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Two corresponding trajectories of solutions are shown in Figure 7 with the initial conditions,, and,.
Numerous graphical illustrations of stability regions and trajectories of solutions are plotted.
In Figure 5 two trajectories of solutions of (3.10) are shown with the initial conditions,, and,.
In Figure 6 two trajectories of solutions of (3.10) with the initial conditions,, and, are shown in the point with,.
In Figure 21 trajectories of solutions are shown for, (the point in Figure 16) with the initial conditions, and.
Let us assume that all trajectories of solutions to a non-impulsive ordinary differential equation are known.
Similar(50)
Figure 1 shows the trajectories of solution of Example 4.1 with disturbance.
Figure 2 shows the trajectories of solution of Example 4.1 without disturbance.
Then Theorem 3.4 is satisfied with (c_{1}=1, c_{2}=1,a=0.5,q=1.6, beta=0.8, p=1,rho( Vert w(k) Vert ) leq 0.9). Figure 3 shows the trajectories of solution of Example 4.2. Figure 4 shows the trajectories of solution of system (2.1) without disturbance.
Moreover, the solution x ( t, ϕ ) of the system satisfies ∥ x ( t, ϕ ) ∥ ≤ 2.3257 e − 0.3 t ∥ ϕ ∥, ∀ t ≥ 0. The trajectories of solution of switched recurrent neural networks is shown in Figure 1, respectively.
Moreover, the solution x ( t, ϕ ) of the system satisfies E { ∥ x ( t, ϕ ) ∥ } ≤ E { 1.0239 e − 1.5 t ∥ ϕ ∥ }, ∀ t ∈ R +. (The trajectories of solution of switched stochastic systems is shown in Figure 1, respectively).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com