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variants of this functions
HypergeometricPFQ






Mathematica Notation

Traditional Notation









Hypergeometric Functions > HypergeometricPFQ[{a1,a2,a3},{b1,b2},z] > Specific values > For integer and half-integer parameters and fixed z > For fixed z and a1=-1/2, a2>=-1/2 > For fixed z and a1=-1/2, a2=-1/2, a3>=-1/2 > For fixed z and a1=-1/2, a2=-1/2, a3=5/2 > For fixed z and a1=-1/2, a2=-1/2, a3=5/2, b1=1





http://functions.wolfram.com/07.27.03.aixe.01









  


  










Input Form





HypergeometricPFQ[{-(1/2), -(1/2), 5/2}, {1, 3}, z] == (64 (4 + 13 z + 334 z^2) EllipticE[1/2 - Sqrt[1 - z]/2]^2)/(675 Pi^2 z^2) + (64 (-4 - 13 z - 334 z^2) EllipticE[1/2 - Sqrt[1 - z]/2] EllipticK[1/2 - Sqrt[1 - z]/2])/(675 Pi^2 z^2) + (128 Sqrt[1 - z] (-2 - 7 z - 60 z^2) EllipticE[1/2 - Sqrt[1 - z]/2] EllipticK[1/2 - Sqrt[1 - z]/2])/(675 Pi^2 z^2) + (64 Sqrt[1 - z] (2 + 7 z + 60 z^2) EllipticK[1/2 - Sqrt[1 - z]/2]^2)/ (675 Pi^2 z^2) + (32 (4 + 12 z + 197 z^2) EllipticK[1/2 - Sqrt[1 - z]/2]^ 2)/(675 Pi^2 z^2)










Standard Form





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MathML Form







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<cn type='integer'> -1 </cn> <apply> <times /> <apply> <power /> <apply> <plus /> <cn type='integer'> 1 </cn> <apply> <times /> <cn type='integer'> -1 </cn> <ci> z </ci> </apply> </apply> <cn type='rational'> 1 <sep /> 2 </cn> </apply> <apply> <power /> <cn type='integer'> 2 </cn> <cn type='integer'> -1 </cn> </apply> </apply> </apply> </apply> </apply> <apply> <power /> <apply> <times /> <cn type='integer'> 675 </cn> <apply> <power /> <pi /> <cn type='integer'> 2 </cn> </apply> <apply> <power /> <ci> z </ci> <cn type='integer'> 2 </cn> </apply> </apply> <cn type='integer'> -1 </cn> </apply> </apply> <apply> <times /> <cn type='integer'> 64 </cn> <apply> <power /> <apply> <plus /> <cn type='integer'> 1 </cn> <apply> <times /> <cn type='integer'> -1 </cn> <ci> z </ci> </apply> </apply> <cn type='rational'> 1 <sep /> 2 </cn> </apply> <apply> <plus /> <apply> <times /> <cn type='integer'> 60 </cn> <apply> <power /> <ci> z </ci> <cn type='integer'> 2 </cn> </apply> </apply> <apply> <times 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Rule Form





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Date Added to functions.wolfram.com (modification date)





2007-05-02