AbstractIn this paper, we prove that non-circulant vertex-transitive tournaments of order pq, where p and q are distinct odd primes, are metacirculant tournaments (defined in Definition 2.1) satisfying some special conditions; see Theorem 1.2. So, in combination with the work in Jing Xu (2010) [11], a complete classification of vertex-transitive pq-tournaments is obtained. As a by-product, we construct examples of non-Cayley vertex-transitive pq-tournaments where q2|(p−1) in Example 2.5. Moreover, applying the classification of vertex-transitive pq-tournaments, we determine all 2-closed (in Wielandt’s sense) odd-order transitive permutation groups of degree pq and show that each of them is the full automorphism group of some tournament
AbstractA tournament T (directed graph in which there is exactly one arc between any two vertices) i...
AbstractWe prove that with the possible exception of total orders every tournament with sharply tran...
AbstractWe discuss several results and problems of even tournaments and Hadamard tournaments
AbstractIn this paper, we prove that non-circulant vertex-transitive tournaments of order pq, where ...
AbstractIn this work is proven the existence of non-Cayley vertex-transitive tournaments of order pk...
AbstractThis paper completes the determination of all integers of the form pqr (where p, q, and r ar...
AbstractIn this paper, infinitely many graphs of large valency which are half-transitive (that is ve...
AbstractLet φ be Euler's phi function. Let n be a square-free positive integer such that gcd(n,φ(n))...
For a positive integer n, does there exist a vertex-transitive graph Γ on n vertices which is not a ...
AbstractMetacirculants were introduced by Alspach and Parsons in 1982 and have been a rich source of...
AbstractGiven a tournament score sequences1⩾s2⩾…⩾sn, we prove that there exists a tournamentTon vert...
AbstractIn 1983, D. Marušič initiated the determination of the set NC of non-Cayley numbers. A numbe...
A non-Cayley number is an integer n for which there exists a vertex-transitive graph on n vertices w...
The pursuit to identify vertex-transitive non-Cayley graphs has been deliberate for some time ...
AbstractIt was conjectured (see [D. Marušič, On vertex symmetric digraphs, Discrete Math. 36 (1981) ...
AbstractA tournament T (directed graph in which there is exactly one arc between any two vertices) i...
AbstractWe prove that with the possible exception of total orders every tournament with sharply tran...
AbstractWe discuss several results and problems of even tournaments and Hadamard tournaments
AbstractIn this paper, we prove that non-circulant vertex-transitive tournaments of order pq, where ...
AbstractIn this work is proven the existence of non-Cayley vertex-transitive tournaments of order pk...
AbstractThis paper completes the determination of all integers of the form pqr (where p, q, and r ar...
AbstractIn this paper, infinitely many graphs of large valency which are half-transitive (that is ve...
AbstractLet φ be Euler's phi function. Let n be a square-free positive integer such that gcd(n,φ(n))...
For a positive integer n, does there exist a vertex-transitive graph Γ on n vertices which is not a ...
AbstractMetacirculants were introduced by Alspach and Parsons in 1982 and have been a rich source of...
AbstractGiven a tournament score sequences1⩾s2⩾…⩾sn, we prove that there exists a tournamentTon vert...
AbstractIn 1983, D. Marušič initiated the determination of the set NC of non-Cayley numbers. A numbe...
A non-Cayley number is an integer n for which there exists a vertex-transitive graph on n vertices w...
The pursuit to identify vertex-transitive non-Cayley graphs has been deliberate for some time ...
AbstractIt was conjectured (see [D. Marušič, On vertex symmetric digraphs, Discrete Math. 36 (1981) ...
AbstractA tournament T (directed graph in which there is exactly one arc between any two vertices) i...
AbstractWe prove that with the possible exception of total orders every tournament with sharply tran...
AbstractWe discuss several results and problems of even tournaments and Hadamard tournaments