General System Theory: Foundations, Development, ApplicationsG. Braziller, 1973 - 295 pagina's |
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Pagina 131
... catabolism returns to its normal value , the system will return to its original state . If , however , the disturbance and hence the change of rate of catabolism persists , a new steady state will be established . Thus the system ...
... catabolism returns to its normal value , the system will return to its original state . If , however , the disturbance and hence the change of rate of catabolism persists , a new steady state will be established . Thus the system ...
Pagina 136
... catabolism per unit mass , total catabolism will be Kw ( w weight ) ; similar , with n as constant per unit surface , anabolism will be ŋs , and weight increase defined by the difference of these magnitudes : кw = dw = ns KW . dt ( 5.13 ) ...
... catabolism per unit mass , total catabolism will be Kw ( w weight ) ; similar , with n as constant per unit surface , anabolism will be ŋs , and weight increase defined by the difference of these magnitudes : кw = dw = ns KW . dt ( 5.13 ) ...
Pagina 174
... catabolism , can in first approximation be identified with turn- over of total protein ( r ) as determined by isotope tracers and other techniques . For example , from the growth curves catabolic rates of 0.045 / day for the rat , and ...
... catabolism , can in first approximation be identified with turn- over of total protein ( r ) as determined by isotope tracers and other techniques . For example , from the growth curves catabolic rates of 0.045 / day for the rat , and ...
Inhoudsopgave
Introduction | 3 |
The Meaning of General System Theory | 30 |
Information and Entropy | 41 |
Copyright | |
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General System Theory: Foundations, Development, Applications Ludwig von Bertalanffy Fragmentweergave - 1971 |
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allometric animal appears applied approach aspects atoms basic Bertalanffy biological catabolism causality cell characteristics chemical classical classical physics closed systems complex components concept consideration considered constant contrast cultural cybernetics decision theory defined differential equations dynamic dynamical system theory editor elements energy entities entropy equifinality equilibrium essentially evolution example experience expressed fact feedback fields formulation functions game theory growth curves homeostasis important increase individual information theory interaction isomorphic kinetics language laws living organism living systems Lotka Ludwig von Bertalanffy machine means mechanisms mechanistic mental metabolic rate modern nature open systems organismic phenomena philosophy physics physiological present principle problems processes Psychiatry psychology psychophysical quantitative reaction reality regulations relations robot Schizophrenia scientific sense similar so-called social sciences sociology specific steady structure symbolic teleology theoretical theory of open thermodynamics tion universe variables vitalistic weight whole world picture York