" Two Parts of Wave Equation: by Konstantine Meyle, Scalar Waves, pg. 476
Delta E = (longitudinal wave) grad div E - (transverse Hertzian wave ) rot rot E = 1/c^2 * d^2E/dt^2, where grad div means the gradual divergence, delta= triangle (change in operator), d = differential operator, ^ = superscript, c = speed of light, and E = energy.
" If the field pointers oscillate crossways to the direction of propogation, then as consequence the velocity of propogation is decoupled from the oscillating fields. The result in all cases is the speed of light, and that in our observation is constant. Konstnatine Meyl, Scalar Waves, Pg. 475 "
Properties of Longitudinal electric or magnetic scalar wave:
Form (each time for velocity of propagation v) as ring vortices longitudinal:
(v > c): neutrino radiation, morphogenic fields ...
(v = c): photons,
(v <c ) plasma waves, thermal vortices, earth radiation
(v = 0) noise
Properties of Hertzian electromagnetic transverse wave
form (each time for frequency) as a circular polarized wave transverse:
cosmic radiation,
x-rays,
uv radiation
light
infrared radiation
microwaves
radio waves
VLF, ULF, ..."
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- Re: Two Parts of Wave Equation Baronvolsung
- Re: Two Parts of Wave Equation Baronvolsung
- Re: Two Parts of Wave Equation Baronvolsung
- Re: Two Parts of Wave Equation Baronvolsung
- Re: Two Parts of Wave Equation Baronvolsung

