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Overunity Machines Forum



The secret to Overunity

Started by Tajerek, December 17, 2017, 07:40:33 AM

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0 Members and 4 Guests are viewing this topic.

Grumage

Merry Christmas Everybody.

A slightly more " pedestrian " video than the one I watched presented by Tinsel Koala.

https://www.youtube.com/watch?v=kIwHqV1NpHs

We should be able to move a little Mass with 20,000 volts!   ;)

Cheers Graham.

Void

Quote from: Grumage on December 25, 2017, 11:56:04 AM
Merry Christmas Everybody.
A slightly more " pedestrian " video than the one I watched presented by Tinsel Koala.
https://www.youtube.com/watch?v=kIwHqV1NpHs
We should be able to move a little Mass with 20,000 volts!   ;)
Cheers Graham.

Hi Grum. Very nice demo! I believe that kind of setup is called 'Franklin's Bell' or 'Franklin's Bells'.
Yes, lots of power there to move some significant mass. If you replaced the the two metal balls
on the sides with metal Christmas bells, then you could have a real Christmas type demo.  ;D
Nice job!

All the best...

SolarLab

Quote from: Grumage on December 25, 2017, 11:56:04 AM
Merry Christmas Everybody.

A slightly more " pedestrian " video than the one I watched presented by Tinsel Koala.

https://www.youtube.com/watch?v=kIwHqV1NpHs

We should be able to move a little Mass with 20,000 volts!   ;)

Cheers Graham.

Merry Christmas Graham,

An interesting [thought provoking] demo, thank you!

Could you please share some details regarding:

(1) the metal ball diameter,
(2) weight {if you know it}
(3) sphere material {stainless, grade, ... if known},
(4) voltage {20KV DC?}, and consumed current {if measurable},
(5) distance of ball travel and approximate reverse dwell time and speed?

Might be a good CAE/CAD candidate "demo add-on."
Worth a try at any rate - to see if the simulation comes close to the experimental results.

Thanks in advance,

SL

sm0ky2

Quote from: SolarLab on December 26, 2017, 01:09:19 AM
Merry Christmas Graham,

An interesting [thought provoking] demo, thank you!

Could you please share some details regarding:

(1) the metal ball diameter,
(2) weight {if you know it}
(3) sphere material {stainless, grade, ... if known},
(4) voltage {20KV DC?}, and consumed current {if measurable},
(5) distance of ball travel and approximate reverse dwell time and speed?

Might be a good CAE/CAD candidate "demo add-on."
Worth a try at any rate - to see if the simulation comes close to the experimental results.

Thanks in advance,

SL


The field equations indicate a spacial surface area effect dominates the electric field
The larger the diameter (and subsequent surface area), the less significant mass becomes.
According to mathematical theory, larger balls will have the potential to move more mass.

I was fixing a shower-rod, slipped and hit my head on the sink. When i came to, that's when i had the idea for the "Flux Capacitor", Which makes Perpetual Motion possible.

Grumage

Quote from: sm0ky2 on December 26, 2017, 06:53:50 AM

The field equations indicate a spacial surface area effect dominates the electric field
The larger the diameter (and subsequent surface area), the less significant mass becomes.
According to mathematical theory, larger balls will have the potential to move more mass.

More to come....

Video update planned for later today.

Cheers Graham.