Building a Telegraph Using Only Stone Age Materials
MMBK writes "It's the ultimate salvagepunk experiment, building a telegraph out of things found in the woods. From the article: 'During the summer of 2009, artist Jamie O’Shea of the organization Substitute Materials set out to test whether or not electronic communication could have been built at any time in history with the proper knowledge, and with only tools and materials found in the wilderness of New Jersey.'"
This video is a big let down: all he's doing is showing that it's possible to smelt iron & copper and construct an organic battery. This is not news...
Furthermore, he uses stone tools and tries (and fails) to start a fire with a friction bow drill.
For building a telegraph (or any electronic communications medium), the challenge lies in the miles of wire that are needed. The scale of manufacturing for this task is huge and is a long project -- not something you'd set out to do in the wilderness with your stone axe.
If civilization collapsed and needed to be rebuilt with only stored knowledge and what can be found outside, don't you think we'd start by finding flint and making knives & axes? You know, like humans did thousands of years ago... Not to mention the fact that other needs, like shelter/water/food would take priority -- and once you've met those needs efficiently and adequately, you'll probably already have a nice collection of tools, machines, and furnaces that will let you get started on higher technology.
I was expecting, and would be much more interested, in seeing documentation on how to build a telegraph using basic midievil technology (i.e. assuming the existence of metal tools, furnaces, and animal/water-powered machines)
I really hate being referred to a video in a story. I am never interested in enough to sit through it. So how did they find copper? And a power source?
There is a fascinating account of building a radio in a Japanese POW camp during WWII virtually from scratch.
So we hit upon the idea of taking some tin foil or aluminum foil from the lining of the tea chest from which the Japanese supplied with the rice rations, then by the well known equations for calculating capacity and the relationship of the surface area and spacing of the plates, we built a capacitor or, at least, I built a capacitor which according to calculations should have been about ".01 microfarad."
In Jules Verne's 'Mysterious Island' he writes about how his castaways build a civilisation on a remote pacific island. One of the things they build is a telegraph from scratch. They also build paddle wheels, make guncotton, determine the latitude and longitude of their island, make a secure house out of a cave behind a waterfall, grow wheat from a single husk and a lot of other things. And as a bonus, it has the return of one of Verne's most famous characters (read it and find out who!). This is one of my favourite books, I can definately recommend it to the whole slashdot crowd.
Having actually smelted iron from iron ore in a living history re-enactment, I call bullshit on this entire thing (well, ok, given the metal disks, the root battery might work).
You need a *serious* air feed to the base of the smelter to get the temperatures high enough to melt the ore. A single bag bellows feeding into the top of a simple depression in the ground with almost no fuel stock just won't do it. We had two bag bellows constantly manned pumping into the base of a big stack of charcoal and only just got the temperatures high enough.
Oh, and put that kind of heat anywhere near a clay crucible that hasn't completely dried out (at least a day or so of drying using a small fire) and the whole thing will go bang in your face as the residual water in the clay turns to steam and explosively releases.
And once you've got your iron from the base of the smelt, you can't just bang it with a rock to get it to a usable disk. It comes out of the smelter as a rough mass of iron flakes (called a 'bloom'). You need to very carefully forgeweld it into a whole. Hitting it with a hammer causes the bloom to fall apart immediately into an unusable mess of rust flakes. I know, I made this mistake and we had to start again.
I can't speak for smelting copper. I believe the process is similar but easier because of lower temperatures.
And charcoal doesn't come for free. There's a whole involved process for making charcoal, requiring *lots* of wood (and preferably hardwood which burns hotter but is much harder to cut down). It takes about 4 days (plus wood-chopping time, which you just can't do with just a single stone hand-axe and one person) to make charcoal from scratch, and it's a very tricky process requiring a lot of practice.
There's a reason we spent thousands of years in the bronze age before we started using iron. It's not because we didn't know about iron ores.
Business/App ideas are like arseholes: everyone's got one, they're mostly shit, but very rarely they contain a diamond
Like the title says, thought I'd check out the parent's book recommendation: http://www.gutenberg.org/ebooks/8993
I know it's hard to start a fire like this. I've tried and tried and tried it unsuccessfully. But as soon as he skipped that step, he was no longer doing what he set out to do: creating dits and dahs without using any post-stone-age gear.
If I set out to walk across the country, but take a bus from Pittsburgh to Toledo because it's raining, and I know that I could walk between them, I haven't actually walked across the country, have I?
http://alternatives.rzero.com/
It doesn't take that much "skill" to make a fire with a bowdrill, honestly. My brother was into this kind of thing. It turns out that the choice of wood, string, and a decent bow make a _huge_ difference. E.g. I saw him get a glowing ember from his drill setup in less than a minute, and in less than 90 seconds had a handful of flames. Impressed by how easy it looked, I traipsed into the woods, found some sticks of various sizes, with no thought whatsoever to their suitability, made a rough bow, carved out a notch, got a rock and started going at it. Half a day later, I could barely get smoke. I didn't know why. He let me use his setup, and within two minutes I too had an ember.
You need a wood that grows straight, has little resin, and is somewhat dry for the drill, and a flexible but stiff wood for the bow. A soft maple is excellent. It needs to be dead and dry, not green (obviously). You want a good solid leather string that will grip the drill nicely. You want a good amount of tension in the bow, but not too much. The drill should be between 2 and 3 cm wide, around 15 to 20 cm long. For the base you want a somewhat harder wood with a little more resin. Oak is good. Gather good kindling to catch, often by peeling bark into super thin strips and making a little nest of them. The glowing ember will come from the dust of the drill being worn down and getting hot. For the top you want a rock not much bigger than the palm of your hand, so that you can get a good grip on it and put some weight to keep the whole system stable. You want to get a nice point on the drill on the rock side and if possible scratch a bit of a hole into the rock so the point from the drill fits. If you can find some lubrication of some sort for the top that helps.
After the notch in the base gets worn in and the friction part of your drill gets worn into the appropriate shape, it is not actually that hard to make a fire in less than a few minutes. I've done it.
120 characters isn't enough to explain it.