Lecture

Electromechanical Conversion

In course
DEMO: labore occaecat
Fugiat aliqua occaecat esse ea non labore sint tempor nostrud do anim elit cillum. Magna nostrud sit ex id proident occaecat nisi Lorem magna incididunt aliqua. Elit laborum cupidatat laborum eiusmod quis ipsum deserunt voluptate ullamco aliquip et veniam. Nisi minim aliquip et pariatur reprehenderit esse irure proident esse velit laboris est officia.
Login to see this section
Description

This lecture introduces electromechanical conversion, showcasing examples of actuators and analyzing their behavior. It covers the creation of forces using coils and magnets, explaining magnetic fields, flux, and the dynamics of movement in the system.

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)
duis incididunt excepteur commodo
Cillum cillum pariatur proident reprehenderit cupidatat laboris. Tempor pariatur elit elit tempor magna qui. Velit ea eiusmod veniam aliquip cillum ex. Aliqua sit veniam aliqua voluptate nisi aliqua dolore sit duis labore.
ullamco id consequat
Aliquip proident aute veniam adipisicing ex nulla excepteur officia eu sit eiusmod laboris aliquip. Voluptate in id do culpa elit excepteur amet ipsum nulla mollit consectetur eiusmod est duis. Amet mollit adipisicing nostrud exercitation id sit occaecat deserunt adipisicing ut labore. Culpa aute ipsum fugiat sint. Dolor Lorem esse dolor irure non eu et consequat amet in quis est sint. Cupidatat proident id excepteur aliquip adipisicing proident ut pariatur sunt consectetur ea culpa. Esse elit consequat do amet deserunt fugiat incididunt aliquip quis sit minim excepteur quis nulla.
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 (62)
The MRI Scanner: Components and RisksMOOC: Fundamentals of Biomedical Imaging: Magnetic Resonance Imaging (MRI)
Explores the components and risks of MRI scanners, emphasizing safety and functionality.
Magnetic Induction
Explains magnetic induction, force on a dipole, torque, and applications in macroscopic systems.
Magnetic Fields and Currents
Explores magnetic fields, currents, Biot-Savart law, Ampère's law, and magnetic dipoles.
Sources of Magnetic Fields and Induction
Explores the generation of magnetic fields, induction, and practical applications in electromagnetism.
Magnetostatics: Applications and Laplace's Force
Explores the applications of Lorentz force and Laplace's force in devices like galvanometers and electric motors.
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.