General System Theory: Foundations, Development, ApplicationsG. Braziller, 1973 - 295 pagina's |
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Pagina 20
... differential Essentially Very impossible difficult Impossible Impossible Partial / Difficult Essentially impossible differential Impossible Impossible Impossible Impossible · Courtesy of Electronic Associates , Inc. For this reason ...
... differential Essentially Very impossible difficult Impossible Impossible Partial / Difficult Essentially impossible differential Impossible Impossible Impossible Impossible · Courtesy of Electronic Associates , Inc. For this reason ...
Pagina 56
... differential equa- tions . Denoting some measure of elements , p , ( i = 1 , 2 , ...... . n ) , by Q , these , for a finite number of elements and in the simplest case , will be of the form : dQi dt = = ƒ1 ( Q1 , Q2 , . . . Qn ) ... dQ2 ...
... differential equa- tions . Denoting some measure of elements , p , ( i = 1 , 2 , ...... . n ) , by Q , these , for a finite number of elements and in the simplest case , will be of the form : dQi dt = = ƒ1 ( Q1 , Q2 , . . . Qn ) ... dQ2 ...
Pagina 76
... differential quotient to zero so that t disappears . In order to do so , we must first know the differential equation by which the process is actually determined . This differential equation is : = E kl and states that growth is ...
... differential quotient to zero so that t disappears . In order to do so , we must first know the differential equation by which the process is actually determined . This differential equation is : = E kl and states that growth is ...
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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