Simuladores utilizados:
https://phet.colorado.edu/pt_BR/simulations/category/physics/electricity-magnets-and-circuits
https://nationalmaglab.org/education/magnet-academy/watch-play/interactive
---------------------------------------
Referências Importantes:
Linha do tempo dos motores: Karlsruher Institut für Technologie - Electric motor history. https://www.eti.kit.edu/english/1376.php
IEEE, linha do tempo das máquinas elétricas. https://italy.ieeer8.org/wp-content/uploads/sites/24/2018/12/Paolo-Brenni_Pacinotti.pdf
-------------------------------------
Artigos científicos sobre o assunto:
Wicks, F. (July 1, 1999). "The Blacksmith's Motor." ASME. Mechanical Engineering. July 1999; 121(07): 66–69. https://doi.org/10.1115/1.1999-JUL-8
Artigo com carta anônima enviado para Faraday: P.M., & Faraday, M. (1832). XXXIV. Account of an experiment in which chemical decomposition has been effected by the induced magneto-electric current. The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science, 1(2), 161–162. doi:10.1080/14786443208647856
Artigos publicados por Faraday em Philosophical Magazine and Journal of Science: https://www.tandfonline.com/action/doSearch?target=default&ContribAuthorStored=Faraday,%20Michael
Magneto- and Dynamo-Electric Machines. (1882). Nature, 26(666), 318–319. doi:10.1038/026318a0
Magneto-Electric Machines. (1875). Nature, 12(294), 130–132. doi:10.1038/012130a0
Michalowicz, J. C. (1948). Origin of the electric motor. Electrical Engineering, 67(11), 1035–1040. doi:10.1109/ee.1948.6444428
The rise of the electric motor. (2016). World Pumps, 2016(4), 28–30. doi:10.1016/s0262-1762(16)30133-x
Bowers, B. (2004). Barking Up the Wrong (Electric Motor) Tree. Proceedings of the IEEE, 92(2), 388–392. doi:10.1109/jproc.2003.821901
Ritchie, W. (1833). Experimental Researches in Electro-Magnetism and Magneto-Electricity. Philosophical Transactions of the Royal Society of London, 123(0), 313–321. doi:10.1098/rstl.1833.0017
Francis Watkins (1835) XII. On magneto-electric induction, The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science, 7:38, 107-113, DOI:10.1080/14786443508648674
Sobre Jacobi: Otto Sibum, H. (2003). Experimentalists in the Republic of Letters. Science in Context, 16(1), 89–120. doi:10.1017/s0269889703000747
Siemens, A., Spagnoletti, C. E., Crompton, Winter, G. K., Munro, J., Kempe, H. R., … Cardew. (1881). Discussion on “The application of dynamo-electric machines to railway rolling stock.” Journal of the Society of Telegraph Engineers and of Electricians, 10(36), 114–121. doi:10.1049/jste-2.1881.0011
Artigo em que o irmão se Werner von Siemens comunica a descoberta na Inglaterra: On the Conversion of Dynamical into Electrical Force without the Aid of Permanent Magnetism. Proceedings of the Royal Society of London, Vol. 15 (1866 - 1867), pp. 367-369. https://www.jstor.org/stable/112652
Wheatstone comunica sua descoberta sobre o dínamo: Charles Wheatstone. On the Augmentation of the Power of a Magnet by the Reaction Thereon of Currents Induced by the Magnet Itself. Proceedings of the Royal Society of London, Vol. 15 (1866 - 1867), pp. 369-372. https://www.jstor.org/stable/112653
Artigo sobre Varley e suas descobertas: B. Samuel C. Alfred Varley. Nature 107, 789–790 (1921) doi: 10.1038 / 107789b0
MICHAEL FARADAY: O CAMINHO DA LIVRARIA À DESCOBERTA DA INDUÇÃO ELETROMAGNÉTICA: http://www.scielo.br/pdf/ciedu/v10n3/14.pdf
Encyclopedia Britannica. Electric motor: https://www.britannica.com/technology/electric-motor
Hans Christian Ørsted: https://nationalmaglab.org/education/magnet-academy/history-of-electricity-magnetism/pioneers/hans-christian-orsted
Bússola de Oersted's: https://nationalmaglab.org/education/magnet-academy/watch-play/interactive/orsted-s-compass
André Marie Ampère: https://www.famousscientists.org/andre-marie-ampere/
As 10 principais contribuições de André-Marie Ampere para a ciência: https://www.learnodo-newtonic.com/ampere-contribution
Linha do tempo interativa da vida de Michael Faraday: https://www.rigb.org/our-history/michael-faraday/about
Motor de Faraday: https://nationalmaglab.org/education/magnet-academy/watch-play/interactive/faraday-motor
-------------------------------------------
A roda de Barlows:
A roda de Barlows, Simulador: https://nationalmaglab.org/education/magnet-academy/watch-play/interactive/barlow-s-wheel
Vídeo demonstrando a roda de Barlows: https://www.youtube.com/watch?v=0rRjUJsjCXc
Mais explicação sobre a roda de Barlows: https://www.upsbatterycenter.com/blog/barlows-wheel-electricity-magnetism-work/
--------------------------------------------
Michael Faraday's generator: https://www.rigb.org/our-history/iconic-objects/iconic-objects-list/faraday-generator
Joseph Henry: https://edisontechcenter.org/JosephHenry.html
Outras publicações de William Ritchie: https://royalsocietypublishing.org/action/doSearch?ContribAuthorStored=Ritchie%2C+William
Davenport Electric Motor, 1838: https://engineeringhistory.tumblr.com/image/54426704870
Werner von Siemens and the dynamoelectric principle: https://new.siemens.com/global/en/company/about/history/news/dynamo-machine.html
Werner von Siemens: https://ethw.org/Werner_von_Siemens
How does the dynamoelectric principle work? https://assets.new.siemens.com/siemens/assets/api/uuid:0c2a621cb32314a155d672398b8947aedba83450/version:1543065665/455-160680-grafik-dynamoelektrisches-prinzip-us-rgb-150dpi.jpg
Heinrich Friedrich Emil Lenz: http://www.jtooker.com/files/Lenz.pdf
Heinrich Friedrich Emil Lenz: https://www.oxfordreference.com/view/10.1093/oi/authority.20110803100100162
Canal CHMnanoed - Magnetism: Motors and Generators: https://www.youtube.com/watch?v=d_aTC0iKO68
How do Universal Motors work? https://www.youtube.com/watch?v=0PDRJKz-mqE
Motor elétrico: https://pt.wikipedia.org/wiki/Motor_el%C3%A9trico
---------------------------------------------------------------
Algumas das Imagens:
Entre tantas outras pesquisas que não lembrei de anotar aqui. Acredito que com estas referências, já consigo dar uma direcionada em quem tiver interesse de pesquisar sobre o tema.