All Stories

  1. Thermodynamics and Nonlocality in Continuum Physics
  2. Heat conduction with “aging” memory
  3. On the modeling of magneto-mechanical effects (magnetostriction, Villari effect, etc.) in solids
  4. On symmetry properties of the total stress tensor for electromagnetic deformable solids
  5. On the electrostriction effect in finitely deformable dielectrics
  6. Modeling of viscoelasticity through relations between strain, stress, and their derivatives
  7. A new formulation of the second law in continuum physics and new methods to exploit it
  8. Modeling of heat conduction through constitutive equations of the rate type for the heat flux
  9. Some generalizations of the Burgers and the Oldroyd equations for compressible fluids
  10. Three-dimensional nonlocal models of deformable ferroelectrics: a thermodynamically consistent approach
  11. Modelling of Electro-Viscoelastic Materials through Rate Equations
  12. Techniques for the Thermodynamic Consistency of Constitutive Equations
  13. Thermodynamically-Consistent Modeling of Ferromagnetic Hysteresis
  14. Plasticity
  15. Aging and Higher-Order Grade Materials
  16. Balance Equations
  17. Electromagnetism of Continuous Media
  18. Ferroics
  19. Fluids
  20. Generalities on Constitutive Models
  21. Kinematics
  22. Materials with Memory
  23. Mathematical Modelling of Continuum Physics
  24. Micropolar Media
  25. Mixtures
  26. Phase Transitions
  27. Porous Materials
  28. Rate-Type Models
  29. Solids
  30. Superconductivity and Superfluidity
  31. On the Optimal Shape and Efficiency Improvement of Fin Heat Sinks
  32. A Magneto-Viscoelasticity Problem with Aging
  33. Viscoelastic and Electromagnetic Materials with Nonlinear Memory
  34. Magneto-Viscoelastic Materials: Memory Functionals and Rate Equations
  35. Rate-type models of dissipative compressible fluids
  36. Materials with Memory: Viscoelasticity and Hysteresis
  37. Nonlinear Models of Thermo-Viscoelastic Materials
  38. A Thermodynamic Approach to Rate-Type Models of Elastic-Plastic Materials
  39. Entropy Rates and Efficiency of Convecting-Radiating Fins
  40. A thermodynamic approach to rate-type models in deformable ferroelectrics
  41. A thermodynamic approach to hysteretic models in ferroelectrics
  42. Objective rate equations and memory properties in continuum physics
  43. Entropy Production and Efficiency in Longitudinal Convecting–Radiating Fins
  44. Steady states and nonlinear buckling of cable-suspended beam systems
  45. Reconstruction of the memory kernel, together with the solution, in a mixed linear evolution problem
  46. A model of viscoelasticity with time-dependent memory kernels
  47. Modeling of heat conduction via fractional derivatives
  48. Derivation of the Landau–Lifshitz–Bloch equation from continuum thermodynamics
  49. Buckling and nonlinear dynamics of elastically coupled double-beam systems
  50. Non-Classical Memory Kernels in Linear Viscoelasticity
  51. Constitutive equations and wave propagation in Green–Naghdi type II and III thermoelectroelasticity
  52. Steady states of elastically-coupled extensible double-beam systems
  53. Solidification and separation in saline water
  54. Global attractors for the coupled suspension bridge system with temperature
  55. Hysteresis and temperature-induced transitions in ferromagnetic materials
  56. Phase-field models for transition phenomena in materials with hysteresis
  57. Foreword
  58. Mathematical modeling of phase transition and separation in fluids: A unified approach
  59. On the Green-Naghdi Type III heat conduction model
  60. On the viscoelastic coupled suspension bridge
  61. Preface
  62. Well-posedness and longtime behaviour of a coupled nonlinear system modeling a suspension bridge
  63. First-Order Phase Transitions and Hysteresis
  64. Asymptotic behavior of coupled linear systems modeling suspension bridges
  65. A phase-field model for quasi-incompressible solid–liquid transitions
  66. Long-term dynamics of a viscoelastic suspension bridge
  67. Ordinary Differential Equations (ODE)
  68. Mathematical Models of Reissner-Mindlin Thermoviscoelastic Plates
  69. Phase transition and separation in compressible Cahn-Hilliard fluids
