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农业科技企业创新合作网络关系对技术创新绩效的影响路径
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作者 于长宏 崔丙群 张晓雨 《科技和产业》 2024年第5期78-86,共9页
农业科技企业创新合作网络关系对企业技术创新绩效提高至关重要。同时农业科技企业可以依靠创新合作网络关系获取多样性创新知识推动企业技术创新绩效提升。构建“创新合作网络关系-知识多样性-技术创新绩效”理论模型,采用相关性分析... 农业科技企业创新合作网络关系对企业技术创新绩效提高至关重要。同时农业科技企业可以依靠创新合作网络关系获取多样性创新知识推动企业技术创新绩效提升。构建“创新合作网络关系-知识多样性-技术创新绩效”理论模型,采用相关性分析与结构方程模型对问卷数据进行统计分析。实证结果表明:农科企业创新合作网络关系与知识多样性对企业创新绩效均产生正向影响;创新合作网络对知识多样性产生正向影响;知识多样性在创新合作网络关系对技术创新绩效影响中具有中介效应。 展开更多
关键词 农业科技企业 创新合作网络关系 知识多样性 技术创新绩效
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地理接近性对高校技术创新合作及创新绩效的影响 被引量:17
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作者 刘斌 唐慧敏 +1 位作者 王玉凤 汤小莉 《研究与发展管理》 CSSCI 北大核心 2016年第1期121-131,共11页
本文基于1985—2010年国内高校合作研发的专利数据,研究了地理接近性对我国高校技术创新合作关系形成及合作创新绩效的影响.研究发现,在控制了创新所属时段、发明者数、创新所属领域、创新技术数所产生的影响之后,研究型和专业型高校合... 本文基于1985—2010年国内高校合作研发的专利数据,研究了地理接近性对我国高校技术创新合作关系形成及合作创新绩效的影响.研究发现,在控制了创新所属时段、发明者数、创新所属领域、创新技术数所产生的影响之后,研究型和专业型高校合作与专业型和专业型的高校合作相比,地理接近性对其有显著的阻碍作用.然而,在高校技术创新合作绩效方面,地理接近性却对我国高校技术创新合作创新复杂程度和创新产出质量存在正向显著影响.研究结论揭示了地理接近性对我国高校不同类型技术创新合作关系形成以及科研合作创新绩效的作用规律,为促进高校合作、提升合作创新绩效提供了启示. 展开更多
关键词 创新复杂程度 创新产出质量 地理接近性 技术创新合作关系 技术创新合作创新绩效
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基于社会网络分析的不锈钢钢筋研究核心与要点的识别 被引量:1
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作者 付瑞佳 周硕文 《工程建设与设计》 2019年第24期1-3,共3页
近年来,对不锈钢钢筋的研究不断深入。但从事不锈钢钢筋研究的人员受自身研究内容与知识储备量的限制,很难从整体的角度对不锈钢钢筋研究现状进行分析。社会网络分析可以基于关键词共现构建文献科学关系图谱,从相关研究内容的关系的角... 近年来,对不锈钢钢筋的研究不断深入。但从事不锈钢钢筋研究的人员受自身研究内容与知识储备量的限制,很难从整体的角度对不锈钢钢筋研究现状进行分析。社会网络分析可以基于关键词共现构建文献科学关系图谱,从相关研究内容的关系的角度出发,对文献进行总体研究。据此,论文基于社会网络分析,以1518篇主题为不锈钢钢筋的SCI文献为例,构建了不锈钢钢筋研究网络模型与创新合作网络模型,从而对现有不锈钢钢筋的研究内容与作者间合作关系进行了研究。 展开更多
关键词 不锈钢钢筋 关键词共现 社会网络分析 创新合作关系
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Technological Innovation Collaboration Network Evolution Simulation and Empirical Research
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作者 Yu Wenlong 《International Journal of Technology Management》 2013年第8期138-141,共4页
The technology innovation cooperation relationship of enterprises has evolved into the representation of complicated network. MATLAB software is used for computer simulation on network evolution process of technology ... The technology innovation cooperation relationship of enterprises has evolved into the representation of complicated network. MATLAB software is used for computer simulation on network evolution process of technology innovation cooperation, and Ucinet characterization analysis software is used to compute characteristic values of simulation network such as power law index of network, average route length and accumulation coefficients. It is compared with the actual network, and the simulation results are analyzed to verify the rationality of the constructed evolution model. 展开更多
关键词 technological innovation network evolution SIMULATION
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Experimental Vehicles Program Aides in Innovative Hands-on Learning Experiences
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作者 Saeed Foroudastan Brigette Prater Thompson 《Journal of Mechanics Engineering and Automation》 2014年第4期253-260,共8页
The EVP (experimental vehicles program) was created in 2004 as an umbrella program for five different undergraduate experimental vehicle design teams. These projects consist of the Solar Vehicle, Moonbuggy, Baja SAE... The EVP (experimental vehicles program) was created in 2004 as an umbrella program for five different undergraduate experimental vehicle design teams. These projects consist of the Solar Vehicle, Moonbuggy, Baja SAE (sina app engine), Formula SAE and Solar Boat. The goal of the EVP is to foster undergraduate student development through hands-on construction of experimental vehicles with the guidance of faculty mentors and partnerships with both national and international industry leaders. Each EVP project performs a vital function in the professional development of students. The projects provide a forgiving environment in which students can test their classroom knowledge in a real-world setting and learn important skills such as leadership, effective communication and working as a team member. Furthermore, the students in the EVP develop highly versatile and qualified skill sets that will allow them to fill various positions within the workplace. In the past, 90% of EVP graduates have been able to obtain highly regarded national and international positions upon graduation due to their real-world experience gained throughout their involvement in the EVP. Each year the EVP sponsors up to 60 interdisciplinary students that come together in peer-led teams to combine and expand upon their classroom knowledge in building innovative vehicles. The successes of the MTSU (Middle Tennessee State University) EVP have been recognized by becoming the national model for hands-on engineering education; helping engineering students take classroom knowledge and apply it to real-world situations. Students work to design, construct, and test novel vehicle designs for participation in national and international competitions. Due to the competitive nature of each of the events, students must use cutting edge technology and design methods in order to create the best entries possible. Often times, this means creating partnerships with industry leaders who help mentor the students from the design conception, the fabrication through the manufacturing of each vehicle. 展开更多
关键词 Innovative vehicles professional development industry partnerships.
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