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Overunity Machines Forum



Rotationnal attraction

Started by EOW, December 28, 2017, 06:25:17 AM

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0 Members and 1 Guest are viewing this topic.

EOW

No mass, no friction, no external gravity.
All volumes are constant.
I deform a device and I count all energies in/out.
I use small blue spheres like molecules of water, but no mass and no friction.
I attract the blue spheres from the green line.

EOW

I change the axis of rotation of the magenta arm.

EOW

If I put white spheres (very small) at 74% and the rest of the device is the blue spheres, then the pressure on the walls is the same, so the energy from the rotation of the lateral walls is 0. But the springs lost -0.207 * 26 % of the device and the green line win 0.414*26 % of the device.

It is a theoretical device, just to break the law of conservation of the energy

To simplify the calculations:

No gravity
No mass
No friction
All volumes are constant
It is not a cycle ! I count all the energies in/out from the start to the end
The device is unstable, I need an external device to control it, but that device count all the energies in/out
The force of the springs is constant, doesn't depend of the length of the springs
The radius of the blue spheres is 1e-100 m
The radius of the white spheres is 1e-20 m
Surface of the device = 1 m²
Force of the springs = 1 N/m²


It works because the volume of the blue spheres doesn't depend of the radius of the blue or white spheres.

EOW

I compare the same device with a modification.

First image: the device at start
Second image: explain how the blue spheres move
Third image: Another angle to watch where the part of the B1 goes
4° image: first solution, the new part is attached on the same Bx (with x number 1 to 4)
5° image: second solution, the new part is attached for the next Bx except for the last

First solution: the sum of torques and the rotation give a positive work
Second solution: the sum of torques and the rotation give a negative work

All the rest is the same.

Floor

@EOW

I have looked at your diagrams twice. 

Nice drawings, but still I don't understand the motions and forces they are supposed to describe.

Perhaps if you will write detailed descriptions in your native tongue, and then translate and post them
we will under stand your principles illustrated.

          Best wishes
            floor