General System Theory: Foundations, Development, Applications |
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Pagina 64
This is the equation known in biology as the allometric equation. In this
discussion, the simplest form of growth of the parts – viz., the exponential – has
been assumed (3.17 and 3.18). The allometric relation holds, however, also for
somewhat ...
This is the equation known in biology as the allometric equation. In this
discussion, the simplest form of growth of the parts – viz., the exponential – has
been assumed (3.17 and 3.18). The allometric relation holds, however, also for
somewhat ...
Pagina 172
Allometry and the Surface Rule Let us now proceed to the third model which is
the so-called principle of allometry. As is well known, many phenomena of
metabolism, and of biochemistry, morphogenesis, evolution, etc., follow a simple
...
Allometry and the Surface Rule Let us now proceed to the third model which is
the so-called principle of allometry. As is well known, many phenomena of
metabolism, and of biochemistry, morphogenesis, evolution, etc., follow a simple
...
Pagina 173
The simplest hypothesis is that F be a constant, o, and this is the principle of
allometry. However, it is well known that historically the principle of allometry
came into physiology in a way very different from the derivation given. It
appeared in a ...
The simplest hypothesis is that F be a constant, o, and this is the principle of
allometry. However, it is well known that historically the principle of allometry
came into physiology in a way very different from the derivation given. It
appeared in a ...
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Inhoudsopgave
Introduction | 1 |
The Meaning of General System Theory | 29 |
º | 53 |
Copyright | |
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Overige edities - Alles weergeven
General System Theory: Foundations, Development, Applications Ludwig von Bertalanffy Fragmentweergave - 1971 |
General system theory: foundations, development, applications Ludwig von Bertalanffy Fragmentweergave - 1968 |
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activity allometric animal appears applied approach aspects atoms basic Bertalanffy biological biology catabolism causality cell characteristics chemical classical classical physics closed systems complex components consideration considered contrast cultural cybernetics defined depends determined differential dynamic elements emphasized energy entities entropy equations equifinality equilibrium essentially Euclidean space evolution example experience expressed fact factors feedback fields formulation functions game theory growth homeostasis homeostatic Hopi important increase individual Indo-European language information theory interaction isomorphic language laws linguistic living organism logical Ludwig von Bertalanffy machine mathematical means mechanisms mechanistic mental metabolic rate modern nature nervous system open systems organismic perception phenomena philosophy physics physiological present principle problems processes psychology psychophysical reaction reality regulations relations schizophrenia scientific sense servomechanisms similar so-called social space specific steady stimuli structure symbolic system theory teleology theoretical theory of open thermodynamics tion Uexküll's universe vitalistic whole Whorf world picture