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0:22
TikTok
ima95250
Comment comprendre une note de 17 en mathématiques et 9 en physique ?
Explication simple sur l'interprétation de notes(17 en maths, 9 en physique), limites et comparaisons. #notes #mathématiques #physique ima ️Massamajr🫂😂(@ima95250). son original - ima ️Massamajr🫂😂
195.3K views
1 week ago
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(Cred to @truelarpmichael for the pics of imomali) Graham's number is an immense number that arose as an upper bound on the answer of a problem in the mathematical field of Ramsey theory. It is much larger than many other large numbers such as Skewes's number and Moser's number, both of which are in turn much, much larger than a googolplex. As with these, it is so large that the observable universe is far too small to contain an ordinary digital representation of Graham's number, assuming that e
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(Cred to @truelarpmichael for the pics of imomali) Graham's number is an immense number that arose as an upper bound on the answer of a problem in the mathematical field of Ramsey theory. It is much larger than many other large numbers such as Skewes's number and Moser's number, both of which are in turn much, much larger than a googolplex. As with these, it is so large that the observable universe is far too small to contain an ordinary digital representation of Graham's number, assuming that e
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Remade first editGraham's number is an immense number that arose as an upper bound on the answer of a problem in the mathematical field of Ramsey theory. It is much larger than many other large numbers introduced as effective bounds in mathematics, such as Skewes's bound, which in turn is much larger than a googolplex. Graham's number is so large that the observable universe is far too small to contain its ordinary digital representation, assuming that each digit occupies one Planck volume. But
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Officer Rex | | | Graham's number is a gigantic number that provides an upper bound for a solution to a certain problem in Ramsey theory. It is a very large power of three, written using Knuth notation. It is named after Ronald Graham. It became widely known after Martin Gardner described it in his
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