structural
8 stories and discussions about structural, aggregated from every source we track.
<p>Full disclosure: I am currently employed at Stitch Fix, but I think this is really cool.</p>
Elementarium is a finite element workspace for civil and structural engineers. Frames, slabs, walls and shells on a locking-free MITC4 formulation; static, modal, stability and second-order analysis — solved at full…
High-performance MCP server for AI coding agents: persistent knowledge graph, blast radius analysis, semantic search. Built in Rust. - spuentesp/lain
Computational methodology and verification pipeline for historical manuscript analysis using the Fixed Vector Shorthand Model (FVSM). - DarmaniHirani/Voynich_Project
Entity-level git merge driver. Resolves false conflicts git invents when independent agents edit the same file. ~95% reduction vs. line-based merge. - Ataraxy-Labs/weave
Old-fashioned striped barbershop poles turn in place on a vertical axis, but humans typically perceive the stripes moving upward rather than turning with the pole. It's a well-known visual illusion arising from processing biases in human vision. According to a new paper published in the journal Nature, a similar effect could explain how butterflies often evade predatory birds: Their flight patterns and wing patterns combine to make it hard for predators to accurately gauge speed and direction. "The stripes and spots on many butterflies’ wings interfere with the way visual systems try to guess the direction and speed of moving things, boosting false motion cues while hiding the butterfly's true heading," said co-author George Hancock of the University of Exeter in Cornwall. "The illusions interfere with the predator’s most basic visual targeting system and disrupt the final ‘ballistic attack’ in the tens of milliseconds when it commits to grabbing its prey, with no time to change course. As a result, birds and other predators will often simply miss." Butterfly wings have long fascinated scientists, ever since the first documentation of the growth of said wings back in 1938. By 2021, researchers at MIT had captured on video the unique structural growth of butterfly wings—continuously, as a butterfly develops inside its chrysalis—for the very first time. Butterfly wings are an example of structural color in nature: the bright iridescent colors don’t come from pigment molecules but from what physicists call photonic crystals . The scales of chitin (a polysaccharide common to insects) are arranged like roof tiles. Essentially, they form a diffraction grating , except photonic crystals only produce certain colors, or wavelengths, of light, while a diffraction grating will produce the entire spectrum. Read full article Comments