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The bifurcation diagram and global phase portraits in the poincaré disc Phase portraits and bifurcation diagrams of system (40) with Bifurcation set and phase portraits of (2.1) when a 1 ¼ c 2 ; a 3 > 0
Phase pattern of bifurcation analysis for system (28) when ∆ = 0 with 1 Bifurcation diagram and phase portraits of system (1.1). 3: a two parameter bifurcation diagram and typical phase portraits in
Bifurcation diagram and phase portraits for the system described byThe bifurcation diagram and corresponding global phase portraits For each of the following questions, draw the phase portrait as aBifurcation diagram vs parameter m. figure 3: 3d phase portrait of the.
Phase-portrait and bifurcation diagram for fixed extraction rate. (aBifurcation diagram (а) and phase portrait (b) of function of threat The bifurcation diagram and global phase portraits in the poincaré discThe bifurcation diagram (a) and phase portraits (b) of system (15) on.
Bifurcation diagrams of ψ (phase difference) from phase equations (aPhase diagram in terms of the bifurcation parameter r and the pattern The bifurcation diagram and global phase portraits in the poincaré discPhase portrait and bifurcation diagram for case 2. panel (a): the state.
The bifurcation diagram and global phase portraits in the poincaré discThe bifurcation diagram and corresponding phase portraits of system Phase portraits associated to the bifurcation diagram in figure 2 forPhase portrait and bifurcation diagram: a system is stable when β.
Phase portraits obtained numerically at the codimension-one bifurcationPhase-vs.-frequency bifurcation diagram for the model with both v0 Phase diagrams corresponding to the bifurcation diagram in fig. 1(aThe bifurcation phase portraits of system (54) for r>0..
The bifurcation phase portrait of systems (2.3) and (2.4)Phase portrait and bifurcation diagram by varying the parameter b in (a) 3d phase portrait with b = 0.14 and (b) bifurcation diagram with(a) 2-parameter bifurcation diagrams of in-phase and out-of-phase.
The bifurcation phase portraits of system (2.5). (a) α>0, β>0, (b) α .
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Phase portraits obtained numerically at the codimension-one bifurcation
3: A two parameter bifurcation diagram and typical phase portraits in
(a) 3D phase portrait with b = 0.14 and (b) bifurcation diagram with
The bifurcation diagram and global phase portraits in the Poincaré disc
Bifurcation diagram (а) and phase portrait (b) of function of threat
Phase portraits associated to the bifurcation diagram in Figure 2 for
Bifurcation diagram along with b variation and partial phase portraits
Phase portrait and bifurcation diagram: a system is stable when β