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Dynamical Behavior of a stochastic SIRS epidemic model
In this paper we study the Kernack - MacKendrick model under telegraph noise.
The telegraph noise switches at random between two SIRS models. We give out
conditions for the persistence of the disease and the stability of a disease
free equilibrium. We show that the asymptotic behavior highly depends on the
value of a threshold which is calculated from the intensities of
switching between environmental states, the total size of the population as
well as the parameters of both SIRS systems. According to the value of
, the system can globally tend towards an endemic case or a disease
free case. The aim of this work is also to describe completely the omega-limit
set of all positive solutions to the model. Moreover, the attraction of the
omega-limit set and the stationary distribution of solutions will be pointed
out.Comment: 16 page
Are the reactions a challenge for the factorized Pomeron at high energies?
We would like to point to the strong violation of the putative factorized
Pomeron exchange model in the reactions in the
high-energy region where this model works fairly well in all other cases.Comment: 4 pages, LaTex, 1 fig. in postscript, minor typos corrected, to be
published in Phys. Rev. D 60, 117503 (1999
Electronic motor control system Patent
Electronic circuit system for controlling electric motor spee
CP Violation and Future `B-Factories'
This lecture contains a brief introduction to CP violation in the B system
before discussing future experimental programmes and their CP reach in the B
system.Comment: 12 pages. 11 postscript figures + 1 postscript preprint logo + 1
LaTeX file + 1 style file. Also available at
http://ppewww.ph.gla.ac.uk/preprints/97/09/ Lecture given at ` The Actual
Problems of Particle Physics', Gomel, Belaru
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