Let us really put some theory into this idea and try to explain it simply.

When the reactor reaches a stable thermal condition after it has completely
started up, all the dipoles vibrate together as driven by the
isothermal(even) heat. This even heat causes the dipoles to move together
in the same way. It is like a room full of dancers moving to the same tune.
When this happens, a state of super radiance sets in.

In quantum optics, superradiance is a phenomenon that occurs when a group
of N emitters, such as excited atoms in a dipole motion, interact with a
common light field. heat is a common light field. If the wavelength of the
light is much greater than the separation of the emitters, then the
emitters interact with the light in a collective and coherent fashion. The
wavelength of infrared light is between 700 nm – 1 mm. The dipoles are
spaced together closer than that. This causes the group to emit light as a
high intensity pulse (with rate ∝ N2). This is a surprising result,
drastically different from the expected exponential decay (with rate ∝ N)
of a group of independent atoms (as in spontaneous emission). Superradiance
has since been demonstrated in a wide variety of physical and chemical
systems, such as quantum dot arrays  and J-aggregates.[ The effect has
recently been used to produce a polariton superradiant laser.

To simplify all the dipoles acted like a single huge dipole. The input
power that comes into the reactor feeds all the dipoles equally. the
magnetic field that is produced by the dipoles and output are all the same.
All the nuclear energy that the dipoles produce is shared equally among all
the dipoles. The dipoles release the same amount of heat like there was a
single huge dipole instead of many individual dipoles performing the same
dance step.

On Sat, Jun 20, 2015 at 2:46 PM, Bob Cook <[email protected]> wrote:

> Robin--
>
> Furthermore, SPP entities rotate and would seem to create a rotating
> magnetic fields.  This could be a coupling agent to transfer nuclear
> binging energy to lattice heat.
>
> In a similar vein, a  BEC I think could be a group of magnetic dipoles as
> long as each dipole is a Bose particle with 0 or integer intrinsic spin.
> Cooper pairs of electrons or protons I believe constitute Bose particles
> and could form a BEC.   There may be  a gyro-magnetic couple between Ni
> lattice paired  electrons and Ni nucleons (and Li-7 nucleons) with the BEC
> being the coupling mechanism.
>
> Bob Cook
>
>
>
> -----Original Message----- From: [email protected]
> Sent: Friday, June 19, 2015 3:36 PM
> To: [email protected]
> Subject: Re: [Vo]:Re: Cat stimultion
>
> In reply to  Bob Cook's message of Thu, 18 Jun 2015 22:54:43 -0700:
>
> Hi,
>
> Yes, that's basically what I had in mind. Note however that in order for
> net
> energy to be released a nuclear reaction of some kind has to occur. Perhaps
> Rossi's theoretician is correct, and Li needs to be stimulated to a higher
> energy level before the fusion reaction can take place. NMR might be the
> mechanism that does that. If so, then it should be possible to engineer a
> much
> improved device, by concentrating on the gyromagnetic ratio of Li7 and
> providing
> frequency and magnetic field strengths to match.
> However there is also the possibility that as the Li7 becomes excited, the
> gyromagnetic ratio will change (due to a change in structure of the
> nucleus).
> This could be another reason that the varying magnetic field is
> important:- it
> can "follow" the change and supply the correct field strength repeatedly.
>
>  Robin--
>>
>> I CONCUR WITH YOUR MRI (NMR) THOUGHT.
>>
>> It is my understanding that the resonance with magnetic dipoles of a
>> nucleus
>> is with a RF signal that invokes a small energy shift in the subject
>> nucleus.  These resonances are modified by a magnetic field.  The energy
>> absorbed in a resonant transition reflects a differential spin quantum
>> number from the ground (unexcited) energy state of the subject nucleus.
>> The
>> energy associated with a single spin quanta is small.  It may be possible
>> to
>> excite nuclear magnetic dipoles by more than one quanta and reach a higher
>> excited energy state than one spin quanta above the base.   The resulting
>> "eximer" may not decay to the original base state, but to an entirely
>> different nucleus with a loss of mass (spin energy mass) distributed as
>> thermal energy to the rest of the coherent system to which it is coupled.
>>
>> In the case of LiAlH bonded to a Ni nano particle, maybe with dissolved H
>> in
>> the Ni lattice, all of  which is a coherent system.
>>
>> Bob Cook
>>
>> -----Original Message----- From: [email protected]
>> Sent: Thursday, June 18, 2015 8:13 PM
>> To: [email protected]
>> Subject: Re: [Vo]:Cat stimultion
>>
>> In reply to  Axil Axil's message of Thu, 18 Jun 2015 20:43:15 -0400:
>> Hi,
>> [snip]
>>
>>>
>>> http://www.e-catworld.com/2015/02/27/rossi-natural-gas-powered-e-cat-not-a-matter-of-simple-heat/
>>>
>>>
>>>
>>> Natural gas did not work. Its more than just heat.
>>>
>>
>> That's interesting. It made me think of MRI where resonance occurs for a
>> specific combination of frequency and magnetic field strength. If a
>> constant
>> frequency is available then resonance could be achieved by regularly
>> varying
>> the
>> magnetic field strength as would occur with AC current.
>>
>> Knowing your penchant for all things magnetic, I guess you have already
>> suggested this. :)
>>
>> Regards,
>>
>> Robin van Spaandonk
>>
>> http://rvanspaa.freehostia.com/project.html
>>
> Regards,
>
> Robin van Spaandonk
>
> http://rvanspaa.freehostia.com/project.html
>
>

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