Bifurcation diagram vs parameter m. figure 3: 3d phase portrait of the Phase pattern of bifurcation analysis for system (28) when ∆ = 0 with 1 Phase diagram in terms of the bifurcation parameter r and the pattern
Phase portrait and bifurcation diagram by varying the parameter b in
The bifurcation phase portraits of system (54) for r>0. Phase portraits and bifurcation diagrams of system (40) with Phase portrait and bifurcation diagram for case 2. panel (a): the state
The bifurcation phase portraits of system (2.5). (a) α>0, β>0, (b) α
3: a two parameter bifurcation diagram and typical phase portraits inThe bifurcation diagram and global phase portraits in the poincaré disc Bifurcation set and phase portraits of (2.1) when a 1 ¼ c 2 ; a 3 > 0Bifurcation diagram (а) and phase portrait (b) of function of threat.
Bifurcation diagram along with b variation and partial phase portraits(a) phase portrait before the bifurcation and (b) -(f) a sequence of The bifurcation diagram and global phase portraits in the poincaré discPhase diagrams corresponding to the bifurcation diagram in fig. 1(a.
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Bifurcation diagram and phase portraits for the system described by
The bifurcation diagram and corresponding phase portraits of systemPhase-vs.-frequency bifurcation diagram for the model with both v0 Phase-portrait and bifurcation diagram for fixed extraction rate. (aThe bifurcation phase portrait of systems (2.3) and (2.4).
(a) 3d phase portrait with b = 0.14 and (b) bifurcation diagram withThe bifurcation diagram and global phase portraits in the poincaré disc The bifurcation diagram and corresponding global phase portraitsBifurcation diagram and phase portraits of system (1.1)..
![Phase portraits obtained numerically at the codimension-one bifurcation](https://i2.wp.com/www.researchgate.net/publication/361237558/figure/fig5/AS:11431281079079542@1660531031389/Phase-portraits-obtained-numerically-at-the-codimension-one-bifurcation-points-for-a-A.jpg)
Phase portraits obtained numerically at the codimension-one bifurcation
The bifurcation diagram and global phase portraits in the poincaré discPhase portraits associated to the bifurcation diagram in figure 2 for Phase portraits and bifurcation diagram by varying the parameter a inThe bifurcation diagram (a) and phase portraits (b) of system (15) on.
(a) 2-parameter bifurcation diagrams of in-phase and out-of-phasePhase portrait and bifurcation diagram by varying the parameter b in Phase portrait and bifurcation diagram: a system is stable when βFor each of the following questions, draw the phase portrait as a.
![Bifurcation diagram along with b variation and partial phase portraits](https://i2.wp.com/www.researchgate.net/publication/343034594/figure/fig5/AS:1084215085019138@1635508428092/Bifurcation-diagram-along-with-b-variation-and-partial-phase-portraits-for-different.jpg)
Bifurcation diagrams of ψ (phase difference) from phase equations (a
Phase portraits and a bifurcation diagram for ω = 1.0. (a) for a = 0.1 .
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![Phase diagram in terms of the bifurcation parameter r and the pattern](https://i2.wp.com/www.researchgate.net/publication/351236102/figure/fig36/AS:1018524256464907@1619846514548/Phase-diagram-in-terms-of-the-bifurcation-parameter-r-and-the-pattern-parameter-e-and.png)
![The bifurcation diagram and global phase portraits in the Poincaré disc](https://i2.wp.com/www.researchgate.net/publication/364496099/figure/fig1/AS:11431281091373855@1666405272584/The-bifurcation-diagram-and-global-phase-portraits-in-the-Poincare-disc-of-system-1-as_Q640.jpg)
The bifurcation diagram and global phase portraits in the Poincaré disc
Phase pattern of bifurcation analysis for system (28) when ∆ = 0 with 1
![Phase-vs.-frequency bifurcation diagram for the model with both V0](https://i2.wp.com/www.researchgate.net/publication/276271242/figure/fig16/AS:341929599488005@1458533777625/Phase-vs-frequency-bifurcation-diagram-for-the-model-with-both-V0-pathways-deleted.png)
Phase-vs.-frequency bifurcation diagram for the model with both V0
![Bifurcation diagram and phase portraits of system (1.1). | Download](https://i2.wp.com/www.researchgate.net/publication/297683194/figure/fig1/AS:11431281208239762@1701382664421/Bifurcation-diagram-and-phase-portraits-of-system-11.jpg)
Bifurcation diagram and phase portraits of system (1.1). | Download
![The bifurcation diagram and corresponding global phase portraits](https://i2.wp.com/www.researchgate.net/publication/353809451/figure/fig1/AS:1055418809860096@1628642861586/The-bifurcation-diagram-and-corresponding-global-phase-portraits_Q320.jpg)
The bifurcation diagram and corresponding global phase portraits
![Phase portrait and bifurcation diagram by varying the parameter b in](https://i2.wp.com/www.researchgate.net/profile/Malay-Banerjee-2/publication/359200889/figure/fig4/AS:1161621099556864@1653963460076/Phase-portrait-and-bifurcation-diagram-by-varying-the-parameter-b-in-the-case-of.png)
Phase portrait and bifurcation diagram by varying the parameter b in
![(a) 2-parameter bifurcation diagrams of in-phase and out-of-phase](https://i2.wp.com/www.researchgate.net/publication/353070199/figure/fig4/AS:1043175414198272@1625723808625/a-2-parameter-bifurcation-diagrams-of-in-phase-and-out-of-phase-solutions-in-the-i.png)
(a) 2-parameter bifurcation diagrams of in-phase and out-of-phase
![Bifurcation diagram vs parameter M. Figure 3: 3D phase portrait of the](https://i2.wp.com/www.researchgate.net/profile/Lev-Kuzmin/publication/322672438/figure/fig2/AS:589524182765576@1517564926996/Bifurcation-diagram-vs-parameter-M-Figure-3-3D-phase-portrait-of-the-chaotic-attractor_Q320.jpg)
Bifurcation diagram vs parameter M. Figure 3: 3D phase portrait of the