Science, Technology, and Innovation

Science, Technology, and Innovation

Author: Alfred J. Watkins

Publisher: World Bank Publications

Published: 2008-01-01

Total Pages: 236

ISBN-13: 0821373811

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This book summarizes, and highlights main messages from, a February 2007 Global Forum convened by the World Bank to discuss strategies, programs, and policies for building science, technology and innovation (STI) capacity to promote sustainable growth and poverty reduction in developing countries.


Building Scientific Capacity for Development

Building Scientific Capacity for Development

Author: Great Britain: Parliament: House of Commons: Science and Technology Committee

Publisher: The Stationery Office

Published: 2012-10-26

Total Pages: 132

ISBN-13: 9780215049636

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The UK has benefitted from having strong scientific advice available to Ministers and developing nations would see a huge benefit from being able to draw on strong home-grown institutions to inform policy decisions. A previous report by the Science and Technology Committee had criticised the Government for not paying enough attention to building the science base of developing nations. While concerns remain, MPs considered that the Department for International Development had made improvements in using a more robust evidence base and developing its own in-house expertise. An important feature raised in this report is that there had to be more attention paid to ensuring that scientists, especially those trained through UK support, were facilitated in staying in their home country and utilising the skills they had acquired. More support was needed to permit scientists from developing nations to build and develop their early career within in their native country. Only then could programmes to build scientific capacity eventually become self-sustaining. UK science benefits from collaborations in developing nations and through building connections with growing economies of the world but the MPs found that current funding streams actively discourage the participation of UK scientists. The MPs recommended that exercises such as the Research Excellence Framework recognise the contribution made by these scientists beyond their publication record.


Capacity-building In Science And Technology In The Third World

Capacity-building In Science And Technology In The Third World

Author: Shahid M. Shahidullah

Publisher: Routledge

Published: 2019-02-22

Total Pages: 369

ISBN-13: 0429714408

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Traditional strategies of technical assistance, technology transfer, appropriate technology, and self-reliance for science and technology development in the Third World, cannot be successfully implemented until Third World countries improve their fundamental organization of science and technology. In order to make those improvements - a process kno


Capacity Building and Development

Capacity Building and Development

Author: Jean B. Laewen

Publisher: Nova Science Publishers

Published: 2013

Total Pages: 0

ISBN-13: 9781626183650

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In this text, the authors present current research in the study of capacity development opportunities and challenges and capacity building in education, health and capital. The topics discussed include capacity building for school improvement; unique challenges in developing capacity in rural and remote Australia; women with disabilities in urban Cambodia and vocational training; capacity building and sex workers in South-east Asia; capacity building in old industrialised regions of Europe and in non-profit organisations using blended learning as a gateway to practitioner education; and capacity development research in public health and the environment in the Caribbean.


Building Capacity for Teaching Engineering in K-12 Education

Building Capacity for Teaching Engineering in K-12 Education

Author: National Academies of Sciences, Engineering, and Medicine

Publisher: National Academies Press

Published: 2020-04-13

Total Pages: 261

ISBN-13: 0309499429

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Engineering education is emerging as an important component of US K-12 education. Across the country, students in classrooms and after- and out-of-school programs are participating in hands-on, problem-focused learning activities using the engineering design process. These experiences can be engaging; support learning in other areas, such as science and mathematics; and provide a window into the important role of engineering in society. As the landscape of K-12 engineering education continues to grow and evolve, educators, administrators, and policy makers should consider the capacity of the US education system to meet current and anticipated needs for K-12 teachers of engineering. Building Capacity for Teaching Engineering in K-12 Education reviews existing curricula and programs as well as related research to understand current and anticipated future needs for engineering-literate K-12 educators in the United States and determine how these needs might be addressed. Key topics in this report include the preparation of K-12 engineering educators, professional pathways for K-12 engineering educators, and the role of higher education in preparing engineering educators. This report proposes steps that stakeholders - including professional development providers, postsecondary preservice education programs, postsecondary engineering and engineering technology programs, formal and informal educator credentialing organizations, and the education and learning sciences research communities - might take to increase the number, skill level, and confidence of K-12 teachers of engineering in the United States.


A Framework for K-12 Science Education

A Framework for K-12 Science Education

Author: National Research Council

Publisher: National Academies Press

Published: 2012-02-28

Total Pages: 400

ISBN-13: 0309214459

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Science, engineering, and technology permeate nearly every facet of modern life and hold the key to solving many of humanity's most pressing current and future challenges. The United States' position in the global economy is declining, in part because U.S. workers lack fundamental knowledge in these fields. To address the critical issues of U.S. competitiveness and to better prepare the workforce, A Framework for K-12 Science Education proposes a new approach to K-12 science education that will capture students' interest and provide them with the necessary foundational knowledge in the field. A Framework for K-12 Science Education outlines a broad set of expectations for students in science and engineering in grades K-12. These expectations will inform the development of new standards for K-12 science education and, subsequently, revisions to curriculum, instruction, assessment, and professional development for educators. This book identifies three dimensions that convey the core ideas and practices around which science and engineering education in these grades should be built. These three dimensions are: crosscutting concepts that unify the study of science through their common application across science and engineering; scientific and engineering practices; and disciplinary core ideas in the physical sciences, life sciences, and earth and space sciences and for engineering, technology, and the applications of science. The overarching goal is for all high school graduates to have sufficient knowledge of science and engineering to engage in public discussions on science-related issues, be careful consumers of scientific and technical information, and enter the careers of their choice. A Framework for K-12 Science Education is the first step in a process that can inform state-level decisions and achieve a research-grounded basis for improving science instruction and learning across the country. The book will guide standards developers, teachers, curriculum designers, assessment developers, state and district science administrators, and educators who teach science in informal environments.