when your art program’s closing message hits you straight in the heart and makes you stop and contemplate the state of it all

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@xanerion
when your art program’s closing message hits you straight in the heart and makes you stop and contemplate the state of it all

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[id: a gouache painting of Yasmin Khan from Demons of the Punjab, depicting her in profile with a yellow flower tucked behind her ear. the second picture depicts the painting in the sketchbook, propped against a small toy Tardis, with a couple of paint tubes next to it. /end id]
Ace Romana Donna Clara Bill
We’re watching the Return of the King right now, and got to the part where Denethor is introduced. My husband asks me for the context of why Denethor is Like That, since I just finished reading the book. So I explained how Denethor has been using a Palantir for years to get information, and how Sauron has been manipulating him by only letting him see events that give him a worst possible impression of reality.
So my husband replies “Oh! So Denethor is basically just like your grandpa after he starts getting all his news from Fox.” And honestly, yeah pretty much.
Warn people before you make statements like that. I was not ready.
So the other night during D&D, I had the sudden thoughts that:
1) Binary files are 1s and 0s
2) Knitting has knit stitches and purl stitches
You could represent binary data in knitting, as a pattern of knits and purls…
You can knit Doom.
However, after crunching some more numbers:
The compressed Doom installer binary is 2.93 MB. Assuming you are using sock weight yarn, with 7 stitches per inch, results in knitted doom being…
3322 square feet
Factoring it out…302 people, each knitting a relatively reasonable 11 square feet, could knit Doom.
Hi fun fact!!
The idea of a “binary code” was originally developed in the textile industry in pretty much this exact form. Remember punch cards? Probably not! They were a precursor to the floppy disc, and were used to store information in the same sort of binary code that we still use:
Here’s Mary Jackson (c.late 1950s) at a computer. If you look closely in the yellow box, you’ll see a stack of blank punch cards that she will use to store her calculations.
This is what a card might look like once punched. Note that the written numbers on the card are for human reference, and not understood by the computer.
But what does it have to do with textiles? Almost exactly what OP suggested. Now even though machine knitting is old as balls, I feel that there are few people outside of the industry or craft communities who have ever seen a knitting machine.
Here’s a flatbed knitting machine (as opposed to a round or tube machine), which honestly looks pretty damn similar to the ones that were first invented in the sixteenth century, and here’s a nice little diagram explaining how it works:
But what if you don’t just want a plain stocking stitch sweater? What if you want a multi-color design, or lace, or the like? You can quite easily add in another color and integrate it into your design, but for, say, a consistent intarsia (two-color repeating pattern), human error is too likely. Plus, it takes too long for a knitter in an industrial setting. This is where the binary comes in!
Here’s an intarsia swatch I made in my knitwear class last year. As you can see, the front of the swatch is the inverse of the back. When knitting this, I put a punch card in the reader,
and as you can see, the holes (or 0′s) told the machine not to knit the ground color (1′s) and the machine was set up in such a way that the second color would come through when the first color was told not to knit.
tl;dr the textiles industry is more important than people give it credit for, and I would suggest using a machine if you were going to try to knit almost 3 megabytes of information.
@we-are-threadmage
Someone port Doom to a blanket
I really love tumblr for this 🙌
It goes beyond this. Every computer out there has memory. The kind of memory you might call RAM. The earliest kind of memory was magnetic core memory. It looked like this:
Wires going through magnets. This is how all of the important early digital computers stored information temporarily. Each magnetic core could store a single bit - a 0 or a 1. Here’s a picture of a variation of this, called rope core memory, from one NASA’s Apollo guidance computers:
You may think this looks incredibly handmade, and that’s because it is. But these are also extreme close-ups. Here’s the scale of the individual cores:
The only people who had the skills necessary to thread all of these cores precisely enough were textile and garment workers. Little old ladies would literally thread the wires by hand.
And thanks to them, we were able to land on the moon. This is also why memory in early computers was so expensive. It had to be hand-crafted, and took a lot of time.
(little old ladies sewed the space suits, too)
Fun fact: one nickname for it was LOL Memory, for “little old lady memory.”
I mean let’s also touch on the Jacquard Loom, if you want to get all Textiles In Sciencey. It was officially created in 1801 or 1804 depending on who you ask (although you can see it in proto-form as early as 1725) and used a literal chain of punch cards to tell the loom which warps to raise on hooks before passing the weft through. It replaced the “weaver yelling at Draw Boy” technique, in which the weaver would call to the kid manning the heddles “raise these and these, lower these!” and hope that he got it right.
With a Jacquard loom instead of painstakingly picking up every little thread by hand to weave in a pattern, which is what folks used to do for brocades in Ye Olde Times, this basically automated that. Essentially all you have to do to weave here is advance the punch cards and throw the shuttle. SO EASY.
ALSO, it’s not just “little old ladies sewed the first spacesuits,” it’s “the women from the Playtex Corp were the only ones who could sew within the tolerances needed.” Yes, THAT Playtex Corp, the one who makes bras. Bra-makers sent us to the moon.
And the cool thing with them was that they did it all WITHOUT PINS, WITHOUT SEAM RIPPING and in ONE TRY. You couldn’t use pins or re-sew seams because the spacesuits had to be airtight, so any additional holes in them were NO GOOD. They were also sewing to some STUPID tight tolerances-in our costume shop if you’re within an eighth of an inch of being on the line, you’re usually good. The Playtex ladies were working on tolerances of 1/32nd of an inch. 1/32nd. AND IN 21 LAYERS OF FABRIC.
The women who made the spacesuits were BADASSES. (and yes, I’ve tried to get Space-X to hire me more than once. They don’t seem interested these days)
This is fascinating. I knew there was a correlation between binary and weaving but this just takes it to a whole nother level.
I’m in Venice, Italy several times a year (lucky me!) and last year I went on a private tour of the Luigi Bevilacqua factory. Founded in 1875, they still use their original jacquard looms to hand make velvet. Here are the looms:
Here are the punch cards:
Some of these looms take up to 1600 spools. That is necessary to make their many different patterns. Here are some patterns:
How many punchcards per pattern?
This many:
Modern computing owes its very life to textiles - And to women. From antiquity weaving has been the domain of women. Sure, we remember Ada Lovelace and Hedy Lamarr, but while Joseph Marie Jacquard gets all the credit for his loom, the operators and designers were for the most part women.
I’ve seen this cross my dash a few times, but I’ve never watched the video before. Maybe I just didn’t pay attention when I was a kid, but I don’t remember ever seeing just how the Jacquard loom works. I just knew that the punch cards controlled which threads were raised. It’s cool to see the how, not just the what.
Don’t hide this in the tags, @drylime :D
When programmers invented rubber duck debugging they were right but what they don’t tell you is that this also works for like 90% of other complex intellectual tasks. Nothing solves a problem faster than just trying to explain it to somebody.

