Engaging Science


Book Description

Summarizing this century's major debates over realism and the rationality of scientific knowledge, Joseph Rouse believes that these disputes oversimplify the political and cultural significance of the sciences. He provides an alternative understanding of science that focuses on practices rather than knowledge. Rouse first outlines the shared assumptions by ostensibly opposed interpretive stances toward science: scientific realism, social constructivism, empiricism, and postempiricist historical rationalism. He then advances cultural studies as an alternative approach, one that understands the sciences as ongoing patterns of situated activity whose material setting is part of practice. Cultural studies of science, the author suggests, take seriously their own participation in and engagement with the culture of science, rejecting the purported detachment of earlier philosophical or sociological standpoints. Rather, such studies offer specific, critical discussions of how and why science matters, and to whom, and how opportunites for meaningful understanding and action are transformed by scientific practices.




Engaging Science


Book Description

Summarizing this century's major debates over realism and the rationality of scientific knowledge, Joseph Rouse believes that these disputes oversimplify the political and cultural significance of the sciences. He provides an alternative understanding of science that focuses on practices rather than knowledge. Rouse first outlines the shared assumptions by ostensibly opposed interpretive stances toward science: scientific realism, social constructivism, empiricism, and postempiricist historical rationalism. He then advances cultural studies as an alternative approach, one that understands the sciences as ongoing patterns of situated activity whose material setting is part of practice. Cultural studies of science, the author suggests, take seriously their own participation in and engagement with the culture of science, rejecting the purported detachment of earlier philosophical or sociological standpoints. Rather, such studies offer specific, critical discussions of how and why science matters, and to whom, and how opportunites for meaningful understanding and action are transformed by scientific practices.




What's Your Evidence?


Book Description

With the view that children are capable young scientists, authors encourage science teaching in ways that nurture students' curiosity about how the natural world works including research-based approaches to support all K-5 children constructing scientific explanations via talk and writing. Grounded in NSF-funded research, this book/DVD provides K-5 teachers with a framework for explanation (Claim, Evidence, Reasoning) that they can use to organize everything from planning to instructional strategies and from scaffolds to assessment. Because the framework addresses not only having students learn scientific explanations but also construct them from evidence and evaluate them, it is considered to build upon the new NRC framework for K-12 science education, the national standards, and reform documents in science education, as well as national standards in literacy around argumentation and persuasion, including the Common Core Standards for English Language Arts (Common Core State Standards Initiative, 2010).The chapters guide teachers step by step through presenting the framework for students, identifying opportunities to incorporate scientific explanation into lessons, providing curricular scaffolds (that fade over time) to support all students including ELLs and students with special needs, developing scientific explanation assessment tasks, and using the information from assessment tasks to inform instruction.




The Primary STEM Ideas Book


Book Description

The Primary STEM Ideas Book is designed to promote the integrated teaching of STEM in the primary classroom by providing teachers with lesson ideas for investigations and projects. The statutory requirements of the National Curriculum for science, mathematics and design and technology are comprehensively covered through a variety of practical, stimulating and engaging activities, which have all been tried and tested in the primary classroom. The interrelationship between the STEM subjects is strongly integrated throughout, allowing children’s knowledge and skills to develop with confidence in these key subjects through activities which only require easily accessible resources generally found in the classroom. Written by subject specialists with years of classroom experience teaching STEM, each chapter contains: A rationale showing links to the National Curriculum Key subject knowledge Brief session plans Ideas for supporting higher and lower attaining children Follow up ideas to provide extra inspiration Including ‘how to’ guides and other photocopiable resources, this book is perfect for creating integrated lessons, group work and discussions relating to STEM. The Primary STEM Ideas Book provides easy to follow instructions and helps spark fresh inspiration for both new and experienced teachers in primary STEM education.




Engaging Science Policy


Book Description

Situated in education policy analysis, this book is at the cutting edge of major debates across the social sciences regarding the nature of science, qualitative/quantitative tensions, post-foundational possibilities, and the research/policy nexus. Located between «the aftermath of poststructuralism» and the «new scientism» afoot in neoliberal audit culture, the book posits an engaged social science that is accountable to complexity and the political value of not being so sure. Its insistence is to put deconstruction to work in the midst of messiness, contingency, and ambiguity. The book will be useful in courses on education, feminist policy analysis, and qualitative research across disciplines.




Engaging Students in Science Investigations Using GRC


Book Description

Engaging Students in Science Investigation Using GRC: Science Instruction Consistent with the Framework and NGSS Teachers can create a learning environment that piques student curiosity and engages learners in science investigations to make sense of phenomena. The Gather, Reason, Communicate Reasoning (GRC) method provides an effective instructional sequence consistent with the research on how students learn science. This book provides teachers of science with specific guidance and examples for how to improve science teaching and learning consistent with the vision for science education presented in the Framework, NGSS, and three-dimensional state standards.




Helping Students Make Sense of the World Using Next Generation Science and Engineering Practices


Book Description

When it’s time for a game change, you need a guide to the new rules. Helping Students Make Sense of the World Using Next Generation Science and Engineering Practices provides a play-by-play understanding of the practices strand of A Framework for K–12 Science Education (Framework) and the Next Generation Science Standards (NGSS). Written in clear, nontechnical language, this book provides a wealth of real-world examples to show you what’s different about practice-centered teaching and learning at all grade levels. The book addresses three important questions: 1. How will engaging students in science and engineering practices help improve science education? 2. What do the eight practices look like in the classroom? 3. How can educators engage students in practices to bring the NGSS to life? Helping Students Make Sense of the World Using Next Generation Science and Engineering Practices was developed for K–12 science teachers, curriculum developers, teacher educators, and administrators. Many of its authors contributed to the Framework’s initial vision and tested their ideas in actual science classrooms. If you want a fresh game plan to help students work together to generate and revise knowledge—not just receive and repeat information—this book is for you.




Science Communication Online


Book Description

Examines new genres of online science communication to further explore how boundaries between experts and nonexperts continue to shift.







Undergraduate Research in the Sciences


Book Description

Undergraduate research (UR) is widely believed to enhance the learning experience of students in science, technology, engineering, and mathematics programs. This is the first comprehensive, practical, research-based book on undergraduate research. It addresses how the benefits to UR participants arise; compares the benefits of UR with other types of educational activities or experience; the long-term value of UR; and more. Intended to assist both existing and new UR practitioners with program design and evaluation needs, the book will also be useful to the wider community of academics, policy-makers, and funders of UR programs.