old lesbians moodboard

oozey mess

izzy's playlists!

#extradirty
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noise dept.
Sade Olutola
tumblr dot com

Game Changer & Make Some Noise
untitled
Interview Vampire Daily

tannertan36
YOU ARE THE REASON
Cosmic Funnies
Monterey Bay Aquarium
TMBGareOK. The Official They Might Be Giants tumblr
sheepfilms
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Misplaced Lens Cap
occasionally subtle

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@theladywillseeyounow
old lesbians moodboard
I don’t know the context for this, but it isn’t necessary. A more truthful ad has never been printed.
Can you flatten a sphere?
The answer is NO, you can not. This is why all map projections are innacurate and distorted, requiring some form of compromise between how accurate the angles, distances and areas in a globe are represented.
This is all due to Gauss’s Theorema Egregium, which dictates that you can only bend surfaces without distortion/stretching if you don’t change their Gaussian curvature.
The Gaussian curvature is an intrinsic and important property of a surface. Planes, cylinders and cones all have zero Gaussian curvature, and this is why you can make a tube or a party hat out of a flat piece of paper. A sphere has a positive Gaussian curvature, and a saddle shape has a negative one, so you cannot make those starting out with something flat.
If you like pizza then you are probably intimately familiar with this theorem. That universal trick of bending a pizza slice so it stiffens up is a direct result of the theorem, as the bend forces the other direction to stay flat as to maintain zero Gaussian curvature on the slice. Here’s a Numberphile video explaining it in more detail.
However, there are several ways to approximate a sphere as a collection of shapes you can flatten. For instance, you can project the surface of the sphere onto an icosahedron, a solid with 20 equal triangular faces, giving you what it is called the Dymaxion projection.
The Dymaxion map projection.
The problem with this technique is that you still have a sphere approximated by flat shapes, and not curved ones.
One of the earliest proofs of the surface area of the sphere (4πr2) came from the great Greek mathematician Archimedes. He realized that he could approximate the surface of the sphere arbitrarily close by stacks of truncated cones. The animation below shows this construction.
The great thing about cones is that not only they are curved surfaces, they also have zero curvature! This means we can flatten each of those conical strips onto a flat sheet of paper, which will then be a good approximation of a sphere.
So what does this flattened sphere approximated by conical strips look like? Check the image below.
All of this is not exactly new, of course, but I never saw anyone assembling one of these. I wanted to try it out with paper, and that photo above is the result.
It’s really hard to put together and it doesn’t hold itself up too well, but it’s a nice little reminder that math works after all!
Here’s the PDF to print it out, if you want to try it yourself.
Mos Def x Chance the Rapper
is this the worst comic
★ He Tian x Mo Guan Shan ★
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Art via http://ift.tt/2c1Hu6T More Interesting & Creative Art
I <3 you
Selfie dump because I haven't done one in ages. Basically this year I got into dark lipstick and not smiling.
Book pins by janemount on Etsy
You guys, Jane Mount is awesome. She and her husband lived in Berlin at the same time we did and we found each other through a mutual friend although never got to hang out because I left sooner than expected.
ANYWAYS. She does these adorable pins, but will also do custom prints of your ideal bookshelf. I am planning on having her paint one for me with all the books I read while in Berlin.
attn jennywilbury your whole rereading list is here!!! ;)
Oh my goodness.
Victorian photography of ‘Odin’
medieval painters: what is a feline? a miserable and fuzzy humanoid perhaps?