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  | ARTICLE  | Am. J. innov. res. appl. sci. Volume 15,  Issue-2, Pages 48-52 (August, 2022)
   Research Article 5
 
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  American Journal of Innovative Research & Applied Sciences
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American Journal of innovative
Research & Applied Sciences 
ISSN  2429-5396 (Online)
OCLC Number: 920041286
Authors Contact

*Correspondant author and authors Copyright © 2022:

|Jeannot Velontsoa  | Delphin Tomboravo | Avisel Fredo Toro |Elodie Francia Siaka | Tsialefitry Aly Saandy |.


Affiliation.


| University of Antsiranana | Renouvenable Energie and Environment doctoral school| Electric Machine Laboratory of Polytechnic School| Antsiranana | Madagascar |


This article is made freely available as part of this journal's Open Access: ID | Fofana-Ref3-ajiras180822 | 
| AUGUST | VOLUME 15 | ISSUE N° 2 | 2022 |
ABSTRACT

Objective
: This work aims to analytically compute the magnetic induction from a cylindrical solenoid. The approach is used to validate the work of graduate students in electrical engineering laboratory, University of Antsiranana, Madagascar. Methods:  Based on the Biot-Savart law, the theoretical expressions of the tridimensional (3D) magnetic field components close to a metallic solenoid were established. Results: The effects of variations about solenoid’s geometrical parameters (excentricity for instance) on the magnetic induction are illustrated. The proposed approach is illustrated throughout computing with numerical tools.

Keywords: electrical engineering, electromagnetic compatibility, analytical approach, numerical modeling magnetic induction, cylindrical solenoid, Biot-Savart law.
EDUCATIONAL APPROACH FOR THE UNDERSTANDING OF MAGNETIC INDUCTION BEHAVIOR FROM A 3-D CYLINDRICAL SOLENOID


|Jeannot Velontsoa  | Delphin Tomboravo | Avisel Fredo Toro |Elodie Francia Siaka | Tsialefitry Aly Saandy |. Am. J. innov. res. appl. sci.  2022; 15(2):48-52.

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