Re: [EVGRAY] Re: Magnetoelectric vs Electromagnetic
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2019-03-07T04:31:16+00:00
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[1/1] Re: [EVGRAY] Re: Magnetoelectric vs Electromagnetic
2019-03-07T04:31:16+00:00
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Jakob Wall
<[email protected]>
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<[email protected]>
Seriously? However it sounds more interesting after the second beer,,, -------------------------------------------- On Tue, 3/5/19, Norman Wootan [email protected] [EVGRAY] <[email protected]> wrote: Subject: [EVGRAY] Re: Magnetoelectric vs Electromagnetic To: "Bert Pool" <[email protected]>, "Bob Paddock" <[email protected]>, "Art Devine" <[email protected]>, "joel mcclain" <[email protected]>, "Mbking42" <[email protected]>, "Lane Wootan" <[email protected]>, "Toby Grotz" <[email protected]>, "Walt" <[email protected]>, "Steven Elswick" <[email protected]>, "Angel Alvarez" <[email protected]>, "Fredric Fletcher" <[email protected]>, "Jeane Manning" <[email protected]>, "Jon Gentry" <[email protected]>, "Phil Rembold" <[email protected]>, [email protected] Received: Tuesday, March 5, 2019, 8:28 AM https://www.youtube.com/watch?v=oQ1WZ-eJW8Y On 3/5/2019 8:09 AM, Norman Wootan wrote: https://www.youtube.com/watch?v=iphcyNWFD10 The Livingston LIGO is only about 90 miles away and they have Scientific visiting days with tours. On 3/5/2019 7:54 AM, Norman Wootan wrote: Bert, reminded me of your double slit experiments. https://www.youtube.com/watch?v=p-MNSLsjjdo On 3/5/2019 7:33 AM, Norman Wootan wrote: Moray, I keep going back to the Micro Plasma Events instead of the Super Scale Solar Events, something we can experiment with as you are doing. See: Abstract Microscopically, collisionless reconnection in thin current sheets is argued to involve `composite electrons' in the ion inertial (Hall current) domain, a tiny fraction of electrons only. These `composite electrons' are confined to lower Landau levels $\epsilon_L\ll T_e$ (energy much less than temperature). They demagnetise by absorbing magnetic flux quanta $\Phi_0=h/e$, decouple from the magnetic field, transport the attached magnetic flux into the non-magnetic centre of the current layer, where they release the flux in the form of micro-scale magnetic vortices, becoming ordinary electrons. The newly born micro-scale magnetic vortices reconnect in their strictly anti-parallel sections when contacting other vortices, ultimately producing the meso-scale reconnection structure. We clarify the notions of magnetic field lines and field line radius, estimate the power released when two oppositely directed flux quanta annihilate, and calculate the number density and Landau-level filling-factor of `composite electrons' in the Hall domain. As side product we find that the magnetic diffusion coefficient in plasma also appears in quanta $D_0^m=e\Phi_0/m_e=h/m_e$, yielding that the bulk perpendicular plasma resistivity is quantised, with quantum (lowest limit) $\eta_{\,0\perp}=\mu_0 e\Phi_0/m_e=\mu_0h/m_e\sim 10^{-9}$ Ohm m. Keywords: Reconnection, thin current sheets, quantum Hall effect, quantised diffusivity, quantised plasma resistivity, composite electrons (PDF) Collisionless magnetic reconnection: Flux quanta, field lines, `composite electrons' -- Is the quantum-Hall effect involved in its micro-scale physics?. Available from: file:///C:/Users/Owner/Documents/(PDF)%20Collisionless%20magnetic%20reconnection%20%20Flux%20quanta,%20field%20lines,%20%60composite%20electrons'%20--%20Is%20the%20quantum-Hall%20effect%20involved%20in%20its%20micro-scale%20physics.html [accessed Mar 05 2019]. Very interesting for the annihilation occurs at all levels. Norm On 3/3/2019 8:57 AM, Norman Wootan wrote: https://en.wikipedia.org/wiki/Magnetoelectric_effect https://en.wikipedia.org/wiki/Electromagnetic_field https://en.wikipedia.org/wiki/Magnetostatics https://en.wikipedia.org/wiki/Electrostatics Bert, If we are to fully understand AG and EMP, we need to understand the subtle differences from normal. The current debate is how to shield against EMP and Space Radiation, magnetic. Pay particular attention to the first topic, especially magnetostrictive and piezo materials #yiv0270189139 #yiv0270189139 -- #yiv0270189139ygrp-mkp { border:1px solid #d8d8d8;font-family:Arial;margin:10px 0;padding:0 10px;} #yiv0270189139 #yiv0270189139ygrp-mkp hr { border:1px solid #d8d8d8;} #yiv0270189139 #yiv0270189139ygrp-mkp #yiv0270189139hd { color:#628c2a;font-size:85%;font-weight:700;line-height:122%;margin:10px 0;} #yiv0270189139 #yiv0270189139ygrp-mkp #yiv0270189139ads { margin-bottom:10px;} #yiv0270189139 #yiv0270189139ygrp-mkp .yiv0270189139ad { padding:0 0;} #yiv0270189139 #yiv0270189139ygrp-mkp .yiv0270189139ad p { margin:0;} #yiv0270189139 #yiv0270189139ygrp-mkp .yiv0270189139ad a { color:#0000ff;text-decoration:none;} #yiv0270189139 #yiv0270189139ygrp-sponsor #yiv0270189139ygrp-lc { font-family:Arial;} #yiv0270189139 #yiv0270189139ygrp-sponsor #yiv0270189139ygrp-lc #yiv0270189139hd { margin:10px 0px;font-weight:700;font-size:78%;line-height:122%;} #yiv0270189139 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