I read that it's basically enough to tell to someone "Let's meet in London" and that the odds are that you'll be able to meet, that is: you will both appear in the same place at the same time.
It's fascinating, no?
There are elements of game theory there: you have to predict where and when I will be. I have to do the same.
Now the mechanism is fairly simple: having no coordinates most people will assume that the meeting will be at noon and in the main square.
But what if there are many squares none of which is really main? Or a number of landmarks?
Basically I wanted to test this hypothesis but now I realize that forum technology is not well suited for it. I'd tell you a city and you'd all have to tell me where and when you'd be, I'd then compare results.
We can discuss it anyway. How should one act in case of cities like London with many landmarks? If a beautiful girl tells me in passing "Let's meet in London" and then disappears, should I be at noon near Big Ben? Or somewhere else?
What if it gets even more complex: the date is not set? Which is the obvious date most people would choose to meet at?
It's fascinating, no?
There are elements of game theory there: you have to predict where and when I will be. I have to do the same.
Now the mechanism is fairly simple: having no coordinates most people will assume that the meeting will be at noon and in the main square.
But what if there are many squares none of which is really main? Or a number of landmarks?
Basically I wanted to test this hypothesis but now I realize that forum technology is not well suited for it. I'd tell you a city and you'd all have to tell me where and when you'd be, I'd then compare results.
We can discuss it anyway. How should one act in case of cities like London with many landmarks? If a beautiful girl tells me in passing "Let's meet in London" and then disappears, should I be at noon near Big Ben? Or somewhere else?
What if it gets even more complex: the date is not set? Which is the obvious date most people would choose to meet at?
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