DLMF:19.27.E16 (Q6608): Difference between revisions

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Changed an Item: Add constraint
Changed an Item: Add constraint
Property / Symbols used
 
Property / Symbols used: Carlson’s combination of inverse circular and inverse hyperbolic functions / rank
 
Normal rank
Property / Symbols used: Carlson’s combination of inverse circular and inverse hyperbolic functions / qualifier
 
Defining formula:

R C ( x , y ) Carlson-integral-RC 𝑥 𝑦 {\displaystyle{\displaystyle R_{C}\left(\NVar{x},\NVar{y}\right)}}

\CarlsonellintRC@{\NVar{x}}{\NVar{y}}
Property / Symbols used: Carlson’s combination of inverse circular and inverse hyperbolic functions / qualifier
 
xml-id: C19.S2.E17.m2abdec

Revision as of 14:16, 2 January 2020

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DLMF:19.27.E16
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    Statements

    R J ( x , y , z , p ) = ( 3 / x ) R C ( ( h + p ) 2 , 2 ( b + h ) p ) + O ( 1 x 3 / 2 ln x b + h ) , Carlson-integral-RJ 𝑥 𝑦 𝑧 𝑝 3 𝑥 Carlson-integral-RC superscript 𝑝 2 2 𝑏 𝑝 Big-O 1 superscript 𝑥 3 2 𝑥 𝑏 {\displaystyle{\displaystyle R_{J}\left(x,y,z,p\right)=(3/\sqrt{x})R_{C}\left(% (h+p)^{2},2(b+h)p\right)+O\left(\frac{1}{x^{3/2}}\ln\frac{x}{b+h}\right),}}
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    DLMF:19.27.E16
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    max ( y , z , p ) / x 0 𝑦 𝑧 𝑝 𝑥 0 {\displaystyle{\displaystyle\max(y,z,p)/x\to 0}}
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    O ( x ) Big-O 𝑥 {\displaystyle{\displaystyle O\left(\NVar{x}\right)}}
    C2.S1.E3.m2andec
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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.m2abdec
    0 references