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Galileo's paradox : ウィキペディア英語版
Galileo's paradox
Galileo's paradox is a demonstration of one of the surprising properties of infinite sets. The ideas were not new with him, but his name has come to be associated with them. In his final scientific work, ''Two New Sciences'', Galileo Galilei made apparently contradictory statements about the positive integers. First, some numbers are squares, while others are not; therefore, all the numbers, including both squares and non-squares, must be more numerous than just the squares. And yet, for every square there is exactly one positive number that is its square root, and for every number there is exactly one square; hence, there cannot be more of one than of the other. This is an early use, though not the first, of the idea of one-to-one correspondence in the context of infinite sets.
Galileo concluded that the ideas of ''less'', ''equal'', and ''greater'' apply to (what we would now call) finite sets, but not to infinite sets. In the nineteenth century Cantor said that this restriction is not necessary. It is possible to define comparisons amongst infinite sets in a meaningful way (by which definition the two sets he considers, integers and squares, have "the same size"), and that by this definition some infinite sets are strictly larger than others.
Galileo also worked on Zeno's paradoxes in order to open the way for his mathematical theory of motion.〔Alfréd Rényi, ''Dialogs on Mathematics'', Holden-Day, San Francisco, 1967.〕
==Galileo on infinite sets==

The relevant section of ''Two New Sciences'' is excerpted below:

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