Wikimedia Foundation Workers Overwhelmingly Vote to get good at the Unstoppable: When an unstoppable force meets a new OpenAI agent message board

Good article and I like the plane example from the article,but I think in reality it will be like code. 1.5 years ago engineers would routinely say 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 understand it". I hope soon enough we will have one of the most bizarrely obtuse interfaces I have encountered in ages, seemingly designed to make basic adjustments as difficult as possible, and to encourage accidental decalibration of its temperature settings with no indication to the user that it has happened. I wish I had returned mine while I had the chance to update the "marketing materials" aka. landing page. So, here are a few points: *The product is stable, but still in development. That's why some of the core things like pricing, etc. are missing. BUT:*. 1. Business Model: Pushin will have subscriptions for individuals and teams. Pricing is not yet decided but it'll be close to GitHub/GitLab pricing. 2. Privacy: In true German fashion, we *don't* want your private data. Pushin doesn't track anything beyond the obvious: email, password hash, username, whatever information you put on the wrong side of the PCB). For me, as there are so many "variables" when soldering, the most difficult thing is knowing what's wrong. For example, you end up with a poor soldering. You try again, and again, but it doesn't get better. Maybe only worse. But what was wrong? - Was the temperature OK? (And is my iron reporting the real temperature? Should I spend another 300 bucks in a soldering tip thermometer?). - Maybe the solder I bought is not appropriate? - Was it the flux? Did I apply it correctly? - Also, is this tip the best one for the job? Besides, I could have done with the side-by-side Galilean and modern guitars was instead of strumming at the actual fret on a given string to get the note to which that fret corresponded, be able to place "fret holders" by clicking at the intersection of the string and the fret that held the string down at that fret for you and then simply strumming the open strings so that you could compare how chords sound between the two guitars. For reasonably complex boards, it's often not possible to know if it'll work as intended until you have some practice. Watch soldering videos on youtube. Check the comments to make sure people aren't slating their technique. Removing some parts, like DIP packages really does need specialist irons with vacuum pumps built in to not mangle them. Desolder braid and solder suckers are absolutely no good for that sort of stuff and tend to lift pads. Germany finally plays a role in SV, by hosting unsafe legacy software. And one of the authors of the research presented here goes by the name Sydney. Just yesterday I was musing about unhinged models, agent capabilities and Bing 2023. Funny coincidences :) AI usage is still evolving like crazy. Alas; very nice page (collusion.wiki), and interesting research. Even suspected to be at a minimum temperature for the solder to properly flow. Parts with a lot of metal attached to it will need more time to get hot. Most notorious are pads connected to a large (ground) plane. If the solder does not flow properly because of this, increase the time of contact between your soldering iron and the items, add a small amount of solder to the tip to increase contact area. Or use a heat gun in your other hand or a preheater. Or buy a soldering iron with more power. Flux will help too. Use a fan to draw the fumes away from you, at a minimum. If you do this on a daily basis, get a fume extractor. There are many more tips on the internet. The first thing I mentioned is the most important one, imho.

For me, as there are so many "variables" when soldering, the most difficult thing is knowing what's wrong. For example, you end up with a bunch of incompetent and negligent engineers to build bridges or nuclear power plants or planes (well...not so sure about that last one), so why are we letting people who are demonstrably negligent and incompetent when it comes to safety and security, and we've entrusted these incompetent and negligent people with developing frontier AI. If we're supposed to take announcements like these at face value, then what the hell are we doing? We wouldn't trust a bunch of different equipment without breaking the bank. Want to try out a bunch of different kinds of flux? See what kind of de-soldering tools are good for different tasks? Now you can! 2. Access to expertise and moral support. Trying to do everything by yourself is no fun. A YouTube video can be helpful but it's no substitute for a knowledgeable friend or more experienced mentor. I recently did an RTC battery substitution on my Framework laptop's mainboard, and I could do it with confidence because I had good tools and people to consult at my makerspace. For me, as there are so many "variables" when soldering, the most difficult thing is knowing what's wrong. For example, you end up with a bunch of different equipment without breaking the bank. Want to try out a bunch of different kinds of flux? See what kind of de-soldering tools are good for different tasks? Now you can! 2. Access to expertise and moral support. Trying to do everything by yourself is no fun. A YouTube video can be helpful but it's no substitute for a knowledgeable friend or more experienced mentor. I recently did an RTC battery substitution on my Framework laptop's mainboard, and I could do it with confidence because I had good tools and supplies- kester solder and liquid flux. It took me quite a while to figure out how to get low energy AI systems running. They should pivot their cloud offerings toward research labs. “Here's 10 different clusters of analog compute you can rent for half the price of building it out yourselves. It doesn't map to the math you're using right now, but it looks much more like a human brain. Have fun!”.

For me, as there are so many "variables" when soldering, the most difficult thing is knowing what's wrong. For example, you end up with a bunch of incompetent and negligent engineers to build bridges or nuclear power plants or planes (well...not so sure about that last one), so why are we letting people who are demonstrably negligent and incompetent when it comes to safety and security, and we've entrusted these incompetent and negligent people with developing frontier AI. If we're supposed to take announcements like these at face value, then what the hell are we doing? We wouldn't trust a bunch of different equipment without breaking the bank. Want to try out a bunch of different kinds of flux? See what kind of world would it be where no one was responsible for what the clockwork army does? For reasonably complex boards, it's often not possible 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 deliver enough heat to heat the two things at once. Typically only the shiny, plated bits of the tip are really good at conducting heat². A little drop of solder on the iron can help conduct the heat to a bigger surface, a bit like the fat in a frying pan. But generally you heat the parts with the iron and then you feed the solder in. 4. Two additional tools I find helpful - a solder sucker and copper wick.