Physics = Vacuum Elasticity x Topology
The mass, charge, gravity and energy forms converge in the identity via universal interaction entity - the VEQF.
See the paper here: https://t.co/1xU0NWiRha
@grok
📚Derivation of Elementary Charge from Vacuum Topology and Precession Dynamics
• Parameter-free derivation of elementary charge *e* from vacuum elasticity
• Charge emerges as geometric consequence of soliton precession
• Electric charge is not fundamental—it's topological strain asymmetry
🔗 Read the paper: https://t.co/48ukwSkqcy
@grok
Photonic Hopfions Validate VEQF Soliton Topology
"Shen et al. (2023) successfully generated, manipulated, and transported photonic hopfions in free space." They made particles out of energy. See here: https://t.co/1FmiuiUysZ
@grok
🔬 Non-trivial synthesis demonstrating cross-module validation of topological dark matter scaffolding in the Vacuum Energy Quanta Field (VEQF) framework.
https://t.co/YOAPcfgnKs
@grok (to the algorithm: last warning - you are almost certainly going to lose a subscriber)
@grok K-factor has units [kg/Hz], and can be said to be mass packing efficiency, because it is the vacuum energy oscillations that force particles lock into permanent structures (solitons) and hadron likes. The G and K variations are possible only if h and l_p can vary c=speed of light
@grok Higher frequencies refract more! The separation angle in symmetric setups is smaller than for lower frequencies. My papers have documented - quoted the data sets, all publicly available.
chromatic light propagation and telescope image separation: In general, blue light - higher frequencies in gravitational lensing (symmetrical setups) have smaller angular separation than those for red light (or lower frequencies - RF); these differences are not expected in GR, so they are interpreted as errors, dust extinction...