LINEAR DIFFERENCE EQUATIONS We have from equation (3.201) N mrk fk = Cm sin (N+1) (3.212) m=1 where cm is determined by the relation N mrk mak Efk sin E sin? (3.213) Ст N +1 N+1 k=1 Now it can be shown that N mak N +1 sin? (N +1 (3.214) k=1 Therefore, the coefficients {Cm} are 2 Cm = mrk E fk sin = 1, 2,..., N. (3.215) m = N + N +1 zWI

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
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3.6.2
Example B
Let the function fr be defined for k = 1 to N. Determine the coefficients {Cm}
when fk is expanded in terms of the eigenfunctions of equation (3.211).
LINEAR DIFFERENCE EQUATIONS
We have from equation (3.201)
mak
fk
2 Cm sin
(3.212)
N+1
m=1
where Cm is determined by the relation
mak
mrk
Cm = fk sin
N +1
sin?
(N+1
(3.213)
k=1
k=1
Now it can be shown that
N
mrk
N +1
Σ
sin² (-
(3.214)
N+1
2
k=1
Therefore, the coefficients {Cm} are
mrk
E fk sin
m = 1,2, ..., N.
(3.215)
Ст
N +1
k=1
N +1
Transcribed Image Text:3.6.2 Example B Let the function fr be defined for k = 1 to N. Determine the coefficients {Cm} when fk is expanded in terms of the eigenfunctions of equation (3.211). LINEAR DIFFERENCE EQUATIONS We have from equation (3.201) mak fk 2 Cm sin (3.212) N+1 m=1 where Cm is determined by the relation mak mrk Cm = fk sin N +1 sin? (N+1 (3.213) k=1 k=1 Now it can be shown that N mrk N +1 Σ sin² (- (3.214) N+1 2 k=1 Therefore, the coefficients {Cm} are mrk E fk sin m = 1,2, ..., N. (3.215) Ст N +1 k=1 N +1
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