中国人文社会科学核心期刊Journal of East China Normal University(Educationa ›› 2025, Vol. 43 ›› Issue (8): 118-128.doi: 10.16382/j.cnki.1000-5560.2025.08.009
Donghai Zhang
Online:2025-08-01
Published:2025-07-31
Donghai Zhang. The Shift of American Federal Science and Technology Policy and the Rise and Development of Research Universities in Postwar Era: Thoughts on the Development of Research Universities in China[J]. Journal of East China Normal University(Educationa, 2025, 43(8): 118-128.
| 储昭根. (2023). 范式转换: 中美关系的新态势、新定位. 亚太安全与海洋研究, (5), 104- 124. | |
| 彼得∙J. 维斯特维克. (2023).国家实验室:美国体制中的科学(1947-1974)(钟扬 等,译). 上海:上海科学技术出版社. | |
| 国家统计局社会科技文化产业统计司,科学技术部战略规划司.(2024) .中国科技统计年鉴2024. 北京:中国统计出版社. | |
| 胡家强, 司羽嘉. (2019). 美国科技成果转化立法的演进及其对我国的启示. 中国海洋大学学报, (3), 115- 120. | |
| 胡羚, 邓少慧, 李妃养. (2021). 不同时期美国科技创新政策的变化与特点. 科技创新发展战略研究, (3), 54- 63. | |
| 黄忠. (2022). “冷战”视角下的中美“新冷战”. 国际论坛, (2), 76- 99. | |
| 李昊,徐源.(2024). 国家使命:美国国家实验室科技创新. 北京:清华大学出版社. | |
| 徐峰. (2015). 美国政府科技创新资助机构的发展与思考. 科技管理研究, (23), 1- 4,24. | |
| 徐示波, 贾敬敦, 仲伟俊. (2022). 国家战略科技力量体系化研究. 中国科技论坛, (3), 1- 8. | |
| 杨九斌. (2018). 卓越中的艰难——《拜杜法案》后美国研究型大学产学合作关系嬗变. 外国教育研究, (7), 3- 15. | |
| 115th Congress. (2018). H. R. 5841 - Foreign Investment Risk Review Modernization Act of 2018. https://www.congress.gov/bill/115th-congress/house-bill/5841/text. | |
| 117th Congress. (2022). H. R. 4346 - CHIPS and Science Act. https://www.congress.gov/bill/117th-congress/house-bill/4346. | |
| 94th Congress. (1976). H. R. 10230 -Science and Technology Policy, Organization, and Priorities Act of 1976. https://www.congress.gov/bill/94th-congress/house-bill/10230. | |
| American Association for the Advancement of Science. (AAAS, 2022). Trends in Federal R&D by Function, FY 1953-2023. | |
| Bush, Vannevar. (1945). Science: The Endless Frontier. United States Government Printing Office. | |
| Chester G. Moore. (2006). Killing the Bayh-Dole Act’s Golden Goose. Tulane Journal of Technology & Intellectual Property, 8: 151—171. | |
| Chitirala, Isha & Ryan, Finn. (2025). Penn Medicine graduate programs instructed to cut Ph. D admissions by 35% due to funding uncertainty. The daily Pennsylvanian, 02/25. | |
| Compagnucci, Lorenzo & Spigarelli, Francesca. (2020). The Third Mission of the university: A systematic literature review on potentials and constraints. Technological Forecasting & Social Change, 161: 1—30. | |
| Crease, Robert P. & Catherine, Westfall. (2016). The New Big Science. Physics Today, 69. (5): 30—36. | |
| Department of Defense. (DOD,2024). FY2024 Multidisciplinary University Research Initiative ‐ Selected Projects. https://media.defense.gov/2024/Mar/08/2003409172/-1/-1/1/FY24_MURI_FINAL.PDF. | |
| Dupree A. Hunter. (1986). National Security and the Post-war Science Establishment in the United States. Nature, 323. (18): 213—216. | |
| Dupree, A. Hunter. (1957). Science in the Federal Government: A History of Policies and Activities to 1940. Cambridge, Massachusetts: The Belknap Press of Harvard University. | |
| Etzkowitz, H. & Leydesdorff, L. (1995). The triple helix – university-industry-government relations: a laboratory for knowledge-based economic development. Glycoconjugate Journal, 14 (1), 14- 19. | |
| Etzkowitz, H. & Leydesdorff, L. (1997). Universities and the global knowledge economy: a triple helix of university-industry-government relations. London: Pinter. | |
| Etzkowitz, H. & Leydesdorff, L. (1998). The Endless Transition: A "Triple Helix" of University Industry Government Relations. Minerva, 36 (3), 203- 208. | |
| Etzkowitz, H. (2008). The Triple Helix: University–industry–government innovation in action. New York and London: Routledge. | |
| Forman, Paul. (1987). Behind Quantum Electronics: National Security as Basis for Physical Research in the United States, 1940-1960. Historical Studies in the Physical and Biological Sciences, 18(1): 149—229. | |
| Geiger, Roger L. (1986). To Advance Knowledge: The Growth of American Research Universities, 1900-1940. New York & Oxford: Oxford University Press. | |
| Geiger, Roger L. (1993). Research and Relevant Knowledge: American Research Universities Since World War II. New York: Oxford University Press. | |
| Graham, Hugh Davis. (1997). The Rise of American Research Universities: Elites and Challengers in the Postwar Era. Baltimore & London: The Johns Hopkins University Press. | |
