I've been considering what I see as the "anomalous" behaviour of hydrogen, ever 
since I watched (from a distance of about 24 inches) a firebrick melting after 
a hydrogen flame was applied to it for about 10 seconds.  This was a 
demonstration of something called "Brown's Gas," which was apparently simply 
monatomic hydrogen created by simple electrolysis.

I have no idea of the measured thermodynamics of the process behind the melting 
of this type of material with the application of a relatively small amount of 
hydrogen gas; I only know what I saw.  I also saw someone passing his hands 
through this same flame, quite slowly, with no ill effects.

Could this possibly be a feature of what is being discussed in this thread?

Is is possible that an OU condition can be obtained simply by having a 
monatomic hydrogen/oxygen flame impinge on certain "hard"  inorganic materials?

P.



----- Original Message ----
From: Horace Heffner <[EMAIL PROTECTED]>
To: [email protected]
Sent: Sunday, November 11, 2007 1:43:55 PM
Subject: Re: [Vo]:Fractional quantum states


On Nov 9, 2007, at 2:54 PM, Mark Goldes wrote:

> Jones,
>
> If you did not look at the paper by Ron Bourgoin in the latest NET,  
> you will want to do so.

This appears to refer to:

http://newenergytimes.com/Library/2007BourgoinR-InverseQuantum.pdf

>
> It reflects the insight by the late Dr. Robert Carroll into  
> fractional quantum states long before Mills surfaced.


The above paper only states: "Acknowledgements: The author’s interest
  
in inverse quantum states began when he
was an undergraduate student of Professor Robert L. Carroll of  
Fairmont, West Virginia (1910-1997)."  It doesn't reference any  
papers by Carroll, or give any evidence Carroll's work on fractional  
quantum states preceded Mills' work that I can see.   Do you know of  
any Carroll papers or other evidence of Carroll's work preceding  
Mills' in this area?  I guess it is important to know when Bourgoin  
studied under Carroll.  Mills has been at the fractional quantum  
state thing a long time.

Horace Heffner
http://www.mtaonline.net/~hheffner/






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