Eric—

I would agree that Ni-56 could be a transition result, except it was not 
reported by the Indians.  

Furthermore other transitions may occur without electric force fields ejecting 
charged entities from the coherent system.   3 virtual muons  may fuse to a 
proton or a neutron during the transition to reach a lower potential energy 
with the excess kinetic energy changing to vibrational (phonic) energy of the 
coherent system’s lattice electrons. 

  It has long been my conclusion that the ejection of charged particles is not 
a major feature of LENR; however a change of potential energy to spin energy 
is, assuming angular momentum is conserved within the coherent system.    

Thinking outside the box is not a sin.

Bob Cook





From: Eric Walker
Sent: Tuesday, March 14, 2017 8:23 PM
To: [email protected]
Subject: Re: [Vo]:Sleeper from ICCF20

On Tue, Mar 14, 2017 at 10:12 PM, Eric Walker <[email protected]> wrote:

If we assume 1.3 tons excess iron following Narayanaswamy, then the amount of 
energy released into the environment for this first reaction would be:

    1300 kg 56Fe = 23241.288159 mols 56Fe
    23241.288159 mols (28Si + 28Si) = 46482.576318 mols 28Si = 1300.4396227 kg 
28Si
    1300.4396227 kg - 1300 kg = 0.4396227 kg => 3.9e16 J

That is to say, (3.9e16 J / 84 TJ = 464 "Fat Man" nuclear bombs per 24 hours).

I didn't quite do that right.  I should have gone from 28Si to 56Ni:

  1300 kg 56Fe = 23241.288159 mols 56Fe => 23241.288159 mols 56Ni = 1300.167211 
kg 56Ni
  (1300.4396227 kg - 1300.167211 kg = 0.2724117 kg => 2.4e16 J)

So that would be (2.4e16 J / 84 TJ = 285) "Fat Man" nuclear bombs per 24 hours.

Eric


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