| Greenberg, Daniel S. (1967). The Politics of Pure Science. New York: The New American Library Inc. | |
| Guo, Shuyong & Li, Boran. (2020). The Myth of the New Cold War. Chinese Journal of International Review, 2(2): 1—16. | |
| Guston, David H. (2000). Between politics and science: Assuring the integrity and productivity of research. Cambridge/New York: Cambridge University Press. | |
| Hacker, N. L. & Bellmore, E. (2020). “The Trump Effect”: How Does it Impact International Student Enrollment in U. S. Colleges? Journal of Critical Thought and Praxis 10(1): 1—11. | |
| Hallonsten, Olof. (2016). Big science transformed: science, politics and organization in Europe and the United States. Switzerland: Palgrave Macmillan. | |
| Hansen, S. (2002). Innovation’s Golden Goose. The Economist, Dec. 14th. | |
| Hornig, Donald F. (1965). Universities and Federal Science Policies. Science, 150 (3698), 847- 851. | |
| Kaghan, William N. & Barnett, Gerald B. (1997). "The Desktop Model of Innovation in Digital Media, " pp. 71-81. In Etzkowitz, Henry & Leydesdorff, Loet (eds.) Universities and the Global Knowledge Economy: A Triple Helix of University-Industry-Government Relations. London: Cassell Academic. | |
| Kaiser, David (2002). Cold War requisitions, scientific manpower, and the production of American physicists after World War II. Historical Studies in the Physical and Biological Sciences, 33(1): 131—159. | |
| Kevles, Daniel J. (1997). Big Science and Big Politics in the United States: Reflections on the Death of the SSC and the Life of the Human Genome Project. Historical Studies in the Physical and Biological Sciences, 27 (2), 269- 297. | |
| Leslie, Stuart W. (1993). The Cold War and American Science: The Military-Industrial-Academic Complex at MIT and Stanford. New York: Columbia University Press. | |
| Lu, Xiyu. (2024). Analysis of Strategic Competition Between China and the United States in the New Cold War Era. Advances in Economics Management and Political Sciences, 124(1): 219—226. | |
| Montesinos, P. , Carot, J. Miguel; Martinez, Juan-Miguel & Mora, Francisco. (2008). Third Mission Ranking for World Class Universities: Beyond Teaching and Research. Higher Education in Europe, 2/3: 259—271. | |
| Moore, Chester G. (2006). Killing the Bayh-Dole Act’s Golden Goose. Tulane Journal of Technology & Intellectual Property, 8: 151—171. | |
| National Center for Science and Engineering Statistics. (NCSES, 2024). Federal obligations for research and experimental development, for DOD and HHS: FYs 2017–24. | |
| National Center for Science and Engineering Statistics. (NCSES, 2025). Federal funding for R&D, by budget function: FYs 1961–2025. | |
| National Center for Science and Engineering Statistics. (NCSES, 2022a). Federal R&D and R&D Plant Obligations by Performer, FY 1967-2021. | |
| National Center for Science and Engineering Statistics. (NCSES, 2022b). U. S. R&D Funding by Source, 1953-2022. | |
| National Center for Science and Engineering Statistics. (NCSES, 2023a). Higher education R&D expenditures, by source of funds: FYs 1953–2023. | |
| National Center for Science and Engineering Statistics(NCSES, 2023b). Total and federally financed higher education R&D expenditures, by type of R&D: FYs 1953–2023. | |
| National Science Foundation. (NSF, 2025). Master Government List of Federally Funded R&D Centers. (FFRDCs). | |
| Nelkin, Dorothy. (1972). The Military and the University: Moral Politics at M. I. T. Ithaca, NY: Cornell University Press. | |
| President’s Science Advisory Committee. (1960). Scientific Progress, the Universities, and the Federal Government. Statement by the President’s Science Advisory Committee. Washington D. C. , Nov. 15. | |
| The Royal Society & AAAS. (2025). Science diplomacy in an era of disruption. The Royal Society. | |
| Wang, Zuoyue. (1995). The Politics of Big Science in the Cold War: PSAC and the Funding of SLAC. Historical Studies in the Physical and Biological Sciences. 25(1): 329—356. | |
| Witze, Alexandra. (2025). 75% of US scientists who answered Nature poll consider leaving. Nature, 27 Mar. https://www.nature.com/articles/d41586-025-00938-y. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||