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Cake day: July 2nd, 2023

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  • Nowadays, it is exactly as complex as it sounds. There is a ton of blending, pitch and playrate tweaking, separate modifiers for current rpm and how much the accelerator is currently depressed. And yeah, like hundreds of recorded samples from the real car when possible, or a similar sounding car when not possible.

    We are probably on the verge of getting to a point where a rough simulation might soon be able to take over for this process. It won’t sound as good for a while still, but it will be cheaper and faster soon. And as time goes on, it’ll get close enough to sounding right while continuing to decrease in cost and time taken to a point where it’ll be the only way to do it eventually



  • 2019, back in #avocadotoast days. When apparently we wasted our money on extravagances like “not the cheapest fruit/vegetables”. Which wasn’t even the case. We literally didn’t even do that, we 100% had to eat the cheapest fruit/vegetable, if we were lucky enough that any fruit or vegetable met our budget. They were so out of touch that even their attempt to find a minor extravangance they thought we could afford to waste money on but shouldn’t, was inaccessible.


  • Well, you got the answers you were looking for, here is a different answer. To your other implied question, how to not worry about dust getting in other holes.

    Main thing is to develop positive air pressure. You want more powered intake than powered exhaust.

    Use fans for all your filtered air intakes, ignore powered air exhaust, run it at lower fan speeds if you can. Air will get out fine. If you force the air in where you want it to go in, dust will only go into the easily removable filters, it won’t be on your components. Any extra hole in the case will just be exhausting the already filtered air. Then just remember to actually check and clean your filters. That’s the hard part. But if you clean them when they need to be cleaned, you will never have to actually clean the inside or the fans or components or anything else, just the filters.





  • In all seriousness, the “maximum daily dose” of monster is already a partial can. If anything, they should be smaller. But, a gallon jug with an appropriate sized cup included is also a viable solution, assuming it can stand up to repeated exposure to air without losing any of the properties that make it desireable to drink for some people. And do so for as long as it would take to drink it safely. If there was no safe way to reasonably drink it, they would have a hard time justifying the size to the fda, and an even harder time justifying it to all the other way better food agencies around the world.








  • And, you’d want/need redundancy. One on-site back up for quick restoration and one off-site for surviving physical disaster. So, you’d need at least 3 times that. In HDD prices, that is roughly 2.5 million per set-up, or 7.5 million total for all three. And in SSD prices, well it’s about 3x that. 7.5 million per set up and 22.5million for all three.

    An alternate option is a distributed back-up. They could have people volunteer to store and host like 10 gigs each, and just hand out each 10 gig chunk to 10 different people. That would take alot of work to set up, but it would be alot safer. And there are already programs/systems like that to model after. 10 gigs is just an example, might be more successful or even more possible in chunks of 1-2 terabytes. Basically one full hard drive per volunteer.

    Lol, had to add that after doing the math for 10 gigs to ten people and realising that was 1000 people per terabyte, so would take 150 million volunteers. Even at 2 petabytes each, assuming we still wanted 10x redundancy in that model, it would be like 750 thousand volunteers or something like that. Maybe there is no sustainable volunteer driven model, lol.