Re: relevation_physics

Jun 25, 2024 Last reply: 2 years ago 6 Replies


relevation_physics


> Was watching old video, early morning
> Thinking about why we cannot measure size of electron (still unknown)
> Then wondered if I could make something mechanical that would behave like electon,
> say 2 repel each other etc..
> Thinking plasma, but hard to make.
> Then thinking magnets, but must be 3D.
> So a constructon of many magnets with say N poles tied together and south poles at the outside
> So then thought so much force needed to hold those north poles together..
> Then 'relevation'!! BLACK HOLE.

That takes mass, and quite a lot of it. But small black holes evaporate fast, and becoming decreasingly "black" as they get smaller.


A 70kgm black hole will evaporate in a picosecond and release all that mass-energy in the process.


at he center, much to do these days about femto scale black holes all over the universe..
> Then construction, would I use needles for a demo ball made of thousand magnetic needles,
> like strings.. STRINGS s*it oh man I'v got it.

But education might cure it, if you had the sense to acquire one. Fat chance.

The size of the electron isn't entirely unknown. It's just that different methods give different results. An electron isn't a solid tiny billiard ball. It's a fuzzy thing, kind of hard to pin down its size to a definite value. Much depends on how hard you squeeze!

Your ball of magnets isn't going to work. It would amount to making a magnetic monopole. To our current knowledge, there is no such thing. Reproducibly making or detecting magnetic monopoles would be a Nobel prize achievement!

Jeroen Belleman

You will never know.

Only in Jan's bizarre reality.

<snipped even more fatuous nonsense>

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It comes down to the origin of magnetic fields as a relativistic effect of moving electric fields. This implies that the magnetic flux through the surface of a closed volume always adds up to zero. There have been a few claims to the contrary, but no one ever came up with a solid reproducible demonstration. The corollary is that when you cut a bar magnet into two pieces, you don't get a separate north and south pole, but instead two smaller magnets with their own north and south poles each.

It was formalized as one of Maxwell's laws, which, although formulated before relativity, turned out to fit in perfectly.

Jeroen Belleman

OK, go collect your Nobel prize then. ;-)

Jeroen Belleman

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