H-Index & Metrics Top Publications

H-Index & Metrics

Discipline name H-index Citations Publications World Ranking National Ranking
Computer Science H-index 52 Citations 9,797 293 World Ranking 2596 National Ranking 100
Mathematics H-index 54 Citations 10,855 308 World Ranking 425 National Ranking 13

Research.com Recognitions

Awards & Achievements

2020 - Fellow of the American Mathematical Society For contributions to topological graph theory, including the theory of graph embedding algorithms, graph coloring and crossing numbers, and for service to the profession.

2020 - Fellow of the Royal Society of Canada Academy of Science

2018 - SIAM Fellow For contributions to graph theory and computing, in particular structural, topological, and algebraic graph theory.

Overview

What is he best known for?

The fields of study he is best known for:

  • Combinatorics
  • Geometry
  • Algebra

His primary scientific interests are in Combinatorics, Discrete mathematics, Eigenvalues and eigenvectors, Planar graph and Graph. His research combines Upper and lower bounds and Combinatorics. His Discrete mathematics study combines topics from a wide range of disciplines, such as Chromatic scale and Graph theory.

The Eigenvalues and eigenvectors study combines topics in areas such as Laplace transform, Maximum cut, Combinatorial optimization and Isoperimetric inequality. His Planar graph research incorporates elements of Class, Topological graph theory, Clique and Book embedding. Bojan Mohar interconnects Planarity testing and Projective plane in the investigation of issues within Graph.

His most cited work include:

  • Graphs on Surfaces (928 citations)
  • Some applications of Laplace eigenvalues of graphs (376 citations)
  • Isoperimetric numbers of graphs (289 citations)

What are the main themes of his work throughout his whole career to date?

The scientist’s investigation covers issues in Combinatorics, Discrete mathematics, Graph, Planar graph and Conjecture. His work carried out in the field of Combinatorics brings together such families of science as Embedding and Bounded function. His research investigates the connection with Graph and areas like Chromatic scale which intersect with concerns in Digraph.

His studies in Planar graph integrate themes in fields like Topological graph theory and Polyhedral graph. Bojan Mohar has researched Conjecture in several fields, including Cubic graph and Existential quantification. Bojan Mohar focuses mostly in the field of Chordal graph, narrowing it down to topics relating to Indifference graph and, in certain cases, Maximal independent set.

He most often published in these fields:

  • Combinatorics (92.42%)
  • Discrete mathematics (52.61%)
  • Graph (27.73%)

What were the highlights of his more recent work (between 2016-2021)?

  • Combinatorics (92.42%)
  • Graph (27.73%)
  • Conjecture (13.03%)

In recent papers he was focusing on the following fields of study:

Bojan Mohar spends much of his time researching Combinatorics, Graph, Conjecture, Discrete mathematics and Bounded function. His Combinatorics research includes elements of Embedding and Upper and lower bounds. The various areas that he examines in his Graph study include Chromatic scale, Exponential growth, Exponential number, Eigenvalues and eigenvectors and Spanning tree.

His Conjecture study also includes

  • Arbitrarily large which intersects with area such as Cubic graph,
  • Matroid which is related to area like Special case. His Discrete mathematics study incorporates themes from Graph theory, Hermitian matrix and Torus. He combines subjects such as Disjoint sets, Class and Time complexity with his study of Bounded function.

Between 2016 and 2021, his most popular works were:

  • Hermitian Adjacency Matrix of Digraphs and Mixed Graphs (78 citations)
  • Planar Digraphs of Digirth Four are 2-Colorable (24 citations)
  • A new kind of Hermitian matrices for digraphs (13 citations)

In his most recent research, the most cited papers focused on:

  • Combinatorics
  • Geometry
  • Algebra

Bojan Mohar focuses on Combinatorics, Conjecture, Graph, Discrete mathematics and Bounded function. His study deals with a combination of Combinatorics and Planar. His Conjecture research incorporates themes from Indifference graph, Directed graph, Unit sphere, Simple and Chromatic scale.

His Graph study combines topics in areas such as Laplace operator and Spanning tree. The concepts of his Discrete mathematics study are interwoven with issues in Embedding, Graph theory, Hermitian matrix and Torus. His research in Bounded function intersects with topics in Independent set, Clique cover and Degree.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Top Publications

Graphs on Surfaces

Bojan Mohar;Carsten Thomassen.
(2001)

1475 Citations

Some applications of Laplace eigenvalues of graphs

Bojan Mohar.
(1997)

649 Citations

Isoperimetric numbers of graphs

B. Mohar.
Journal of Combinatorial Theory, Series B (1989)

413 Citations

Eigenvalues, diameter, and mean distance in graphs

Bojan Mohar.
Graphs and Combinatorics (1991)

365 Citations

A Survey on Spectra of infinite Graphs

Bojan Mohar;Wolfgang Woess.
Bulletin of The London Mathematical Society (1989)

353 Citations

THE QUASI-WIENER AND THE KIRCHHOFF INDICES COINCIDE

Ivan Gutman;Bojan Mohar.
Journal of Chemical Information and Computer Sciences (1996)

329 Citations

Laplace eigenvalues of graphs—a survey

Bojan Mohar.
Discrete Mathematics (1992)

266 Citations

Eigenvalues in Combinatorial Optimization

Bojan Mohar;Svatopluk Poljak.
Institute for Mathematics and Its Applications (1993)

203 Citations

A Linear Time Algorithm for Embedding Graphs in an Arbitrary Surface

Bojan Mohar.
SIAM Journal on Discrete Mathematics (1999)

187 Citations

Optimal linear labelings and eigenvalues of graphs

Martin Juvan;Bojan Mohar.
Discrete Applied Mathematics (1992)

179 Citations

Profile was last updated on December 6th, 2021.
Research.com Ranking is based on data retrieved from the Microsoft Academic Graph (MAG).
The ranking h-index is inferred from publications deemed to belong to the considered discipline.

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