A grain boundary in a low matter cold space vacuum— ground state electrons synchronize their motion & gain intensity through resonance until electrons can violently interact. The positive potential between electron sheets becomes the inside of protons after electrons settle around them.
A grain boundary in a low matter cold space vacuum— ground state electrons synchronize their motion & gain intensity through resonance until electrons can violently interact. The positive potential between electron sheets becomes the inside of protons after electrons settle around them.
A grain boundary in a low matter cold space vacuum— ground state electrons synchronize their motion & gain intensity through resonance until electrons can violently interact. The positive potential between electron sheets becomes the inside of protons after electrons settle around them.
A grain boundary in a low matter cold space vacuum— ground state electrons synchronize their motion & gain intensity through resonance until electrons can violently interact. The positive potential between electron sheets becomes the inside of protons after electrons settle around them.
A light flashes on a moving body every second. After 1 second the light flashes once but to a far stationary observer it takes longer than 1 second to detect. Time is said to have dilated.
A light flashes on a moving body every second. After 1 second the light flashes once but to a far stationary observer it takes longer than 1 second to detect. Time is said to have dilated.
Crackpot here. How much would it cost to replace a curved spacetime with induction of vacuum electrons? Sorry for the link source here but I had to use the latest brain.
x.com/i/grok/share...
Crackpot here. How much would it cost to replace a curved spacetime with induction of vacuum electrons? Sorry for the link source here but I had to use the latest brain.
x.com/i/grok/share...
A distribution of mutually repulsive electrons. If a neutron sized zero density locality presents itself through high energy processes like a big bang crystal then the strong force of vacuum neutrons want to but cannot occupy this zero density region and these are called protons.
A distribution of mutually repulsive electrons. If a neutron sized zero density locality presents itself through high energy processes like a big bang crystal then the strong force of vacuum neutrons want to but cannot occupy this zero density region and these are called protons.
Is this what a neutron looks like when it is carrying a light signal? (Neutron vacuum theory)
www.youtube.com/watch?v=q3BC...
Is this what a neutron looks like when it is carrying a light signal? (Neutron vacuum theory)
www.youtube.com/watch?v=q3BC...
Metallic phase at 0k releases inner electron to big bang. Light, gravity, electric & magnetic fields are carried by induction. When protons smash into electrons positrons induct from the other side by the neutrons. Electron orbitals create interference regions in the vacuum neutrons
Metallic phase at 0k releases inner electron to big bang. Light, gravity, electric & magnetic fields are carried by induction. When protons smash into electrons positrons induct from the other side by the neutrons. Electron orbitals create interference regions in the vacuum neutrons