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Programming (Mathematics) --- Invariant imbedding --- Biomathematics
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Numerical analysis --- Differential equations --- Boundary value problems --- Adaptive control systems --- Invariant imbedding --- Quasilinearization
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Rapid advances in the physical and biological sciences and in related technologies have brought about equally farreaching changes in mathematical research. Focusing on control theory, invariant imbedding, dynamic programming, and quasilinearization, Mr. Bellman explores with ease and clarity the mathematical research problems arising from scientific questions in engineering, physics, biology, and medicine. Special attention is paid in these essays to the use of the digital computer in obtaining the numerical solution of numerical problems, its influence in the formulation of new and old scient
Programming (Mathematics) --- Invariant imbedding. --- Biomathematics. --- Biology --- Mathematics --- Functional equations --- Invariants --- Mathematical physics --- Radiation --- Mathematical programming --- Goal programming --- Algorithms --- Mathematical optimization --- Operations research
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Quasilinearization and invariant imbedding, with applications to chemical engineering and adaptive control
Quasilinearization --- Differential equations, Nonlinear. --- Quasilinéarisation --- Equations différentielles non linéaires --- ELSEVIER-B EPUB-LIV-FT --- Boundary value problems --- Adaptive control systems. --- Invariant imbedding. --- Quasilinearization. --- Differential equations, Nonlinear --- Functional equations --- Invariants --- Mathematical physics --- Radiation --- Self-adaptive control systems --- Artificial intelligence --- Feedback control systems --- Self-organizing systems --- Numerical solutions. --- Numerical solutions
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