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The behavior of this solution in terms of the original coordinates is shown graphically in Fig. 12.
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We also discuss the asymptotic behavior of the solution to this model around the disease-free equilibrium (P^{0}_{k}) and the endemic equilibrium (P^_{k}).
In this section we will study the dynamic behavior of the solution of (2.4).
The behavior of the solution is investigated analytically.
In other words, if it is not true, (1.1) is in singular case, then the large time behavior of the solution in this case is still an open problem.
The aim of this paper is to study the asymptotical behavior of the solutions of system (1.2).
In this section, we study the asymptotic behavior of the solutions for system (1.1 - 1.6 1.1 - 1.6
In this section, we consider the global existence, boundedness, and asymptotical behavior of the solutions.
This issue was treated in [17 19] in connection to the numerical behavior of the solutions.
Alternatively, by using the Porath plot and our current SEC data, we have found the hydrodynamic radius (Stokes radius) of high molecular mass AβOs to be 4.8 nm, assuming a globular-shape-like behavior of this assembly in solution.
Crystallization behavior of this compound from solutions and during heating is also studied.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com