Lecture

Reluctance Effect

In course
DEMO: qui eiusmod
Aliquip eiusmod est sit do nostrud laborum duis ullamco velit. Do aliquip id magna qui aliqua ullamco sunt consectetur incididunt qui dolor consequat ex. Tempor enim minim ex pariatur. Minim duis exercitation anim qui consequat aliquip ea pariatur esse deserunt ex nostrud laboris ullamco. Consequat elit ad non aute excepteur ea veniam occaecat. Aute nulla laborum occaecat incididunt do et fugiat aliqua esse cupidatat consequat proident ipsum. Ut ea aliquip irure ea ipsum magna velit ut elit irure aliquip.
Login to see this section
Description

This lecture demonstrates the magnetic energy effect in a system with a Diêm, showing how an iron plate sticks to a magnet and releases mechanical energy when pulled away. The magnetic energy is transformed into kinetic and thermal energy, similar to a magnetic system with rollers. The magnetic energy is transferred between the elements, aligning the iron plate to minimize the magnetic energy from the magnet.

In MOOCs (2)
Conversion electromécanique I
Circuits magnétiques, aimants permanents, conversion électromécanique, actionneurs.
Conversion electromécanique I
Circuits magnétiques, aimants permanents, conversion électromécanique, actionneurs.
Instructors (2)
laboris nulla incididunt
Minim sit veniam reprehenderit Lorem voluptate cupidatat. Ad Lorem et laborum pariatur deserunt eu incididunt. Veniam reprehenderit nostrud in ipsum minim qui tempor do dolore.
adipisicing enim ut sit
Dolor laborum aute fugiat fugiat cupidatat. Exercitation in sunt aliquip ex velit irure elit excepteur ipsum ex irure. Nulla esse nostrud proident aliqua amet nulla dolor. In occaecat in nisi aliqua mollit qui laborum. In id velit aute qui aliqua. Ipsum veniam ut laboris enim sit eu reprehenderit occaecat proident nostrud. Enim Lorem exercitation reprehenderit id fugiat dolore nulla ea deserunt voluptate adipisicing est labore.
Login to see this section
About this result
This page is automatically generated and may contain information that is not correct, complete, up-to-date, or relevant to your search query. The same applies to every other page on this website. Please make sure to verify the information with EPFL's official sources.
Related lectures (29)
Magnetic Energy and Co-energyMOOC: Conversion electromécanique I
Explains magnetic energy, co-energy, and variable changes in magnetic fields.
Magnetohydrodynamics: Two-Fluid Model
Explores magnetohydrodynamics, emphasizing the two-fluid model, Alfvén's theorem, solar wind, dynamos, and magnetic reconnection.
Magnetic Materials: Properties and Behaviors
Explores the properties and behaviors of magnetic materials like ferromagnetic, paramagnetic, and diamagnetic materials, discussing magnetic susceptibility and permeability.
Magnetic Induction
Explains magnetic induction, force on a dipole, torque, and applications in macroscopic systems.
Energy Storage in Coils and Inductors
Explores energy storage in coils and inductors, emphasizing the role of inductance in storing magnetic energy and the impact of magnetic materials on inductance.
Show more

Graph Chatbot

Chat with Graph Search

Ask any question about EPFL courses, lectures, exercises, research, news, etc. or try the example questions below.

DISCLAIMER: The Graph Chatbot is not programmed to provide explicit or categorical answers to your questions. Rather, it transforms your questions into API requests that are distributed across the various IT services officially administered by EPFL. Its purpose is solely to collect and recommend relevant references to content that you can explore to help you answer your questions.