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Many books will help you lose weight. But Joining the Thin Club will help you keep the weight off for good. After losing 80 pounds and going from a size 22 to a size 8, Judith Lederman has beaten the odds and stayed slim for several years. Combining her experience with the professional expertise of Larina Kase, Psy.D., Joining the Thin Club offers advice for every aspect of your new life, from handling compliments and reconciling the inner you with the new outer you, to negotiating social eating and keeping exercise interesting. All the common fears and challenges that you, as someone who is losing or has lost weight, will face are addressed. With Joining the Thin Club, you’ll learn to: - ...
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HELP IS HERE Bipolar disorder has recently been identified as one of the most misunderstood and underdiagnosed conditions affecting children -- and it is dramatically on the rise. The Ups and Downs of Raising a Bipolar Child gives parents the sound advice and expert information they need to cope with this challenging diagnosis, and shows how to provide essential care and support for a bipolar child as well as for the rest of the family.
This state-of-the art research Handbook provides a comprehensive, coherent, current synthesis of the empirical and theoretical research concerning teaching and learning in science and lays down a foundation upon which future research can be built. The contributors, all leading experts in their research areas, represent the international and gender diversity that exists in the science education research community. As a whole, the Handbook of Research on Science Education demonstrates that science education is alive and well and illustrates its vitality. It is an essential resource for the entire science education community, including veteran and emerging researchers, university faculty, graduate students, practitioners in the schools, and science education professionals outside of universities. The National Association for Research in Science Teaching (NARST) endorses the Handbook of Research on Science Education as an important and valuable synthesis of the current knowledge in the field of science education by leading individuals in the field. For more information on NARST, please visit: http://www.narst.org/.
This engaging and practical book offers science teacher educators and K-12 science teachers alike the tools to engage in a dialogic mode of collaborative action research (D-CAR), a collaborative mode of action research focused on teachers’ experiences with students, reflection upon these experiences, and peer learning. Renowned science educator Allan Feldman and co-authors from across numerous settings in K-12 science education present the theory, methodology, case studies, and practical advice to support the use of D-CAR as a means to enhance teachers’ normal practice and address the problems, dilemmas, and dissonances that science teachers must negotiate as they work to meet the needs of an increasingly diverse student population and engage with complex science teaching challenges that disproportionately affect marginalized students. The book will be of use to science teacher educators, pre-service and in-service science teachers, professional development specialists, or any science educator invested in developing creative, reflective, and thoughtful teachers.
We are all familiar with the expression “teachers’ bag of tricks.” It is fairly easy for K-12 teachers to do a quick web search, scan library shelves, and browse through journals to provide them with numerous lessons and ideas to keep their bags filled. Science teacher educators need to not only provide preservice teachers with resources to help them fill their “bags,” but also include crucial theory and pedagogy; what constitutes “minds on” lessons, not merely “hands on” activities. But where do we science methods instructors find ideas to put in our “bag of tricks” to help us with the pedagogy we teach and model? These kinds of teaching ideas are not so easy to find u...
This book aims to encourage the reading of "On the Origin of Species" and to include it in the teaching of evolution. With a comprehensive overview of the development of Darwin's theory, the volume provides relevant aspects of Darwin's life and work in connection with the broader context of his time. The historical and philosophical analysis, mirrored in the socio-cultural scope, enables the diachronic reading of the text. It is built on various sources of historians and philosophers of science and sheds fresh light on them. Its uniqueness is the broad structure that covers four parts: the pre-Darwinian concepts of species changes; some key elements of Darwin's pursuit of the causes of evolution, from his voyage on Beagle to the publication of his groundbreaking work; chapter-by-chapter analysis of the "Origin"; and subsequent developments in evolutionary thought. This book is of interest to undergraduate and graduate students, scholars in history, philosophy, and sociology of science and science education, as well as the general public.
This edited volume offers a crosscutting view of STEM and is comprised of work by scholars in science, technology, engineering, and mathematics education. It offers a view of STEM from the disciplines that comprise it, while adhering to the idea that STEM itself is an interdisciplinary treatment of all the associated disciplines in a meaningful way. This book raises and answers questions regarding the meaning of STEM education and research. This volume is divided into three sections: the first one describes the nature of the component disciplines of STEM. The next section presents work from leaders representing all STEM disciplines and deals with aspects such as K-12 and post-secondary education. The last section draws conclusions regarding the natures of the disciplines, challenges and advantages of STEM education in terms of theoretical and practical implications. The two final chapters compile arguments from the research chapters, describing themes in research results, and making recommendations for best STEM education practice, and examining areas for future research in STEM education.