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Prud'homme-Généreux, Annie – Journal of College Science Teaching, 2017
Misconceptions are sometimes called "alternative conceptions" in acknowledgement of the fact that although these concepts are inaccurate, they are congruent with prior experiences. The idea that misconceptions must be addressed to improve learning is helpful to remember when developing a case study. Students will bring their existing…
Descriptors: Case Studies, Misconceptions, Science Instruction, Science Curriculum
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Eggen, Per-Odd; Persson, Jonas; Jacobsen, Elisabeth Egholm; Hafskjold, Bjørn – LUMAT: International Journal on Math, Science and Technology Education, 2017
A chemistry concept inventory (Chemical Concept Inventory 3.0/CCI 3.0) has been developed for assessing students learning and identifying the alternative conceptions that students may have in general chemistry. The conceptions in question are assumed to be mainly learned in school and to a less degree in student's daily life. The inventory…
Descriptors: Chemistry, Misconceptions, Scientific Concepts, Science Tests
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Dick-Perez, Marilu; Luxford, Cynthia J.; Windus, Theresa L.; Holme, Thomas – Journal of Chemical Education, 2016
A 14-item, multiple-choice diagnostic assessment tool, the quantum chemistry concept inventory or QCCI, is presented. Items were developed based on published student misconceptions and content coverage and then piloted and used in advanced physical chemistry undergraduate courses. In addition to the instrument itself, data from both a pretest,…
Descriptors: Chemistry, Science Instruction, Multiple Choice Tests, Undergraduate Students
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Prince, Michael; Vigeant, Margot; Nottis, Katharyn – Chemical Engineering Education, 2016
Eight inquiry-based activities, described here in sufficient detail for faculty to adopt in their own courses, were designed to teach students fundamental concepts in heat transfer. The concept areas chosen were (1) factors affecting the rate vs. amount of heat transfer, (2) temperature vs. perceptions of hot and cold, (3) temperature vs. energy…
Descriptors: Inquiry, Teaching Methods, Heat, Energy
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Flener-Lovitt, Charity – Journal of Chemical Education, 2014
A thematic course called "Climate Change: Chemistry and Controversy" was developed for upper-level non-STEM students. This course used the socioscientific context of climate change to teach chemical principles and the nature of science. Students used principles of agnotology (direct study of misinformation) to debunk climate change…
Descriptors: Science Instruction, College Science, Undergraduate Study, Teaching Methods
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Turner, Steven L. – Middle School Journal (J3), 2014
The focus on grades and what they represent happens in every middle grades classroom--some students completely understand the concepts when reviewed, but perform poorly on the quiz; some gifted students score high on tests but appear bored in class. With the current emphasis on school accountability by standardized test scores, middle level…
Descriptors: Student Evaluation, Academic Achievement, Standardized Tests, Scores
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Hodgson, Claire – Primary Science, 2010
Assessment for Learning (AfL)--assessment that focuses on the gap between present performance and the desired goal--is integral to teaching and learning, and its importance has been recognised over a number of years. With the new status of science assessment in England, following the changes to key stage testing, a research team at the National…
Descriptors: Feedback (Response), Science Tests, Learning Strategies, Foreign Countries
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Gamble, Reed – Physics Education, 1989
Discusses pupil misconceptions concerning forces. Summarizes some of Assessment of Performance Unit's findings on meaning of (1) force, (2) force and motion in one dimension and two dimensions, and (3) Newton's second law. (YP)
Descriptors: Force, Foreign Countries, Mechanics (Physics), Misconceptions
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Savage, M. D.; Williams, J. S. – Physics Education, 1989
Illustrated is the confusion over centrifugal force in sample problems, diagrams, formulas, and examples. Some recommendations to remedy the situation are suggested. (YP)
Descriptors: College Science, Concept Formation, Concept Teaching, Mechanics (Physics)