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English: Faraday's experiment to try to induce a current from a magnetic field, with a battery on the left, an iron ring in the centre, and a galvanometer on the right. This diagram is based on one found in page 263 of Physics: Principles with Applications, fifth edition, author Douglas C. Giancoli, illustrators Patrice Van Acker and Tamara Newnam Cavallo. The explanation in the book reads as follows, with the left coil being X and the right coil Y:
In his attempt to produce an electric current from a magnetic field, Faraday used an apparatus like that shown in Fig. 21–1. A coil of wire, X, was connected to a battery. The current that flowed through X produced a magnetic field that was intensified by the iron core. Faraday hoped that by using a strong enough battery, a steady current in X would produce a great enough magnetic field to produce a current in a second coil Y. This second circuit, Y, contained a galvanometer to detect any current but contained no battery. He met no success with steady currents. But the long-sought effect was finally observed when Faraday saw the galvanometer in circuit Y deflect strongly at the moment he closed the switch in circuit X. And the galvanometer deflected strongly in the opposite direction when he opened the switch.[...] Faraday concluded that although a steady magnetic field produces no current, a [changing one can]. Such a current is called an induced current.
For more information see Faraday's law of induction and electromagnetic induction.
Tarix
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Öz işi
Müəllif
Eviatar Bach
Lisenziya
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775
52
259
202
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247
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Iron ring
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Physik Oberstufe/ Schwingungen und Wellen/ Elektromagnetische Wellen
Electromagnetic induction
Faraday's law of induction
Inducción electromagnética
Elektromagnetska indukcija
Heinrich Lenz
Lenzovo pravilo
it.wikibooks.org layihəsində istifadəsi
Fisica classica/Induzione e legge di Faraday
it.wikiversity.org layihəsində istifadəsi
Induzione e legge di Faraday (superiori)
패러데이 전자기 유도 법칙
Induktans
Elektromagnetisk induksjon
Lei de Faraday-Neumann-Lenz
Lenzov zakon
Elektromagnetska indukcija
Heinrich Lenz
Фарадејев закон електромагнетске индукције
Електромагнетна индукција
మైకేల్ ఫారడే
Elektromanyetik indüksiyon
电现象
Yanvar 24, 2023
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Fayl Faylin tarixcesi Istifade edilen sehifeler Faylin qlobal istifadesiBu SVG faylin PNG formatindaki bu gorunusunun olcusu 800 282 piksel Diger olculer 320 113 piksel 640 226 piksel 1 024 361 piksel 1 280 451 piksel 2 560 903 piksel 1 035 365 piksel Faylin orijinali 8206 SVG fayli nominal olaraq 1 035 365 piksel faylin olcusu 41 KB Bu fayl Vikimedia Commons dadirve diger layihelerde istifade edile biler Faylin tesvir sehifesine get Xulase This W3C unspecified vector image was created with Inkscape IzahFaraday emf experiment svg English Faraday s experiment to try to induce a current from a magnetic field with a battery on the left an iron ring in the centre and a galvanometer on the right This diagram is based on one found in page 263 of Physics Principles with Applications fifth edition author Douglas C Giancoli illustrators Patrice Van Acker and Tamara Newnam Cavallo The explanation in the book reads as follows with the left coil being X and the right coil Y In his attempt to produce an electric current from a magnetic field Faraday used an apparatus like that shown in Fig 21 1 A coil of wire X was connected to a battery The current that flowed through X produced a magnetic field that was intensified by the iron core Faraday hoped that by using a strong enough battery a steady current in X would produce a great enough magnetic field to produce a current in a second coil Y This second circuit Y contained a galvanometer to detect any current but contained no battery He met no success with steady currents But the long sought effect was finally observed when Faraday saw the galvanometer in circuit Y deflect strongly at the moment he closed the switch in circuit X And the galvanometer deflected