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  • 1
    ISBN: 9789400727489
    Language: English
    Pages: Online-Ressource (XXI, 449 p. 101 illus, online resource)
    Series Statement: Contemporary Trends and Issues in Science Education 41
    Series Statement: SpringerLink
    Series Statement: Bücher
    Parallel Title: Druckausg.
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    Keywords: Science Study and teaching ; Environmental law ; Education ; Education ; Science Study and teaching ; Environmental law ; Schulpolitik ; Naturwissenschaftlicher Unterricht ; Aufsatzsammlung ; Online-Ressource
    Abstract: Today’s youth will face global environmental changes, as well as complex personal and social challenges. To address these issues this collection of essays provides vital insights on how science education can be designed to better engage students and help them solve important problems in the world around them. Assessing Schools for Generation R (Responsibility) includes theories, research, and practices for envisioning how science and environmental education can promote personal, social, and civic responsibility. It brings together inspiring stories, creative practices, and theoretical work to make the case that science education can be reformed so that students learn to meaningfully apply the concepts they learn in science classes across America and grow into civically engaged citizens. The book calls for a curriculum that equips students with the knowledge, skills, attitudes and values to confront the complex and often ill-defined socioscientific issues of daily life. The authors are all experienced educators and top experts in the fields of science and environmental education, ecology, experiential education, educational philosophy, policy and history. They examine what has to happen in the domains of teacher preparation and public education to effect a transition of the youth of America. This exciting, informative, sophisticated and sometimes provocative book will stimulate much debate about the future direction of science education in America, and the rest of the world. It is ideal reading for all school superintendents, deans, faculty, and policymakers looking for a way to implement a curriculum that helps builds students into responsible and engaged citizens
    Description / Table of Contents: Praise for Assessing Schools for Generation R (Responsibility); Foreword; Arthur J. Stewart: Responsibility; Contents; Chapter 1: Reclaiming Community As We Rethink Assessment; Roadmap for the Book; A Mission for Readers; Part I: Generation R (Responsibility); Chapter 2: Introducing Generation R; A Cultural Norm of Social Responsibility and Activism; Baby Boomers: A Generation of Social Activism; Back to the Future: A Renewed Sense of Social Activism; Embodied Knowing and Generation R Youth; School Policy in Science Education; The Intellect of Embodied Reasoning; Note; References
    Description / Table of Contents: Chapter 3: Civic Responsibility and Science EducationA Look Back; The Common School Movement; The Movement Toward Uncommon Schools; Science Instruction in the Twenty-First Century; References; Chapter 4: Critical Civic Literacy and the Limits of Consumer-Based Citizenship; Neoliberalism and the Shift to Consumer Citizenship; Colorwashing Consumer-Citizens: Buy Green, Buy Pink; Consumer Citizenship's Dirty Hands in Science Education; Critical Civic Literacy Within Science Education; Alternatives to Consumer Citizenship: Life Beyond the Shops; Implications for Science Education Policy
    Description / Table of Contents: ReferencesChapter 5: Fostering Independence: Assessing Student Development; (Dis)Ability: Focusing on What Students Bring to Classrooms; Florida: Race to Uniformity; PISA: "A Wake-Up Call"; Minnesota: The Way We Were; Capitalizing on Kyle's Knowledge: How Teachers Can Support Generation R; Tying It All Together; References; Chapter 6: Assessing Interdependent Responsibility; Introduction; What Does Educating for Responsibility Mean? Considering Learning and Assessment Within Three Types of Responsibilities; But Don't We Need to Depend on Each Other?
