I understand LENR is electromagnetic in nature and as such, an analogy might well be drawn between LENR processes and electromagnetic circuits.
If LENR was carried inside of the lattice, that would be analogous to a Direct current(DC) current. If LENR occurs only on the outside of the lattice, that is analogous to a Alternating Current(AC). There are different rules for designing a AC circuit as compared to a DC circuit. So it is important to determine how power moves from the source to the load. The energy source of LENR is heat which is analogous to a source of AC like a generator. Heat is a well know form of light. It is also well known that light transfers power in the form of waves. The wave motion of heat must be organized in the lattice and that is accomplished through dipole motion of electrons and holes on the surface of the lattice. Like any EMF circuit where power is transferred, concentrated, converted and focused, a LENR system might well be considered a complex circuit where power is carried from a source to a load. The source in LENR is heat and the load is the nuclei of atoms. Because heat is a wave like alternating energy source, there is an impedance factor to consider. The LENR circuit must be impedance matched between the source and the load to maximize power transfer between the heat source and the nucleus. In some LENR systems, the LENR circuit design is inherently poor and little power is transferred between the source and the load. In other systems(LENR+), the circuit design is much better where the wave nature of the power source is recognized so that power is transformed in a more efficient way. What is not yet currently recognized are all the rules for LENR circuit design and what LENR components will provide the maximum efficiency at impedance matching between the source and the load. But as an example, some rules are becoming apparent. Heat energy is best correlated, concentrated and focused by using micron sized particles whose size is resonant to the frequency of the light (heat) that drives the dipole motion of the electrons on the surface of these particles. But nanoparticle aggregations consistent with antenna theory can also be sized to some resonant fraction of the wave length of the light. This technique can work also. In order to become good LENR circuit designers, we must put effort into discovering and engineering LENR active components and understand how these components work together to unlock the electromagnetic nature of the nucleus. On Mon, Dec 1, 2014 at 12:36 PM, Peter Gluck <[email protected]> wrote: > Dear Readers, > > Let's intensify our LENR centered dialogue > This month I will share with you my daily > LENR discoveries and ideas. > For today, please read: > > http://egooutpeters.blogspot.ro/2014/12/shared-daily-lenr-discoveries-dec-1-2014.html > > I am exploring many territories but not all, so please help > us with your suggestions. Thank you in advance. > > Peter > -- > Dr. Peter Gluck > Cluj, Romania > http://egooutpeters.blogspot.com >

