All Stories

  1. Peter Gray. 25 August 1926 -- 7 June 2012
  2. Motion and Interaction of Aspirin Crystals at Aqueous–Air Interfaces
  3. pH Wave-Front Propagation in the Urea-Urease Reaction
  4. Base-Catalyzed Feedback in the Urea−Urease Reaction
  5. Two-dimensional simple proportional feedback control of a chaotic reaction system
  6. An Organic-Based pH Oscillator
  7. pH oscillations and bistability in the methylene glycol–sulfite–gluconolactone reaction
  8. Magnetic Resonance Imaging of Flow-Distributed Oscillations
  9. The effect of a radical scavenger on the propagation of flames in an exothermic-endothermic system
  10. On the Structure of the Spectra for a Class of Combustion Waves
  11. Dynamical behaviour of the Belousov–Zhabotinsky reaction in a fed-batch reactor
  12. Modelling wave propagation across a series of gaps
  13. Isothermal flame balls: Effect of autocatalyst decay
  14. Evans function analysis of the stability of non-adiabatic flames
  15. Uncertain dynamics in nonlinear chemical reactions
  16. Propagation of chemical waves across inexcitable gaps
  17. Wave Propagation in Spatially Distributed Excitable Media
  18. Isothermal flame balls
  19. Dynamics of a vertically falling film in the presence of a first-order chemical reaction
  20. Nonlinear reactions, feedback and self-organizing reactions
  21. The effect of reversible binding of the autocatalyst on the lateral instability of reaction fronts
  22. Lateral instabilities in cubic autocatalytic reaction fronts: The effect of autocatalyst decay
  23. The development of spatial structure in an ionic chemical system induced by applied electric fields
  24. Modelling complex spatiotemporal behaviour in a Couette reactor
  25. Pattern formation in a differential–flow reactor model
  26. Modelling flow-distributed oscillations in the CDIMA reaction
  27. Wave initiation in the ferroin-catalysed Belousov–Zhabotinsky reaction with visible light
  28. Uncertain destination dynamics
  29. Forced convective structures in a differential-flow reactor
  30. Scroll waves in the Belousov–Zhabotinsky reaction: exploitation of O2-effect on the ferroin-catalysed system
  31. Analysis of reaction–diffusion waves in the ferroin-catalysed Belousov–Zhabotinsky reaction
  32. Spatio-temporal structures in a differential flow reactor with cubic autocatalator kinetics
  33. Interaction between Hopf and convective instabilities in a flow reactor with cubic autocatalator kinetics
  34. Spatiotemporal chaos in a differential flow reactor
  35. Effect of oxygen on wave propagation in the ferroin-catalysed Belousov–Zhabotinsky reaction
  36. Modelling complex transient oscillations for the BZ reaction in a batch reactor
  37. Modelling studies of spiral waves and target patterns in premixed flames
  38. Chemical wave responses to periodic stimuli in vulnerable excitable media
  39. Complex and non-periodic oscillations in the H2+O2 reaction
  40. Reaction-diffusion waves Homogeneous and inhomogeneous effects
  41. Wave-Induced Chemical Chaos
  42. New approaches to chemical patterns
  43. Vulnerability and spiral-wave evolution in the Belousov–Zhabotinsky reaction on a membrane surface
  44. Bulk-scale modelling of a combustion oscillator
  45. Stabilizing and characterizing unstable states in high-dimensional systems from time series
  46. Instabilities of cubic autocatalytic waves on two and three dimensional domains
  47. Approaching complexity
  48. Simple and Complex Reaction-Diffusion Fronts
  49. Instabilities in propagating reaction-diffusion fronts
  50. Multistability, oscillations and chaos in an exothermic branched-chain reaction model
  51. Reduced models for the uncatalyzed Belousov-Zhabotinskii reaction
  52. Mixed-mode oscillations in chemical systems
  53. Simple and complex propagating reaction-diffusion fronts
  54. Mechanism for the uncatalysed Belousov–Zhabotinskii reaction in open systems
  55. Erratum: Transient chaos in a closed chemical system [J. Chem. Phys. 9 4, 1134 (1991)]
  56. Transient chaos in a closed chemical system
  57. Phenomenological study of a new flow model of the Belousov–Zhabotinskii reaction
  58. Hysteresis and complex oscillations of the uncatalysed Belousov–Zhabotinskii reaction in a stirred flow reactor
  59. Characterisation of oscillations in the H2+ O2 reaction in a continuous-flow reactor
  60. Modelling complex oscillations for the H2+ O2 reaction in an open system
  61. Period doubling and chaos in a three-variable autocatalator
  62. Development of oscillations in closed systems
  63. Detailed bifurcation structure and new mixed-mode oscillations of the Belousov–Zhabotinskii reaction in a stirred flow reactor
  64. Period doubling and chaos during the oscillatory ignition of the CO + O2 reaction
  65. A two-step model for cubic autocatalysis in an open system
  66. Homoclinic orbits in a simple chemical model of an autocatalytic reaction
  67. Oscillations in simple models of chemical systems
  68. Mechanisms and Chemically Consistent Models for Isothermal Oscillations in the CSTR
  69. Sustained oscillations in isothermal branched-chain reactions
  70. Isothermal Autocatalysis in Open Systems (CSTR): Simple Models and Complex Behaviour
  71. Times to ignition in systems initiated by light
  72. Thermal explosion of dispersed media. Criticality for discrete reactive particles in an inert matrix
  73. Thermal explosion of dispersed media. Criticality for discrete reactive particles in a reactive matrix
  74. Comment: Temperature profiles for reactions with self-heating: thermal explosion in the sphere
  75. Unifying approaches to the stationary-state theory of thermal explosion. Part 1
  76. Unifying approaches to the stationary-state theory of thermal explosion. Part 2