    Description / Table of Contents: But Is Independent Responsibility Sufficient?Concluding Thoughts; Notes; References; Part II: Responsibility with Scientific Literacy, Environmental Literacy and Experiential Learning; Chapter 7: Thinking (Scientifically) Responsibly: The Cultivation of Character in a Global Science Education Community; A Community Worldview of Science; Actions, Character, and Scientific Responsibility; Thinking and Acting in a Pluralistic World; Science Education as a Human Activity: Shared Social Inquiry; Conscience of Craft Through Socioscientific Reasoning
    Description / Table of Contents: Fostering Responsible Scientific Thinking Through AgencyThe Formation of Character in Science Education; References; Chapter 8: Assessment of Socio-scientific Reasoning: Linking Progressive Aims of Science Education to the Realities of Modern Education; Relating This Chapter to the Previous Chapter; Socio-scientific Reasoning; Origins of the Construct; Defining the Construct; Socio-scientific Reasoning and Policy; Assessment of Socio-scientific Reasoning; Teaching for Socio-scientific Reasoning; Where We Go from Here…; Appendix: SSIQ Prompt and Questions; References
    Description / Table of Contents: Chapter 9: Assessment Across Boundaries: How High-Quality Student Work Demonstrates Achievement, Shapes Practice, and Improves Communities
    Description / Table of Contents: Chapter 1 Reclaiming Community As We Rethink Assessment By Deborah J. Tippins, Arthur J. Stewart, and Michael P. MuellerGENERATION R (RESPONSIBILITY) -- Chapter 2 Introducing Generation R By Michael P. Mueller and Rachel A. Luther -- Chapter 3 Civic Responsibility and Science Education By Paul Theobald and John Siskar -- Chapter 4 Critical Civic Literacy and the Limits of Consumer-Based Citizenship By Cori Jakubiak and Michael P. Mueller -- Chapter 5 Fostering Independence: Assessing Student Development By Danielle V. Dennis -- Chapter 6 Assessing for Interdependent Responsibility By Molly Lawrence and Rosalie Romano -- RESPONSIBILITY WITH SCIENTIFIC LITERACY, ENVIRONMENTAL LITERACY AND EXPERIENTIAL LEARNING -- Chapter 7 Thinking (Scientifically) Responsibly: The Cultivation of Character in a Global Science Education Community By Dana L. Zeidler, Marvin W. Berkowitz and Kory Bennett -- Chapter 8 Assessment of Socio-scientific Reasoning: Linking Progressive Aims of Science Education to the Realities of Modern Education By Troy D. Sadler -- Chapter 9 Assessment Across Boundaries: How High-Quality Student Work Demonstrates Achievement, Shapes Practice, and Improves Communities By Alison Rheingold, Jayson Seaman and Ron Berger -- Chapter 10 The View from the Top of the Plateau By Fred N. Finley, Brad Johnson, and Hallie Kamesch -- Chapter 11 Benefits of Elementary Environmental Education By Ryan J. Brock and David T. Crowther -- Chapter 12 Teaching Earth Smarts: Equipping the Next Generation with the Capacity to Adapt By Bryan H. Nichols -- RESPONSIBILITY WITH DIGITAL TECHNOLOGIES -- Chapter 13 Digital Technologies and Assessment in the 21st Century Schooling By Jing Lei, Ji Shen and Laurene Johnson -- Chapter 14 New Interoperable Web Tools to Facilitate Decision-making to Support Community Sustainability By Elizabeth R. Smith, Anne C. Neale, C. Richard Ziegler, and Laura E. Jackson -- Chapter 15 Is There an App For That? Connecting Local Knowledge with Scientific Literacy By George E. Glasson -- Chapter 16 Developing Collective Decision-making through Future Learning Environments By Gillian Roehrig, David Groos and S. Selcen Guzey -- Chapter 17 GameWerks Camp: Using Gaming to Foster Learning by Design By Lucas John Jensen, Gregory M. Francom, Deborah J. Tippins and Michael Orey -- Chapter 18 The Power of the Globe and Geospatial Technologies to Empower Teachers and Students in the Digital Age By Rita A. Hagevik -- RESPONSIBILITY WITH DEVELOPING LIFELONG RELATIONSHIPS -- Chapter 19 The Importance of Cultural Studies for Education: For Teachers and Policymakers in America By Barbara J. Thayer-Bacon -- Chapter 20 Culture, Environment, and Education in the Anthropocene By David A. Greenwood -- Chapter 21 Science Education in and for Turbulent Times By Kenneth Tobin -- Chapter 22 Free Choice Science Learning and Generation R By Lynn Dierking -- Chapter 23 Educating for Scientific Literacy, Citizenship, and Sustainability: Learning from Native Hawaiian Perspectives By Pauline W.U. Chinn -- Chapter 24 From Local Observations to Global Relationships By Xavier Fazio and Doug Karrow -- Chapter 25 Our Shared Forests-Ecuador and Southeast US Migratory Bird Partnership By Anne M. Shenk -- RESPONSIBILITY WITH DECISIONS, POLICYMAKING, AND LEGISLATION -- Chapter 26 Frankenstein, Monsters, and Science Education: The Need for Broad-based Educational Policy By Bradley D. Rowe -- Chapter 27 School Policy in Science Education By George E. DeBoer -- Chapter 28 Some Challenges in Planning Educational Programs for Generation R By J Myron Atkin -- Chapter 29 Re-imaging the Goals of Science Education: What Role Should Assessment Play? By Maria Rivera-Maulucci.
