I feel like for the first time in our lives we might have seen peak technology for the next few years. Everyone is going to have to make do instead of depending on ever increasing performance.
I feel like for the first time in our lives we might have seen peak technology for the next few years. Everyone is going to have to make do instead of depending on ever increasing performance.
This happened for a while with CPUs in 2004 or 2005, IIRC. At the end of the Pentium 4 era clock speeds and TDPs were so high that we hit a wall. Nobody was pushing past 4 GHz even with watercooling (I tried).
Dual-core processors were neither widely available nor mainstream yet, and those that were available had much lower clock speeds. It definitely felt like we hit a lull, or a stagnation, in those years. It picked back up with a fury when Intel released the Core 2 Duo in 2006, though.
I believe helium, although important constitutes a small percent of the cost of semiconductors, so its effect on price will be less severe. It will be more noticeable in other uses of helium though - party balloons could get very expensive etc.
A hospital isn't going to shut down because their MRI's new helium load is getting more expensive - they'll pay a fortune for it. For a lot of other applications there are no suitable alternatives either.
The real question then becomes: what's going to happen when there's a 1000x price increase?
The problem is not that it's finite, the problem is that by the time prices rise enough to discourage people from using it frivolously, you might already be dangerously low on it.
If there is a reasonable downside, probably no? You have a right to try to keep yourself alive, in nearly all contexts.
Helium could be made with nuclear fusion, but a 1 Gigawatt nuclear fusion plant would only produce 200kg of helium per year, so it's still not a viable path to make the quantities of helium we currently use. Current usage is almost 30 Million kg per year.
He had two floating balloons, one about twice as big as the other. Pointed a blowtorch at the smaller one and it (of course) popped.
"That one was filled with helium. Now, there's only one gas less dense than helium..." and right as I thought to myself "he's not gonna do what I think he's gonna do", he pointed the blowtorch at the other balloon which exploded into a much larger (and much louder) fireball.
Attention captured, for sure.
You should think about this some more.
Remove the "I actually only want a slideshow" instruction from your prompt :-)
The language has well defined syntax, strong types, and I turned up the compiler strictness to the max, treat all warnings as errors etc. After a few hours I put the agent aside, committed to git then deleted everything and hand coded some parts from scratch.
I then compared the results. Found one or two bugs in the AI code but honestly, the rest of our differences were “maters of taste” (is a helper function actually justified here or not kind of things).
Pascal inspired syntax
Ada inspired type system
Lisp inspired templating and Macros
Compiles to C
Were you born after COVID and the 24 months of dire component shortages that followed?
If there is an escalation over Taiwan, then that will cause the loss of most of the world's high grade chip manufacturing capacity. TSMC is busy doing technology transfers into the US, but it is going to take time, those fabs won't have capacity for the whole world, and they still heavily depend on Taiwan based engineers if something goes wrong etc.
Just like with COVID you don't know how long this shortage will last.
Which will put the whole world back for a decade while we rebuild the factories from scratch.
Almost everything you own that runs on electricity has some parts from Taiwan in it. TSMC alone makes MEMS components, CMOS image sensors, NVRAM, and mixed-signal/RF/analog parts to name a few.
Also, people seem to assume that TSMC is an autonomous entity that receives sand at one loading dock and ships wafers out at another. That's not how fabs work. Their processes depend on a continuous supply of exotic materials and proprietary maintenance support from other countries, many of them US-aligned. There is no need to booby-trap any equipment at TSMC; it will grind to an unrecoverable halt soon after the first Chinese soldier fires a rifle or launches a missile.
Hopefully Xi understands that. But some say it's a personal beef/legacy thing with him, and that he doesn't even care about TSMC.
I wouldn't be surprised if there was enough damage that building a new fab from scratch is easier.
Or is this just a temporary thing based on where processing is located?
Most helium from most wells is simply vented because it is expensive to separate even with its relatively high concentration, and I imagine even the best case scenario for capturing it from a fab has abysmal concentration of helium. But because most of it is vented it also means if the capital is put down to build more helium separators on gas wells it wouldn't take long to increase supply. Short term for a year or two it can be a problem, but beyond that it is simply a cost versus demand issue. There is neither a technological nor source limitation, it is a pure capital investment limitation.
> Helium is almost all captured from gas wells by cryogenically liquefying the nitrogen out of it.
This is wild. I never thought about how they separated gases from natural gas fields. The carbon footprint of each kg of that helium must be astonishingly large.It's more of a byproduct in that sense.
I remember a similar situation with neon early in the Ukraine invasion a few years ago. What I expect to happen is some other source coming online that currently doesn't try to capture it for economic reasons.
Helium recovery in scientific settings for cost saving reasons is already done, so it's not like there isn't expertise in using it.