Conformational properties of polymers, such as average dihedral angles or molecular alpha-helicity, display a rather weak dependence on the detailed arrangement of the elementary constituents (atoms). We propose a computer simulation method to explore the polymer phase space using a variant of the standard multicanonical method, in which the density of states associated to suitably chosen configurational variables is considered in place of the standard energy density of states. This configurational density of states is used in the Metropolis acceptance/rejection test when configurations are generated with the help of a hybrid Monte Carlo algorithm. The resulting configurational probability distribution is then modulated by exponential facto...
©2000 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
In this anicle we present a method for alculating the chemical potential of arbitrary chain molecul...
Conformational properties of polymers, such as average dihedral angles or molecular alpha-helicity, ...
Conformational properties of polymers, such as average dihedral angles or molecular alpha-helicity, ...
Conformational properties of polymers, like average dihedral angles or molecular #alpha#-helicity, d...
Polymers is a class of molecules which can have many different structures due to a large number of d...
The thesis is focused on two major subjects: - Calculation of free energy is of great help in the st...
We propose an efficient method for investigating conformational properties of a polymer in solvent. ...
A Monte Carlo method, namely, the ''statistical counting method'' (SCM) has been...
It is conceptually proposed that the total entropy of polymer solution is contributed from two disti...
A system of efficient computer programs has been developed for simulating the conformations of macro...
In the last 10 years, flat histogram Monte Carlo simulations have contributed strongly to our unders...
The combination of flexibility and semiflexibility in a single molecule is a powerful design princip...
Hypothetical scanning Monte Carlo (HSMC) is a method for calculating the absolute entropy, S and fre...
©2000 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
In this anicle we present a method for alculating the chemical potential of arbitrary chain molecul...
Conformational properties of polymers, such as average dihedral angles or molecular alpha-helicity, ...
Conformational properties of polymers, such as average dihedral angles or molecular alpha-helicity, ...
Conformational properties of polymers, like average dihedral angles or molecular #alpha#-helicity, d...
Polymers is a class of molecules which can have many different structures due to a large number of d...
The thesis is focused on two major subjects: - Calculation of free energy is of great help in the st...
We propose an efficient method for investigating conformational properties of a polymer in solvent. ...
A Monte Carlo method, namely, the ''statistical counting method'' (SCM) has been...
It is conceptually proposed that the total entropy of polymer solution is contributed from two disti...
A system of efficient computer programs has been developed for simulating the conformations of macro...
In the last 10 years, flat histogram Monte Carlo simulations have contributed strongly to our unders...
The combination of flexibility and semiflexibility in a single molecule is a powerful design princip...
Hypothetical scanning Monte Carlo (HSMC) is a method for calculating the absolute entropy, S and fre...
©2000 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
In this anicle we present a method for alculating the chemical potential of arbitrary chain molecul...