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This volume takes on the vital tasks of celebrating, challenging,
and attempting to move forward our understanding of equity and
diversity in science education. Organized thematically, the book
explores five key areas of science education equity research:
science education policy; globalization; context and culture;
discourse, language and identity; and leadership and social
networking. Chapter authors -- emerging to established US science
education scholars -- present their latest research on how to make
science interesting and accessible to all students. The volume
includes international voices as well: Scholars from around the
world crafted responses to each section. Together, authors and
respondents attempt to refine our methods for examining equity
issues across classrooms, schools, and policies, and deepen our
understanding of ways to promote equity and acknowledge diversity
in science classrooms. Moving the Equity Agenda Forward is endorsed
by NARST: A Worldwide Organization for Improving Science Teaching
and Learning Through Research. The volume gains authority from the
fact that it was edited by one current and four former chairs of
NARST's Equity and Ethics Committee.
This volume takes on the vital tasks of celebrating, challenging,
and attempting to move forward our understanding of equity and
diversity in science education. Organized thematically, the book
explores five key areas of science education equity research:
science education policy; globalization; context and culture;
discourse, language and identity; and leadership and social
networking. Chapter authors -- emerging to established US science
education scholars -- present their latest research on how to make
science interesting and accessible to all students. The volume
includes international voices as well: Scholars from around the
world crafted responses to each section. Together, authors and
respondents attempt to refine our methods for examining equity
issues across classrooms, schools, and policies, and deepen our
understanding of ways to promote equity and acknowledge diversity
in science classrooms. Moving the Equity Agenda Forward is endorsed
by NARST: A Worldwide Organization for Improving Science Teaching
and Learning Through Research. The volume gains authority from the
fact that it was edited by one current and four former chairs of
NARST's Equity and Ethics Committee.
The achievement gaps in science and the under-representation of
minorities in science-related fields have long been a concern of
the nation. This book examines the roots of this problem by
providing a comprehensive, 'state of the field' analysis and
synthesis of current research on science education for minority
students. Research from a range of theoretical and methodological
perspectives is brought to bear on the question of how and why our
nation's schools have failed to provide equitable learning
opportunities with all students in science education. From this
wealth of investigative data, the authors propose a research agenda
for the field of science education - identifying strengths and
weaknesses in the literature to date as well as the most urgent
priorities for those committed to the goals of equity and
excellence in science education.
Maybe you have a good grasp of disciplinary core ideas and science
and engineering practices-critical parts of the Next Generation
Science Standards-but you are looking for more resources about
integrating crosscutting concepts (CCCs). Or maybe you understand
CCCs but want to know more about how to make them part of your
students' toolkit for exploring science phenomena or engineering
problems, both now and in the future. Regardless of your needs,
Crosscutting Concepts is your guide. It shows how to design and
implement three-dimensional instruction for all students by
understanding the potential of CCCs to strengthen science and
engineering teaching and learning. Crosscutting Concepts helps you
do the following: Grasp the foundational issues that undergird
crosscutting concepts. You'll find out how CCCs can change your
instruction, engage your students, and broaden access and inclusion
of all students into your science classroom. Gain in-depth insights
into individual crosscutting concepts. You'll learn how to use each
CCC across disciplines, understand the challenges students face in
learning CCCs, and adopt exemplary teaching strategies. Discover
how CCCs can strengthen the way you teach key topics in science.
These topics include the nature of matter, plant growth, and
weather and climate, as well as engineering design. Understand
related implications for science teaching. These topics include
student assessment and teacher professional collaboration.
Throughout Crosscutting Concepts, vignettes drawn from the authors'
own classroom experiences will help you put theory into practice.
Instructional Applications show how CCCs can strengthen your
planning. Classroom Snapshots feature practical ways to use CCCs in
discussions and lessons. Useful for teachers at all grade levels,
this book will enrich your own understanding while showing you how
to use CCCs for both classroom teaching and real-world problem
solving.
The achievement gaps in science and the under-representation of
minorities in science-related fields have long been a concern of
the nation. This book examines the roots of this problem by
providing a comprehensive, 'state of the field' analysis and
synthesis of current research on science education for minority
students. Research from a range of theoretical and methodological
perspectives is brought to bear on the question of how and why our
nation's schools have failed to provide equitable learning
opportunities with all students in science education. From this
wealth of investigative data, the authors propose a research agenda
for the field of science education - identifying strengths and
weaknesses in the literature to date as well as the most urgent
priorities for those committed to the goals of equity and
excellence in science education.
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