  70. Steady-state solutions for a suspension bridge with intermediate supports
  71. Asymptotic dynamics of nonlinear coupled suspension bridge equations
  72. Free energies and pseudo-elastic transitions for shape memory alloys
  73. LONG-TERM DYNAMICS OF THE COUPLED SUSPENSION BRIDGE SYSTEM
  74. Phase separation in quasi-incompressible Cahn–Hilliard fluids
  75. Modeling and steady state analysis of the extensible thermoelastic beam
  76. Isotropic-nematic phase transitions in liquid crystals
  77. A New Approach to Equations with Memory
  78. Long-Term Damped Dynamics of the Extensible Suspension Bridge
  79. STEADY STATES OF THE HINGED EXTENSIBLE BEAM WITH EXTERNAL LOAD
  80. Continuum Thermodynamics and Phase-Field Models
  81. A Phase-Field Model for Liquid-Vapor Transitions induced by Temperature and Pressure
  82. A thermodynamic approach to ferromagnetism and phase transitions
  83. EXISTENCE AND UNIQUENESS FOR A THREE DIMENSIONAL MODEL OF FERROMAGNETISM
  84. A three-dimensional phase transition model in ferromagnetism: Existence and uniqueness
  85. Global attractors for the extensible thermoelastic beam system
  86. A Phase-Field Model for Liquid–Vapor Transitions
  87. On the extensible viscoelastic beam
  88. A continuum theory for first-order phase transitions based on the balance of structure order
  89. Well-posedness for solid–liquid phase transitions with a fourth-order nonlinearity
  90. Gauge invariance and asymptotic behavior for the Ginzburg–Landau equations of superconductivity
  91. The longtime behavior of a nonlinear Reissner–Mindlin plate with exponentially decreasing memory kernels
  92. Mathematical Models of Reissner–Mindlin Thermoviscoelastic Plates
  93. MATHEMATICAL MODELS FOR PHASE TRANSITION IN MATERIALS WITH THERMAL MEMORY
  94. A thermodynamic approach to non-isothermal phase-field evolution in continuum physics
  95. ENERGY DECAY OF ELECTROMAGNETIC SYSTEMS WITH MEMORY
  96. Navier–Stokes limit of Jeffreys type flows
  97. Viscoelastic Solids of Exponential Type. I. Minimal Representations and Controllability
  98. Viscoelastic Solids of Exponential Type. II. Free Energies, Stability and Attractors
  99. Uniform energy estimates for a semilinear evolution equation of the Mindlin-Timoshenko beam with memory
  100. Global Attractors for a Semilinear Hyperbolic Equation in Viscoelasticity
  101. A new model for rate-independent hysteresis in permanent magnets
  102. Asymptotic behavior of a nonlinear hyperbolic heat equation with memory
  103. STABILITY OF ABSTRACT LINEAR THERMOELASTIC SYSTEMS WITH MEMORY
  104. Well-posedness and longtime behavior of the phase-field model with memory in a history space setting
  105. Exponential stability of a linear viscoelastic bar with thermal memory
  106. Uniform attractors for a non-autonomous semilinear heat equation with memory
  107. Mathematical models of thin thermoviscoelastic plates
  108. NONLINEAR SYSTEMS DESCRIBING PHASE TRANSITION MODELS COMPATIBLE WITH THERMODYNAMICS
  109. Extremum principles in electromagnetic systems
  110. Uniform attractors for a phase-field model with memory and quadratic nonlinearity
  111. Asymptotic behavior of a semilinear problem in heat conduction with memory
  112. On the stability for linear viscoelastic solids
  113. Internal dissipation, relaxation property, and free energy in materials with fading memory
  114. Free energies and dissipation properties for systems with memory
  115. Thermodynamic properties and stability for the heat flux equation with linear memory
  116. New variational principles in quasi-static viscoelasticity
  117. Viscoelastic solids with unbounded relaxation function
  118. Extremum principles for viscoelastic fluids
  119. Minimum principles, convexity, and thermodynamics in viscoelasticity
  120. Sul primo principio della termodinamica per I materiali semplici
  121. Sui potenziali elettromagnetici per alcuni modelli di isteresi magnetica
  122. La superconduttivita’ come teoria non locale
  123. Sul criterio dell'energia per la stabilitá di un sistema termomeccanico
  124. An existence theorem for a nonlinear evolution equation in viscoelasticity
  125. Un problema di esistenza ed unicità per un sistema linearizzato di Navier-Stokes a coefficienti non costanti