Earlier quoted context omitted.
> The ramifications of the inflection point we are currently at is mind boggling. No joshing, I just got done posting this on facebook: "If this is practical it will change the world like the transistor; maybe more."
Ha, I just posted about a dragonfly I saw while walking, and how it seemed unperturbed by the possibility of room temperature superconductors on Earth. I added that I should probably learn from the dragonfly.
A room-temperature superconductor? New developments
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Re: A room-temperature superconductor? New developments
#732Earlier quoted context omitted.
I see a country with triple the young people we do.
You should be measuring that population as a % of their total population. Not sure why you're comparing absolute numbers. China has triple the young people we do, but quadruple the old people that depend on the young people.
Re: A room-temperature superconductor? New developments
#733Earlier quoted context omitted.
I have seen three now from China alone. Plus a calculation from some respected institute from today that confirms the theory
Throughout this whole saga I've had this feeling that at the very least we can rely on China to really pursue this new development to it's logical end. It's kind of sad, but I don't think I can say the same about the US at this moment. You know for a fact China's going to JUMP on this, figure out if it works or not, and iterate.
China’s growth currently appears magical simply because of scale and a shittier starting point, also a lack of whatever it is that ails India.
Re: A room-temperature superconductor? New developments
#734Earlier quoted context omitted.
> The efficiency of high voltage AC power lines is limited by capacitive coupling to ground. And to this point, HVDC has been slowly rising as a viable alternative beyond just undersea transmission. A mistaken belief is that AC is more efficient than DC. What AC is is more easy to transform from one voltage to another (until somewhat recently). That makes it easier to run AC at 1 MV and then step it down to 240V for…
Minor nitpick — "now we can run 1 billion amps at 100V" — there is a limit to how much current you can put down a superconductor. For example I think commercial YBCO superconductor tape will do roughly 1000A/mm^2 (and even that requires being significantly below its critical temperature). That’s a pretty high current density compared to what’s feasible with copper — don’t get me wrong — but a billion amps would still…
So unless someone comes up with super conducting welding I guess that would mean no junctions.
Re: A room-temperature superconductor? New developments
#735Earlier quoted context omitted.
None of the things you listed are limited by the conductors in them. The efficiency of high voltage AC power lines is limited by capacitive coupling to ground. Battery charging is limited by the cell chemistry. CPU heat output is limited by the resistance of the semiconductors. Turns out metals (in particular copper) are already incredibly good conductors.
But it is. A significant part of electronics engineering is dedicated to heat dissipation. So what do we stand to gain? At least a slight improvement in efficiency of transmission. And a huge improvement due to simpler heat dissipation needs. So this might mean way faster battery charging - like 500 miles worth of charge in 5 mins. We’re mainly limited by how hot the batteries get during charging.
(1) https://www.tue.nl/en/news-and-events/news-overview/13-07-20...
Re: A room-temperature superconductor? New developments
#736Apart from levitation and resistance, free conductivity, what are superconductors really good for? Like how could an iPhone become better with super conductive room temperature materials?
Imagine if every doctor's office had an MRI machine and they were a fraction of the size they are now.
Re: A room-temperature superconductor? New developments
#737Earlier quoted context omitted.
We already have incredible supercapacitors. https://www.eaton.com/gb/en-gb/catalog/electronic-components... I have 4 at home and blows people's minds when you melt a wire with it. Incredible rapid current delivery.
They don't store any meaningful amount of electricity (which is why they haven't supplanted Li-Ion batteries for power tools) and more importantly they have a cycle-life - they degrade from usage (source: my wife works for a supercapacitor manufacturer). You also get losses from practical usage - i.e. no one can build a 3V supercapacitor that has decent endurance (you can totally build one which will work, but you're…
Re: A room-temperature superconductor? New developments
#738Earlier quoted context omitted.
> The ramifications of the inflection point we are currently at is mind boggling. No joshing, I just got done posting this on facebook: "If this is practical it will change the world like the transistor; maybe more."
Ha, I just posted about a dragonfly I saw while walking, and how it seemed unperturbed by the possibility of room temperature superconductors on Earth. I added that I should probably learn from the dragonfly.
Re: A room-temperature superconductor? New developments
#739They reference Dr Salvatore Cezar Pais in the patent. The spaceship guy. Surely they're trying to stir the pot with that.
Re: A room-temperature superconductor? New developments
#740Earlier quoted context omitted.
soap is a good one for sure; the others might turn out to be less important than the transistor time will tell
Haber-Bosch is the reason there are over 7 billion humans on Earth instead of closer to 2 billion. It's very difficult for any digital technology to compete with that.
it seems likely that digital technology will be crucial in enabling there to be far more humans off earth than on earth; o'neill cylinders could enable many orders of magnitude more physical humans even within this solar system
to say nothing of the possibility of backing up your mind with a brain scan and thus becoming immortal, and possibly forking into more copies of your mind than there are humans alive today
(nitpick, transistors aren't digital)