This is very much along the line of what I was just thinking. The base allows coupling among many high Q resonators. Begin with one moving and I bet you eventually find all of them in sync and at the same level of motion which is far smaller than the initial one. Of course, this is very dependent upon them being tuned to the same frequency. If they are mistuned, then the amplitudes would vary as well as the phase of the motion I suspect.
It is not clear why the motion of the base would not be at the same frequency as the resonances. Non linear systems do exhibit this sort of behavior on occasions, but this system appears to be mainly linear. However, If the motion of the pendulums is large then harmonic non linearities might creep in due to the return force for each pendulum being determined by the sine of the displacement. Dave -----Original Message----- From: Roarty, Francis X <[email protected]> To: vortex-l <[email protected]> Sent: Wed, Jun 12, 2013 9:41 am Subject: [Vo]:ENTANGLEMENT THRESHOLDS, bulk loading and Frequency division ..oh my Axil’s citation regarding 32 out of sync metronomes end up synchronizing http://www.youtube.com/watch?v=kqFc4wriBvE provides a lot of insight on entanglement threshold, did you note how the platform on which all the metronomes rested was free to move and that the pendulums were all aligned to swing on the same axis.. I think the random orientation of Casimir geometries / fractional orbits inside the cavity side steps this need for a common direction of motion by instead contracting or expanding the fractional hydrogens ground state with the same result of synchronization. I have seen animations of hydrogen loading becoming lock stepped after a certain loading threshold is achieved so it isn’t a reach to compare this bulk motion to the metronome platform. In the video you clearly see that the metronome platform has a small motion that must be a sub harmonic of the metronome frequency such that it adds or steals a tiny amount of motion each cycle unless they are in phase… perhaps 1/ # of metronomes? In the same way the contracting and expanding of the fractional states is achieved to synchronize your pet theory of whatever you feel comes next :_) Fran

