Doctoral students on the university–industry interface: a review of the literature

2009 ◽  
Vol 58 (5) ◽  
pp. 637-651 ◽  
Author(s):  
Taran Thune
Author(s):  
Pedro Ponce ◽  
Ken Polasko ◽  
Arturo Molina

Some universities in the United States are leading technology transfer by their many close partnerships with government and industry. This has benefited them financially and by enhancing their research reputation. Patent-based intellectual property is a determinant factor, so an adequate cost-aware model must be derived to understand the process completely. This chapter presents the design and results of an artificial neural network (ANN) which relates the patent cost and the primary inputs of the process to model performance. Such inputs are invention disclosure, new patents issued, U. S. patents issued, licenses and optional executed, and other major agreements. A prediction of patent's cost could help a technology transfer office decide over the research to be patented but also to evaluate cost benefits. In addition, an integral solution is proposed where the positions of doctoral students and postdocs are defined. Overall, generating high quality invention disclosures is improved based on a more effective relationship between universities and industries.


2020 ◽  
Author(s):  
Fedja Netjasov

"Introduction to Risk and Safety of Air Navigation" is an authorized script compiled on the basis of the curriculum of the course "Introduction to Risk and Safety of Air Navigation" which is taught in undergraduate studies at the University of Belgrade - Faculty of Transport and Traffic Engineering. The scripts are primarily intended for students of undergraduate (bachelor) studies at the Department of Air Transport and Traffic at the University of Belgrade - Faculty of Transport and Traffic Engineering. Scripts can be useful to both master's and doctoral students at the University of Belgrade - Faculty of Transport and Traffic Engineering, especially those who have not completed undergraduate studies at the Department of Air Transport and Traffic. They can also be useful to air transport and aeronautical engineers in order to expand and update knowledge in the field of air navigation safety. The material presented in these scripts relates mainly to civil aviation and is largely based on international standards, recommended practices, regulations and documents which deal with issues related to air navigation safety. As these standards, regulations and documents are subject to frequent changes and alterations, users of these scripts are advised to also use the original (updated) documents, which are listed in the references, in order to take into account any changes that have occurred after the release of the scripts.


2021 ◽  
Vol 13 (8) ◽  
pp. 4532
Author(s):  
Rumpa Roy ◽  
Hesham El Marsafawy

Universities foster a collaboration with industry with their commitment towards society. Corporate social responsibility (CSR) practices of organizations facilitate implementation of the recognition of prior learning (RPL) in higher education, while creating long-term opportunities for sustainable development. The researchers of this study come from two different disciplines, and aim to embed sustainable development strategies for transforming education by utilizing the capacity of educators and industry professionals, while also contributing to the community and economy. The researcher with a specialization in economics identified the well-being of the community and economy, and another researcher with a design and ergonomics background brought the concept of service design. Results of the conducted surveys imply that a skill gap exists in the labor market and participants from the community are interested in receiving hands on training from the industry. The researchers introduce a model focusing on the significance and implementation of RPL, allowing youth and adults to accumulate credit through non-formal and informal learning experiences. The model reflects how the university assesses the current skills and needs of the target communities, how they are communicated to industry by identifying potential areas of development, how industry responds to the needs by providing training, and how the university acknowledges prior learning and promotes potential candidates to contribute towards industry.


2020 ◽  
pp. 107780042091889
Author(s):  
Erin Leach

This autoethnographic poetry collection provides an entry into the socialization of part-time doctoral students by centering the lived experience of the author, a part-time doctoral student employed full-time at the university where she studies. In the writing of this poetry collection, the author sought to enter into conversation with the doctoral socialization literature and to uncover the various parts of her fractured identity. Through an examination of her own fractured identity, the author engages with the places where scholarly identity formation is stalled in part-time doctoral students especially in comparison with their full-time peers and considers affective dimensions of the work of scholarly identity formation.


1995 ◽  
Vol 9 (5) ◽  
pp. 285-292 ◽  
Author(s):  
Jay Mitra ◽  
Piero Formica

This article analyses the behaviour of ‘learning’ companies and ‘entrepreneurial’ universities in the context of the territorial and business ecosystems of innovation in which they are involved. Against a background of the fundamental differences between the higher education and the commercial sector, and the history of university—industry cooperation in Europe, the characteristics of territorial ecosystems for innovation (TEIs) are set out and the holistic, networking and interactive models of knowledge and technology transfer are discussed. This analysis provides a conceptual framework for the successful development of territorial ecosystems of innovation which are identified as crucial for future successful European socio-economic development. As concrete examples of activities which contribute towards this end, the authors offer brief case studies of the Economic Development Unit and Innovation Centre at the University of North London and the London Technopole Initiative.


2021 ◽  
pp. 314-336
Author(s):  
Jizhen Li ◽  
Ximing Yin ◽  
Subrina Shen

Science-based innovation in universities and diffusion through university-industry linkages are the keys to strengthening national innovation capability, especially for emerging markets. This chapter provides a critical overview of China’s innovation and technology transfer between the university and industry in the context of globalization and the new industrial revolution. By doing this, the chapter attempts to provide critical insights for relevant stakeholders—whether they be researchers, innovators, entrepreneurs, government officials, investors, or international organizations—in China’s development, innovation, and technology transfer. The chapter illustrates three aspects related to China’s innovation and technology transfer in comparison with other major players in the field. Then it further analyzes the drivers and challenges of China’s science-based innovation and university technology transfer for understanding the future of China’s innovation and technology transfer.


2018 ◽  
Vol 31 (3) ◽  
pp. 251-261
Author(s):  
Shaul Katzir

Historians, philosophers, and physicists portray the 1920s and 1930s as a period of major theoretical breakthrough in physics, quantum mechanics, which led to the expansion of physics into the core of the atom and the growth and strengthening of the discipline. These important developments in scientific inquiry into the micro-world and light have turned historical attention away from other significant historical processes and from other equally important causes for the expansion of physics. World War II, on the other hand, is often seen as the watershed moment when physics achieved new levels of social and technical engagement at a truly industrial scale. Historians have shown that military interests and government funding have shaped physics to unprecedented degree, and according to some, to the extent of discontinuity with earlier practices of research (Forman 1987; Kevles 1990; Kaiser 2002). In this vein, Stuart Leslie wrote, “Nothing in the prewar experience fully prepared academic scientists and their institutions for the scale and scope of a wartime mobilization that would transform the university, industry, and the federal government and their mutual interrelationships” (Leslie 1993, 6). While one can never befullyready for novelties, the contributors to this issue show that developments in interwar physics did prepare participants for their cold war interactions with industry and government.


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