar Kinetics Of A Rigid Body: Work & Energy

Planar Kinetics Of A Rigid Body: Work and Energy. Friday, June 25, 2010. Planar Kinetics: Work and Energy - Dynamics. A rigid body undergoing planar motion is the sum of the translational and rotational kinetic energy. The motion is in reference to the mass center, G. Translation: rectilinear or curvilinear translation is T = .5 m V G. Rotation about a fixed axis: T = .5 m V G. Ω 2 or T = .5 I O. General Plane Motion: T = .5 m V G. Ω 2 or T = .5I IC. Variable force: U F. Constant Force: U Fc. 2 - 5ks 1.

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