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Problem description

The trajectory description problem of chemical reactions is resolved by using phase-space reconstmction from a single time series [8] this method uses delayed data at times t, t+ip t+X2,.. ., for an -dimensional attractor,... [Pg.3057]

Choice of the mathematical apparatus of macroscopic equilibrium descriptions. Problems in modeling the nonholonomic, nonscleronomous, and nonconservative systems. Possibilities for using differential equations (autonomous and nonautonomous) and MP. [Pg.69]

Answers to non-descriptive problems are included in Inorganic Chemistry, but a separate Solutions Manual has been written by Catherine Housecroft, and this gives detailed answers or essay plans for all end of chapter problems. [Pg.984]


See other pages where Problem description is mentioned: [Pg.380]    [Pg.350]    [Pg.219]    [Pg.889]    [Pg.890]    [Pg.891]    [Pg.892]    [Pg.893]    [Pg.894]    [Pg.895]    [Pg.896]    [Pg.897]    [Pg.898]    [Pg.899]    [Pg.900]    [Pg.901]    [Pg.902]    [Pg.903]    [Pg.904]    [Pg.401]    [Pg.3057]    [Pg.317]    [Pg.1025]    [Pg.1026]    [Pg.1027]    [Pg.1028]    [Pg.1029]    [Pg.1030]    [Pg.1031]    [Pg.1032]    [Pg.1033]    [Pg.1034]    [Pg.1035]    [Pg.1036]    [Pg.1037]    [Pg.1038]    [Pg.1039]    [Pg.1040]    [Pg.1041]    [Pg.1105]    [Pg.133]    [Pg.1138]    [Pg.1139]    [Pg.1140]    [Pg.1141]   
See also in sourсe #XX -- [ Pg.218 ]




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