Palate 发表于 2025-3-23 11:21:44
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Gregor Diehlnalysis. From this point of view outerplanar graphs and series-parallel graphs — these are two subclasses of planar graphs that we will study first — are more tree-like than the class of all planar graphs, since the singularity structure of the corresponding generating functions is of square root ty爱好 发表于 2025-3-23 22:46:36
Gregor Diehlnalysis. From this point of view outerplanar graphs and series-parallel graphs — these are two subclasses of planar graphs that we will study first — are more tree-like than the class of all planar graphs, since the singularity structure of the corresponding generating functions is of square root ty发牢骚 发表于 2025-3-24 03:00:26
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Gregor Diehles in the combinatorial and asymptotic analysis of trees and planar graphs. Planar graphs contain several (hidden) tree or tree-like structures. The tree-decomposition into cut-vertices and blocks (2-connected components) is the most prominent one. The reduction to 3-connected components is more inv违抗 发表于 2025-3-25 00:28:05
ear reactor cores. I was initiated into this field through the cla.ssical books by Y.K.Lin, S.H.Crandall and a few others. After the completion of my PhD, in 1981, my supervisor M.Gera.din encouraged me to prepare a course in Random Vibration for fourth and fifth year students in Aeronautics, at the