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21: 3.4 Differentiation
B 1 3 = 1 6 ( 2 6 t + 3 t 2 ) ,
B 0 3 = 1 2 ( 1 + 4 t 3 t 2 ) ,
B 1 3 = 1 2 ( 2 + 2 t 3 t 2 ) ,
B 2 3 = 1 6 ( 1 3 t 2 ) .
3.4.34 4 u 0 , 0 = 1 6 h 4 ( 184 u 0 , 0 ( u 0 , 3 + u 0 , 3 + u 3 , 0 + u 3 , 0 ) + 14 ( u 0 , 2 + u 0 , 2 + u 2 , 0 + u 2 , 0 ) 77 ( u 0 , 1 + u 0 , 1 + u 1 , 0 + u 1 , 0 ) + 20 ( u 1 , 1 + u 1 , 1 + u 1 , 1 + u 1 , 1 ) ( u 1 , 2 + u 2 , 1 + u 1 , 2 + u 2 , 1 + u 1 , 2 + u 2 , 1 + u 1 , 2 + u 2 , 1 ) ) + O ( h 4 ) .
22: 4.43 Cubic Equations
A = ( 4 3 p ) 1 / 2 ,
4.43.2 z 3 + p z + q = 0
  • (a)

    A sin a , A sin ( a + 2 3 π ) , and A sin ( a + 4 3 π ) , with sin ( 3 a ) = 4 q / A 3 , when 4 p 3 + 27 q 2 0 .

  • (b)

    A cosh a , A cosh ( a + 2 3 π i ) , and A cosh ( a + 4 3 π i ) , with cosh ( 3 a ) = 4 q / A 3 , when p < 0 , q < 0 , and 4 p 3 + 27 q 2 > 0 .

  • (c)

    B sinh a , B sinh ( a + 2 3 π i ) , and B sinh ( a + 4 3 π i ) , with sinh ( 3 a ) = 4 q / B 3 , when p > 0 .

