https://t.co/KYXi9wgxI4
I did it by showing gravity is on the same field as the other three major gauge fields via torsion (e.g., torsion similar to Witten 1988). It's on this field bundle: S^1-->S^(2n+1)-->CP^n S^5 =SU(3)/SU(2); iso SO(6) ~ SO(2,4) S^3-SU(2)/U(1); iso SO(4) ~ SO(1,3) S^1 = U(1) Higher gauges are higher bundles. Beltrami flow provides field potential and thus action/Lagrangian. Eigenvalues on spheres = particles.
@elonmusk What are the mass drivers for? Delivering payloads to Mars? If so, how will they be decelerated? Or are they for taking out satellites? Or deflecting extinction level asteroids? Or what else?
@PeterDiamandis Every one of those, with the possible exception of cheap carbon capture, was absolutely solved decades ago. For example see #gutcp.
Gene therapy is one that probably hasn't been solved yet.
@The_Astral_ I think people probably did control @tomdelonge, which irritates me. I would also take a guess it wasn't the people you mentioned. I don't know either way, but I know how the spy game works. Induced duress & fully asymmetric quid pro quo are among the methods.
A 1997 PowerPC CPU runs most modern space tech!
NASA equipped its $2.7 billion Perseverance rover with a sluggish 200-megahertz PowerPC processor from 1997. In deep space, a modern chip is not an upgrade—it is a multi-billion-dollar crater.
The reason is space radiation. Earth’s atmosphere and magnetic field block most cosmic rays and high-energy solar particles. In deep space, spacecraft face continuous bombardment.
Modern processors shrink transistors to pack billions on a chip and run on microscopic charges. A high-energy particle can flip a bit from 1 to 0 (or vice versa), causing a Single Event Upset (SEU). On a laptop this may crash a browser; on a spacecraft during orbital insertion or landing, a reboot can end the mission.
Space agencies therefore use radiation-hardened chips such as the BAE Systems RAD750. Fabricated with older, larger processes, their transistors need far more charge to change state and resist cosmic rays. They also employ triple modular redundancy: three circuits perform each calculation and outvote any single error.
The design limits speed, yet missions need absolute reliability, not graphics or neural nets. A crash-proof 200-megahertz processor is far more valuable than a fast one that fails in a solar storm.
The RAD750 flies on hundreds of spacecraft, including the Mars rovers and James Webb Space Telescope.
@PatrickQJackson 1. I'm not sure... why is it that satellites, rockets, probes, & the space stations in space never get hit?
2. Although, the sphere(?) moving upper right->left behind the @SpaceX rocket as it explodes might be relevant?
3. What do you think about the possibility of "Stargates"?
☮️ #PeaceTheFinalFrontier
https://t.co/wJh2oCoyMV
The war in #Iran is over #oil. Huge mistakes were made by the @CIA & the UK in 1953. Now look where we're at. But that does not mean Iran cannot become a democracy.
END THE WAR: FULL CEASE FIRE. Do NOT destroy this planet over technology that's as old as the dinosaurs.
#BreakthroughEnergy for ALL.
1. https://t.co/f7lU03znzx
2. https://t.co/EBYlrMw0ZD
3. https://t.co/adH1ILXaAv
4. https://t.co/zYbH5BqonZ