An interdisciplinary approach to scientific modeling and simulation
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[1] Jonathan Bates,et al. Practical Visual C++ 6 , 1999 .
[2] J. Strikwerda. Finite Difference Schemes and Partial Differential Equations , 1989 .
[3] R. LeVeque. Numerical methods for conservation laws , 1990 .
[4] William L. Faissler. An Introduction to Modern Electronics , 1991 .
[5] Daoqi Yang,et al. C++ and Object-Oriented Numeric Computing for Scientists and Engineers , 2000, Springer New York.
[6] Dare A. Wells. Schaum's outline of theory and problems of Lagrangian dynamics : with a treatment of Euler's equations of motion, Hamilton's equations and Hamilton's principle , 1967 .
[7] Davis Howard Chapman. Teach yourself Visual C++ 6 in 21 days , 1998 .
[8] L. Long,et al. The Velocity Dependence of Aerodynamic Drag: A Primer for Mathematicians , 1999 .
[9] Alan S. Perelson,et al. Mathematical Analysis of HIV-1 Dynamics in Vivo , 1999, SIAM Rev..
[10] A. Perelson,et al. Dynamics of HIV infection of CD4+ T cells. , 1993, Mathematical biosciences.
[11] Dr. M. G. Worster. Methods of Mathematical Physics , 1947, Nature.
[12] C. Frohlich. Aerodynamic drag crisis and its possible effect on the flight of baseballs , 1984 .
[13] Roger Knobel,et al. An introduction to the mathematical theory of waves , 1999 .
[14] R. Montgomery. A New Solution to the Three-Body Problem , 2001 .
[15] James Stewart,et al. Study guide for Stewart's Single variable calculus, early transcendentals fourth edition , 1999 .