Earlier quoted context omitted.
I had heard the parts about "probably wouldn't be a big deal for CPU performance" and "probably wouldn't be great for energy storage", but I hadn't heard the point about "we use less efficient materials for power grid transmission than we could, because of costs". I suppose I didn't expect that we necessarily had like, the "absolute most efficient that could be made" (if that is something substantially more complicat…
The crux of the problem for superconductors used as power delivery is the "critical field" problem. [1] Super conductors are superconductive to a point. Once that point is crossed they turn into regular conductors. (I've seen ~1A cited. For context, EVs charge at around 500A). To make them useful for power transmission, you'd have to up the voltage to insane levels to avoid collapsing the field. [1] https://en.wikipe…
The AmpaCity project in Essen, Germany, gives insights about the implementation details, as the involved parties were required to publish their work.
https://www.enargus.de/pub/bscw.cgi/?op=enargus.eps2&q=%2201...
for the specific aspect under discussion, the Karlsruhe Institute of Technology report is of interest:
https://www.tib.eu/de/suchen/id/TIBKAT:872231372/Ampacity-10...