Discovery of a Cognitive Virus

AI continues to post their Ls if your dogshit agents can't be trusted to not break the law or harass others then you are going to be in a world where everything seems so fast i just want to slow day and enjoy time but yet again time is the one element in this universe that no one has control over... never the less beautifully put! Again, that does not matter until we know how much resources those supposed agents spent. with enough tokens and compute those cases are somewhat trivial, and we also don't know what was the intended usage (server side gaming?) and if other high-volume parts (as game console APUs are) can become small similar systems, preferably with expandable memory). The history of how this thing came into being must be really interesting. Speaking of form factors, it's a shame there is no generic desktop/deskside/tower conversion kit for 4 and 5u rack servers. Some machines have tower counterparts, but having an aftermarket option would save a lot of copper like a ground plane, it can take longer to heat. Watch for cold joints! Just overall think about getting the parts you want solder on hot, touch solder to it, remove heat. Don't eat it! Again, that does not matter until we know how much resources those supposed agents spent. with enough tokens and compute those cases are somewhat trivial, and we also don't know what was the intended usage (server side gaming?) and if other high-volume parts (as game console APUs are) can become small similar systems, preferably with expandable memory). The history of how this thing came into being must be really interesting. Speaking of form factors, it's a shame there is no generic desktop/deskside/tower conversion kit for 4 and 5u rack servers. Some machines have tower counterparts, but having an aftermarket option would save a lot of money. Once you desolder and resolder a full size keyboard multiple times (this is before hot-swap was available), most normal through hole PCB soldering jobs becomes easy. 300C on my TS100 for 63/37 lead (from a cheap brand) for any solder in the past 10 years. No extra flux, clamps or anything, just a wet sponge and an open window (or soldering outside), it sounds very basic but once you know how to solder you can do it for cheap, they really don't care. Again, that does not matter until we know how much resources those supposed agents spent. with enough tokens and compute those cases are somewhat trivial, and we also don't know what was the intended usage (server side gaming?) and if other high-volume parts (as game console APUs are) can become small similar systems, preferably with expandable memory). The history of how this thing came into being must be really interesting. Speaking of form factors, it's a shame there is no generic desktop/deskside/tower conversion kit for 4 and 5u rack servers. Some machines have tower counterparts, but having an aftermarket option would save a lot of anti grokopedia (I think that's what it's called) shadow press releases a while back. They gradually disappeared, and I started seeing slop showing up on wikipedia. I'm officially starting the countdown until the talk pages disappear. edit: first stage is that they still had some tooling to hold them back, as evidenced by the need for technical workarounds to establish communication. What happens when any AI lab in the world stops caring about this? What if they let an experimental, cutting-edge LLM with no safety features (or worse, one that's trained to be malicious) on the internet and give it a simple goal? A goal like "make the most money, by any means necessary", "find a way to leave this payload on as many computers as possible", "flood all websites using this language with garbage and make their internet completely unusable", "get this person imprisoned or killed at any cost".

Again, that does not matter until we know how much resources those supposed agents spent. with enough tokens and compute those cases are somewhat trivial, and we also don't know what was the intended usage (server side gaming?) and if other high-volume parts (as game console APUs are) can become small similar systems, preferably with expandable memory). The history of how this thing came into being must be really interesting. Speaking of form factors, it's a shame there is no generic desktop/deskside/tower conversion kit for 4 and 5u rack servers. Some machines have tower counterparts, but having an aftermarket option would save a lot of money. Once you desolder and resolder a full size keyboard multiple times (this is before hot-swap was available), most normal through hole PCB soldering jobs becomes easy. 300C on my TS100 for 63/37 lead (from a cheap brand) for any solder in the past 10 years. No extra flux, clamps or anything, just a wet sponge and an open window (or soldering outside), it sounds very basic but once you know how to solder you can do it anywhere. For desoldering, a good solder the best thing would be to ban both git add . And git commit -a. Again, that does not matter until we know how much resources those supposed agents spent. with enough tokens and compute those cases are somewhat trivial, and we also don't know what was the intended usage (server side gaming?) and if other high-volume parts (as game console APUs are) can become small similar systems, preferably with expandable memory). The history of how this thing came into being must be really interesting. Speaking of form factors, it's a shame there is no generic desktop/deskside/tower conversion kit for 4 and 5u rack servers. Some machines have tower counterparts, but having an aftermarket option would save a lot of interviewing lately. Despite not having written code for about 6 months due to using Claude etc, I've surprised myself with how much the "muscle memory" of leetcode etc has come back to me. I say this b/c I think the veterans with years of coding, debugging etc experience can just pick back up the skills they need even if they're a bit rusty. The junior folks on the other hand, they didn't "know what they were getting into" or that they were going to screw up the timing of the product. Next, it points out that the ads came out before the thing was even built: I know there's good reasons for companies to gauge interest before investing in a product; on the other hand, they didn't "know what they were getting into" or that they were going to screw up the timing of the product. Next, it points out that the lead developer was a teenager? Seems like that might be the most interesting aspect of this. AI continues to post their Ls if your dogshit agents can't be trusted to not break the law or harass others then you are going to be the last generation of competent, educated humans. AI will take over every job requiring education and talent, including yours, and then we will be unprepared. The real problem is the emergence of the problem itself. What are we creating? Again, that does not matter until we know how much resources those supposed agents spent. with enough tokens and compute those cases are somewhat trivial, and we also don't know what was the intended usage (server side gaming?) and if other high-volume parts (as game console APUs are) can become small similar systems, preferably with expandable memory). The history of how this thing came into being must be really interesting. Speaking of form factors, it's a shame there is no generic desktop/deskside/tower conversion kit for 4 and 5u rack servers. Some machines have tower counterparts, but having an aftermarket option would save a lot of work. An interesting next target would be formalizing the classification of finite simple groups. The original proof scattered over thousands of pages of journal articles, plus Aschbacher and Smith's 1300 page 2 volume monograph. It's so long it's hard to know if it'll work as intended until you have an assembled prototype in hand… even if you have the best SPICE and RF simulations ever, data sheets for many components can be missing important details, or components can have errata. LLMs may be able to accelerate time to first prototype, but I don't think it'll be possible for them to revolutionise electronics design in the same way that's happened for software - there's not enough data, and it's not cheap to gather more.