Show that any positive odd integer is of the form `4q+1 or 4q+3,` where q is some integer.
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Use Euclid division lemma to show that any positive odd integer is of the form 6q+1 or 6q+5 , where q is some integers.
Use Eulcid division Lemma to show that any positive odd integer is the form 2q+1 , 2q+3 or 2q+5 when q is some integer.
Use Euclid division Lemma to show that any positive even interger is of the form 4q or 4q+2 or 4q+4 when q is some integer.
Use Euclid division lemma to show that any positive even integer is of the form 6q or 6q+2 or 6q+4, where q is some intergers.
Use Euclid division Lemma to show that any positive even integer is of the form. 2q or 2q+2 or 2q+4 where q is some integer.
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Show that every postitive even integer is of the form 2q , and that every positive odd integer is of the form 2q+1 , where q is some integer.
Use division algorithm to show that any positive odd integer is of the form 6q + 1, or 6q + 3 or 6q + 5, where q is some integer
Use Euclid's division lemma to show that the square of any positive integer is of the form 5n or 5n+1 or 5n+4, where n is a whole number.
Use Euclids division lemma to show that the cube of positive integer is of the form 9m,9m+1 or 9m+8. (OR) Show that the cube of any positive integer is of form 9m or 9m+1 or 9m+8 , where m is an integer.