fo = 13, fi = 5, - 3 fn = - fn+1 + 10fn–1 The following four questions are all based on the paragraph above. You have to answer all of them in order to be able to click the submit button down below. Here, ri and r2 are the roots of the characteristic equation of the recurrence relation and a1 and az are two constants such that fn = a¡r" + azr" satisfy the recurrence. (1) f2 =? (2) 5 (r1 + r2) =?
fo = 13, fi = 5, - 3 fn = - fn+1 + 10fn–1 The following four questions are all based on the paragraph above. You have to answer all of them in order to be able to click the submit button down below. Here, ri and r2 are the roots of the characteristic equation of the recurrence relation and a1 and az are two constants such that fn = a¡r" + azr" satisfy the recurrence. (1) f2 =? (2) 5 (r1 + r2) =?
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Transcribed Image Text:fo = 13,
fi = 5,
- 3 fn = - fn+1 +10fn-1
The following four questions are all based on the paragraph above. You have to answer all of them in order to be able to click the submit button down
below.
Here, ri and r2 are the roots of the characteristic equation of the recurrence relation and a1 and az are two constants such that fn = a1r + a2r,
satisfy the recurrence.
(1) f2 =?
(2) 5 (r1 + r2) =?
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