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標(biāo)題: Titlebook: Irregularity in Graphs; Akbar Ali,Gary Chartrand,Ping Zhang Book 2021 The Author(s), under exclusive license to Springer Nature Switzerlan [打印本頁]

作者: Baleful    時(shí)間: 2025-3-21 18:08
書目名稱Irregularity in Graphs影響因子(影響力)




書目名稱Irregularity in Graphs影響因子(影響力)學(xué)科排名




書目名稱Irregularity in Graphs網(wǎng)絡(luò)公開度




書目名稱Irregularity in Graphs網(wǎng)絡(luò)公開度學(xué)科排名




書目名稱Irregularity in Graphs被引頻次




書目名稱Irregularity in Graphs被引頻次學(xué)科排名




書目名稱Irregularity in Graphs年度引用




書目名稱Irregularity in Graphs年度引用學(xué)科排名




書目名稱Irregularity in Graphs讀者反饋




書目名稱Irregularity in Graphs讀者反饋學(xué)科排名





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Irregularity Strength,In this chapter, the concept of irregular graphs is looked at in another way, by considering multigraphs rather than graphs or, equivalently, by considering weighted graphs.
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Locally Irregular Graphs,g all vertices of ., if one were to consider the vertices individually and investigate the degrees of the neighbors or the structure of the subgraph induced by the neighbors of a vertex, an entirely different outcome is possible. These are the topics of the current chapter.
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Royal Colorings,ph by assigning integers of the set [.] to the edges of the graph. For each vertex ., rather than adding or averaging the colors of the edges incident with ., they assigned the set of colors of the edges incident with ., with the goal of minimizing . so that distinct vertices have distinct subsets o
作者: 骯臟    時(shí)間: 2025-3-23 18:14
Traversable Irregularity,ontains every edge of . at least once. While only Eulerian graphs contain an Eulerian circuit, every nontrivial connected graph contains an Eulerian walk. The irregularity concept here is an irregular Eulerian walk in ., which is an Eulerian walk where no two edges of . are encountered the same numb
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es. PcG proteins maintain silent states of gene expression, while the trxG of genes counteracts silencing with a chromatin opening function. These factors form multimeric complexes that act on their target chromatin by regulating post-translational modifications of histones as well as ATPdependent r
作者: Magnificent    時(shí)間: 2025-3-24 07:51
Akbar Ali,Gary Chartrand,Ping Zhang, exposure to an environment that induces susceptibility to a disease may produce similar familial aggregations when the environment is shared by family members. In general, according to the principles of (Johannsen 1903), the emergence of a disease phenotype is the result of the combined effects of
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Akbar Ali,Gary Chartrand,Ping Zhangfactors on inheritance. Epigenetic states may contribute to the penetrance of genetic polymorphisms or mutations and thereby modify inheritance patterns. This may result in non‐Mendelian inheritance of genetic traits such as observed in common human disease. The relationship between epigenetics and
作者: 榮幸    時(shí)間: 2025-3-25 00:19
Akbar Ali,Gary Chartrand,Ping Zhangfactors on inheritance. Epigenetic states may contribute to the penetrance of genetic polymorphisms or mutations and thereby modify inheritance patterns. This may result in non‐Mendelian inheritance of genetic traits such as observed in common human disease. The relationship between epigenetics and
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2191-8198 idered the first strictly theoretical paper dealing with graphs. In the 130 years since then, regular graphs have been a common and popular area of study. While regular graphs are typically considered to be graphs whose vertices all have the same degree, a more general interpretation is that of grap
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Akbar Ali,Gary Chartrand,Ping Zhangf evolution. Darwin’s inspiration originated from the practical use of family resemblance in animal breeding. Animal breeders have long known that a major obstacle to progress in genetic improvement is the interaction between familial aggregation of environments and the effects of similar genetics w
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Akbar Ali,Gary Chartrand,Ping Zhange a resource for those who have been working in human genetics or analysis of human genetic data and are studying the impact of epigenetics on inheritance. An overview will be given of the impacts of inter‐individual variation in epigenetic states from major changes (errors in genomic imprinting) th
作者: Peristalsis    時(shí)間: 2025-3-27 09:02
Akbar Ali,Gary Chartrand,Ping Zhange a resource for those who have been working in human genetics or analysis of human genetic data and are studying the impact of epigenetics on inheritance. An overview will be given of the impacts of inter‐individual variation in epigenetic states from major changes (errors in genomic imprinting) th
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Akbar Ali,Gary Chartrand,Ping Zhangf evolution. Darwin’s inspiration originated from the practical use of family resemblance in animal breeding. Animal breeders have long known that a major obstacle to progress in genetic improvement is the interaction between familial aggregation of environments and the effects of similar genetics w
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Akbar Ali,Gary Chartrand,Ping Zhangc data and are studying the impact of epigenetics on inheritance. An overview will be given of the impacts of inter‐individual variation in epigenetic states from major changes (errors in genomic imprinting) th978-1-4939-4487-3978-1-4614-8078-5
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2191-8198 d, such as degrees of vertices, graph labelings, weightings, colorings, graph structures, Eulerian and Hamiltonian properties, graph decompositions, and Ramsey-type problems.?.978-3-030-67992-7978-3-030-67993-4Series ISSN 2191-8198 Series E-ISSN 2191-8201
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Book 2021of what might be called irregularity in graphs. Here, various irregularity concepts dealing with several topics in graph theory are described, such as degrees of vertices, graph labelings, weightings, colorings, graph structures, Eulerian and Hamiltonian properties, graph decompositions, and Ramsey-type problems.?.




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