55,597 research outputs found

    The Case for Improving U.S. Computer Science Education

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    Despite the growing use of computers and software in every facet of our economy, not until recently has computer science education begun to gain traction in American school systems. The current focus on improving science, technology, engineering, and mathematics (STEM) education in the U.S. school system has disregarded differences within STEM fields. Indeed, the most important STEM field for a modern economy is not only one that is not represented by its own initial in "STEM" but also the field with the fewest number of high school students taking its classes and by far has the most room for improvement—computer science

    Gender Justice and Climate Justice: Community-based strategies to increase women’s political agency in watershed management in times of climate change

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    Socially vulnerable people, and women in particular, are disproportionately affected by global climate change because of their gendered socioeconomic roles and often their geographic location; yet they are least equipped to deal with those impacts due to their disadvantaged economic and political position. Women, however, have special contributions to make towards climate change adaptation because of gendered differences in positional knowledge of ecological and water-related conditions. To date, women have been largely underrepresented, and in the majority of cases, excluded from formal decision-making processes related to climate change mitigation and adaptation. Including women in these processes and building their capacity and resilience is required for the development of effective and gender-sensitive climate change adaptation policy. Also, preparing women for the short and long-term impacts of climate change is crucial for addressing some of the social aspects of this phenomenon and for preventing further aggravation of existing gender inequalities. This paper discusses South-North initiatives and models for community-based environmental and climate change education which are using the democratic opening provided by watershed-based governance structures to broaden grassroots participation, especially of women, in political processes. We outline the activities and results of two international projects, the Sister Watersheds project, with Brazilian and Canadian partners (2002-2008), and a Climate Change Adaptation in Africa project with partners in Canada, Kenya, Mozambique, and South Africa (2010-2013)

    International partnerships of women for sustainable watershed governance in times of climate change

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    This chapter describes and assesses collaborative research with women actively engaged in local and global community engagement processes for water management in times of global climate change. As an equity-focused response to climate change, the interrelated networks and initiatives described in the chapter involve organizations and individuals in Brazil, Mozambique, South Africa, Kenya, and Canada. These collaborations are focused on strengthening low-income women's voices, and legitimizing their knowledge and action within water management institutions and processes. The chapter draws from what people learned through two international projects, the Sister Watersheds project with Canadian and Brazilian partners, and a Climate Change Adaptation in Africa project with partners in Canada, Kenya, Mozambique, and South Africa. The methods and approach of the Sister Watersheds project proved to be applicable to climate change education and organizing in Canada as well as in Brazil. The chapter summarizes that women are working together on climate education and water governance, helping to inspire and generate related strategies.This research was supported by the International Development Research Centre, grant number IDRC GRANT NO. 106002-00

    Developing research capacity in the social sciences: a professionality-based model

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    It is argued in this article that the shortcomings of social science research stem fundamentally from the lack of a developmentalist culture, which manifests itself by researchers’ inadequate interest and participation in continuing professional development. Yet institutional research leaders also have a key role in increasing research capacity. They need to be specific about precisely what sort of development they want to occur: what specific skills need to be developed, and what kinds of output they are encouraging. These will be incorporated into their visions of institutional research activity and achievement, which must be communicated clearly to those for whose development they are responsible. What is proposed is a model of institutionally-based professional development centred around the notion of ‘extended’ professionality, and from which developmentalist research cultures are likely to emerge

    Reviews

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    Researching into Teaching Methods in Colleges and Universities by Clinton Bennett, Lorraine Foreman‐Peck and Chris Higgins, London: Kogan Page, 1996. ISBN: 0–7494–1768–4, 136 (+ vii) pages, paperback. £14.99

    Research and Education in Computational Science and Engineering

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    Over the past two decades the field of computational science and engineering (CSE) has penetrated both basic and applied research in academia, industry, and laboratories to advance discovery, optimize systems, support decision-makers, and educate the scientific and engineering workforce. Informed by centuries of theory and experiment, CSE performs computational experiments to answer questions that neither theory nor experiment alone is equipped to answer. CSE provides scientists and engineers of all persuasions with algorithmic inventions and software systems that transcend disciplines and scales. Carried on a wave of digital technology, CSE brings the power of parallelism to bear on troves of data. Mathematics-based advanced computing has become a prevalent means of discovery and innovation in essentially all areas of science, engineering, technology, and society; and the CSE community is at the core of this transformation. However, a combination of disruptive developments---including the architectural complexity of extreme-scale computing, the data revolution that engulfs the planet, and the specialization required to follow the applications to new frontiers---is redefining the scope and reach of the CSE endeavor. This report describes the rapid expansion of CSE and the challenges to sustaining its bold advances. The report also presents strategies and directions for CSE research and education for the next decade.Comment: Major revision, to appear in SIAM Revie

    Applications of computer communications in education.

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    Applications of computer communications can be used in many ways in education. An overview is given of a number of categories of computer communications applications in learning-related activities. Particular attention is given to a new type of system called a course-support environment. In this type of system a database is integrated with Web-based tools and applications, and used to generate a course-support environment accessed via a standard Web browser. Some examples are given. The article moves on to an overview of various issues confronting the acceptance of computer communication systems in educational settings, and indicates some of the ways in which computer communications engineers will have to deal with those issue
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