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9. Compute the limit: lim n (A) 0; (B) (B) e-2; e-; 72 nx(n 1)x n (C) (C) 1) XX1 e-; e-; (D) 1.

9. Compute the limit: ( lim _{n rightarrow infty} frac{sqrt[n]{n times(n-1) times cdots times 1}}{n} ), where ( n

9. Compute the limit: lim n (A) 0; (B) (B) e-2; e-; 72 nx(n 1)x n (C) (C) 1) XX1 e-; e-; (D) 1. 3 where n E N. 9. Compute the limit: lim n (A) 0; (B) (B) e-2; e-; 72 nx(n 1)x n (C) (C) 1) XX1 e-; e-; (D) 1. 3 where n E N. 9. Compute the limit: lim n (A) 0; (B) (B) e-2; e-; 72 nx(n 1)x n (C) (C) 1) XX1 e-; e-; (D) 1. 3 where n E N.

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Using Starling approximate we can say n ne n 2n Then the limit becomes lim n n 1n n ... blur-text-image

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