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Connecting with Science Education, Second Edition supports pre-service teachers as they enter the professional world by connecting theory to practice. The text incorporates STEM and Indigenous Australian science knowledge; and has a balanced coverage of biological, physical and chemicalsciences, with some mathematics. With plenty of practical classroom-based activities, this new edition encourages pre-service teachers to be creative in their teaching and to stimulate curiosity about science in themselves and their students. The book provides opportunities for pre-service teachers to examine the purpose and nature of science teaching and learning, and encourages readers to reflect on and develop their own scientific literacy and knowledge. It identifies and analyses the processes underpinning scientific investigationsas an essential element for science teaching and learning.
This book provides a comprehensive overview of humanistic approaches to science. Approaches that connect students to broader human concerns in their everyday life and culture. Glen Aikenhead, an expert in the field of culturally sensitive science education, summarizes major worldwide historical findings; focuses on present thinking; and offers evidence in support of classroom practice. This highly accessible text covers curriculum policy, teaching materials, teacher orientations, teacher education, student learning, culture studies, and future research.
Lessons to begin using from the first day of school. Teachers are trained to manage misbehavior in the classroom, but receive little guidance about how to cultivate positive, prosocial behavior. With this book in hand, elementary teachers will be ready to launch the school year with confidence, using the concrete strategies in each chapter for improving students’ SEL skills in the five categories defined by CASEL (the Collaborative for Academic, Social, and Emotional Learning): communication skills, emotion management, emotional awareness, social awareness, and decision-making skills. This handy guide breaks down instruction of these skills into small, sequenced steps, making it easy to foster students’ skills from the start of school and build on them as the year progresses.
Too often in today’s science classes, students learn isolated facts but are unprepared to apply scientific thinking outside of checking off answers on standardized tests. Designing Coherent Science Education demonstrates how effective instruction, supported by research-based curriculum materials and technologies, prepares learners to use scientific principles to make sense of the world around them. Arising from the National Science Foundation-funded Delineating and Evaluating Coherent Instructional Designs for Education (DECIDE) project, this volume brings together experts in curriculum development, technology-assisted learning, diversity, teacher education, and assessment to consider strategies that will help students achieve a more integrated understanding of science. Offering important policy recommendations, this practical resource: Provides a set of design principles for the next generation of curriculum materials, both print and technology-based. Synthesizes current research on the most promising methods and models for coherent science instruction. Discusses how courses can help students interpret contemporary scientific dilemmas like global warming and personally relevant issues like health and disease. Contributors include Jane Bowyer, Allan Collins, Elizabeth A. Davis, George E. DeBoer, Joseph S. Krajcik, Roy D. Pea, and James Slotta.
The need for a scientifically literate citizenry, one that is able to think critically and engage productively in the engineering design process, has never been greater. By raising engineering design to the same level as scientific inquiry the Next Generation Science Standards’ (NGSS) have signaled their commitment to the integration of engineering design into the fabric of science education. This call has raised many critical questions...How well do these new standards represent what actually engineers do? Where do the deep connections among science and engineering practices lie? To what extent can (or even should) science and engineering practices co-exist in formal and informal educational spaces? Which of the core science concepts are best to leverage in the pursuit of coherent and compelling integration of engineering practices? What science important content may be pushed aside? This book, tackles many of these tough questions head on. All of the contributing authors consider the same core question: Given the rapidly changing landscape of science education, including the elevated status of engineering design, what are the best approaches to the effective integration of the science and engineering practices? They answered with rich descriptions of pioneering approaches, critical insights, and useful practical examples of how embodying a culture of interdisciplinarity and innovation can fuel the development of a scientifically literate citizenry . This collection of work builds traversable bridges across diverse research communities and begins to break down long standing disciplinary silos that have historically often hamstrung well-meaning efforts to bring research and practice from science and engineering together in meaningful and lasting ways.
"This book comprises a wide range of scholarly essays introducing readers to key topics and issues in science education. Science education has become a well established field in its own right, with a vast literature, and many active areas of scholarship. Science Education: An International Course Companion offers an entry point for students seeking a sound but introductory understanding of the key perspectives and areas of thinking in science education. Each account is self-contained and offers a scholarly and research-informed introduction to a particular topic, theme, or perspective, with both citations to key literature and recommendations for more advanced reading. Science Education: An International Course Companion allows readers (such as those preparing for school science teaching, or seeking more advanced specialist qualifications) to obtain a broad familiarity with key issues across the field as well as guiding wider reading about particular topics of interest. The book therefore acts as a reader to support learning across courses in science education internationally. The broad coverage of topics is such that that the book will support students following a diverse range of courses and qualifications. The comprehensive nature of the book will allow course leaders and departments to nominate the book as the key reader to support students – their core ‘course companion’ in science education."
In this era of mandated high stakes and standardized testing, teachers and schools officials find themselves struggling to meet the demands for improved student achievement. At the same time, they are also expected to teach all subjects as required by national and state curriculum standards.
Informed by the scholarship of teaching and learning (SOTL), Connected Science presents a new approach to college science education for the 21st century. This interdisciplinary approach stresses integrative learning and pedagogies that engage students through open-ended inquiry, compelling real-world questions, and data-rich experiences. Faculty from a variety of disciplines and institutions present case studies based on research in the classroom, offering insights into student learning goals and best practices in curriculum design. Synthetic chapters bring together themes from the case studies, present an overview of the connected science approach, and identify strategies and future challenges to help move this work forward.
CONNECTING LIVES AND LEARNING is a project dedicated to connecting learning to student lives, connecting teachers with the latest middle years research, and better connecting primary and secondary schools to keep students at school longer. Based in Adelaide's lower socio-economic northern urban fringe, the project helps teachers use students' everyday experience and expertise to develop new ways of teaching and learning that involve students in intellectually challenging tasks. This book tells the stories of real teachers, in real classrooms, making real attempts for change, and not always succeeding. It is a book about teachers making a difference in difficult times and tough places. But most importantly, this book reaffirms that being an educator is inherently about adopting socially just practices, building community capacity and contributing to a more socially sustainable world.