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Overunity Machines Forum



re: energy producing experiments

Started by Delburt Phend, February 04, 2017, 09:31:19 AM

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Delburt Phend

Note 9:44 and 11:50 the change in slope "acceleration" and radius change.

https://www.youtube.com/watch?v=brPnjntCq88&t=617s

Delburt Phend

Quote from: Delburt Phend on May 05, 2023, 05:12:35 PM
I set up the photo gates on the 4 concentric circles experiment. I kept the drive mass at the 35 mm diameter.  This is a light pulley with four radii (lrn fzx axle and wheel). 40 grams at 105 mm diameter is just as easily accelerated as 120 g at 35 mm diameter; but the energy is three times higher. The gate trip times are the same for the 40 grams at the 105 mm diameter as they are for the 120 g at the 35 mm diameter.

Larger radius differences can be used for larger energy production. You could use 30 to 1.

And I hope we can imagine this being 40 metric tons rather than 40 g.

And we have the 'cylinder and spheres' to secure motion from the apparatus.  Times   times    times:    huge huge and huge

Kator01

Delburt,


is there a video you made about this experiment ? I have a problem visualizing what you describe.


Are these two masses 120 gr and 40 gr  accellerated upwards by the falling mass which is identical in both cases ?
Is the 105 mm and 35 mm diameter mentioned  another pulley attached to the drive-wheel ?


Mike

Delburt Phend


Delburt Phend

Sorry the pic is so big. I have not posted pictures for a while; they use to have a downsize option. Adjust it if you like; or delete it.

https://www.youtube.com/watch?v=k2relFtDrC4&t=21s 

I bought a Waxl01 from Zoro: I see United Scientific also has them. This is a wheel and axle (pulley) with four radii.

A string with 20 g on both ends was draped over the 105 mm diameter; to make that radius into an Atwood's.

A string with 60 g on both ends was draped over the 35 mm diameter; to make that radius into an Atwood's.

The light 40 g Atwood's and the heavier 120 g Atwood's were run individually with an extra mass of 20 grams at the 35 mm diameter (17.5 mm radius).

The only additions to the video would be a flag taped on the pulley, a photo gate and suspended masses. As seen, in the photo.