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Magnetic fields can send particles to infinity....[and beyond!]
http://phys.org ^ | 04-17-2012 | Provided by FECYT - Spanish Foundation for Science and Technology

Posted on 04/18/2012 1:17:03 PM PDT by Red Badger

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To: bigbob
So now all we’ve to to do is figure out how to reduce Obama to a particle.

We need an "Obama particle". It is always negative. It takes its energy from other particles. It leaves a huge negative balance all while doing nothing itself.

21 posted on 04/18/2012 2:10:33 PM PDT by Rapscallion (Taxes are taken by governments from profits and pay earned by those who work.)
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To: DManA
I can see no meaning in the phrase “Sending particles to infinity”.

Try wrestling with "beyond" infinity.

22 posted on 04/18/2012 2:37:53 PM PDT by Graybeard58 (Haggai 1, V6.. and he that earneth wages earneth wages to put it into a bag with holes. (My plight))
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To: MNDude

They get overgrown with weeds..............


23 posted on 04/18/2012 2:41:43 PM PDT by Red Badger (Think logically. Act normally.................)
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To: Red Badger
One of the conditions is that the field is generated by current loops situated on the same plane

The branes in Spain stay mainly in the plane...

24 posted on 04/18/2012 2:57:12 PM PDT by mikrofon (Astro BUMP)
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To: Red Badger
Researchers from the Complutense University of Madrid

They must do their graduate study at Compluperfectense University....

25 posted on 04/18/2012 3:03:17 PM PDT by mikrofon (Astro BUMP)
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To: Red Badger
"things aren't as they seem, nor are they otherwise..."
26 posted on 04/18/2012 3:32:30 PM PDT by Chode (American Hedonist - *DTOM* -ww- NO Pity for the LAZY)
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To: Red Badger

Are we being confused with infinity and existence?


27 posted on 04/18/2012 3:57:29 PM PDT by noinfringers3
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To: Red Badger

>Is the universe finite or infinite?

The one we live in is likely still expanding.

Beyond this universe there are likely infinite big bangs creating infinite universes. I see no reason to draw a line
in space and claim it as the end of everything.

Humans can’t define infinitely big or small and just settle for shoes that fit comfortably.


28 posted on 04/18/2012 5:50:43 PM PDT by soycd
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To: Red Badger
However, the "something else" goes beyond the established limits.

Doesn't it always!
29 posted on 04/18/2012 5:54:26 PM PDT by aruanan
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To: Red Badger

How fast?

Because if it’s traveling at the speed of sound, it’s really unremarkable.


30 posted on 04/18/2012 5:57:00 PM PDT by airborne (Paratroopers! Good to the last drop!)
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To: Red Badger
Crap, I thought this read the way it did because it was Google-translated from Spanish, but then I went to the site and found it was in English to begin with:

Here is the intro from the paper:

1. Introduction. The late Prof. Ulam, cf. [1], repeatedly stressed the importance of the study of the magnetic field B created by closed (cyclic or periodic) wires, as a source of mathematical problems: the presence of knotted streamlines of B, ergodic streamlines in open sets of R3, applications in plasma physics and biology, [2]. Recently, [3], the unreachability of the wires (the sources of B) when a charged particle moves in R3 under the presence of B was proved either for a finite number of parallel wires (that is, for a finite number of parallel straight lines) or for a finite number of circular wires, lying on parallel planes πi, its centers lying on a straight line L orthogonal to the planes πi. We study in this paper the escape to infinity of electric charges under the presence of the magnetic field B created by closed wires traversed by electrical intensities Ii. It is assumed that the electric charges interact with B via the Lorentz equation, x¨ = x˙ ∧ B. (1.1) For electric charges, interacting with the electric field E created by pointlike charges, escape to infinity was studied in [4]–[5]. The reader should have a look at references [6] and [7], where Matsuno and Goriely and Hyde studied the escape of Rn vector fields via Painlev´e analysis. The references in [8]–[22] are also useful concerning the escape for polynomial vector fields.

Concerning escape to infinity in the presence of magnetic fields B(x) created or not created by a finite number of cyclic wires, the authors are not aware of previous references studying this problem.
31 posted on 04/18/2012 6:22:25 PM PDT by aruanan
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