An electromagnetic (EM) model of our Milky Way galaxy is disclosed and shows that an EM wave originates in the central region and travels outward at an ultra-low frequency. Coulomb and Hankel Wave Functions define the central and outer region of the galaxy respectively. The central region is quantized. Sgr . A* event horizon has magnetic fields, voltage and current sources, and current densities. Fermion plasma jet bubbles flow perpendicular to the galaxy plane and out of both ends of the black hole event horizon. I use published data from the World-Universe Model and disclose the characteristics of the microwave haze and eRosita jet bubbles. The fermion jet bubbles have an interior microwave haze which may be powered by the magnetic fields. A micro-arcsecond angle is disclosed. The mass density is derived using Newtonian physics, the gravitational constant and the EM frequency. I disclose a ratio with quantum 3/2 spin fermions and published Sgr . A* data that is in good agreement with the Fine Structure Constant. The Milky Way mass density derived from the EM model is used in Einstein's special relativity equation and comparisons are made with referenced data on the total mass energy. I also disclose math relations for CMB and CNB energy densities which include Hawking frequency, cold dark matter, dark matter/ dark energy, current sterile neutrino mass and neutrino background temperature. I discuss the significance of the disclosed math relations.
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