pythagorean theorem|pythagorean theorem in English

mathematical theory developed by Pythagoras (Greek mathematician)

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1. He gave a proof of the Pythagorean theorem using the Pythagorean tiling.

2. So we're going to break out a little trigonometry and actually just a little Pythagorean theorem.

3. One can arrive at the Pythagorean theorem by studying how changes in a side produce a change in the hypotenuse and employing calculus.

4. Hilbert's irreducibility theorem.

5. Pythagorean Symbola in Erasmus' Adagia by s

6. It may not be quite correct to classify Alcmaeon as a Pythagorean, but he was certainly influenced by Pythagorean ideas.

7. A Corollary is a theorem that follows on from another theorem A Lemma is a small result (less important than a theorem)

8. Ancient Egyptian mathematicians had a grasp of the principles underlying the Pythagorean theorem, knowing, for example, that a triangle had a right angle opposite the hypotenuse when its sides were in a 3–4–5 ratio.

9. The ham sandwich theorem can be proved as follows using the Borsuk–Ulam theorem.

10. Corollary : Corollary is a theorem which follows its statement from the other theorem

11. The numerical value of Comportate in Pythagorean Numerology is: 9

12. The numerical value of Blimped in Pythagorean Numerology is: 7

13. The numerical value of Ancien in Pythagorean Numerology is: 1

14. The numerical value of Amirite in Pythagorean Numerology is: 3

15. The numerical value of Anencephalous in Pythagorean Numerology is: 8.

16. The numerical value of Brere in Pythagorean Numerology is: 3

17. The numerical value of Burlesquer in Pythagorean Numerology is: 3

18. The numerical value of Bickerin in Pythagorean Numerology is: 8.

19. The numerical value of Blaguer in Pythagorean Numerology is: 3.

20. The numerical value of Boyishness in Pythagorean Numerology is: 9

21. The numerical value of Benchwork in Pythagorean Numerology is: 9.

22. The numerical value of Belched in Pythagorean Numerology is: 3

23. The numerical value of Biten in Pythagorean Numerology is: 5

24. The numerical value of Abounded in Pythagorean Numerology is: 3

25. In operator algebra, the Koecher–Vinberg theorem is a reconstruction theorem for real Jordan algebras.