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[" Using Euclid Nibhajan theorem, a posi...

[" Using Euclid Nibhajan theorem, a positive "q^(0)],[9m,9m+1" or "9m+8" Of "" It is of form. "]

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Using Eulids division lemma, show that the cube of any positive integer is of the form 9m , or ( 9m+1) or ( 9m+8) for some integer m.

Use Euclid’s division lemma to show that the cube of any positive integer is of the form 9m, 9m + 1 or 9m + 8.

Use Euclid's division lemma to show that the cube of any positive integer is of the form 9m , 9m +1 or 9m + 8 .

Use Euclid's division lemma to show that the cube of any positive integer is of the form 9m , 9m+1 or 9m+8 .

Use Euclid's division lemma to show that the cube of any positive integer is of the form 9m, 9m + 1 or 9m + 8.

Use Euclid's division lemma to show that the cube of any positive integer is of the form 9m, 9m+1 or 9m+8.

Use Euclid's division lemma to show that the cube of any positive integer is of the form 9m,9m+1 or 9m+8.

Use Euclid's division lemma to show that the cube of any positive integer is of the form 9m ,9m+1 or 9m+8 .

Use Euclids division Lemma to show that the cube of any positive integer is either of the form 9m ,\ 9m+1 or, 9m+8 for some integer m .

Use Euclids division Lemma to show that the cube of any positive integer is either of the form 9m ,\ 9m+1 or, 9m+8 for some integer m .