Zaloguj się

The work-energy theorem for rotational motion is analogous to the work-energy theorem in translational motion. It states that the net work done by an external force to rotate a rigid body equals the change in the object's rotational kinetic energy. The power delivered is simply the time derivative of the work done; therefore, power is the dot product of torque and angular velocity. This relation is analogous to power in translational motion, which is given by the dot product of force and velocity. It is assumed that frictional force is absent here; however, this is not always the case for a real system. For example, an airplane's engine does work to set the propeller into a spinning motion. However, air friction and the friction between the mechanical parts of the engine lead to inevitable losses, as the work done by the engine translates into the change in rotational kinetic energy of the propeller. Therefore, even after the propeller gains the final desired angular velocity (and hence the desired rotational kinetic energy), the engine still needs to work to balance the opposing forces, which could otherwise slow down the spinning propeller.

This text is adapted from Openstax, University Physics Volume 1, Section 10.8: Work and Power for Rotational Motion.

Tagi
Keyword Extraction Work energy TheoremRotational MotionTranslational MotionRigid BodyRotational Kinetic EnergyPowerTorqueAngular VelocityFrictionPropellerEngine

Z rozdziału 11:

article

Now Playing

11.7 : Work-Energy Theorem for Rotational Motion

Dynamics of Rotational Motions

5.6K Wyświetleń

article

11.1 : Moment obrotowy

Dynamics of Rotational Motions

11.8K Wyświetleń

article

11.2 : Obliczenia użytecznego momentu obrotowego

Dynamics of Rotational Motions

8.7K Wyświetleń

article

11.3 : Równanie dynamiki obrotowej

Dynamics of Rotational Motions

4.8K Wyświetleń

article

11.4 : Toczenie bez poślizgu

Dynamics of Rotational Motions

3.3K Wyświetleń

article

11.5 : Toczenie z poślizgiem

Dynamics of Rotational Motions

4.5K Wyświetleń

article

11.6 : Praca i moc dla ruchu obrotowego

Dynamics of Rotational Motions

5.0K Wyświetleń

article

11.8 : Moment pędu: Pojedyncza cząstka

Dynamics of Rotational Motions

5.9K Wyświetleń

article

11.9 : Moment pędu: ciało sztywne

Dynamics of Rotational Motions

8.5K Wyświetleń

article

11.10 : Zasada zachowania momentu pędu

Dynamics of Rotational Motions

9.9K Wyświetleń

article

11.11 : Zasada zachowania momentu pędu: zastosowanie

Dynamics of Rotational Motions

10.5K Wyświetleń

article

11.12 : Obrót asymetrycznego wierzchołka

Dynamics of Rotational Motions

771 Wyświetleń

article

11.13 : Żyroskop

Dynamics of Rotational Motions

2.8K Wyświetleń

article

11.14 : Żyroskop: Precesja

Dynamics of Rotational Motions

3.9K Wyświetleń

JoVE Logo

Prywatność

Warunki Korzystania

Zasady

Badania

Edukacja

O JoVE

Copyright © 2025 MyJoVE Corporation. Wszelkie prawa zastrzeżone