Articles on Vortical Ether and Subquantum Kinetics
A number of new articles on Vortical Ether and Subquantum Kinetics have been recently been made available:
Published on Research Gate
- Subquantum kinetics: simulating subatomic particles in Model G with fluid dynamics – Brendan Darrer, Justin Coven, Paul LaViolette January 2022
- Subquantum Kinetics – X-Y-G Gradient Affects in 1D Simulations – Justin Coven, Brendan Darrer January 2026
- Subquantum Kinetics Predictions and Verification Paul LaViolette (Posthumous) , Brendan Darrer, Justin Coven May 2026
- Subquantum Kinetics versus Mainstream Physics (numbered series)
- Quantum Tunneling (flash memory context) Brendan Darrer, Justin Coven, Mark Burton March 2026
- Double Slit experiment Brendan Darrer, Justin Coven, Mark Burton April 2026
- What is SQK? Justin Coven April 2026
- Maxwell Boltzmann distribution, black body radiation and the beginning of quantum theory, Bohmian mechanics/Bohm Interpretation, and Stochastic quantum mechanics Brendan Darrer April 2026
- Evolution of Quantum Physics Justin Coven April 2026
- Gravity Justin Coven May 2026
- Quantum Tunneling Model Comparison Justin Coven May 2026
- SQK Predictions and Verification Justin Coven May 2026
- Matter-Antimatter Asymmetry Justin Coven May 2026
- Supernova Justin Coven June 2026
- LIGO Gravity Wave Reinterpretation Justin Coven June 2026
Simulating Model G neutral particle in a G, X, Y gradients
Simulating Model G neutral particle in a G, X, Y gradients with python
See @ https://github.com/bjdarrer/particle_in_gradient_slope50_100s_1e_gxygradients_3j
1. Model G 1D particle in gradient with G- (slope -1/50), X- (slope 0.0), and Y- (slope 0.0) gradients – 3e
Model G 1D particle in gradient – 3e
2. Model G 1D particle in gradient with G- (slope 0), X- (slope – 1/50), and Y- (slope 0) gradients – 3f
Model G 1D particle in gradient – 3f
3. Model G 1D particle in gradient with G- (slope 0), X- (slope – 1/30), and Y- (slope 0) gradients – 3g
Model G 1D particle in gradient – 3g
4. Model G 1D particle in gradient with G- (slope 0), X- (slope 0), and Y- (slope +1/30) gradients – 3h
Model G 1D particle in gradient – 3h
5. Model G 1D particle in gradient with G- (slope 0), X- (slope 0), and Y- (slope +1/20) gradients – 3i
Model G 1D particle in gradient – 3i
6. Model G 1D particle in gradient with G- (slope 0), X- (slope 0), and Y- (slope +1/26) gradients – 3j
