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The future of learning depends absolutely on the future of teaching. In this latest and most important collaboration, Andy Hargreaves and Michael Fullan show how the quality of teaching is captured in a compelling new idea: the professional capital of every teacher working together in every school. Speaking out against policies that result in a teaching force that is inexperienced, inexpensive, and exhausted in short order, these two world authorities--who know teaching and leadership inside out--set out a groundbreaking new agenda to transform the future of teaching and public education. Ideas-driven, evidence-based, and strategically powerful, Professional Capital combats the tired arguments and stereotypes of teachers and teaching and shows us how to change them by demanding more of the teaching profession and more from the systems that support it. This is a book that no one connected with schools can afford to ignore. This book features: (1) a powerful and practical solution to what ails American schools; (2) Action guidelines for all groups--individual teachers, administrators, schools and districts, state and federal leaders; (3) a next-generation update of core themes from the authors' bestselling book, "What's Worth Fighting for in Your School?" [This book was co-published with the Ontario Principals' Council.].
This book examines recent changes in media education and in young people’s lives, and provides an accessible set of principles on which the media curriculum should be based, with a clear rationale for pedagogic practice. David Buckingham is one of the leading international experts in the field - he has more than twenty years’ experience in media education as a teacher and researcher. This book takes account of recent changes both in the media and in young people’s lives, and provides an accessible and cogent set of principles on which the media curriculum should be based. Introduces the aims and methods of media education or 'media literacy'. Includes descriptions of teaching strategies and summaries of relevant research on classroom practice. Covers issues relating to contemporary social, political and technological developments.
Exemplary stories of innovation from around the world In an age of rising inequality, getting a good education increasingly separates the haves from the have nots. In countries like the United States, getting a good education is one of the most promising routes to upper-middle-class status, even more so than family wealth. Experts predict that by 2030, 825 million children will reach adulthood without basic secondary-level skills, and it will take a century for the most marginalized youth to achieve the educational levels that the wealthiest enjoy today. But these figures do not even account for the range of skills and competencies needed to thrive today in work, citizenship, and life. In a world where the ability to manipulate knowledge and information, think critically, and collaboratively solve problems are essential to thrive, access to a quality education is crucial for all young people. In Leapfrogging Inequality, researchers chart a new path for global education by examining the possibility of leapfrogging—harnessing innovation to rapidly accelerate educational progress—to ensure that all young people develop the skills they need for a fast-changing world. Analyzing a catalog of nearly 3,000 global education innovations, the largest such collection to date, researchers explore the potential of current practices to enable such a leap. As part of this analysis, the book presents an evidence-based framework for getting ahead in education, which it grounds in the here-and-now by narrating exemplary stories of innovation from around the world. Together, these stories and resources will inspire educators, investors, leaders of nongovernmental organizations, and policymakers alike to rally around a new vision of educational progress—one that ensures we do not leave yet another generation of young people behind.
Personalized Learning: A Guide for Engaging Students with Technology is designed to help educators make sense of the shifting landscape in modern education. While changes may pose significant challenges, they also offer countless opportunities to engage students in meaningful ways to improve their learning outcomes. Personalized learning is the key to engaging students, as teachers are leading the way toward making learning as relevant, rigorous, and meaningful inside school as outside and what kids do outside school: connecting and sharing online, and engaging in virtual communities of their own Renowned author of the Heck: Where the Bad Kids Go series, Dale Basye, and award winning educator Peggy Grant, provide a go-to tool available to every teacher today—technology as a way to ‘personalize’ the education experience for every student, enabling students to learn at their various paces and in the way most appropriate to their learning styles.
This booklet includes the full text of the ISTE Standards for Students, along with the Essential Conditions, profiles and scenarios.
Emerging technologies in education are dramatically reshaping the way we teach, learn, and create meaning—both formally and informally. The use of emerging technologies within educational contexts requires new methodological approaches to teaching, learning, and educational research. This leads educational technology developers, researchers, and practitioners to engage in the creation of diverse digital learning tools that can be used in a wide range of learning situations and scenarios. Ultimately, the goal of today's digital learning experiences includes situational experiences wherein learners and teachers symbiotically enroll in meaning-making processes. Discussion, critical reflection, and critique of these emerging technologies, tools, environments, processes, and practices require scholars to involve themselves in critical conversation about the challenges and promises afforded by emerging technologies and to engage in deliberate thinking about the critical aspects of these emerging technologies that are drastically reshaping education. The Handbook of Research on Global Education and the Impact of Institutional Policies on Educational Technologies deepens this discussion of emerging technologies in educational contexts and is centered at the intersection of educational technology, learning sciences, and socio-cultural theories. This book engages a critical conversation that will further the discussion about the pedagogical potential of emerging technologies in contemporary classrooms. Covering topics such as communication networks, online learning environments, and preservice teacher education, this text is an essential resource for educational professionals, preservice teachers, professors, teachers, students, and academicians.
Currently, many states are adopting the Next Generation Science Standards (NGSS) or are revising their own state standards in ways that reflect the NGSS. For students and schools, the implementation of any science standards rests with teachers. For those teachers, an evolving understanding about how best to teach science represents a significant transition in the way science is currently taught in most classrooms and it will require most science teachers to change how they teach. That change will require learning opportunities for teachers that reinforce and expand their knowledge of the major ideas and concepts in science, their familiarity with a range of instructional strategies, and the skills to implement those strategies in the classroom. Providing these kinds of learning opportunities in turn will require profound changes to current approaches to supporting teachers' learning across their careers, from their initial training to continuing professional development. A teacher's capability to improve students' scientific understanding is heavily influenced by the school and district in which they work, the community in which the school is located, and the larger professional communities to which they belong. Science Teachers' Learning provides guidance for schools and districts on how best to support teachers' learning and how to implement successful programs for professional development. This report makes actionable recommendations for science teachers' learning that take a broad view of what is known about science education, how and when teachers learn, and education policies that directly and indirectly shape what teachers are able to learn and teach. The challenge of developing the expertise teachers need to implement the NGSS presents an opportunity to rethink professional learning for science teachers. Science Teachers' Learning will be a valuable resource for classrooms, departments, schools, districts, and professional organizations as they move to new ways to teach science.
Explains how to better evaluate professional development in order to ensure that it increases student learning, providing questions for accurate measurement of professional development and showing how to demonstrate results and accountability.
This hearing before the Senate Committee on Health, Education, Labor, and Pensions on examining legislation authorizing funds for the Elementary Secondary Education Act, focusing on educational technology programs, contains statements by: James M Jeffords, Chairman, Committee on Health, Education, Labor, and Pensions; Barbara Means, Assistant Director, Center for Technology in Learning, SRI International, Menlo Park, California; Phil Hyjek, School Information Technology Specialist, Vermont Institute for Science, Math, and Technology, Waterbury Center; Patty Murray, Senator from Washington State; Jeff Bingaman, Senator from New Mexico; Ervin Duggan, President, Public Broadcasting Service (PBS), Alexandria, Virginia; Daniel Hogan, participant, PBS Mathline Program, Cincinnati, Ohio; Inabeth Miller, President, the Jason Foundation for Education, Waltham, Massachusetts, accompanied by Georgene Lytle, third grade teacher, Wooster, Ohio; Michael Pitroff, Project Director, Baltimore Learning Community, Baltimore, Maryland; and Carmen Gonzales, Director, Regional Educational Technology Assistance Project, New Mexico State University, Las Cruces, New Mexico. (MES)