Research in Science Education in Europe
Springer (Verlag)
978-90-481-5218-6 (ISBN)
Presidential Address.- State of Art of Biology Didactic Research in Europe — An Overview.- Opacity of Radiography, Perplexity of Teachers and Pupils in Primary School.- A Longitudinal Study of Pupils’ Understanding of Conditions for Life, Growth and Decomposition.- Plant, Animal or Thief? Solving Problems under the Microscope.- Biology Students’ Forming and Justiffing of Opinions on Predictive Genetic Testing. Towards a Practicable and Effective Training Strategy.- The State of Art in Research in Chemistry Education.- Understanding Energy in Nature and Society — What Conception do Swedish Ninth Graders Have?.- The Use of Van Hiele Levels as a Tool in the Development of Curricula for Science Education.- Problems of Communication in Chemistry Classes.- Using Methaphors for Learning to Develop Metacognition in Chemistry Students.- Is an Iron Atom Made of Iron?.- Physics Educators and Physicist: Two Communities Apart?.- Students and the Wave Geometrical Model of the Wave Propagation in a Three Dimensional Medium.- How to Deal with the Concept of Mechanical Energy in Dissipative Systems? A Study on Conceptual Development of First-Year Students in Mozambique.- Problem Solving in School Physics: A Metacognitively Developed Field Study.- Can Untraditional Learning Methods used in Physics Help Girls to be More Interested and Achieve more in this Subject?.- Learning in Basic Electricity: How do Motivation, Cognitive Factors and Classroom Climate Influence Achievement in Physics?.- Teaching Earth Science Today.- From Naive Representations to Scientific Concepts: A Cognitive Survey in the Domain of Earth Science.- Learning Science in the Laboratory: Issues raised by the European Project Labwork in Science Education’.- Generating and Using Information at the ElementarySchool Level: An Important Dimension of Environmental Education. A Project.- Research Based Evaluation in HOCS-Oriented Science Education and Curriculum Development.- Key Evidence in Testing Hypothesis.- Case Studies on Innovative Types of Labwork in Science Education.- Individual Learning Processes. A Research Programme with Focus on the Complexity of Situated Cognition.- Scientific Languages and Common Knowledge: Is Cultural Integration Possible?.- Science Education and the Popularisation of Science in the New Europe.- Nature of Physics — Teachers’ Views.- School Science-Real Science? Personal Knowledge, Authentic Science and Student Research Projects.- School Reform in Italy: Orientation as a Key Aspect for Science Teaching Innovation.- Dilemmas related to Teacher Training for Science Education and Pupils’ Action Competence (The MUVIN Project).- A Framework for Learning to Teach Sciences in Initial Primary Teacher Education.- Teacher Education in Greece: Constructivist Attempts in a Nonconstructivist Environment.- Learning to Teach Sciences. Problem Solving as a Context for Learning.- When does Normative Scientific Behaviour Start?.- Author Index.
| Erscheint lt. Verlag | 6.12.2010 |
|---|---|
| Zusatzinfo | XII, 318 p. |
| Verlagsort | Dordrecht |
| Sprache | englisch |
| Maße | 155 x 235 mm |
| Themenwelt | Geisteswissenschaften ► Psychologie ► Pädagogische Psychologie |
| Naturwissenschaften ► Chemie | |
| Sozialwissenschaften ► Pädagogik ► Erwachsenenbildung | |
| ISBN-10 | 90-481-5218-6 / 9048152186 |
| ISBN-13 | 978-90-481-5218-6 / 9789048152186 |
| Zustand | Neuware |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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