Pages that link to "Item:Q4762955"
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The following pages link to The development of spatial structure in an ionic chemical system induced by applied electric fields (Q4762955):
Displaying 15 items.
- Flow-distributed spikes for Schnakenberg kinetics (Q662583) (← links)
- Transport and reaction in ionic chemical systems (Q1344752) (← links)
- Creation of spatial structure by an electric field applied to an ionic cubic autocatalator system (Q1581049) (← links)
- Electric field induced propagating structures in a model of spatio-temporal signalling (Q1581747) (← links)
- A general mechanism for ``inexact'' phase differences in reaction-diffusion-advection systems (Q1848237) (← links)
- Rigid transition to the stationary structure and imposed convective instability in a reaction-diffusion system with flow (Q1888053) (← links)
- The interaction energy of charged filaments in an electrolyte: results for all filament spacings (Q2413794) (← links)
- Pattern solutions of the Klausmeier model for banded vegetation in semi-arid environments. II: Patterns with the largest possible propagation speeds (Q2889172) (← links)
- COMPUTING HIGHLY ACCURATE SOLUTIONS OF A TUMOUR ANGIOGENESIS MODEL (Q3043558) (← links)
- Spatio-temporal pattern formation in chemical reactions (Q3510502) (← links)
- The effects of an electric field on an autocatalytic ionic reaction in a system with high ionic strength (Q4398306) (← links)
- The effect of an electric field on the local stoichiometry of front waves in an ionic chemical system (Q4486040) (← links)
- Striped pattern selection by advective reaction-diffusion systems: Resilience of banded vegetation on slopes (Q4591644) (← links)
- Symmetry breaking, bifurcations, quasiperiodicity, and chaos due to electric fields in a coupled cell model (Q5706278) (← links)
- Parameter space analysis, pattern sensitivity and model comparison for Turing and stationary flow-distributed waves (FDS) (Q5950432) (← links)