Wilfred R. Hagena,*, Randell L. Millsb,*
a Department of Biotechnology, Delft University of Technology, Delft, The Netherlands
w.r.hagen@tudelft.nl
b C Nu B, Inc., Yardley, PA, USA
rmills@brilliantlightpower.com
Abstract
A hydrino atom, H(1/p) solved using a Maxwellian electrodynamics and relativistic mechanics, is atomic hydrogen with state energy En = -13.598/n2 eV, in which n = 1/p, and p is limited by the energy in the electric field of the proton to 126 whereafter the proton and electron decay. Electron transitions to hydrino states involve an initial non-radiative energy transfer to a catalyst that serves as an energy hole or sink of a quantized amount of energy, 2mE1 (m is integer) to be transferred to a catalyst such as HOH, a free or nascent water molecule. Furthermore, hydrino atoms can react to form the corresponding diatomic molecule referred to as molecular hydrino H2(1/p). In contrast to molecular hydrogen (H2), the molecular hydrino (H2(1/p)) is paramagnetic with S = ½ comprising a paired and unpaired electron in the same MO wherein the lower energy state central field is provided by photons akin to gluons in nucleons in addition to the field of the protons. Due to its unique structure, H2(1/p)) interacts with the neutrinos in the energy range of the cosmological neutrino background (CvB) as confirmed by the neutrino mediated observations of predicted fine structure, predicted high magnetic field Paschen Beck effect, large downfield shifts, temporal changes of EPR spectra due to accumulated changes in fine structure state populations, extraordinary broadened signals, zero order absorption occurring in the perpendicular and parallel modes, and the observation of magnetic dipole-dipole interactions of H2(1/4)-H2 dimer requiring intramolecular angular momentum transfer from a neutrino excited fine structure state in H2(1/4) as well as unique temperature and matrix dependences of the EPR signals. EPR was used to detect and characterize the CvB for the first time. The isotropic and parallel propagation nature of CvB can be exploited for line of site telecommunications requiring no transmission power to transmit signals in any direction unattenuated and undispersed through any physical barrier, including the Earth.
https://brilliantlightpower.com/pdf/Background_Neutrino_Flux.pdf
