I would suppose that the resonance would only be seen if a very large magnetic field were applied to the active material. If LENR activity is being observed along with a large external field then the spectrum of that field would likely demonstrate a peak around the resonant region. I am assuming that the box containing the nickel and hydrogen mix passes enough of the low frequency signal of interest. The box will act like a low pass magnetic filter due to its conductivity and we might be left only observing the signals appearing slightly above DC.
My suspicion is that a working system offers the best possibility for answering the question. Actually, that might be the only reliable method due to the interactions. Dave -----Original Message----- From: Jones Beene <[email protected]> To: vortex-l <[email protected]> Sent: Sun, Feb 9, 2014 9:30 pm Subject: RE: [Vo]:Spin this ... From:David Roberson How would we determine that a low frequency resonance actuallyexists in this case? Hmm…. You wantsimple, right? Do you have a good DSO? One would probably see something withhydrogen loaded wire – but the challenge would be the length. 100 metersor so would be required for ¼ wl but it could be tried with much less. If a meaningful test couldbe as simple as measuring the Q of a pulsed coil at various frequencies around429 kHz then a nickel wire coil as cathode can be loaded electrolytically. You wouldbe looking for a massive difference in ring time, in a simple test. If it doesn’tshow up, move on to something else.

