Guys, even if everything in this paper is true, the material as it is might have limited applications. From what they show, the critical field and critical current seem very low. 2500 Oe is like 0.25 Tesla. Even REBCO at 77K is >1T. And 2500 Oe is not even at critical temperature but much lower. From skimming through the article I couldn't find the sample size of the current measurement to get the critical current de…
I genuinely hate responses like this. For some reason, there’s a contingent of people that think that by poking holes and pooh-poohing things, it gives them clout. It happens far too often in tech and I hate it. Look how often the post has “can’t” or “couldn’t”. Instead of giving reasons why something sucks, how about being supportive and talking about why it’s awesome and what possibilities this opens up?
The first room-temperature ambient-pressure superconductor?
501–510 of 906 posts
Re: The first room-temperature ambient-pressure superconductor?
#502Earlier quoted context omitted.
That video isn't very convincing. The usual test is that the material can float above the magnet.
This is the better video: https://sciencecast.org/casts/suc384jly50n
Re: The first room-temperature ambient-pressure superconductor?
#503I don't have any proof of this other than "vibes", but I read through the Korean website for their research lab and I'm getting major scam vibes: https://qcentre.co.kr/ Hard to put it into words, but there's something that just doesn't feel right--I'd be very skeptical of these results.
It would be a really dumb scam. The paper is allegedly easy to reproduce. It’ll be proven or disproven in short order, where’s the motive?
Like the Schon scandal comes to mind. Super easily non-reproducible but somehow the dude was adamant that it was legit and everyone ate it up.
Re: The first room-temperature ambient-pressure superconductor?
#504Earlier quoted context omitted.
One catch would be the use of lead would restrict the use cases fairly heavily
Its not a dirty secret, but just like the rules on chemicals under the organic certification, if you can show that there's no way to do what you want to do with lead-free, you can get an exemption. I suspect that "significantly lowers the cost of power generation" would outweigh "contains lead".
The bar is even lower than that. For example, bullets are still made of lead, not because it's necessary, but because it's cheap, and despite the fact that it contaminates the meat of the hunted animal with lead.
Re: The first room-temperature ambient-pressure superconductor?
#505One of the authors in a related paper[1] is Hyun-Tak Kim. He has many publications in peer-reviewed journals[2]. One even has > 1500 citations[3]. I can't tell if there is a catch anywhere, this seems pretty legitimate. Also, unlike some previous claims that required sophisticated setup to reproduce, this seems dead simple. I think we will hear from other researchers very soon. 1. Superconductor Pb10-xCux(PO4)6O show…
One catch would be the use of lead would restrict the use cases fairly heavily
As for how to avoid lead poisoning, coat the lead with a thin layer of some substance, perhaps a plastic or rubber that doesn’t affect its magnetic capabilities.
Or perhaps they can galvanize it with safer metal, leaving a really small part exposed.
Re: The first room-temperature ambient-pressure superconductor?
#506Earlier quoted context omitted.
Can you make wires in chips out of this? MRIs are nice but maybe zero resistance between transistors on my phone’s cpu is cool, too?
CPUs that don't generate heat? That would be pretty awesome.
Re: The first room-temperature ambient-pressure superconductor?
#507Earlier quoted context omitted.
Just give it to me straight - when will the levitation give us hoverboards?
As long as you only want them to hover over a magnet...
Re: The first room-temperature ambient-pressure superconductor?
#508Earlier quoted context omitted.
Its not a dirty secret, but just like the rules on chemicals under the organic certification, if you can show that there's no way to do what you want to do with lead-free, you can get an exemption. I suspect that "significantly lowers the cost of power generation" would outweigh "contains lead".
> if you can show that there's no way to do what you want to do with lead-free The bar is even lower than that. For example, bullets are still made of lead, not because it's necessary, but because it's cheap, and despite the fact that it contaminates the meat of the hunted animal with lead.
Re: The first room-temperature ambient-pressure superconductor?
#509Guys, even if everything in this paper is true, the material as it is might have limited applications. From what they show, the critical field and critical current seem very low. 2500 Oe is like 0.25 Tesla. Even REBCO at 77K is >1T. And 2500 Oe is not even at critical temperature but much lower. From skimming through the article I couldn't find the sample size of the current measurement to get the critical current de…
Could we, for example, make circuit traces out of it?
If you could use it to make circuits, especially of a high level of integration then it might well be something much more interesting (Josephson tunneling is briefly mentioned in the article). That could theoretically give rise to very efficient switching gear and if it can be miniaturized enough to efficient CPUs and memory. This is because the typical transistor uses power mostly in the time between the transition between the 'on' state and the 'off' state, when it is acting as a resistor. If you could get rid of that resistance during the transition then you might be able to reduce the amount of power a given circuit uses, but there are still lower limits off losses that you won't be able to escape, so it will not make your CPU magically use zero energy.
Given the contents of the paper such applications are a very long way off and may in fact never happen. Let's first see (1) if it is true and (2) if it is true how well it stacks up against copper wire of the same diameter and commercially available super conductors in terms of cost and practical current carrying capability. If that's all good then this will really be a game changer.
Re: The first room-temperature ambient-pressure superconductor?
#510I don't have any proof of this other than "vibes", but I read through the Korean website for their research lab and I'm getting major scam vibes: https://qcentre.co.kr/ Hard to put it into words, but there's something that just doesn't feel right--I'd be very skeptical of these results.
It would be a really dumb scam. The paper is allegedly easy to reproduce. It’ll be proven or disproven in short order, where’s the motive?