The biggest bottleneck in DNA computing is exponential explosion, in which the DNA molecules used as data in information processing grow exponentially with an increase of problem size. To overcome this bottleneck and improve the processing speed, we propose a DNA computing model to solve the graph vertex coloring problem. The main points of the model are as follows: ① The exponential explosion problem is solved by dividing subgraphs, reducing the vertex colors without losing the solutions, and ordering the vertices in subgraphs; and ② the bio-operation times are reduced considerably by a designed parallel polymerase chain reaction (PCR) technology that dramatically improves the processing speed. In this article, a 3-colorable graph with 61 ...
DNA computing is a novel method of solving a class of intractable computational problems, in which t...
It has been previously shown that DNA computing can solve those problems currently intractable on ev...
In recent years, DNA self-assembly has widely developed in the fields of DNA computing and nanotechn...
A DNA computing model for solving graph vertex coloring problem is proposed in this article. To illu...
DNA computing or well known as molecular computing is computing technique using DNA molecule to stor...
A novel kind of DNA computing model for graph vertex coloring problem is proposed based on microflui...
DNA self-assembly technology has brought novel inspirations to the development of DNA computing Dive...
We present a computing model using DNA/QD (quantum dot) conjugates to solve a graph coloring problem...
A 3-coloring graph problem, one of the NP-problems, has been solved using the method of circular DNA...
Combinatorial problems arise in many areas of computer science and application domains. It involves ...
A novel molecular computing model based on circular DNA was developed to solve a 3-coloring graph pr...
DNA-based computing provides an alternative to solving optimization problems in graph theory. In thi...
Problem statement: A number of DNA computing models to solve mathematical graph problem such as the ...
Molecular computing has proved its possibility to solve weighted graph problem such as Hamiltonian P...
Abstract. The area of computational biology, is living a fast growth, fed with a revolution in DNA s...
DNA computing is a novel method of solving a class of intractable computational problems, in which t...
It has been previously shown that DNA computing can solve those problems currently intractable on ev...
In recent years, DNA self-assembly has widely developed in the fields of DNA computing and nanotechn...
A DNA computing model for solving graph vertex coloring problem is proposed in this article. To illu...
DNA computing or well known as molecular computing is computing technique using DNA molecule to stor...
A novel kind of DNA computing model for graph vertex coloring problem is proposed based on microflui...
DNA self-assembly technology has brought novel inspirations to the development of DNA computing Dive...
We present a computing model using DNA/QD (quantum dot) conjugates to solve a graph coloring problem...
A 3-coloring graph problem, one of the NP-problems, has been solved using the method of circular DNA...
Combinatorial problems arise in many areas of computer science and application domains. It involves ...
A novel molecular computing model based on circular DNA was developed to solve a 3-coloring graph pr...
DNA-based computing provides an alternative to solving optimization problems in graph theory. In thi...
Problem statement: A number of DNA computing models to solve mathematical graph problem such as the ...
Molecular computing has proved its possibility to solve weighted graph problem such as Hamiltonian P...
Abstract. The area of computational biology, is living a fast growth, fed with a revolution in DNA s...
DNA computing is a novel method of solving a class of intractable computational problems, in which t...
It has been previously shown that DNA computing can solve those problems currently intractable on ev...
In recent years, DNA self-assembly has widely developed in the fields of DNA computing and nanotechn...