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Chauncey, Caroline T., Ed. – Harvard Education Press, 2010
"Harvard Education Letter" is published bimonthly at the Harvard Graduate School of Education. This issue of "Harvard Education Letter" contains the following articles: (1) Learning Progressions in Science: A New Approach Emphasizes Sustained Instruction in Big Ideas (Patti Hartigan); (2) Putting the "Boy Crisis" in…
Descriptors: Reading Difficulties, Gender Differences, Reading Improvement, School Newspapers
Rothermel, Paula Jane – Online Submission, 2010
In this article has been extracted from a longer paper by the same name that came about in response to the Badman Review of Elective Home Education (Badman 2009). The first part briefly discusses the Badman Review. The next looks at the misunderstandings that can occur once concerns are raised in home education. Finally there are case studies…
Descriptors: Home Schooling, Educational Quality, Misconceptions, Foreign Countries
Gafoor, K. Abdul; Akhilesh, P. T. – Online Submission, 2010
Learning occurs through various processes. Among these processes, conceptual change has a pivotal part. This article discusses briefly conceptual change in physics. Anchoring on Kuhn's original explanation of theory change in science, this article elaborates especially on the influence of children's science concepts in general, and pre-conceptions…
Descriptors: Physics, Scientific Concepts, Concept Teaching, Misconceptions
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Leander, Celeste A.; Whitton, Jeannette – American Biology Teacher, 2010
First-year university students have misconceptions about the source and dynamics of publicly funded research money. We designed an activity in which students take part in a mock grant panel. The results indicated a strong tendency toward student funding of applied medical research at the expense of basic research. Exposure to a few examples of…
Descriptors: Research, Misconceptions, Grants, College Freshmen
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Oliveira, Alandeom W. – International Journal of Science and Mathematics Education, 2010
This study examines the effectiveness of using scholarly descriptions of inquiry-based teaching as a professional development strategy aimed at improving elementary teachers' social understandings (i.e., how teachers perceive their own and their students' social roles and relationships in the context of inquiry-based science instruction). The…
Descriptors: Feedback (Response), Faculty Development, Misconceptions, Science Instruction
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Hagtvedt, Reidar; Jones, Gregory Todd; Jones, Kari – Teaching Statistics: An International Journal for Teachers, 2008
Confidence intervals are difficult to teach, in part because most students appear to believe they understand how to interpret them intuitively. They rarely do. To help them abandon their misconception and achieve understanding, we have developed a simulation tool that encourages experimentation with multiple confidence intervals derived from the…
Descriptors: Intervals, Simulation, Teaching Methods, Misconceptions
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Zazkis, Rina; Chernoff, Egan J. – Educational Studies in Mathematics, 2008
In this paper we describe two episodes of instructional interaction, in which examples are used in order to help students face their misconceptions. We introduce the notions of pivotal example and bridging example and highlight their role in creating and resolving a cognitive conflict. We suggest that the convincing power of counterexamples…
Descriptors: Misconceptions, Mathematics Instruction, Teaching Methods, Learning Processes
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Concannon, James; Brown, Patrick L.; Brandt, Trisha – Science Activities: Classroom Projects and Curriculum Ideas, 2009
This activity targets students' misconceptions about embryonic and adult stem cells while also addressing an important grades 9-12 science content standard. The authors designed the activity to provide students an opportunity to explore differences between embryonic and adult stem cells prior to formal explanation. The overarching goal of this…
Descriptors: Biology, Grade 9, Misconceptions, Science Activities
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Franke, Gaitano; Bogner, Franz X. – Journal of Educational Research, 2011
A hands-on instructional approach with medium-achieving 10th-grade students (N = 294) successfully demonstrated the achievement of a conceptual change. Two teaching variations were applied (I-1, I-2), both dealing with a hands-on gene technology lesson in an out-of-school laboratory. I-2 additionally confronted the participants with alternative…
Descriptors: Constructivism (Learning), Teaching Models, Molecular Biology, Concept Formation
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Usak, Muhammet; Ozden, Mustafa; Eilks, Ingo – European Journal of Teacher Education, 2011
This paper describes a case study focusing on the subject matter knowledge, pedagogical content knowledge, and beliefs about science teaching of student teachers in Turkey at the start of their university education. The topic of interest was that of teaching chemical reactions in secondary chemistry education. A written test was developed which…
Descriptors: Student Teachers, Chemistry, Foreign Countries, Pedagogical Content Knowledge
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Cheng, Joseph M. – American Journal of Business Education, 2010
This is a teaching note on a proposed approach that will correct a common flaw in the way the return-generating process within the APT framework is illustrated in textbooks. The problem can be resolved by dichotomizing the risk factors into two kinds. Based on this approach, the author eliminated the main source of confusion and developed an…
Descriptors: Teaching Methods, Teaching Models, Misconceptions, Textbook Content
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Cepni, Salih; Cil, Emine – Asia-Pacific Forum on Science Learning and Teaching, 2010
The aim of this study is to develop conceptual change texts in the teaching of aspects of the nature of science and to introduce the development of texts. The socio-cultural and the subjective aspects were taken into consideration in the conceptual change texts, which are presented in the study. The conceptual change texts were prepared to be used…
Descriptors: Scientific Principles, Grade 7, Misconceptions, Pilot Projects
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Durmus, Jale; Bayraktar, Sule – Journal of Science Education and Technology, 2010
The purpose of this study was to investigate whether conceptual change texts and laboratory experiments are effective in overcoming misconceptions and whether the concepts were acquired permanently when these methods were utilized. In this study, we addressed some topics from the "Matter and Change" unit in science and technology class of…
Descriptors: Grade 4, Misconceptions, Laboratory Experiments, Concept Formation
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Eshach, Haim – Research in Science Education, 2010
The starting point of the present research is the following question: since we live in an age that makes increasing use of visual representations of all sorts, is not the visual representation a learner constructs a window into his/her understanding of what is or is not being learned? Following this direction of inquiry, the present preliminary…
Descriptors: Science Instruction, Photography, Misconceptions, Scientific Concepts
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Veletsianos, George; Kleanthous, Irene – International Review of Research in Open and Distance Learning, 2009
Adventure learning (AL) is an approach for the design of digitally-enhanced teaching and learning environments driven by a framework of guidelines grounded on experiential and inquiry-based education. The purpose of this paper is to review the adventure learning literature and to describe the status quo of the practice by identifying the current…
Descriptors: Adventure Education, Meta Analysis, Search Strategies, Misconceptions
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