1970
DOI: 10.13182/nse70-a21219
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Phase Space Analysis of Reactor Kinetics

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Cited by 28 publications
(14 citation statements)
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“…From Lemma 3, we have 21) which implies that w ≥ 0 on [t 1 , ∞). Differentiating (3.20) and using (1.1) and the definition of w, we obtain…”
Section: Theorem 4 Assume That (34) Holds If There Exists a Nondecrmentioning
confidence: 96%
See 1 more Smart Citation
“…From Lemma 3, we have 21) which implies that w ≥ 0 on [t 1 , ∞). Differentiating (3.20) and using (1.1) and the definition of w, we obtain…”
Section: Theorem 4 Assume That (34) Holds If There Exists a Nondecrmentioning
confidence: 96%
“…The first step in this direction was taken by J. Bernoulli in 1696 who formulated the famous isoperimetric problem and, five years later, gave the solution that depends upon a third-order differential equation [8]. Since then, these equations have shown to be particularly important in the modeling of several physical phenomena, including the interactions between charged particles, in an external electromagnetic field [21], the entry-flow phenomenon [11], the propagation of action potentials in squid neurons [16] and others.…”
Section: Introductionmentioning
confidence: 99%
“…For instance, such equations are encountered in the study of entry-flow phenomenon [4], the propagation of electrical pulses in the nerve of a squid approximated by the famous Nagumo's equation [10], the feedback nuclear reactor problem [12], the regulation of a steam turbine [8] and so on.…”
Section: By a Solution Of Equation (E) We Mean A Function Y(t)mentioning
confidence: 99%
“…In a study [19], Vreeke et al applied the differential systems in the application of physics in order to solve the problem of a nuclear reactor which involved two temperature feedback. In the current literature there are many established results in the oscillation theory of classical differential systems (see [20][21][22][23][24]).…”
Section: Introductionmentioning
confidence: 99%