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chy_farm

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I watched your video when it came out, what did this experiment tell you?
Good morning Steve, it tells me that
1:
the movement of a magnet is equivalent to the movements in the phases,
2:
the movement of a magnet gives each cells of the aluminium ladder a circulation of current which then create a magnetic flux, and this flux makes traction/repulsion to the magnet I tried to move.

So the traction pulls the aluminium film, while the repulsion helps to push it.
 

chy_farm

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That is aluminium foil correct?
Good morning Mike, nice Sunday but a bit chilling to me, lol. Yes it's a aluminium foil. So this means the magnetic force does not pull the foil in a way it does to steel. It 'indirectly' pulls the foil.
 

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Good morning Mike, nice Sunday but a bit chilling to me, lol. Yes it's a aluminium foil. So this means the magnetic force does not pull the foil in a way it does to steel. It 'indirectly' pulls the foil.
Interesting and a pretty cool project. So it's basically backwards so to speak?
 

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Good morning Steve, it tells me that
1:
the movement of a magnet is equivalent to the movements in the phases,
2:
the movement of a magnet gives each cells of the aluminium ladder a circulation of current which then create a magnetic flux, and this flux makes traction/repulsion to the magnet I tried to move.

So the traction pulls the aluminium film, while the repulsion helps to push it.

So the magnet pulls from the earth and is disrupted by the foil, so pull, no pull, pull, no pull and so on?
 

chy_farm

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Interesting and a pretty cool project. So it's basically backwards so to speak?
In a three phase motor we see a rotor in side, which is made in a shape like this ladder. But this ladder is not flat like this one I made, instead it is made cylindericle. The difference is that the motor has a 'round ladder' while this ladder is flat.
So in the motor the 'round ladder' moves when the three phase power goes.
 

chy_farm

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So the magnet pulls from the earth and is disrupted by the foil, so pull, no pull, pull, no pull and so on?
My illustration wants some more, sorry. When this magnet moves this way on the middle of the aluminum ladder, just above the middle cell amongst these 7 cell for example, there comes two magnetic fields.
One comes in front of the middle cell, another in the cell at the back.
Then the magnetic flux grows in the cell in the front pushes the magnet,
while the magnetic flux in the back pulls the magnet.
So the ladder moves this way along with the magnet.
 

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