strongly in the opposite direction when he opened the switch Faraday concluded that although a steady magnetic field produces no current a changing one can Such a current is called an induced current For more information see Faraday s law of induction and electromagnetic induction Tarix 20 sentyabr 2011Menbe Oz isiMuellif Eviatar Bach Lisenziya I the copyright holder of this work hereby publish it under the following license This file is made available under the Creative Commons CC0 1 0 Universal Public Domain Dedication The person who associated a work with this deed has dedicated the work to the public domain by waiving all of their rights to the work worldwide under copyright law including all related and neighboring rights to the extent allowed by law You can copy modify distribute and perform the work even for commercial purposes all without asking permission http creativecommons org publicdomain zero 1 0 deed en CC0 Creative Commons Zero Public Domain Dedication false false AnnotationsInfoFieldThis image is annotated View the annotations at Commons775 52 259 202 1035 365 Galvanometer 334 116 261 247 1035 365 Iron ring 43 72 125 251 1035 365 BatteryCaptionsazerbaycancaAdd a one line explanation of what this file representsItems portrayed in this filetesvir ediryaradiciSome value without a Vikiverilenler itemmuellifin qisa adi Eviatar BachWikimedia username ingilis InverseHypercubeURL ingilis http commons wikimedia org wiki User InverseHypercubecopyright status ingiliscopyrighted dedicated to the public domain by copyright holder ingilislisenziyaCC0 ingilisyaranma tarixi20 sentyabr 2011source of file ingilisoriginal creation by uploader ingilis Faylin tarixcesi Faylin evvelki versiyasini gormek ucun gun tarix bolmesindeki tarixlere klikleyin Tarix VaxtKicik sekilOlculerIstifadeciSerh indiki03 46 23 sentyabr 20111 035 365 41 KB InverseHypercubefixing text 05 38 21 sentyabr 20111 035 365 37 KB InverseHypercube Istifade edilen sehifeler Bu sekile olan kecidler Maykl Faradey Faylin qlobal istifadesi Bu fayl asagidaki vikilerde istifade olunur af wikipedia org layihesinde istifadesi Faraday se wet ar wikipedia org layihesinde istifadesi قانون فاراداي حث كهرومغناطيسي ca wikipedia org layihesinde istifadesi Llei de Faraday de wikipedia org layihesinde istifadesi Elektromagnetische Induktion de wikibooks org layihesinde istifadesi Physik Oberstufe Elektrizitatslehre Induktion Physik Oberstufe Schwingungen und Wellen Elektromagnetische Wellen el wikipedia org layihesinde istifadesi Nomos ths epagwghs toy Farantei en wikipedia org layihesinde istifadesi Michael Faraday Electromagnetic induction Faraday s law of induction es wikipedia org layihesinde istifadesi Michael Faraday Induccion electromagnetica eu wikipedia org layihesinde istifadesi Indukzio elektromagnetiko fa wikipedia org layihesinde istifadesi القای الکترومغناطیسی fi wikipedia org layihesinde istifadesi Kayttaja Fiwiki tools bot kuvattomat 54 hr wikipedia org layihesinde istifadesi Indukcijski motor Elektromagnetska indukcija Heinrich Lenz Lenzovo pravilo it wikipedia org layihesinde istifadesi Induzione elettromagnetica it wikibooks org layihesinde istifadesi Fisica classica Induzione e legge di Faraday it wikiversity org layihesinde istifadesi Induzione e legge di Faraday superiori ko wikipedia org layihesinde istifadesi 마이클 패러데이 패러데이 전자기 유도 법칙 mk wikipedia org layihesinde istifadesi Elektromagnetna indukciјa ms wikipedia org layihesinde istifadesi Aruhan elektromagnet no wikipedia org layihesinde istifadesi Elektrisk strom Induktans Elektromagnetisk induksjon pt wikipedia org layihesinde istifadesi Inducao eletromagnetica Lei de Faraday Neumann Lenz ro wikipedia org layihesinde istifadesi Electrodinamică sh wikipedia org layihesinde istifadesi 1831 Lenzov zakon Elektromagnetska indukcija Heinrich Lenz sq wikipedia org layihesinde istifadesi Michael Faraday sr wikipedia org layihesinde istifadesi Maјkl Faradeј Faradeјev zakon elektromagnetske indukciјe Elektromagnetna indukciјa te wikipedia org layihesinde istifadesi ఫ రడ ప ర రణ న యమ మ క ల ఫ రడ tr wikipedia org layihesinde istifadesi Faraday in induksiyon kanunu Elektromanyetik induksiyon zh yue wikipedia org layihesinde istifadesi 古典電磁學 zh wikipedia org layihesinde 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