But I understand nothing of this field
What's the general consensus here, real or not?
141–150 of 303 posts
But I understand nothing of this field
What's the general consensus here, real or not?
Why is it necessary for other labs to produce the material themselves to verify the claims? The original authors claim they produced some superconductive material, can't they simply offer their samples to other labs to verify?
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I don't believe that China would let that sit tight. They will find a way to replicate in no time and start the engine of research full throttle. It's simply too good to be true. It would alleviate all their problems, from food to climate and energy.
Breakthroughs are exciting; hoping it's true! But I understand nothing of this field What's the general consensus here, real or not?
Why is it necessary for other labs to produce the material themselves to verify the claims? The original authors claim they produced some superconductive material, can't they simply offer their samples to other labs to verify?
>Why is it _necessary_ for other labs to produce the material themselves to _verify_ the claims? I highlighted "necessary" and "verify" because your wording of your question somewhat hides the motivations of the labs. Multiple labs around the world are not just doing a "homework assignment" to academically verify someone else's work. Instead, the tantalizing idea of a "room-temperature superconductor" would be a mira…
You mean like this? https://twitter.com/gigaj0ule/status/1686814611658715136
The optimistic aspects are: 1. The diamagnetism of LK-99 is very strong; 2. In almost all experiments, LK-99 has only exhibited one-dimensional diamagnetism, which is hard to consider as fraudulent coincidence; 3. One-dimensional diamagnetism is very mysterious, and there is currently no suitable theoretical explanation.
Is it one-dimensional (linear) or two-dimensional (planar)?
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That's how patents work though. That's the whole deal. Private entities invest in research and development. If they find something incredible, they release the full details to the world of what they found, and in return we give them monopoly on the invention for a period of time. That's a patent. Take away the incentive and private entities won't invest in research. The public appetite for investing in basic research…
I know that's how patents work. That's the problem. I don't believe private entities wouldn't invest in research if it wasn't for patents. But I also don't care. If the private sector won't invest, let the public sector invest. Just don't keep innovations out of the hands of humanity.
So yes, in a world with patents, private entities would still engage in research, but what would they gain from disclosing the details of their process?
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If they are restrictive and/or greedy with licensing, that is. A huge ton of cheap-ish licenses would rake in a fortune too, it doesn't have to go the e-ink way. But if it did, it might actually be worse: There's no reason why Chinese companies couldn't just ignore that patent like they do others. Pretty much unchecked innovation free for all inside the Chinese market (extending to Russia at least) vs. hardly anyone…
I hope you're right that the free markets of China and Russia will save us from the strict planning enforced on the west by the USA (... oh the sweet irony).
Breakthroughs are exciting; hoping it's true! But I understand nothing of this field What's the general consensus here, real or not?
It will likely spur a lot of new solid state physics research.