File:Barkhausen jumps experiment with the Delayed Lenz Effect Tests Bench (DLE-TB v1.0).webm

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Original file(WebM audio/video file, VP8/Vorbis, length 3 min 34 s, 1,280 × 720 pixels, 1.93 Mbps overall, file size: 49.3 MB)

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English: Heinrich Barkhausen, a German physicist, discovered in 1919 that a slow, smooth increase of a magnetic field applied to a piece of ferromagnetic material, such as iron, causes it to become magnetized, not continuously but in minute steps.

The sudden, discontinuous jumps in magnetization may be detected by a coil of wire wound on the ferromagnetic material." (source "the Enclyclopedia Britannica").

The Barkhausen jumps in the iron core can be easily detected in the DLE-TB v1.0 with an audio amplifer connected on the secundary stator coil.

HYPOTHESIS : - Does the Barkhausen jumps can provide extra energy ? - Does the Barkhausen jumps flowing back and forth and in phase are able to delay the Lenz effect in the iron core ?

More infos at : www.jlnlab.co
Date
Source YouTube: Barkhausen jumps experiment with the Delayed Lenz Effect Tests Bench (DLE-TB v1.0) – View/save archived versions on archive.org and archive.today
Author Jean-Louis Naudin

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Attribution: Jean-Louis Naudin
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Date/TimeThumbnailDimensionsUserComment
current13:50, 18 May 20183 min 34 s, 1,280 × 720 (49.3 MB)Vislupus (talk | contribs)Imported media from https://www.youtube.com/watch?v=ZFZ4vxedHOY

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Format Bitrate Download Status Encode time
VP9 720P 1.61 Mbps Completed 00:51, 19 August 2018 5 min 59 s
Streaming 720p (VP9) 1.54 Mbps Completed 14:30, 2 February 2024 4.0 s
VP9 480P 880 kbps Completed 00:50, 19 August 2018 4 min 37 s
Streaming 480p (VP9) 819 kbps Completed 04:15, 2 January 2024 2.0 s
VP9 360P 514 kbps Completed 00:48, 19 August 2018 3 min 1 s
Streaming 360p (VP9) 453 kbps Completed 10:30, 13 January 2024 2.0 s
VP9 240P 317 kbps Completed 00:48, 19 August 2018 2 min 50 s
Streaming 240p (VP9) 256 kbps Completed 02:57, 14 December 2023 2.0 s
WebM 360P 556 kbps Completed 13:53, 18 May 2018 2 min 33 s
Streaming 144p (MJPEG) 836 kbps Completed 19:48, 31 October 2023 10 s
Stereo (Opus) 58 kbps Completed 20:27, 15 November 2023 3.0 s
Stereo (MP3) 128 kbps Completed 04:04, 30 October 2023 5.0 s

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