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On 3/5/2019 8:28 AM, Norman Wootan wrote:
>
> 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
>>>>>