From Bessel Recurrence formulae the value of Jn.+1 (X) = (A). 2n/x Ja(x) – Jp-1 (x) (B) 2n Ja(x) + Ja-1 (X) (C) 2n/x Ja+1(x) – Jp-1 (x) (D) non ........

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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23). From Bessel Recurrence formulae the value of Ja+1 (x) = ....
(A). 2n/x J.(x) – Ja-1 (x) (B) 2n J.(x) + Ja-1 (x) (C) 2n/x Ja:1(x) – Ja1 (x) (D) non
24). Legendre Polynomial P2 (x) = .
......
(A) x? (B) 1/2 (x² + 1) (C) 1/2 (3x² - 1) (D) 1/2 (3x² + 1)
Transcribed Image Text:23). From Bessel Recurrence formulae the value of Ja+1 (x) = .... (A). 2n/x J.(x) – Ja-1 (x) (B) 2n J.(x) + Ja-1 (x) (C) 2n/x Ja:1(x) – Ja1 (x) (D) non 24). Legendre Polynomial P2 (x) = . ...... (A) x? (B) 1/2 (x² + 1) (C) 1/2 (3x² - 1) (D) 1/2 (3x² + 1)
22). Which of the following statement is correct:
(a) P2 (3) = 3x P, (x) +Po (x)
6) P. (4) = x P. (9) - Pow)
(1) P. (6) = P, (1) + Po(4)
(d) P. (x) 3D P, () +국 Po (x)
23). From Bessel Recurrence formulae the value of Ja+1 (x) =
(A). 2n/x Ja(x) – Ja-1 (x) (B) 2n Ja(x) + Ja-1 (X) (C) 2n/x Jas1(x) – Ja1 (X) (D) non
Transcribed Image Text:22). Which of the following statement is correct: (a) P2 (3) = 3x P, (x) +Po (x) 6) P. (4) = x P. (9) - Pow) (1) P. (6) = P, (1) + Po(4) (d) P. (x) 3D P, () +국 Po (x) 23). From Bessel Recurrence formulae the value of Ja+1 (x) = (A). 2n/x Ja(x) – Ja-1 (x) (B) 2n Ja(x) + Ja-1 (X) (C) 2n/x Jas1(x) – Ja1 (X) (D) non
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