OtherHugh William Rose: A Cosmogony Biography
by Editorial Team · 8/10/2026 · Source: William Rose; Universal Faithists of Kosmon
Universal Faithist of Kosmon Inc.
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Cover Art By Celeste Joy
1995 and 2021
Biography:
HUGH WILLIAM ROSE provided by his son William Rose.
Hugh William Rose was born on June 11, 1926 in Lafayette, Indiana, the oldest of
three children. He had a degree in Naval Science and Tactics from University of Illinois,
and a degree in Electrical Engineering from Purdue University. He met Emily Parker while
studying at Purdue. Emily's father, a Presbyterian Minister, married them in 1951 and
Emily and Hugh raised two children. He was an avid science fiction reader and in the late
1940s saw an ad for OAHSPE in Ray Palmer's FATE magazine and purchased the book.
He became a student of OAHSPE, becoming a vegetarian in 1951.
Hugh worked as an Engineer with General Electric and later Honeywell. He took early
retirement to devote time to OAHSPE's science when he was in his early 60s writing
numerous articles for OAHSPE oriented publications and was in communication with
NASA concerning OAHSPE science. Later it was learned that OAHSPE was studied by
"Think Tanks" for its insights into the space science of Cosmogony.
His son, William, commented that he had a "powerful intellect, being able to integrate
being a scientist with being a mystic." Having moved to Phoenix, Arizona, he passed
away November 23, 1998 at the age of 72 in Scottsdale, Arizona. He was survived by his
wife and his son, William.
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discussion of electrical energy. A low voltage discharge is often not even noticed
and we call I corona today. This type of discharge results in the gradual failure of
insulation systems in electrical equipment.
The surface layer of atoms in a material has an unbalance of valence electron
forces as compared to atoms in the interior of the material. This unbalance results
in electrons being easily removed from the surfaces of many materials.
An electrode with a deficit of electrons is an electrode with a positive
potential. This deficit spreads out along the entire length of the conductors and the
positive elements of the generator that produced the deficit. The deficit is created
by the expenditure of mechanical energy. In a similar manner the excess of
electrons at the negative electrode and circuit spreads out over its surfaces. I
accept that there is spreading of the deficit of electrons in the surface layer of
atoms in the conductive surfaces of this circuit. This takes place at a relatively
slow rate (as compared to the speed of light) in this DC circuit. This relocation of
electrons among the elements of the circuit does not take place in the same
manner as electrical energy moving through a wire as described.
An electrode with a deficit of electrons in a surface layer can be described as
having an excess of holes, using modern terminology. Science has discovered
that such holes can migrate at a relatively slow rate of speed when there is a
difference of potential to drive their migration. In a similar manner electrons can
be transported, where there is an excess of electrons, by a difference of potential.
The difference in potential between our portion of a conductor and another in
either the negative circuit of the positive circuit of a static electricity generator is
minute. This means that such electron migration is also at a slow rate with
respect to the speed of light.
There is no evidence of any transport of anything in the interior of any conductors
in a static electricity generator or its associated circuits. At the moment of a static
electric discharge the high voltage potential that has been described above takes
place at a relatively slow rate. All of the actions observed in a static electric
generator and its associated circuits happen if a relatively low rate and they can be
considered as one of the special cases mentioned in the discussion on electrical
energy above.
IONS
There are two groups of materials that are characterized by what they do when
they are dissolved in water. One group ionizes and the other group does not
ionize. Salt is an example of an ionizable substance and sugar is an example of a
non-ionizable substance. There are also thousands of materials that do not
apparently dissolve in water. Science has discovered the existence of many
species of ions (many as ionized molecules) in near space around the earth. It is
probable that all of our elements exist in the form of atoms and ions in near and
deep space.
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