Progress in Industrial Mathematics at ECMI 94Helmut Neunzert Wiley, 1996 - 563 pagina's |
Inhoudsopgave
Introduction | 2 |
Small Satellites for Deep Space Operation a Challenge to Optimal Control | 13 |
Numerical Computation of Optimal Ascent Trajectories with a Dynamic Pressure Limit 25 | 25 |
Copyright | |
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Progress in Industrial Mathematics at ECMI 94: Progress in Industrial ... Helmut Neunzert Gedeeltelijke weergave - 2013 |
Veelvoorkomende woorden en zinsdelen
1996 John Wiley algorithm analysis application approximation assume B. G. Teubner Bayesian Network boundary conditions boundary value problem calculated chemical coefficients computational consider constant curvature defined denotes density described differential equations discretization domain dynamic earth ECMI 94 edited edited by H error flow flux function geodesy geometry given gradient graph gravity field grid heat Industrial Mathematics initial integration iteration Iterative Learning Control layer linear Ltd and B. G. Lyapunov equations martensite mass Mathematics at ECMI matrix measured method MOSFETs Navier-Stokes equations Neunzert nodes nonlinear numerical obtained optimal control orbit oscillations parabolic parameters partial differential equations pearlite phase phase noise Progress in Industrial reaction satellite scheme solution solved Sons Ltd space speed spherical spherical harmonic step structure surface temperature tensor Theorem tion torque trajectories transform value problem variables vector velocity wavelet Wiley & Sons