Constructing Science In Elementary Classrooms


Constructing Science In Elementary Classrooms pdf

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Constructing Science in Elementary Classrooms


Constructing Science in Elementary Classrooms

Author: Norman G. Lederman

language: en

Publisher: Allyn & Bacon

Release Date: 2004


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Solidly based on the National Science Education Standards and Benchmarks for Science Literacy, this new elementary science methods text immerses students into the context of classroom instruction through the authors' unique approach using The Teaching Cycle.The text is divided into three major sections or clusters of chapters: Goals of Science Instruction, Setting the Stage, and The Teaching Cycle. The first two sections provide the theoretical and practical foundations for instruction, while the third section provides content.Section I presents an overall view of science as a way of knowing and eventually develops an argument for why science should be included in the curriculum at all. Section II emphasizes the importance of connecting lessons and avoiding the tendency to present individual science lessons in isolation.The major content chapters comprising Section III--The Teaching Cycle (Life/Environmental Science, Physical Science, Earth and Space Science)--each incorporate the traditional topics of methods courses, e.g., demonstrations, laboratories, classroom management, assessment, developmental psychology, etc. concepts and themes common to national reforms.

Teaching Science in Elementary and Middle School


Teaching Science in Elementary and Middle School

Author: Joseph S. Krajcik

language: en

Publisher: Routledge

Release Date: 2007


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The need for a scientifically literate population that can apply scientific ideas to solve real world problems in the 21st century has never been greater. Yet a growing disconnect exists between this need and the educational capacity to prepare them. The mission of Teaching Science in Elementary and Middle School: A Project-Based Approach, 3e is to help answer this need. Like its predecessors, this new edition is organized around the guiding principles of problem-based learning: long-term, interdisciplinary, student-centered lessons that are relevant to real-world issues and activities. This teaching approach engages all young learners--regardless of culture, race, or gender--in exploring important and meaningful questions through a process of investigation and collaboration. Throughout this dynamic process, students ask questions, make predictions, design investigations, collect and analyze data, make products, and share ideas. Changes in this new edition include the following... Stronger, more explicit connections between PBS, inquiry teaching and the National Science Education Standards (NSES). The theme of establishing the relevance of science to students' lives has been expanded. It now includes attention to discrepant events, anchoring events, and experiencing phenomena in addition to its previous focus on driving questions. To help children understand that science is about explaining phenomena, a new chapter, Making Sense of Data, now follows the one on Designing and Carrying Out Investigations. It contains a section on helping children create evidence-based scientific explanations. A new section on the challenges of special needs and gifted students. The discussion of technology in science teaching have been expanded to include such new devices as wireless handhelds, cameras, cell phones, wikis and ipods. The introductory scenarios have been reworked to insure greater relevance to elementary science teaching. An accompanying Web site will offer test items and strategies to support students in problem-solving and in planning and carrying-out investigations. This text is appropriate for anyone interested in teaching elementary or middle school science using an inquiry-oriented, problem-based framework.

Elementary Science Methods


Elementary Science Methods

Author: Andrew Martin

language: en

Publisher: Wadsworth Publishing Company

Release Date: 2002-07


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This popular text is the first science methods book to truly practice what it preaches, using a constructivist approach to guide students in learning how to teach in a constructivist manner. The text includes a wealth of open-ended inquiry activities, such as "Constructing Your Ideas," for students to complete in class. These activities help students to construct their own personal conceptualizations about teaching science in the elementary school. This text also features over 170 process-oriented activities for children, including "Constructing Science in the Classroom" and "In the Schools," each keyed to grade levels, and each open-ended, so teachers can encourage children to develop and perform their own investigations. All activities are linked to National Science Education Standards for appropriate content, professional development, assessment, and teaching, and the activities contain suggestions of appropriate accompanying children's literature. Martin's text takes the approach that it is more important for children to learn how to do science than it is for them to learn about science. Children learn how to do science by mastering the scientific processes and applying them in inquiries into scientific questions. Employing the constructivist approach, teachers help children form personally-constructed meanings from their own experience and thought. The text is predicated on the reality that teachers of elementary science do not need to know a great deal of science to be good science teachers, but need to be co-inquirers with their students.