Speaking of clustering, Richard - & with the advantage of hydrogen bonds 
between molecules, there is the slight possibility of this happening even w/o 
the hydrino - except for the fact that it surely would have noticed before now.

So it puts the skeptic in a real bind to explain. We could even call it a 
"hydrogen bind" ;-)

Some quick factoids, courtesy of google and wiki: In 1929 Heisenberg was able 
to predict from studies of the hydrogen spectrum that hydrogen exists in two 
allotropes - ortho-hydrogen and para-hydrogen - in which the two nuclei of the 
atoms in a hydrogen molecule spin in the same or opposite directions 
respectively.

Allotropy refers to different forms of an element within the same phase or 
state of matter (solid, liquid or gas) - but the changes of state between 
solid, liquid and gas in themselves are not considered allotropy.

Metalization of hydrogen under pressure would therefore not technically create 
an allotrope - but a phase. There have been claims of this from time to time 
but AFAIK there is no real proof of metallic hydrogen.

However, liquid hydrogen is well-known and a form of liquid hydrogen with a 
boiling point much higher than ~20 K or -423 F. and especially one which is 
liquid at LN temps, would mostly likely be called an allotrope - even if there 
was something unusual going on with the orbitals.

All in all - pursuing this LN phenomenon to the MAXIMUM by BLP, and getting out 
samples to top labs, still seems like a gigantic missed opportunity on their 
part. They seem to crave recognition so the whole scenario does not add up to 
good strategy.

Jones

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