How many state-variables are needed to predict the equation of state and the jamming density of polydisperse mixtures in glassy, non-equilibrium compressed states? We propose to define equivalent andmaximally equivalent systems as those that match three and five moments of a given polydisperse size distribution, respectively. Fluids can be represented well by an equivalent system with only s ¼ 2 components (bidisperse). As little as s ¼ 3 components (tridisperse) are enough to achieve a maximally equivalent system. Those match macroscopic properties in glassy states, but also the volume fraction of rattlers, suggesting strong microstructural equivalency too. For many soft and granular systems, tridisperse, maximally equivalent systems allow...
We study the effects of size polydispersity on the gas-liquid phase behavior of mixtures of sticky h...
We study the effects of size polydispersity on the gas-liquid phase behavior of mixtures of sticky h...
In this thesis we aimed to get a better understanding of the phase behavior of polydisperse and mult...
A recent proposal in which the equation of state of a polydisperse hard-sphere mixture is mapped ont...
We study bi- and polydisperse mixtures of hard sphere fluids with extreme size ratios up to 100. Sim...
We present a volume-explicit equation of state for hard spheres and their mixtures that performs wel...
Mixtures of binary spheres are numerically simulated using a relaxation algorithm to investigate the...
A simple and general mixture model based on the exact third virial coefficient of a non-additive har...
A simple hard-sphere equation of state is proposed. This hard-sphere equation is a ratio of second-o...
This thesis is dedicated to the investigation of properties of computer-generated monodisperse and p...
International audienceThe bulk modulus of hard sphere solids has been computed directly by constant ...
We study the bulk properties of isotropic bidisperse granular mixtures using discrete element simula...
We study the bulk properties of isotropic bidisperse granular mixtures using discrete element simula...
International audienceGranular systems are not always homogeneous and can be composed of grains with...
The Boublik-Mansoori-Carnahan-Starling-Leland (BMCSL) equation of state is examined for binary hard ...
We study the effects of size polydispersity on the gas-liquid phase behavior of mixtures of sticky h...
We study the effects of size polydispersity on the gas-liquid phase behavior of mixtures of sticky h...
In this thesis we aimed to get a better understanding of the phase behavior of polydisperse and mult...
A recent proposal in which the equation of state of a polydisperse hard-sphere mixture is mapped ont...
We study bi- and polydisperse mixtures of hard sphere fluids with extreme size ratios up to 100. Sim...
We present a volume-explicit equation of state for hard spheres and their mixtures that performs wel...
Mixtures of binary spheres are numerically simulated using a relaxation algorithm to investigate the...
A simple and general mixture model based on the exact third virial coefficient of a non-additive har...
A simple hard-sphere equation of state is proposed. This hard-sphere equation is a ratio of second-o...
This thesis is dedicated to the investigation of properties of computer-generated monodisperse and p...
International audienceThe bulk modulus of hard sphere solids has been computed directly by constant ...
We study the bulk properties of isotropic bidisperse granular mixtures using discrete element simula...
We study the bulk properties of isotropic bidisperse granular mixtures using discrete element simula...
International audienceGranular systems are not always homogeneous and can be composed of grains with...
The Boublik-Mansoori-Carnahan-Starling-Leland (BMCSL) equation of state is examined for binary hard ...
We study the effects of size polydispersity on the gas-liquid phase behavior of mixtures of sticky h...
We study the effects of size polydispersity on the gas-liquid phase behavior of mixtures of sticky h...
In this thesis we aimed to get a better understanding of the phase behavior of polydisperse and mult...