> (as well as an obvious instant Nobel prize). South Korea has been waiting for a (real, STEM) Nobel prize for decades. These guys will be worshipped as gods if they deliver
Ouch.
21–30 of 501 posts
> (as well as an obvious instant Nobel prize). South Korea has been waiting for a (real, STEM) Nobel prize for decades. These guys will be worshipped as gods if they deliver
Ouch.
Lots of people are saying there should be a quick turnaround time here for trying the replication. I wonder how much it would cost to try and replicate this, in materials, labor costs, and vacuum furnace time/costs. My naive thought is that that labs in general aren't just going to drop everything to try an replicate every instance of someone declaring they've discovered room temperature superconductivity. Seems more…
https://en.wikipedia.org/wiki/Restriction_of_Hazardous_Subst...
Lots of people are saying there should be a quick turnaround time here for trying the replication. I wonder how much it would cost to try and replicate this, in materials, labor costs, and vacuum furnace time/costs. My naive thought is that that labs in general aren't just going to drop everything to try an replicate every instance of someone declaring they've discovered room temperature superconductivity. Seems more…
Scientists can move far quicker than you expect, and a positive or negative replication of this superconductor claim should be a very easy publication to grab. It would definitely be worth alloting a few weeks of grad student time to replicating this ASAP to get that publication.
Lots of people are saying there should be a quick turnaround time here for trying the replication. I wonder how much it would cost to try and replicate this, in materials, labor costs, and vacuum furnace time/costs. My naive thought is that that labs in general aren't just going to drop everything to try an replicate every instance of someone declaring they've discovered room temperature superconductivity. Seems more…
It doesn't require the kind of equipment that you have to justify to accountants and run at full capacity. And while the reactants are things that I believe most labs won't have at hand, they are the kind of thing anybody can buy on the web to arrive this week. Whether people will stop what they are doing to verify it is literally a matter of people stopping what they are doing. University labs are usually quick on t…
So what kinds of cool stuff could be built with a room temperature superconductor? Better levitating trains?
"Who knows what could come out of that? Robust high-current-density room-temperature superconductors are right out of science fiction (SF readers will recall that one such material was a big plot point in Larry Niven’s Ringworld). Electrical generation and transmission, antennas, power storage, magnet applications (including things like fusion power plants), electric motors and basically everything that runs on electricity would be affected. We could stop throwing away so much generated power on heating up the wires that deliver it, for starters."
So what kinds of cool stuff could be built with a room temperature superconductor? Better levitating trains?
If this material does just what they say it does, what would it revolutionise? Or as the article talks about, is this just a pointer at other possibilities that would be the real game changers?
But the main one that is screaming at me for this technology sitting in front of us is SQUID sensors and RF antennas that will operate in the lower power range of the potential applications spectrum.
If this material does just what they say it does, what would it revolutionise? Or as the article talks about, is this just a pointer at other possibilities that would be the real game changers?
"Human sacrifice! Dogs and cats living together! Mass hysteria!” --Venkman
If this material does just what they say it does, what would it revolutionise? Or as the article talks about, is this just a pointer at other possibilities that would be the real game changers?