This review discusses several computational methods used on different length and time scales for the simulation of material behavior. First, the importance of physical modeling and its relation to computer simulation on multiscales is discussed. Then, computational methods used on different scales are shortly reviewed, before we focus on the molecular dynamics (MD) method. Here we survey in a tutorial-like fashion some key issues including several MD optimization techniques. Thereafter, computational examples for the capabilities of numerical simulations in materials research are discussed. We focus on recent results of shock wave simulations of a solid which are based on two different modeling approaches and we discuss their respective ass...
The most important applications for simulations of polymers involve composites or blends with extens...
Some intrinsic properties of biomaterials are calculated with atomistic computer simulations through...
Some intrinsic properties of biomaterials are calculated with atomistic computer simulations through...
This review discusses several computational methods used on different length and time scales for the...
My intention in this review article is to briefly discuss several major topics of present day comput...
Many systems of academic and industrial interest are examples of soft condensed matter: they exhibit...
In the context of a few characteristic examples, the perspectives of computational materials science...
In the context of a few characteristic examples, the perspectives of computational materials science...
Many systems of academic and industrial interest are examples of soft condensed matter: they exhibit...
The mechanical and physical properties of polymeric materials originate from the interplay of phenom...
Polymer and cell dynamics play an important role in processes like tumor growth, metastasis, embryog...
none3Liquid crystals, polymers and polymer liquid crystals are soft condensed matter systems of majo...
Polymer and cell dynamics play an important role in processes like tumor growth, metastasis, embryog...
Polymer and cell dynamics play an important role in processes like tumor growth, metastasis, embryog...
The study of polymer-based composites is a challenging multiscale problem, involving multiple time a...
The most important applications for simulations of polymers involve composites or blends with extens...
Some intrinsic properties of biomaterials are calculated with atomistic computer simulations through...
Some intrinsic properties of biomaterials are calculated with atomistic computer simulations through...
This review discusses several computational methods used on different length and time scales for the...
My intention in this review article is to briefly discuss several major topics of present day comput...
Many systems of academic and industrial interest are examples of soft condensed matter: they exhibit...
In the context of a few characteristic examples, the perspectives of computational materials science...
In the context of a few characteristic examples, the perspectives of computational materials science...
Many systems of academic and industrial interest are examples of soft condensed matter: they exhibit...
The mechanical and physical properties of polymeric materials originate from the interplay of phenom...
Polymer and cell dynamics play an important role in processes like tumor growth, metastasis, embryog...
none3Liquid crystals, polymers and polymer liquid crystals are soft condensed matter systems of majo...
Polymer and cell dynamics play an important role in processes like tumor growth, metastasis, embryog...
Polymer and cell dynamics play an important role in processes like tumor growth, metastasis, embryog...
The study of polymer-based composites is a challenging multiscale problem, involving multiple time a...
The most important applications for simulations of polymers involve composites or blends with extens...
Some intrinsic properties of biomaterials are calculated with atomistic computer simulations through...
Some intrinsic properties of biomaterials are calculated with atomistic computer simulations through...