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an hour ago by srean

Oh no! woe is me, they don't highlight my absolutely, ridiculously favourite fact/curiosity about a sheet of smooth paper:

If you fold it clean, the crease is a straight line. In fact I don't know of any other good way of obtaining a straight edge from scratch quickly, meaning without transporting one existing straight edge to another (*).

I remember spending a lot of enamored time coming up with different geometrical proofs of this fact. Perhaps the only time I have come close to jumping out of the proverbial bath tub.

The underlying reason is that paper does not stretch (**) (but, paradoxically, it does bend fine. It's a paradox because bending needs stretching).

I have to restrain myself from grabbing strangers off the streets to ask -- how cool is that.

Three other demonstrations that never fail to nerd-snipe me like this paper folding fact are Dirac's belt trick, that straight woven cloth rips usually at 90 degrees, and the working of a teeny tiny metacircular interpreter.

(*) Rope stretching is a close competitor, but the tension needs to be really really high and it is difficult to run a pencil along it to mark a straight line, lest you distort the st. line.

(**) of course, it does, but a tiny amount.

Coming back to straight line folds, this property holds beyond just Euclidean space, it holds for Riemannian geometry and probably for any continuous metric space.

44 minutes ago by arijun

> The underlying reason is that paper does not stretch

I don't think that's sufficient--tinfoil doesn't stretch, but it doesn't fold nearly as neatly as paper.

37 minutes ago by srean

You are perhaps commenting about the force needed to fold, the persistence of the folded shape. My comment is about the shape of the crease once it has been folded.

Most metals are stretchier than paper. If it is thick it will resist folding, but once you have folded it, that is, the two flat boundary surfaces have coincided, the crease would be a straight line if the surfaces cannot stretch.

How much force you will need to exert to form a fold depends on material properties but the geometrical nature of the crease is dictated by stretching.

13 minutes ago by leebeef

This is exactly the sort of hard-hitting journalism that makes me proud to pay my TV licence.

24 minutes ago by aequitas

The Mythbusters proved you can fold it up all the way to 11: https://www.youtube.com/watch?v=65Qzc3_NtGs

2 hours ago by yread

And why does it sink. Its basically squished wood!

9 minutes ago by tobyhinloopen

Because the air is squished out I suppose

an hour ago by OJFord

I really can't imagine getting paper to sink any more easily than wood?

an hour ago by undefined
[deleted]
43 minutes ago by arijun

Unless I'm missing a transcript somewhere, this is missing an [audio] tag.

2 days ago by zeristor

A lovely little podcast on paper physics for origami.

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