    Note: Description based upon print version of record
    URL: Volltext  (lizenzpflichtig)
    URL: Cover
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  • 2
    Online Resource
    Online Resource
    Dordrecht : Springer Netherlands
    ISBN: 9781402052675
    Language: English
    Pages: Online-Ressource (digital)
    Series Statement: Models and Modeling in Science Education 3
    Series Statement: SpringerLink
    Series Statement: Bücher
    Series Statement: Springer eBook Collection
    Series Statement: Humanities, Social Science and Law
    Parallel Title: Buchausg. u.d.T. Visualization
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    Keywords: Science Study and teaching ; Education ; Naturwissenschaftlicher Unterricht ; Visualisierung
    URL: Volltext  (lizenzpflichtig)
    URL: Cover
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  • 3
    Online Resource
    Online Resource
    Dordrecht : Imprint: Springer | Dordrecht : Springer Netherlands
    ISBN: 9780306475610
    Language: English
    Pages: 1 Online-Ressource(VI, 164 p.)
    Edition: 1st ed. 2002.
    Parallel Title: Erscheint auch als
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    Parallel Title: Druckausg. Fabricating Europe
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    Keywords: Political science. ; International education . ; Comparative education. ; Social sciences. ; History. ; Comparative Education ; History ; Political Science ; Social sciences ; Aufsatzsammlung ; Europa ; Pädagogik
    Abstract: Imagining Space -- Education and the European Space of Flows -- Notes towards the Definition of a European Educational Space -- Locating European Identity in Education -- Foreword -- Globalizing Space -- Reterritorializing Educational Import -- Returning to Europe -- Quality Education and Training for Tomorrow’s Europe -- Ways of Thinking about Education in Europe -- Coda: Europe, Social Space and the Politics of Knowledge -- Borderless Education.
    Abstract: Fabricating Europe has within it a core idea, a crucial but imprecise idea, that of a European educational space, which transnational governance, networks and cultural and economic projects are creating now. Yet, the perceptible creation of this contemporary space of European policy making and networking has not been a subject of study. It appears offstage in studies of national systems in which national and professional identity; political organization; policy formation and public/private markets are all viewed as contained within the borders of the state. Fabricating Europe is concerned with the new possibilities to be discerned and imagined in the European public and institutional spaces and discourses in education and the lack of impetus within the broad area of educational studies to meet the task of creating analyses and responses.
    Note: Includes index
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  • 4
    Online Resource
    Online Resource
    Dordrecht : Imprint: Springer | Dordrecht : Springer Netherlands
    ISBN: 9780306472305
    Language: English
    Pages: 1 Online-Ressource(VII, 227 p.)
    Edition: 1st ed. 2002.
    Series Statement: Contemporary Trends and Issues in Science Education 13
    Parallel Title: Erscheint auch als
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    Keywords: Science education. ; Teaching. ; Curriculums (Courses of study). ; Education—Curricula. ; Teachers—Training of. ; Science—Study and teaching. ; Education ; Curriculum planning ; Science Study and teaching ; Teachers Training of ; USA ; Lehrerbildung ; Naturwissenschaftlicher Unterricht
    Abstract: Collaboration and Apprenticeship Models -- Becoming-in-the-Classroom: Learning to Teach in/as Praxis -- Teams: A Science Learning and Teaching Apprenticeship Model -- A Problem-Based Learning Approach to Science Teacher Preparation -- Linking Schools and Universities in Partnership for Science Teacher Preparation -- The Dynamics of Collaboration in a State-Wide Professional Development Program for Cience Teachers -- Special Issues-Driven Models -- Instructional Congruence to Promote Science Learning and Literacy Development for Linguistically Diverse Students -- Gender Equity and Science Teacher Preparation -- Assessment Models that Integrate Theory and Best Practice -- New Technologies and Science Teacher Preparation -- Preparing New Teachers for Integrated-Science Classrooms -- Critical Multiculturalism and Science Teacher Education Programs -- Portraits of Professional Development Models in Science Teacher Education: A Synthesis of Perspectives and Issues.
