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[1] Oliver Aberth. Computable Analysis. McGrawHill, New York, 1980. [2] R. Abraham, J. E. Marsden, and T. Ratiu. Manifolds, Tensor Analysis, and Applications.
 

Summary: References
[1] Oliver Aberth. Computable Analysis. McGraw­Hill, New York, 1980.
[2] R. Abraham, J. E. Marsden, and T. Ratiu. Manifolds, Tensor Analysis, and Applications.
Springer­Verlag, New York, 1988.
[3] Milton Abramowitz and Irene A. Stegun, editors. Handbook of Mathematical Functions. Dover
Publications, New York, 1965.
[4] Daniel Abramson. Di#erential forms. Master's thesis, Cornell University, 1985.
[5] Forman S. Acton. Numerical Methods that Work. Harper and Row, New York, 1970.
[6] Amir D. Aczel. Fermat's Last Theorem: Unlocking the Secret of an Ancient Mathematical
Problem. Delta, New York, 1996.
[7] Malcolm Adams and Victor Guillemin. Measure Theory and Probability. Wadsworth, Mon­
terey, CA, 1986.
[8] N. I. Akhiezer and I. M. Glazman. Theory of Linear Operators in Hilbert Space. Dover
Publications, New York, 1993. Translated from the Russian by M. Nestell.
[9] G. E. Albert. A general theory of stochastic estimates of the Neuma series for solution of
certain Fredholm integral equations and related series. In M. A. Meyer, editor, Symposium
on Monte Carlo Methods, pages 37--46, New York, 1956. John Wiley & Sons.
[10] A. D. Aleksandrov, A. N. Kolmogorov, and M. A. Lavernt'ev. Mathematics: It's Content,
Methods, and Meaning. MIT Press, Cambridge, Massachusetts, second edition, 1969. Trans­
lated by S. H. Gould.

  

Source: Arvo, Jim - Departments of Information and Computer Science & Electrical and Computer Engineering, University of California, Irvine

 

Collections: Computer Technologies and Information Sciences