General System Theory: Foundations, Development, ApplicationsAllen Lane, 1971 - 311 pagina's |
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Pagina 129
... chemical equi- libria to , e.g. , transfer reactions is based on the fact that these are fast ionic reactions attaining equilibrium . Open chemical systems are hardly taken into consideration in physical chemistry . This restriction of ...
... chemical equi- libria to , e.g. , transfer reactions is based on the fact that these are fast ionic reactions attaining equilibrium . Open chemical systems are hardly taken into consideration in physical chemistry . This restriction of ...
Pagina 130
... chemistry define true chemical equilibria in closed systems . Obviously , the reaction system and reaction conditions are infinitely more complicated in organisms than in the systems usually dealt with in physical chemistry . These are ...
... chemistry define true chemical equilibria in closed systems . Obviously , the reaction system and reaction conditions are infinitely more complicated in organisms than in the systems usually dealt with in physical chemistry . These are ...
Pagina 146
... chemistry the answer is bound to be that the difference is not definable on the basis of so - called mechanistic theory . Speaking in terms of physics and chemistry , a living organism is an aggregate of a great number of processes ...
... chemistry the answer is bound to be that the difference is not definable on the basis of so - called mechanistic theory . Speaking in terms of physics and chemistry , a living organism is an aggregate of a great number of processes ...
Inhoudsopgave
Introduction | 1 |
The Meaning of General System Theory | 29 |
Limitations | 38 |
Copyright | |
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General System Theory: Foundations, Development, Applications Ludwig von Bertalanffy Fragmentweergave - 1973 |
General System Theory: Foundations, Development, Applications Ludwig von Bertalanffy Fragmentweergave - 2003 |
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allometric animals appears applied approach aspects atoms basic Bertalanffy biological catabolism causality cell characteristics chemical classical classical physics closed systems complex components consideration considered constant contrast cultural cybernetics decision theory defined differential equations dynamic elements energy entities entropy equifinality equilibrium essentially evolution example experience expressed fact feedback fields formulation functions game theory homeostasis homeostatic human behaviour important increase individual information theory interaction isomorphic kinetics language laws living organism living systems logical Lotka Ludwig von Bertalanffy machine mathematical means mechanisms mechanistic mental metabolic rate modern nature open systems organismic phenomena philosophy physics physiological possible present principle problems processes protein psychology psychophysical quantitative reaction reality regulations relations schizophrenia scientific sense servomechanisms similar so-called social sciences society sociology specific steady structure symbolic system theory teleology theoretical theory of open thermodynamics tion universe vitalistic Volterra whole world picture