  • 23: Bibliography Q
  • F. Qi and J. Mei (1999) Some inequalities of the incomplete gamma and related functions. Z. Anal. Anwendungen 18 (3), pp. 793–799.
  • S.-L. Qiu and J.-M. Shen (1997) On two problems concerning means. J. Hangzhou Inst. Elec. Engrg. 17, pp. 1–7 (Chinese).
  • S.-L. Qiu and M. K. Vamanamurthy (1996) Sharp estimates for complete elliptic integrals. SIAM J. Math. Anal. 27 (3), pp. 823–834.
  • 24: Bibliography V
  • G. Valent (1986) An integral transform involving Heun functions and a related eigenvalue problem. SIAM J. Math. Anal. 17 (3), pp. 688–703.
  • J. F. Van Diejen and V. P. Spiridonov (2001) Modular hypergeometric residue sums of elliptic Selberg integrals. Lett. Math. Phys. 58 (3), pp. 223–238.
  • R. S. Varma (1941) An infinite series of Weber’s parabolic cylinder functions. Proc. Benares Math. Soc. (N.S.) 3, pp. 37.
  • N. Ja. Vilenkin and A. U. Klimyk (1992) Representation of Lie Groups and Special Functions. Volume 3: Classical and Quantum Groups and Special Functions. Mathematics and its Applications (Soviet Series), Vol. 75, Kluwer Academic Publishers Group, Dordrecht.
  • H. Volkmer (1983) Integralgleichungen für periodische Lösungen Hill’scher Differentialgleichungen. Analysis 3 (1-4), pp. 189–203 (German).
  • 25: Bibliography K
  • T. A. Kaeding (1995) Pascal program for generating tables of SU ( 3 ) Clebsch-Gordan coefficients. Comput. Phys. Comm. 85 (1), pp. 82–88.
  • A. D. Kerr (1978) An indirect method for evaluating certain infinite integrals. Z. Angew. Math. Phys. 29 (3), pp. 380–386.
  • C. G. Kokologiannaki, P. D. Siafarikas, and C. B. Kouris (1992) On the complex zeros of H μ ( z ) , J μ ( z ) , J μ ′′ ( z ) for real or complex order. J. Comput. Appl. Math. 40 (3), pp. 337–344.
  • T. H. Koornwinder (1977) The addition formula for Laguerre polynomials. SIAM J. Math. Anal. 8 (3), pp. 535–540.
  • T. H. Koornwinder (2007a) The relationship between Zhedanov’s algebra AW ( 3 ) and the double affine Hecke algebra in the rank one case. SIGMA 3, pp. Paper 063, 15 pp..
  • 26: 23.18 Modular Transformations
    according as the elements [ a b c d ] of 𝒜 in (23.15.3) have the respective forms …
    [ o e o o ] ,
    Here e and o are generic symbols for even and odd integers, respectively. In particular, if a 1 , b , c , and d 1 are all even, then … Here s ( d , c ) is a Dedekind sum. …
    27: Bibliography B
  • D. H. Bailey (1993) Algorithm 719: Multiprecision translation and execution of Fortran programs. ACM Trans. Math. Software 19 (3), pp. 288–319.
  • K. A. Berrington, P. G. Burke, J. J. Chang., A. T. Chivers, W. D. Robb, and K. T. Taylor (1974) A general program to calculate atomic continuum processes using the R-matrix method. Comput. Phys. Comm. 8 (3), pp. 149–198.
  • K. O. Bowman (1984) Computation of the polygamma functions. Comm. Statist. B—Simulation Comput. 13 (3), pp. 409–415.
  • J. C. Bronski, L. D. Carr, B. Deconinck, J. N. Kutz, and K. Promislow (2001) Stability of repulsive Bose-Einstein condensates in a periodic potential. Phys. Rev. E (3) 63 (036612), pp. 1–11.
  • Yu. A. Brychkov and K. O. Geddes (2005) On the derivatives of the Bessel and Struve functions with respect to the order. Integral Transforms Spec. Funct. 16 (3), pp. 187–198.
  • 28: Bibliography H
  • P. I. Hadži (1972) Certain sums that contain cylindrical functions. Bul. Akad. Štiince RSS Moldoven. 1972 (3), pp. 75–77, 94 (Russian).
  • D. R. Herrick and S. O’Connor (1998) Inverse virial symmetry of diatomic potential curves. J. Chem. Phys. 109 (1), pp. 11–19.
  • D. Hilbert (1909) Beweis für die Darstellbarkeit der ganzen Zahlen durch eine feste Anzahl n ter Potenzen (Waringsches Problem). Nachrichten von der Gesellschaft der Wissenschaften zu Göttingen, Mathematisch-Physikalische Klasse, pp. 17–36 (German).
  • I. D. Hill (1973) Algorithm AS66: The normal integral. Appl. Statist. 22 (3), pp. 424–427.
  • M. N. Huxley (2003) Exponential sums and lattice points. III. Proc. London Math. Soc. (3) 87 (3), pp. 591–609.
  • 29: Staff
  • George E. Andrews, Pennsylvania State University, Chap. 17

  • Nico M. Temme, Centrum Wiskunde Informatica, Chaps. 3, 6, 7, 12

  • Amparo Gil, Universidad de Cantabria, for Chap. 3

  • Javier Segura, Universidad de Cantabria, for Chap. 3

  • Nico M. Temme, Centrum Wiskunde & Informatica (CWI), for Chaps. 3, 6, 7, 12

  • 30: 26.6 Other Lattice Path Numbers
    Delannoy Number D ( m , n )
    D ( m , n ) is the number of paths from ( 0 , 0 ) to ( m , n ) that are composed of directed line segments of the form ( 1 , 0 ) , ( 0 , 1 ) , or ( 1 , 1 ) . …
    Table 26.6.1: Delannoy numbers D ( m , n ) .
    m n
    26.6.7 n = 0 M ( n ) x n = 1 x 1 2 x 3 x 2 2 x 2 ,
    26.6.10 D ( m , n ) = D ( m , n 1 ) + D ( m 1 , n ) + D ( m 1 , n 1 ) , m , n 1 ,