DLMF:19.36.E9 (Q6733): Difference between revisions

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Property / Symbols used
 
Property / Symbols used: symmetric elliptic integral of first kind / rank
 
Normal rank
Property / Symbols used: symmetric elliptic integral of first kind / qualifier
 
test:

R F ( x , y , z ) Carlson-integral-RF 𝑥 𝑦 𝑧 {\displaystyle{\displaystyle R_{F}\left(\NVar{x},\NVar{y},\NVar{z}\right)}}

\CarlsonsymellintRF@{\NVar{x}}{\NVar{y}}{\NVar{z}}
Property / Symbols used: symmetric elliptic integral of first kind / qualifier
 
xml-id: C19.S16.E1.m2acdec

Revision as of 13:27, 2 January 2020

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DLMF:19.36.E9
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    Statements

    R F ( t 0 2 , t 0 2 + θ c 0 2 , t 0 2 + θ a 0 2 ) = R F ( T 2 , T 2 , T 2 + θ M 2 ) = R C ( T 2 + θ M 2 , T 2 ) . Carlson-integral-RF superscript subscript 𝑡 0 2 superscript subscript 𝑡 0 2 𝜃 superscript subscript 𝑐 0 2 superscript subscript 𝑡 0 2 𝜃 superscript subscript 𝑎 0 2 Carlson-integral-RF superscript 𝑇 2 superscript 𝑇 2 superscript 𝑇 2 𝜃 superscript 𝑀 2 Carlson-integral-RC superscript 𝑇 2 𝜃 superscript 𝑀 2 superscript 𝑇 2 {\displaystyle{\displaystyle R_{F}\left(t_{0}^{2},t_{0}^{2}+\theta c_{0}^{2},t% _{0}^{2}+\theta a_{0}^{2}\right)=R_{F}\left(T^{2},T^{2},T^{2}+\theta M^{2}% \right)=R_{C}\left(T^{2}+\theta M^{2},T^{2}\right).}}
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    R C ( x , y ) Carlson-integral-RC 𝑥 𝑦 {\displaystyle{\displaystyle R_{C}\left(\NVar{x},\NVar{y}\right)}}
    C19.S2.E17.m2adec
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    R F ( x , y , z ) Carlson-integral-RF 𝑥 𝑦 𝑧 {\displaystyle{\displaystyle R_{F}\left(\NVar{x},\NVar{y},\NVar{z}\right)}}
    C19.S16.E1.m2acdec
    0 references