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Narli, Serkan – Online Submission, 2010
This study aims to specify to what extent students understand topology during the lesson and to determine possible misconceptions. 14 teacher trainees registered at Secondary School Mathematics education department were observed in the topology lessons throughout a semester and data collected at the first topology lesson is presented here.…
Descriptors: Topology, Misconceptions, Comprehension, College Mathematics
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Ayas, Alipasa; Ozmen, Haluk; Calik, Muammer – International Journal of Science and Mathematics Education, 2010
The aim of the present study is to elicit students' understanding of the particulate nature of matter via a cross-age study ranging from secondary to tertiary educational levels. A questionnaire with five-item open-ended questions was administered to 166 students from the secondary to tertiary levels of education. In light of the findings, it can…
Descriptors: Scientific Concepts, Misconceptions, Questionnaires, Problem Based Learning
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Brown, Simon; Salter, Susan – Advances in Physiology Education, 2010
Analogies are often used in science, but students may not appreciate their significance, and so the analogies can be misunderstood or discounted. For this reason, educationalists often express concern about the use of analogies in teaching. Given the important place of analogies in the discourse of science, it is necessary that students are…
Descriptors: Science Education, Logical Thinking, Teaching Methods, Concept Mapping
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Gonzalez-spada, Wilson J.; Birriel, Jennifer; Birriel, Ignacio – Physics Teacher, 2010
Studies on cognitive aspects of science education, especially how students achieve conceptual change, have been a focus of interest for many years. Researchers of student learning and conceptual change have developed several easily applicable teaching strategies. One of these strategies is known as "discrepant events". Discrepant events are very…
Descriptors: Scientific Concepts, Misconceptions, Thinking Skills, Teaching Methods
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Wallace, Colin S.; Chasteen, Stephanie V. – Physical Review Special Topics - Physics Education Research, 2010
This study presents and interprets some conceptual difficulties junior-level physics students experience with Ampere's law. We present both quantitative data, based on students' written responses to conceptual questions, and qualitative data, based on interviews of students solving Ampere's law problems. We find that some students struggle to…
Descriptors: Physics, Electronics, Magnets, Advanced Students
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Hadfield, Linda C.; Wieman, Carl E. – Journal of Chemical Education, 2010
Student interpretations of the equation for the first law of thermodynamics, [delta]U = q + w, an expression defining work done on or by a gas, w = -[image omitted]PdV, and an expression defining heat, q = [image omitted]C[subscript v]dT were investigated through a multiple-choice survey, a free-response written survey, and interviews. The…
Descriptors: Thermodynamics, Science Instruction, Scientific Principles, College Science
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Machalek, Richard; Martin, Michael W. – Teaching Sociology, 2010
As the authors stated early in their article (Machalek and Martin 2010), evolutionary ideas have been gaining traction in the work of a growing number of sociologists in recent years. Much of their thinking derives from work inspired by sociobiology. However, many sociologists are critical of and unreceptive to incorporating evolutionary biology…
Descriptors: Sociology, Biology, Interdisciplinary Approach, Academic Discourse
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Fisher, Douglas; Frey, Nancy; Lapp, Diane – Journal of Adolescent & Adult Literacy, 2010
When students make mistakes, have misconceptions, or are simply wrong, how their teachers respond either builds new skills and understanding or reinforces errors. An intentional approach to responding when students don't get it includes questions to check for understanding, prompts for cognitive and metacognitive work, cues to divert attention,…
Descriptors: Cues, Teacher Response, Misconceptions, Error Correction
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Levy Nahum, Tami; Mamlok-Naaman, Rachel; Hofstein, Avi; Taber, Keith S. – Studies in Science Education, 2010
Chemical bonding is one of the key and basic concepts in chemistry. The learning of many of the concepts taught in chemistry, in both secondary schools as well as in the colleges, is dependent upon understanding fundamental ideas related to chemical bonding. Nevertheless, the concept is perceived by teachers, as well as by learners, as difficult,…
Descriptors: Teaching Models, Chemistry, Misconceptions, Teaching Methods
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Davies, Lynn – Intercultural Education, 2010
This paper examines the contribution of human rights education (HRE) to conflict prevention and to the promotion of security. It outlines the difficulties in evaluating the long-term impact of HRE, but then proposes five benefits of a rights-based approach to education--rights as secular, man-made, requiring transparency, enabling freedom from…
Descriptors: Prevention, Conflict, Childrens Rights, Politics
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Roche, Anne – Australian Primary Mathematics Classroom, 2010
A considerable body of research exists on students' understanding of decimal fractions and the prevalence and persistence of common misconceptions related to this understanding. Results from major studies such as the National Assessment of Educational Progress (NAEP) in the United States and the Concepts in Secondary Mathematics and Science (CSMS)…
Descriptors: Foreign Countries, Mathematics, Number Concepts, Models
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Dyehouse, Melissa; Detwiler, Jillian T.; Li, Jianming; Bandy, Krystal Madden; Bennett, Deborah; Childress, Amy; Harbor, Jon – Science Scope, 2010
One exercise that challenges students' stereotypical perception of scientists is the Scientist Match-Up Activity. In this interactive lesson, students are asked to match a person to a profession based on three sets of clues. These clues include a picture, a description of particular skills, and personality traits/accomplishments. A wide array of…
Descriptors: Student Attitudes, Scientists, Stereotypes, Misconceptions
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Liu, T.-C.; Lin, Y.-C.; Kinshuk – Journal of Computer Assisted Learning, 2010
Simulation-based computer assisted learning (CAL) is recommended to help students understand important statistical concepts, although the current systems are still far from ideal. Simulation-Assisted Learning Statistics (SALS) is a simulation-based CAL that is developed with a learning model that is based on cognitive conflict theory to correct…
Descriptors: Experimental Groups, Computer Assisted Instruction, Lecture Method, Misconceptions
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Vale, Colleen – Australian Primary Mathematics Classroom, 2013
Colleen Vale makes the case for professional learning teams collaborating together to improve their teaching and hence children's achievement. In this article she describes how this may be done. Along the way the teachers explored the idea of equivalence and the common conceptions and misconceptions held by children in their classes.
Descriptors: Mathematics, Mathematics Instruction, Thinking Skills, Professional Development
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Sezen Vekli, Gulsah – Asia-Pacific Forum on Science Learning and Teaching, 2013
The present study aims to identify the effectiveness of summer science camp experience on middle school students' content knowledge and interest towards biology. For this purpose, two instruments including reflective journal and pre-post questionnaire were developed by four researchers who are expert in science education. Besides, the instruction…
Descriptors: Middle School Students, Foreign Countries, Summer Science Programs, Science Interests
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