Formula:KLS:09.03:05: Difference between revisions

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Latest revision as of 08:34, 22 December 2019


S ~ n ( x 2 ) := S ~ n ( x 2 ; a , b , c ) = S n ( x 2 ; a , b , c ) ( a + b ) n ( a + c ) n assign continuous-dual-Hahn-normalized-S-tilde 𝑛 superscript 𝑥 2 𝑎 𝑏 𝑐 continuous-dual-Hahn-normalized-S-tilde 𝑛 superscript 𝑥 2 𝑎 𝑏 𝑐 continuous-dual-Hahn-normalized-S 𝑛 superscript 𝑥 2 𝑎 𝑏 𝑐 Pochhammer-symbol 𝑎 𝑏 𝑛 Pochhammer-symbol 𝑎 𝑐 𝑛 {\displaystyle{\displaystyle{\displaystyle{\tilde{S}}_{n}\!\left(x^{2}\right):% ={\tilde{S}}_{n}\!\left(x^{2};a,b,c\right)=\frac{S_{n}\!\left(x^{2};a,b,c% \right)}{{\left(a+b\right)_{n}}{\left(a+c\right)_{n}}}}}}

Proof

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Symbols List

S ~ n subscript ~ 𝑆 𝑛 {\displaystyle{\displaystyle{\displaystyle{\tilde{S}}_{n}}}}  : normalized continuous dual Hahn polynomial S ~ ~ 𝑆 {\displaystyle{\displaystyle{\displaystyle{\tilde{S}}}}}  : http://drmf.wmflabs.org/wiki/Definition:normctsdualHahnStilde
S n subscript 𝑆 𝑛 {\displaystyle{\displaystyle{\displaystyle S_{n}}}}  : continuous dual Hahn polynomial : http://dlmf.nist.gov/18.25#T1.t1.r3
( a ) n subscript 𝑎 𝑛 {\displaystyle{\displaystyle{\displaystyle(a)_{n}}}}  : Pochhammer symbol : http://dlmf.nist.gov/5.2#iii

Bibliography

Equation in Section 9.3 of KLS.

URL links

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