File:Conant-Beyer Generalization of the Pythagorean Theorem for a set of 2-D objects.gif
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Conant-Beyer_Generalization_of_the_Pythagorean_Theorem_for_a_set_of_2-D_objects.gif (347 × 357 pixels, file size: 36 KB, MIME type: image/gif, looped, 2 frames, 15 s)
Summary
Conant-Beyer Generalization for the Pythagorean theorem applied to a set of 2-D objects: The total area squared of the set of objects in blue can be calculated by projecting the set onto each of the coordinate planes, calculating the total area of each projected set (shown in green), squaring each total projected area, then summing the squares together (A2 + B2 + C2 = D2).
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 14:11, 9 January 2017 | ![]() | 347 × 357 (36 KB) | 127.0.0.1 (talk) | <b>Conant-Beyer Generalization for the Pythagorean theorem applied to a set of 2-D objects</b>: The total area squared of the set of objects in blue can be calculated by projecting the set onto each of the coordinate planes, calculating the total area of each projected set (shown in green), squaring each total projected area, then summing the squares together (<i>A</i><sup>2</sup> + <i>B</i><sup>2</sup> + <i>C</i><sup>2</sup> = <i>D</i><sup>2</sup>). |
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