Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability Model

Nobelist TD Lee scientist cooperation network (TDLSCN) and their innovation ability are studied. It is found that the TDLSCN not only has the common topological properties both of scale-free and small-world for a general scientist cooperation networks, but also appears the creation multiple-peak phe...

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Main Authors: Jin-Qing Fang, Qiang Liu
Format: Article
Language:English
Published: Wiley 2013-01-01
Series:Discrete Dynamics in Nature and Society
Online Access:http://dx.doi.org/10.1155/2013/478353
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author Jin-Qing Fang
Qiang Liu
author_facet Jin-Qing Fang
Qiang Liu
author_sort Jin-Qing Fang
collection DOAJ
description Nobelist TD Lee scientist cooperation network (TDLSCN) and their innovation ability are studied. It is found that the TDLSCN not only has the common topological properties both of scale-free and small-world for a general scientist cooperation networks, but also appears the creation multiple-peak phenomenon for number of published paper with year evolution, which become Nobelist TD Lee’s significant mark distinguished from other scientists. This new phenomenon has not been revealed in the scientist cooperation networks before. To demonstrate and explain this new finding, we propose a theoretical model for a nature scientist and his/her team innovation ability. The theoretical results are consistent with the empirical studies very well. This research demonstrates that the model has a certain universality and can be extended to estimate innovation ability for any nature scientist and his/her team. It is a better method for evaluating scientist innovation ability and his/her team for the academic profession and is of application potential.
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issn 1026-0226
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publishDate 2013-01-01
publisher Wiley
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series Discrete Dynamics in Nature and Society
spelling doaj-art-4a097de850934bc198cc2eec5f8b86692025-08-20T03:20:11ZengWileyDiscrete Dynamics in Nature and Society1026-02261607-887X2013-01-01201310.1155/2013/478353478353Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability ModelJin-Qing Fang0Qiang Liu1China Institute of Atomic Energy, Beijing 102413, ChinaChina Institute of Atomic Energy, Beijing 102413, ChinaNobelist TD Lee scientist cooperation network (TDLSCN) and their innovation ability are studied. It is found that the TDLSCN not only has the common topological properties both of scale-free and small-world for a general scientist cooperation networks, but also appears the creation multiple-peak phenomenon for number of published paper with year evolution, which become Nobelist TD Lee’s significant mark distinguished from other scientists. This new phenomenon has not been revealed in the scientist cooperation networks before. To demonstrate and explain this new finding, we propose a theoretical model for a nature scientist and his/her team innovation ability. The theoretical results are consistent with the empirical studies very well. This research demonstrates that the model has a certain universality and can be extended to estimate innovation ability for any nature scientist and his/her team. It is a better method for evaluating scientist innovation ability and his/her team for the academic profession and is of application potential.http://dx.doi.org/10.1155/2013/478353
spellingShingle Jin-Qing Fang
Qiang Liu
Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability Model
Discrete Dynamics in Nature and Society
title Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability Model
title_full Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability Model
title_fullStr Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability Model
title_full_unstemmed Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability Model
title_short Nobelist TD LEE Scientist Cooperation Network and Scientist Innovation Ability Model
title_sort nobelist td lee scientist cooperation network and scientist innovation ability model
url http://dx.doi.org/10.1155/2013/478353
work_keys_str_mv AT jinqingfang nobelisttdleescientistcooperationnetworkandscientistinnovationabilitymodel
AT qiangliu nobelisttdleescientistcooperationnetworkandscientistinnovationabilitymodel