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Science
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Number of pages / Number of words: |
11 / 2884 |
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We then derive two expressions for the same area, make them equivalent, and eventually the inevitable conclusion is that the square on the hypotenuse, z^2, is equal to the sum of the squares on the other two sides, x^2+ y^2. This argument holds true for all right-angled triangles. The sides of the triangle x, y, z can represent sides of any right-angled triangles...
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We then derive two expressions for the same area, make them equivalent, and eventually the inevitable conclusion is that the square on the hypotenuse, z^2, is equal to the sum of the squares on the other two sides, x^2+ y^2. This argument holds true for all right-angled triangles. The sides of the triangle x, y, z can represent sides of any right-angled triangles...
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