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It is clear that all the results in [8, 9] and the references therein cannot be applicable to prove that all solutions to model (4.1) with initial value (1.4) converge exponentially to the positive equilibrium.
One can observe that all the results in this literature and the references therein can not be applicable to prove the existence and exponential stability of almost periodic solutions for SICNNs (4.1).
It is obvious that all results in [3, 4] and the references therein cannot be applicable to prove that all solutions of system (4.1) converge exponentially to a positive periodic solution since the system has time-varying coefficients and delays.
It is clear that all the results in [1, 2, 10, 11, 24] and the references therein cannot be applicable to prove that there exist two 2π-positive periodic solutions for model (3.1).
It is clear that all the results in [25 35] and the references therein cannot be applicable to prove that all the solutions of (4.1) converge exponentially to the positive almost periodic solution.
Remark 3.1 Since t − δ i ( t ) = t − 1 1, 000 cos 2 t < 0. is possible for some t > 0, i = 1, 2, one can find that the results in [16] and the references therein cannot be applicable to prove that all solutions of HRNNs (3.1) converge exponentially to the anti-periodic solution.
Similar(53)
It is clear that the results in [11 13] and the references therein cannot be applicable to system (4.1) to prove the global exponential stability of a positive almost periodic solution.
Finally, the related design method is demonstrated with a project, and it is proved to be applicable to high rise building design.
Therefore, evidence-based interventions that facilitate tendon adaptation should be applicable to various tendons and prove valuable in regard to athletic training as well as the therapy and prevention of tendon injuries.
Finally, if the results reported in the present article prove to be applicable to other fungal strains, manipulation of fungal morphology will be easier in industrial filamentous fungal fermentation.
The overall photoelectrochemical performance of the ZnO/ZnO Cr engineered structure is relatively low, however the concept may prove to be applicable to more optimized structures or material systems.
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