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Showing 1 - 6 of
6 matches in All Departments
This book is about graph energy. The authors have included many
of the important results on graph energy, such as the complete
solution to the conjecture on maximal energy of unicyclic graphs,
the Wagner-Heuberger's result on the energy of trees, the energy of
random graphsor the approach to energy using singular values. It
contains an extensive coverage of recent results and a gradual
development of topics and the inclusion of complete proofs from
most of the important recent results in the area. The latter fact
makes it a valuable reference for researchers looking to get into
the field of graph energy, further stimulating it with occasional
inclusion of open problems. The book provides a comprehensive
survey of all results and common proof methods obtained in this
field with an extensive reference section. The book is aimed mainly
towards mathematicians, both researchers and doctoral students,
with interest in the field of mathematical chemistry. "
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Graph Polynomials (Paperback)
Yongtang Shi, Matthias Dehmer, Xueliang Li, Ivan Gutman
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R1,611
Discovery Miles 16 110
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Ships in 10 - 15 working days
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This book covers both theoretical and practical results for graph
polynomials. Graph polynomials have been developed for measuring
combinatorial graph invariants and for characterizing graphs.
Various problems in pure and applied graph theory or discrete
mathematics can be treated and solved efficiently by using graph
polynomials. Graph polynomials have been proven useful areas such
as discrete mathematics, engineering, information sciences,
mathematical chemistry and related disciplines.
Modern and Interdisciplinary Problems in Network Science: A
Translational Research Perspective covers a broad range of concepts
and methods, with a strong emphasis on interdisciplinarity. The
topics range from analyzing mathematical properties of
network-based methods to applying them to application areas. By
covering this broad range of topics, the book aims to fill a gap in
the contemporary literature in disciplines such as physics, applied
mathematics and information sciences.
Modern and Interdisciplinary Problems in Network Science: A
Translational Research Perspective covers a broad range of concepts
and methods, with a strong emphasis on interdisciplinarity. The
topics range from analyzing mathematical properties of
network-based methods to applying them to application areas. By
covering this broad range of topics, the book aims to fill a gap in
the contemporary literature in disciplines such as physics, applied
mathematics and information sciences.
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Graph Energy (Paperback)
Xueliang Li, Yongtang Shi, Ivan Gutman
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R2,879
Discovery Miles 28 790
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Ships in 18 - 22 working days
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This book is about graph energy. The authors have included many of
the important results on graph energy, such as the complete
solution to the conjecture on maximal energy of unicyclic graphs,
the Wagner-Heuberger's result on the energy of trees, the energy of
random graphs or the approach to energy using singular values. It
contains an extensive coverage of recent results and a gradual
development of topics and the inclusion of complete proofs from
most of the important recent results in the area. The latter fact
makes it a valuable reference for researchers looking to get into
the field of graph energy, further stimulating it with occasional
inclusion of open problems. The book provides a comprehensive
survey of all results and common proof methods obtained in this
field with an extensive reference section. The book is aimed mainly
towards mathematicians, both researchers and doctoral students,
with interest in the field of mathematical chemistry.
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Graph Polynomials (Hardcover)
Yongtang Shi, Matthias Dehmer, Xueliang Li, Ivan Gutman
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R4,916
Discovery Miles 49 160
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Ships in 10 - 15 working days
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This book covers both theoretical and practical results for graph
polynomials. Graph polynomials have been developed for measuring
combinatorial graph invariants and for characterizing graphs.
Various problems in pure and applied graph theory or discrete
mathematics can be treated and solved efficiently by using graph
polynomials. Graph polynomials have been proven useful areas such
as discrete mathematics, engineering, information sciences,
mathematical chemistry and related disciplines.
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