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Monograph on re-orinetation of China's technology and science policy towards rapid modernization since 1976 - discusses obstacles to and institutional reforms for organization of research, available scientists and technicians, related public expenditure and international relations, trends, etc., and includes texts of student exchange and scientific cooperation agreements with the USA and new invention legislation. References.
With the death of Mao Tse-tung and the subsequent purge of the "Gang of Four," China's new pragmatic leaders have embarked on a crash program of national development known as the Four Modernizations, This program is geared to the primary objective of turning China into a major world economic and military power by the year 2000. In this book, the outgrowth of a major international conference on China's post-Maoist development, ten distinguished analysts examine one of the core issues in China's current modernization drive: the acquisition and use of modern industrial science and technology. The authors address the politics of China's technological modernization, the institutional structure of technological research, the purchase of foreign technology, constraints on technological absorption, the growth potential of China's critical energy sector, and the modernization of China's military establishment. Supplemented with brief commentaries by leading academic, government, and private sector contributors, their chapters provide an in-depth look at the process, problems, and prospects of China's widely heralded technological revolution.
The Commission asked CENTRA to 1) examine and assess national-level programs from the 1980s to the present; 2) assess linkages between China's science policy and its industrial policy; 3) assess the methods commonly employed by the PRC to support its scientific modernization through interactions with the United States and other Western entities; and 4) analyze identifiable policy linkages between the Chinese government's broader science and technology efforts and the capacities of China's defense-industrial complex. The report addresses the implications for US competitiveness by speculating on the potential for PRC science policies and programs to promote the development of an internationally-competitive national innovation system. Case studies on the semiconductor, nuclear energy, and nanotechnology sectors in China address these questions in areas relevant to the Commission's interests, while avoiding overlaps with previous and ongoing USCC research.
The Commission asked CENTRA to 1) examine and assess national-level programs from the 1980s to the present; 2) assess linkages between China's science policy and its industrial policy; 3) assess the methods commonly employed by the PRC to support its scientific modernization through interactions with the United States and other Western entities; and 4) analyze identifiable policy linkages between the Chinese government's broader science and technology efforts and the capacities of China's defense-industrial complex. The report addresses the implications for US competitiveness by speculating on the potential for PRC science policies and programs to promote the development of an internationally-competitive national innovation system. Case studies on the semiconductor, nuclear energy, and nanotechnology sectors in China address these questions in areas relevant to the Commission's interests, while avoiding overlaps with previous and ongoing USCC research.
This general report, sponsored by the Chinese Academy of Sciences, presents a panoramic scenario for China's modernization drive to 2050. It analyzes the evolution and laws governing the development of science and technology, describes the decisive impact of science and technology on the modernization process, predicts that the world is on the eve of an impending S&T revolution, and calls for China to be fully prepared for this new round of S&T advancement. Based on its detailed study of the demands on S&T innovation in China's modernization, it draws a framework for eight basic and strategic systems of socio-economic development with the support of science and technology, works out China's S&T roadmaps for the relevant eight basic and strategic systems in line with China's reality, further details S&T initiatives of strategic importance to China's modernization, and provides S&T decision-makers with comprehensive consultations for the development of S&T innovation consistent with China's reality. Supported by illustrations and tables of data, the general report provides researchers, government officials and even entrepreneurs with guidance concerning research directions, the planning process, and investment. It also serves as a preamble for the eighteen detailed field-specific reports of the committees assigned to craft roadmaps for each sphere of development. Founded in 1949, the Chinese Academy of Sciences is the nation's highest academic institution in the natural sciences. Its major responsibilities are to conduct research in basic and technological sciences, to undertake nationwide integrated surveys on natural resources and ecological environment, to provide the country with scientific data and consultations for government's decision-makings, to undertake government-assigned projects with regard to key S&T problems in the process of socio-economic development, to initiate personnel training, and to promote China's high-tech enterprises through its active engagement in these areas.
China’s modernization is viewed as a transformative revolution in the human history of modernization. As such, the Chinese Academy of Sciences (CAS) decided to give higher priority to the research on the science and technology (S&T) roadmap for priority areas in China’s modernization process. What is the purpose? And why is it? Is it a must? I think those are substantial and signifcant questions to start things forward. Significance of the Research on China’s S&T Roadmap to 2050 We are aware that the National Mid- and Long-term S&T Plan to 2020 has already been formed afer two years’ hard work by a panel of over 2000 experts and scholars brought together from all over China, chaired by Premier Wen Jiabao. Tis clearly shows that China has already had its S&T blueprint to 2020. Ten, why did CAS conduct this research on China’s S&T roadmap to 2050? In the summer of 2007 when CAS was working out its future strategic priorities for S&T development, it realized that some issues, such as energy, must be addressed with a long-term view. As a matter of fact, some strategic researches have been conducted, over the last 15 years, on energy, but mainly on how to best use of coal, how to best exploit both domestic and international oil and gas resources, and how to develop nuclear energy in a discreet way. Renewable energy was, of course, included but only as a supplementary energy.
Can Science and Technology Save China? assesses the intimate connections between science and society in China, offering an in-depth look at how an array of sciences and technologies are being made, how they are interfacing with society, and with what effects. Focusing on critical domains of daily life, the chapters explore how scientists, technicians, surgeons, therapists, and other experts create practical knowledges and innovations, as well as how ordinary people take them up as they pursue the good life. Editors Greenhalgh and Zhang offer a rare, up-close view of the politics of Chinese science-making, showing how everyday logics, practices, and ethics of science, medicine, and technology are profoundly reshaping contemporary China. By foregrounding the notion of "governing through science," and the contested role of science and technology as instruments of change, this timely book addresses important questions regarding what counts as science in China, what science and technology can do to transform China, as well as their limits and unintended consequences.
Decade of Reform: Science and technology policy in China