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m4rkuskk

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Before AI I would spend multiple days mapping out my database tables and queries while now I ask AI to propose multiple different approaches and I pick the best one. But then on the other hand I’m working on 10 features at the same time and have to carefully look through them. But I can see that I’m totally dependent on the AI now. Creating a full plan by yourself feels like a waste of time, since you know the AI can create the same or better plan in a split second. So when Claude is down, I end up not being productive at all.

I have been testing it in my app all morning, and the results line up with 4.6 Sonnet. This is just a "vibe" feeling with no real testing. I'm glad we have some real competition to the "frontier" models.

This may work on a small scale, not in most commercial use cases. A typical deck pour (400cy) will pour at 70-80cy/hr. you got 9-10cy/truck. Meaning you have 7 to 8 minutes to back in the truck, empty it into the hopper and leave. You barely have time to add water to the mix. Most high-volume concrete plants are "dry-batch", which means all the ingredients get dumped into the drum and the concrete will get mixed while driving to the project site. Also, changing mixes on the fly will not "fly". No one is going to authorize the adjustment, because what happens when the mix doesn't meet specs... It will need to get chipped out.

They are standardized for a given mix. A mix design that is based on a trial badge is submitted to the SEOR prior to pouring anything. The mix design shows the ratios ingredients (cementitious materials, find and coarse aggregates, water, air, admixtures). But Concrete is still a non-homogeneous material with lots of variations. Take for instance aggregates, if it rained the last two weeks, the moisture content will be higher but it may only be a layer on that pile. Same goes for gradation (particle size of the rock). Sometimes you get a batch with smaller rock. There are a 100 things that can go wrong to get bad mud.

But yeah, there are concrete plants that cut corners and try to save on cement (the most expensive part of the mix), which depending on the project may bite them in the ass when they have to pay to fixing it.

It's linear. The surrounding pressure increases by the following: P=γ*h P=pressure (lb/ft^2) h=height (ft) γ=density (lb/ft^3) water = 62.4lb/ft^3 So if he goes down 33ft, the pressure @33ft will be: Total pressure: 62.4x33 = 2059psf (1atm ≈ 2116.21psf)

Zip Bomb 14 years ago

In case safari crashes and you won't be able to open it, sudo rm -rf ~/Library/Caches/com.apple.Safari did it for me.