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"Science-Study and teaching (Elementary)"
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How Students Learn
by
Bransford, John D.
,
National Research Council (U.S.). committee on how people learn, a targeted report for teachers
,
Donovan, Suzanne M.
in
Class Activities
,
Classroom management
,
Curriculum Development
2004,2005
How Students Learn: Science in the Classroom builds on the discoveries detailed in the best-selling How People Learn . Now these findings are presented in a way that teachers can use immediately, to revitalize their work in the classroom for even greater effectiveness.
Organized for utility, the book explores how the principles of learning can be applied in science at three levels: elementary, middle, and high school. Leading educators explain in detail how they developed successful curricula and teaching approaches, presenting strategies that serve as models for curriculum development and classroom instruction. Their recounting of personal teaching experiences lends strength and warmth to this volume.
This book discusses how to build straightforward science experiments into true understanding of scientific principles. It also features illustrated suggestions for classroom activities.
How Students Come to Be, Know, and Do
by
Herrenkohl, Leslie Rupert
,
Mertl, Véronique
in
Case studies
,
City children
,
City children -- Education (Elementary) -- United States -- Case studies
2010
Studies of learning are too frequently conceptualized only in terms of knowledge development. Yet it is vital to pay close attention to the social and emotional aspects of learning in order to understand why and how it occurs. How Students Come to Be, Know, and Do builds a theoretical argument for and a methodological approach to studying learning in a holistic way. The authors provide examples of urban fourth graders from diverse cultural and linguistic backgrounds studying science as a way to illustrate how this model contributes to a more complete and complex understanding of learning in school settings. What makes this book unique is its insistence that to fully understand human learning we have to consider the affective-volitional processes of learning along with the more familiar emphasis on knowledge and skills.
Next Generation Science Standards
2013
Next Generation Science Standards identifies the science all K-12 students should know. These new standards are based on the National Research Council's A Framework for K-12 Science Education . The National Research Council, the National Science Teachers Association, the American Association for the Advancement of Science, and Achieve have partnered to create standards through a collaborative state-led process. The standards are rich in content and practice and arranged in a coherent manner across disciplines and grades to provide all students an internationally benchmarked science education.
The print version of Next Generation Science Standards complements the nextgenscience.org website and:
Provides an authoritative offline reference to the standards when creating lesson plans
Arranged by grade level and by core discipline, making information quick and easy to find
Printed in full color with a lay-flat spiral binding
Allows for bookmarking, highlighting, and annotating
Dialogical Argumentation and Reasoning in Elementary Science Classrooms
by
Roth, Wolff-Michael
,
Kim, Mijung
in
Science-Study and teaching (Elementary)
,
Science-Study and teaching (Elementary)-Methodology
2018
Dialogical Argumentation and Reasoning in Elementary Science Classrooms explores how argumentation emerges and develops in and from classroom interactions by focusing on thinking and reasoning through/in relations with others and the learning environment.
Systems for state science assessment
by
National Research Council (U.S.). Committee on Test Design for K-12 Science Achievement
,
Wilson, Mark R.
,
Bertenthal, Meryl W.
in
Academic Standards
,
Educational Legislation
,
Elementary Secondary Education
2006,2005
In response to the No Child Left Behind Act of 2001 (NCLB), Systems for State Science Assessment explores the ideas and tools that are needed to assess science learning at the state level. This book provides a detailed examination of K-12 science assessment: looking specifically at what should be measured and how to measure it.
Along with reading and mathematics, the testing of science is a key component of NCLB-it is part of the national effort to establish challenging academic content standards and develop the tools to measure student progress toward higher achievement. The book will be a critical resource for states that are designing and implementing science assessments to meet the 2007-2008 requirements of NCLB.
In addition to offering important information for states, Systems for State Science Assessment provides policy makers, local schools, teachers, scientists, and parents with a broad view of the role of testing and assessment in science education.