    Abstract: 1 Wolff Michael Roth & Derrick R. Lavoie² 1 2 University of Victoria, Virtual Institute for Learning Resources The current reform in science education requires a substantive change in how science is taught. Implicit in this reform is an equally substantive change in professional devel- ment practices at all levels. (NRC, 1996,p. 56) In a continuously changing society, it is not surprising that education also undergoes continuous change. Science education is no exception, and perhaps changes are more rapid given the daily construction of new scientific knowledge. In such a c- mate of continuous change, the preparation of science teachers has to follow suit in order to be appropriate to the reforms that national organizations encourage. H- ever, whereas science teaching reform movements spawned recommendations of what teachers should know and be able to do in order for their students to concep- alize and process science (NSTA, 1997), they provide little guidance in terms of - the-classroom concrete implementation. Thus, while national science education organizations continue to refine their positions about teacher education, there is no mechanism for translating these positions and statements into science education courses that can improve the preparation and quality of p- service science teachers at both the elementary and secondary levels. (Yager & Penick, 1990. p. 670) It is therefore not surprising that there are voices that describe teacher prepa- tion as unsuccessful and as unresponsive to reform efforts (Schnur & Golby, 1995).
    Note: Includes bibliographical references and index
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  • 5
    Online Resource
    Online Resource
    Dordrecht : Imprint: Springer | Dordrecht : Springer Netherlands
    ISBN: 9780306472275
    Language: English
    Pages: 1 Online-Ressource(VIII, 148 p.)
    Edition: 1st ed. 2001.
    Series Statement: Contemporary Trends and Issues in Science Education 12
    Parallel Title: Erscheint auch als
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    Keywords: Science education. ; Assessment. ; Learning. ; Instruction. ; Education. ; Educational tests and measurements. ; Learning, Psychology of. ; Science—Study and teaching. ; Education ; Science Study and teaching ; Educational tests and measurements ; Neuseeland ; Unterrichtsforschung ; Naturwissenschaftlicher Unterricht
    Abstract: A Review of the Relevant Literature -- A Case Study of Formative Assessment -- The Characteristics of Formative Assessment -- A Model of Formative Assessment -- Cameos of Formative Assessment -- Learning and Formative Assessment -- Doing Formative Assessment.
    Abstract: Formative Assessment and Science Education documents the findings of a research project which investigated the ways in which teachers and students used formative assessment to improve the teaching and learning of science in some New Zealand classrooms. The research documented in this book used the definition of formative assessment as `the process used by teachers and students to recognise and respond to students' learning, in order to enhance that learning, during the learning'. The book contains one detailed case study from the research, as well as cameos of instances of formative assessment. The book also contains two summaries of the research findings - a model developed to describe the process of formative assessment used by the teachers and students involved in the research, and a summary of the characteristics of formative assessment. The findings are also theorised with respect to sociocultural and discursive views of learning. This research will be of interest to graduate students and researchers, as well as teacher educators, curriculum developers, and assessment specialists.
    Note: Includes bibliographical references (p. [139]-144) and index
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  • 6
    ISBN: 9780306476396
    Language: English
    Pages: 1 Online-Ressource(VIII, 344 p.)
    Edition: 1st ed. 2001.