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Today it’s the 10 of Pentacles!
I’ve been thinking about this daily since it crossed my dash
little mans is 100% correct.
I'm gonna put I AM BRAVE OF THIS MEETING on my cubicle wall at work and never explain it.
“9/13 this year is the Chinese mid-autumn festival(a.k.a moon festival). Guess who are making mooncakes for us on the moon!” (x-post: /r/aww) https://ift.tt/31nZaBw
I have never loved anything like I love that little bunny in the top right corner with the mold.
It really was a very awful sight. When the ship was in the trough of the sea, you could distinguish nothing but a waste of tumultuous water; but when she was borne up on the summit of the enormous waves, you then looked down, as it were, upon a low, sandy coast, close to you, and covered with foam and breakers.
“She behaves nobly,” observed the captain, stepping aft to the binnacle, and looking at the compass; “if the wind does not baffle us, we shall weather.”
— Frederick Marryat, Peter Simple
A sailing ship at sea in rough weather, John Everett.

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CRAB TIME
[ID: an illustration of a fiddler crab against a sandy background. Its claws are raised and it is surrounded by white motion lines. End.]
Anyway here’s a poem I wrote about my cat
After “Do not stand at my grave and weep”, author disputed:
Do not stand at your bowl and meow. I gave you food. It’s in there now. I feed you at the dawning light, I feed you at the fall of night. I feed you kibbles mixed with meat And wet food for a special treat. I feed you even though you scoff At all the food within your trough. I feed you and still yet you yell Like as a beast from deepest hell. Do not stand at your bowl and cry. I gave you food. You will not die.

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the feeling of learning is legitimately so cool. there’s a little whoa sound effect that plays in your brain whenever you read a sentence that expands reality for you a tiny bit