AbstractThis manuscript provides a pedagogical introduction on how to determine and visualize simple physical knots occurring in polymers, proteins and DNA. We explain how the Alexander polynomial is computed and implemented in a simulation code, and how the structure can be simplified beforehand to save computer time. The concept of knottedness can also be extended in a statistical framework to chains which are not closed. The latter is exemplified by comparing statistics of knots in open random walks and closed random loops
Long polymers in solution frequently adopt knotted configurations. To understand the physical proper...
Polypeptide chains form open knots in many proteins. How these knotted proteins fold and finding the...
The backbones of proteins form linear chains. In the case of some proteins, these chains can be char...
AbstractThis manuscript provides a pedagogical introduction on how to determine and visualize simple...
The properties of knotted and linked configurations in space have long been of interest to physicist...
The physical properties of knotted and linked configurations in space have long been of interest to ...
Traditional topological knot theory mainly studies knotting within closed curves. However, much of w...
Employing the MDS analysis, one defines the knot type of open chains thereby providing a basic tool ...
We present some commonly-used models for polymers in different experimental conditions, including so...
Ropes or yarns, especially when disorderly packed, are prone to develop knots. Polymers are no excep...
This thesis is divided into two parts, each summarising one of the main projects I have undertaken s...
Knots are ubiquitous objects and decorative elements that have been studied since antiquity. During ...
The backbones of proteins form linear chains. In the case of some proteins, these chains can be char...
Polypeptide chains form open knots in many proteins. How these knotted proteins fold and finding the...
Knotting is a prevalent phenomenon which occurs at the macroscale (e.g., in headphone cords) and at ...
Long polymers in solution frequently adopt knotted configurations. To understand the physical proper...
Polypeptide chains form open knots in many proteins. How these knotted proteins fold and finding the...
The backbones of proteins form linear chains. In the case of some proteins, these chains can be char...
AbstractThis manuscript provides a pedagogical introduction on how to determine and visualize simple...
The properties of knotted and linked configurations in space have long been of interest to physicist...
The physical properties of knotted and linked configurations in space have long been of interest to ...
Traditional topological knot theory mainly studies knotting within closed curves. However, much of w...
Employing the MDS analysis, one defines the knot type of open chains thereby providing a basic tool ...
We present some commonly-used models for polymers in different experimental conditions, including so...
Ropes or yarns, especially when disorderly packed, are prone to develop knots. Polymers are no excep...
This thesis is divided into two parts, each summarising one of the main projects I have undertaken s...
Knots are ubiquitous objects and decorative elements that have been studied since antiquity. During ...
The backbones of proteins form linear chains. In the case of some proteins, these chains can be char...
Polypeptide chains form open knots in many proteins. How these knotted proteins fold and finding the...
Knotting is a prevalent phenomenon which occurs at the macroscale (e.g., in headphone cords) and at ...
Long polymers in solution frequently adopt knotted configurations. To understand the physical proper...
Polypeptide chains form open knots in many proteins. How these knotted proteins fold and finding the...
The backbones of proteins form linear chains. In the case of some proteins, these chains can be char...