    Parallel Title: Erscheint auch als
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    Keywords: Learning. ; Instruction. ; Science education. ; Teaching. ; Educational technology. ; Chemistry. ; Humanities. ; Science—Study and teaching. ; Teachers—Training of. ; Learning, Psychology of. ; Social sciences. ; Education ; Chemistry ; Science Study and teaching ; Teachers Training of ; Naturwissenschaftlicher Unterricht ; Naturwissenschaftliche Bildung
    Abstract: Views and Visions of Science Education Research -- Science Education Researchers and Research in Transition: Issues and Policies -- Research in Science Education in Europe: Retrospect and Prospect -- Science Content as Problematic - Issues for Research -- Science Education Versus Science in the Academy: Questions - Discussion - Perspectives -- Scientific Literacy — Conceptions and Assessment -- The Assessment of Scientific Literacy in the OECD/PISA Project -- Scientific Literacy: From Theory to Practice -- Making Formative Use of a National Summative Assessment Regime -- A Comparison of STS-teaching and Traditional Physics Lessons - On the Correlation of Physics Knowledge and Taking Action -- Students’ Conceptions -- On the Quantum Thinking of Physics Undergraduates -- Experiences with a Modern Course in Quantum Physics -- Learning Process Studies in the Field of Fractals -- Students’ Understandings of their Internal Structure as Revealed by Drawings -- Personal Context and Continuity of Human Thought; Recurrent Themes in a Longitudinal Study of Pupils’ Understanding of Scientific Phenomena -- Entities of the World and Causality in Children’s Thinking -- Using Media Reports of Science Research in Pupils’ Evaluation of Evidence -- Pupils’ Perceptions of Science Education at Primary and Secondary School -- Teachers’ Conceptions -- Teacher Professionalism and Change: Developing a Professional Self Through Reflective Assessment -- Formative Assessment Using Concept Cartoons: Initial Teacher Training in the UK -- Teaching Chemical Equilibrium in Australian and German Senior High Schools -- The Ideas of Spanish Primary Teachers on how to Develop an Understanding of Processes in Science and their Support in Textbooks -- Pre-service Elementary Teachers Constructing the Nature and Language of Science -- Combining Knowledge of Physics and Chemistry in Teaching: The Behaviour of a Narrow Jet of Water in the Presence of Charged Insulators -- Intuitive Rules: A Theory and its Implications to Mathematics and Science Teacher Education -- Conceptual Change — Teaching and Learning Processes -- Conceptual Change Research and the Teaching of Science -- Rhetoric and Science Education -- Development of Complexity through Dealing with Physical Qualities: One Type of Conceptual Change? -- On the Micro-structure of Analogical Reasoning: The Case of Understanding Chaotic Systems -- Role-playing, Conceptual Change, and the Learning Process: A Case Study of 7th Grade Pupils -- Concept Mapping as a Tool for Research in Science Education -- The Need for and the Role of Metacognition in Teaching and Learning the Particle Model -- Evolving Mental Models of Electric Circuits -- Two Models for a Physical Situation: the Case of Optics. Students’ Difficulties, Teachers’ Viewpoints and Guidelines for a ?Didactic Structure? -- The Influence of a Historically Oriented Course on the Content Knowledge of Students in Optics -- Using Everyday and Scientific Conceptions for Developing Guidelines of Teaching Microbiology -- Teaching and Learning the Concept of the Model in Secondary Schools -- Conceptual Change and Student Diversity: The Case of Volcanism at Primary School -- The Development of Prospective Teachers’ Concerns about Teaching Chemistry Topics at a Macro-micro-symbolic Interface -- How to Enhance Students’ Motivation and Ability to Communicate in Science Class-discourse -- How do Boys and Girls use Language in Physics Classes? -- Instructional Media and Lab Work -- Improving the Use of Instructional Illustrations in Learning Chemistry -- Computing in Stereochemistry - 2D or 3D Representations? -- Learning Physics with Multimedia- and Experimental-supported Workshop Instruction -- Generating Hypotheses in Scientific Enquiry -- Using Laboratory Work for Purposeful Learning about the Practice of Science -- University Students During Practical Work: Can We Make the Learning Process Intelligible? -- Learning About Investigations - The Teacher’s Role -- Point and Set Paradigms in Students’ Handling of Experimental Measurements -- Beyond the Laboratory-learning Physics Using Real-life Contexts.
    Abstract: This volume includes articles based on papers presented at the Second International Conference of the European Science Education Research Association (E.S.E.R.A.) held in Kiel, August 31 to September 4, 1999. About 300 colleagues, virtually from around the world - with a particular European focus - participated. Some 200 papers were presented. Three pages synopses of these papers were published in Proceedings of the conference (edited by Michael Komorek, Helga Behrendt, Helmut Dahncke, Reinders Duit, Wolfgang Gräber and Angela Kross). They are available from the IPN homepage: http://www.ipn.uni-kiel.de. The participants were asked to submit contributions to the present volume. It contains the invited plenary lectures and a selection of the submitted contributions based on reviews by an international board and the editors. The volume mirrors main lines of research in science education in Europe and around the world. The invited lectures provide overviews of the growth of science education research from the past to the present, including views of future developments. Major emphasis of empirical research still seems to be students' conceptions and conceptual change. About half of the contributions fall into that category. In addition, most of the remaining contributions deal with various cognitive issues of teaching and learning science. It was surprising for us that the number of studies on affective issues and gender differences was much smaller than expected.
    Note: Includes bibliographical references and index
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