5 ms·
My measurement technique was extremely simplistic - how much wall clock time does it take to do this computationally-intensive task. It ran faster with ice wate
by jdenning 2y ago
My measurement technique was extremely simplistic - how much wall clock time does it take to do this computationally-intensive task. It ran faster with ice water, and even faster with the liquid nitrogen (until it died from condensation).
I truly don’t understand why this anecdote seems to be offensive - but let me assure you, I’m claiming no scientific discovery or prodigious understanding of cpus here.
It was neat - computers, liquid nitrogen, color charts.. in the early 90s. That kind of shit got you scholarships back in the day.
- northwest65 2y agoI think it's because CPUs don't run faster just because they're colder, they run faster when you overclock them. Often to get them stable at higher clock speeds you need more voltage, which at some point demands more cooling to mitigate that. AFAICT doing interesting but ultimately trivially complicated stuff as a youngster can still result in scholarships etc, Ahmed Mohamed comes to mind.
- jdenning 2y agoPerhaps that generation of cpus was very insufficiently cooled? This is before people even really put much of a heat sink on a cpu. The code did run faster with ice water, and faster again with liquid nitrogen. It was a high school, county-level science fair. I don’t know how things stand today, but at the time “will a computer run faster with better cooling?” was a perfectly acceptable level of scientific inquiry for a 14 year old. I’m truly sorry if my childhood anecdote has inadvertently spread misinformation on this topic :)
- travisjungroth 2y agoPeople get upset when their understanding of the world conflicts with evidence, especially the scientifically minded.
- emptiestplace 2y agoI mean, this tends to be true, but what evidence are you referring to?
- travisjungroth 2y agoThe evidence relayed by the person I replied to, that as the chip was cooled the performance increased.
- emptiestplace 2y agoAlright, that's an interestingly chill take on 'evidence'.
- travisjungroth 2y agoNever has someone described my personal epistemology so succinctly!
- exe34 2y agothe singular form of evidence is not anecdote. I think it's an interesting conundrum myself. as others have pointed out, the story as it was told is not consistent with the physics and current knowledge of what things were like in those days: CPUs did not yet do thermal throttling and simply cooling a CPU from that time doesn't make it go faster. somebody else mentioned the possibility that the cooling did something to the crystal oscillator, but I think there are another two explanations that either alone or in combination might explain what happened: unreliable narrator (OP was very young when the memory was formed) and external influence - his dad or teacher might have done the overclocking which might have been beyond his understanding and therefore notice at the time. either way there's no reason to take anecdotes uncritically.
- travisjungroth 2y ago> the singular form of evidence is not anecdote It is in Bayesian reasoning.
- microtonal 2y agoAlternative theory: you also ended up cooling the crystal oscillator, which subtly influenced clock speed. At any rate, sounds like a really fun high school project!
- michaelt 2y ago> Perhaps that generation of cpus was very insufficiently cooled? This is before people even really put much of a heat sink on a cpu. The 286 came out in 1982 but it wasn't until ~2000 (with the release of the Pentium 4) that thermal throttling was introduced. From ~1995-2000 if the CPU got over temperature, your PC just turned off immediately. And prior to ~1995 if you ran a CPU without a heatsink it could overheat and destroy itself. We just had to be careful not to do that :)
- gosub100 2y agoI am not claiming to be offended, just pointing out the fine line between "Dad's science project" and "Child's science project". It's often blurred.
- jdenning 2y agoI get it, I guess I just don’t see the point of trying to determine how much of the project I did myself here and now, 30 years later. It was my idea and I wrote the code, but my dad certainly helped with the physical design, and I think he suggested that I test ice water. I will leave it to history to judge if I truly earned that blue ribbon
- likesprivacy 2y agoBut why?
- mrguyorama 2y ago>I truly don’t understand why this anecdote seems to be offensive - but let me assure you, I’m claiming no scientific discovery or prodigious understanding of cpus here. You are stating that providing better cooling to a 286 improved it's performance in the terms of calculating faster. This is, flatly, false. If you have a 286 clocked at 8mhz, it doesn't matter how much you cool it, it will still run at 8mhz, and still only execute the same number of instructions per clock. To make a 286 perform more calculations per second, you MUST increase it's clock rate, directly, by installing a faster oscillator. Running at a high clock rate reduces the time each gate in the circuit has to settle to a state, high or low. This can cause the CPU to have what it experiences as "random" gate flips, that will eventually crash it. To fix this, you can increase the voltage, which can force the gates to stabilize faster. This creates more heat. This heat is what more cooling can extract. In modern CPUs, the voltage, clock speed, and cooling can all be varied independently (within limits) to acheive whatever is desired: quietest/coolest performance, fastest clock, highest performance, etc. This is not true on a 286. If the CPU does not crash with a faster oscillator, extra cooling will not increase it's performance.