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|a Gbur, Gregory J.
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|a Mathematical Methods for Optical Physics and Engineering.
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|a Leiden :
|b Cambridge University Press,
|c 2010.
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|a 1 online resource (820 pages)
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|a Cover; Half-title; Title; Copyright; Dedication; Contents; Preface; 1 Vector algebra; 2 Vector calculus; 3 Vector calculus in curvilinear coordinate systems; 4 Matrices and linear algebra; 5 Advanced matrix techniques and tensors; 6 Distributions; 7 Infinite series; 8 Fourier series; 9 Complex analysis; 10 Advanced complex analysis; 11 Fourier transforms; 12 Other integral transforms; 13 Discrete transforms; 14 Ordinary differential equations; 15 Partial differential equations; 16 Bessel functions; 17 Legendre functions and spherical harmonics; 18 Orthogonal functions; 19 Green's functions.
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|a 20 The calculus of variations21 Asymptotic techniques; Appendix A: The gamma function; Appendix B: Hypergeometric functions; References; Index.
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|a The first textbook on mathematical methods applied to optical science and engineering. Ideal for upper division undergraduates and graduates.
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|a Print version record.
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|a ProQuest Ebook Central
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|a Optics
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|a Mathematical methods for optical physics and engineering (Text)
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|i Print version:
|a Gbur, Gregory J.
|t Mathematical Methods for Optical Physics and Engineering.
|d Leiden : Cambridge University Press, ©2010
|z 9780521516105
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