You have to expose electrons in the Ni by altering the structure of
the crystal or creating cracks so that they can influence the excited
electrons in the nascent hydrogen and, using exclusion, the Ni
electrons influence the positions of the H electorns making the H
atoms momentarily appear to be neutrons.

I think.  :-)

On Wed, Dec 12, 2012 at 9:38 PM, Terry Blanton <[email protected]> wrote:
> Defkalion actually alters the crystalline structure.  Cracks do not
> appear to be the issue in their reaction.  They have found a secret in
> altering the crystal structure to increase the reaction.  I'll bet
> that the reactions occur at the surface still.
>
> Note that Defkalion uses nickel foam, not powder.
>
> On Wed, Dec 12, 2012 at 9:32 PM, Mark Gibbs <[email protected]> wrote:
>> Why is it not an issue?
>>
>> [m]
>>
>>
>> On Wed, Dec 12, 2012 at 6:29 PM, Terry Blanton <[email protected]> wrote:
>>>
>>> With NiH loading is not an issue.  It seems we have two totally
>>> different LENR reactions occuring.  Are they based on the same
>>> physics?  Maybe yes, maybe no.
>>>
>>> On Wed, Dec 12, 2012 at 9:26 PM, Terry Blanton <[email protected]> wrote:
>>> > Yes, McKubre takes the endothermic loading and exothermic off loading
>>> > into his calculations in his work at SRI.
>>> >
>>> > On Wed, Dec 12, 2012 at 9:17 PM, Mark Gibbs <[email protected]> wrote:
>>> >> Something I haven't seen any discussion about is the amount of energy
>>> >> required to load materials with hydrogen to be used in these various
>>> >> LENR/CF
>>> >> devices. If that energy is taken into account, are the claims of excess
>>> >> energy from the operation of the devices still valid?
>>> >>
>>> >> [mg]
>>>
>>

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