> Carey Foster bridge, for measuring small resistances; Kelvin bridge, for measuring small four-terminal resistances; Maxwell bridge, and Wien bridge for measuring reactive components; Anderson's bridge, for measuring the self-inductance of the circuit, an advanced form of Maxwell's bridge
Is there a rectifier for gravitational waves, and what would that do?
Diode bridge > Current flow: https://en.wikipedia.org/wiki/Diode_bridge#Current_flow
And actually again, electron flow is fluidic:
- "How does electricity find the "Path of Least Resistance"?" (and the other paths) https://www.youtube.com/watch?v=C3gnNpYK3lo
- "Observation of current whirlpools in graphene at room temperature" (2024) https://news.ycombinator.com/item?id=40360684 :
> How are spin currents and vorticity in electron vortices related?
But, back to photons from electrons; like in a wheatstone bridge.
Are photonic fields best described with rays, waves, or as fluids in gravitational vortices like in SPH and SQS and CFD? (Superhydrodynamic, Superfluid Quantum Space, Computational Fluid Dynamics)
Actually, photons do interact with photons; as phonons in matter: "Quantum vortices of strongly interacting photons" (2024) https://www.science.org/doi/10.1126/science.adh5315 https://news.ycombinator.com/item?id=40600762
Perhaps there's an even simpler sensor apparatus for this experiment?