Numerical computations have become a pillar of all modern quantitative sciences. Any computation involves modeling--even if often this step is not made explicit--and any model has to neglect details while still being physically accurate. Equilibrium statistical mechanics guides both the development of models and numerical methods for dynamics obeying detailed balance. For systems driven away from thermal equilibrium such a universal theoretical framework is missing. For a restricted class of driven systems governed by Markov dynamics and local detailed balance, stochastic thermodynamics has evolved to fill this gap and to provide fundamental constraints and guiding principles. The next step is to advance stochastic thermodynamics from simpl...
Living systems, even at the scale of single molecules, are constantly adapting to changing environme...
Original article can be found at: http://www.sciencedirect.com/science/bookseries/0091679X Copyright...
The machinery of life is composed of molecules such as DNA and proteins. Technology has brought us t...
Biological systems need to exchange energy and matter with their environment in order to stay functi...
Most computer simulations of molecular dynamics take place under equilibrium conditions--in a closed...
Machine learning (ML) has emerged as a pervasive tool in science, engineering, and beyond. Its succe...
peer reviewedUnlike macroscopic engines, the molecular machinery of living cells is strongly affecte...
Some results of non-equilibrium statistical mechanics are presented,both in the context of biologica...
Living things avoid equilibrium using molecular machines. Such microscopic soft-matter objects encou...
AbstractA molecular machine is either a single macromolecule or a macromolecular complex. In spite o...
Living matter is a class of soft matter systems that maintains itself away from thermodynamic equili...
In living systems, collective molecular behavior is driven by thermodynamic forces in the form of ch...
We describe a novel coarse grained simulation method for modelling the dynamics of globular macromol...
Living systems operate far from thermodynamic equilibrium. Enzymatic activity can induce broken deta...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.This electronic v...
Living systems, even at the scale of single molecules, are constantly adapting to changing environme...
Original article can be found at: http://www.sciencedirect.com/science/bookseries/0091679X Copyright...
The machinery of life is composed of molecules such as DNA and proteins. Technology has brought us t...
Biological systems need to exchange energy and matter with their environment in order to stay functi...
Most computer simulations of molecular dynamics take place under equilibrium conditions--in a closed...
Machine learning (ML) has emerged as a pervasive tool in science, engineering, and beyond. Its succe...
peer reviewedUnlike macroscopic engines, the molecular machinery of living cells is strongly affecte...
Some results of non-equilibrium statistical mechanics are presented,both in the context of biologica...
Living things avoid equilibrium using molecular machines. Such microscopic soft-matter objects encou...
AbstractA molecular machine is either a single macromolecule or a macromolecular complex. In spite o...
Living matter is a class of soft matter systems that maintains itself away from thermodynamic equili...
In living systems, collective molecular behavior is driven by thermodynamic forces in the form of ch...
We describe a novel coarse grained simulation method for modelling the dynamics of globular macromol...
Living systems operate far from thermodynamic equilibrium. Enzymatic activity can induce broken deta...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.This electronic v...
Living systems, even at the scale of single molecules, are constantly adapting to changing environme...
Original article can be found at: http://www.sciencedirect.com/science/bookseries/0091679X Copyright...
The machinery of life is composed of molecules such as DNA and proteins. Technology has brought us t...