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Ghostly Influence of Distant Magnetic Field
Posted on Thursday, February 23, 2012 @ 22:20:40 GMT by vlad
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In the Aharonov-Bohm effect, proposed in 1959, quantum particles are
affected in measurable ways by the classical electromagnetic potential,
previously regarded as a purely mathematical construct. The
electromagnetic field is too far from the particles to have any direct
influence.
A 1959 Physical Review paper
claimed that an electric or magnetic field could influence quantum
particles even though the particles never experienced the field
directly. In classical electromagnetism there is no other way to
influence a particle besides direct contact with the fields. Even though
quantum mechanics was well-established by then, the idea met with
widespread skepticism.
Arguments over the theoretical analysis and attempts at experimental
verification continued for some years, but eventually the so-called
Aharonov-Bohm effect took its place as a legitimate demonstration of
unexpected physics in the quantum world.
In classical electromagnetism, electric and magnetic
fields are the fundamental entities responsible for all physical
effects. There is a compact formulation of electromagnetism that
expresses the fields in terms of another quantity known as the
electromagnetic potential, which can have a value everywhere in space.
The fields are easily derived theoretically from the potential, but the
potential itself was taken to be purely a mathematical device, with no
physical meaning... Full article: http://physics.aps.org/story/v28/st4
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Re: Ghostly Influence of Distant Magnetic Field (Score: 1) by Koen on Monday, February 27, 2012 @ 09:37:19 GMT (User Info | Send a Message) http://no.nl/tesla | The AB effect is real, but what is it? Two possibilities:
- it is a quantum mechanical effect where the A potential causes a phase shift in the electron wave - it is a classical force effect, to be precise: a longitudinal Ampère force that acts parallel to the electron direction of movement, and that is mediated by a new type of classical scalar field, such as div(A), where A is the "magnetic" potential.
From all AB experiments does not follow if the electrons that follow path A become shifted in position (in case a real force acts on the electrons following path A) with respect to electrons that follow path B.
See http://members.tele2.nl/kovavla/experiments.html , best visible in the Firefox browser.
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Re: Ghostly Influence of Distant Magnetic Field (Score: 1) by nanotech on Friday, February 24, 2012 @ 13:22:17 GMT (User Info | Send a Message) | Everyone interested, let's discuss the AB Effect and how it relates to overunity power systems, and more. I am convinced that this is real, based on the evidence, and, it has been replicated in over 20,000 experiments worldwide. There are several very good books out there that focus on the AB Effect.
Thomas Bearden points out that the AB Effect proves the existence of the Magnetic Vector Potential, the A Field, and, that the quantum potentials are the more fundamental of the fields than the normal em fields; this was also supported by the papers written by ET Whittaker back in the early 1900s.
By manipulating em fields to produce potentials, you can produce wireless transmission of power and matter/mass, materialization/dematerialization (from the quantum to the macro level!), extract energy from the ether, and alot more.
A more physical, mechanical way to interpret the AB Effect is this: It is a direct use of the ether to effect charges and the magnetic field. The "quantum potential" can be another name for the aether/ether.
The actual model is not as important as the reality behind it. In theology, for example, the Trinity/Triunity of God is a model of the reality behind it: Father, Son, and Holy Spirit. The electron model of a vortex or spinning field set or a sphere of energetic motion is not as important as the electrical energy itself.
What are some practical ways to make use of the AB Effect, to produce overunity power?
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