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研发团队多元性、知识分享与创新绩效关系的实证研究 被引量:29
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作者 刘宁 贾俊生 《南开管理评论》 CSSCI 北大核心 2012年第6期85-92,103,共9页
本研究基于社会分类理论和信息与决策理论,分析研发团队多元性的社会属性、信息和价值观三个不同维度对知识分享及创新绩效的影响,提出研究假设。论文利用62家高科技企业的71个研发团队的调查数据对研究假设进行了实证检验。研究结果发... 本研究基于社会分类理论和信息与决策理论,分析研发团队多元性的社会属性、信息和价值观三个不同维度对知识分享及创新绩效的影响,提出研究假设。论文利用62家高科技企业的71个研发团队的调查数据对研究假设进行了实证检验。研究结果发现,研发团队的社会属性多元性对知识分享、创新绩效具有消极的影响,而信息多元性对知识分享、创新绩效具有积极的影响,价值观多元性的影响作用不显著。此外,社会属性多元性和价值观多元性对信息多元性与知识分享的关系起到了负向的调节作用。 展开更多
关键词 研发团队 社会属性多元性 信息多元性 价值观多元性 知识分享 创新绩效
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谈高校思想政治工作网络化 被引量:1
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作者 许正海 《浙江中医学院学报》 2003年第5期75-75,共1页
关键词 高校 思想政治工作 网络化 大学生 信息内容多元性 教育理论
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Denitrification Rates and Their Controlling Factors in Streams of the Han River Basin with Different Land-Use Patterns 被引量:1
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作者 S.P.JUNG Y.J.KIM H.KANG 《Pedosphere》 SCIE CAS CSCD 2014年第4期516-528,共13页
Land-use patterns can affect various nutrient cycles in stream ecosystems, but little information is available about the effects of urban development on denitrification processes at the watershed scale. In the present... Land-use patterns can affect various nutrient cycles in stream ecosystems, but little information is available about the effects of urban development on denitrification processes at the watershed scale. In the presented study, we investigated the controlling factors of denitrification rates within the streams of the Han River Basin, Korea, with different land-use patterns, in order to enhance the effectiveness of water resource management strategies. Ten watersheds were classified into three land-use patterns (forest, agriculture and urban) using satellite images and geographic information system techniques, and in-situ denitrification rates were determined using an acetylene blocking method. Additionally, sediment samples were collected from each stream to analyze denitrifier communities and abundance using molecular approaches. In-situ denitrification rates were found to be in the order of agricultural streams (289.6 mg N20-N m-2 d-1) 〉 urban streams (157.0 mg N20-N m-2 d-1) 〉 forested streams (41.9 mg N20-N m-2 d-l). In contrast, the average quantity of denitrifying genes was the lowest in the urban streams. Genetic diversity of denitrifying genes was not affected by watershed land-use pattern, but exhibited stream-dependent pattern. More significance factors were involved in denitrification in the sites with higher denitrification rates. Multiple linear regression analysis revealed that clay, dissolved organic carbon and water contents were the main factors controlling denitrification rate in the agricultural streams, while dissolved organic carbon was the main controlling factor in the urban streams. In contrast, temperature appeared to be the main controlling factor in the forested streams. 展开更多
关键词 denitrifier communities denitrifying genes nutrient cycle stream ecosystem
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