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Potvin, Patrice; Masson, Steve; Lafortune, Stéphanie; Cyr, Guillaume – International Journal of Science and Mathematics Education, 2015
Recent research efforts have argued for the "persistence" of some of students' frequent scientific misconceptions, even after correct answers are produced. Some of these studies, based on the analysis of reaction times, have recorded latencies for counter-intuitive or incongruent stimuli compared to intuitive or congruent ones. The…
Descriptors: Persistence, Misconceptions, Scientific Concepts, Interference (Learning)
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Eastwell, Peter – Science Education Review, 2014
This paper discusses the relationships between the terms "hypothesis," "prediction," "theory," and "law." In so doing, it addresses some misconceptions found in the literature and suggests that the only interpretation of the term "hypothesis" needed is that of a causal hypothesis. A more valid…
Descriptors: Science Instruction, Hypothesis Testing, Scientific Concepts, Prediction
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Grusche, Sascha – International Journal of Science Education, 2017
Prismatic refraction is a classic topic in science education. To investigate how undergraduate students think about prismatic dispersion, and to see how they change their thinking when observing dispersed images, five teaching experiments were done and analysed according to the Model of Educational Reconstruction. For projection through a prism,…
Descriptors: Science Instruction, Physics, Learning Activities, Undergraduate Students
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Falk, Raphael – Science & Education, 2014
Life sciences became Biology, a formal scientific discipline, at the turn of the nineteenth century, when it adopted the methods of reductive physics and chemistry. Mendel's hypothesis of inheritance of discrete factors further introduced a quantitative reductionist dimension into biology. In 1910 Johannsen differentiated between the…
Descriptors: Biology, Biological Sciences, Genetics, Heredity
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Coley, John D.; Tanner, Kimberly – CBE - Life Sciences Education, 2015
Research and theory development in cognitive psychology and science education research remain largely isolated. Biology education researchers have documented persistent scientifically inaccurate ideas, often termed "misconceptions," among biology students across biological domains. In parallel, cognitive and developmental psychologists…
Descriptors: Intuition, Misconceptions, Biology, Science Instruction
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Muela, Francisco Javier; Abril, Ana María – International Journal of Science Education, Part B: Communication and Public Engagement, 2014
The primary objective of this paper is to find out whether the genetic concepts conveyed by cinema could encourage students' personal misconceptions in this area. To that end, two sources of conceptions were compared: the students' personal concepts (from a consolidated bibliography and from an experimental sample) and the concepts conveyed by…
Descriptors: Genetics, Films, Misconceptions, Comparative Analysis
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Davenport, K. D.; Milks, Kirstin Jane; Van Tassell, Rebecca – American Biology Teacher, 2015
Analyzing evolutionary relationships requires that students have a thorough understanding of evidence and of how scientists use evidence to develop these relationships. In this lesson sequence, students work in groups to process many different lines of evidence of evolutionary relationships between ungulates, then construct a scientific argument…
Descriptors: Science Instruction, Evaluation, Misconceptions, Scientific Concepts
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Luz, Mauricio R. M. P.; Oliveira, Gabriel A.; Da Poian, Andrea T. – Biochemistry and Molecular Biology Education, 2013
A misconception regarding the human metabolism has been shown to be widespread among high school students. The students consider glucose as the sole metabolic fuel, disregarding that lipids and amino acids can be oxidized for ATP production by human cells. This misconception seems to be a consequence of formal teaching in grade and high schools.…
Descriptors: Science Instruction, Metabolism, Misconceptions, Scientific Concepts
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Mohammed, Babagana; Ahmed Emigilati, Mohammed; Ishiaku, Ibrahim – Journal of Education and Practice, 2016
This study investigates the preconceptions of junior secondary school students in Niger State on scientific ideas. The sample was made up of three hundred and sixty (360) junior secondary school students (JSSS I) who were randomly selected from twelve secondary schools. Four schools in each three educational zones with thirty (30) students from…
Descriptors: Foreign Countries, Comparative Analysis, Misconceptions, Scientific Attitudes
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Schneider, Michael; Hardy, Ilonca – Developmental Psychology, 2013
Conceptual change requires learners to restructure parts of their conceptual knowledge base. Prior research has identified the fragmentation and the integration of knowledge as 2 important component processes of knowledge restructuring but remains unclear as to their relative importance and the time of their occurrence during development. Previous…
Descriptors: Concept Formation, Knowledge Level, Grade 3, Elementary School Students
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Nehm, Ross H.; Ha, Minsu – Journal of Research in Science Teaching, 2011
Despite concerted efforts by science educators to understand patterns of evolutionary reasoning in science students and teachers, the vast majority of evolution education studies have failed to carefully consider or control for item feature effects in knowledge measurement. Our study explores whether robust contextualization patterns emerge within…
Descriptors: Majors (Students), Evolution, Animals, Measures (Individuals)
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Guisasola, Jenaro; Almudi, Jose M.; Salinas, Julia; Zuza, Kristina; Ceberio, Mikel – European Journal of Physics, 2008
This study aims to analyse university students' reasoning regarding two laws of electromagnetism: Gauss's law and Ampere's law. It has been supposed that the problems seen in understanding and applying both laws do not spring from students' misconceptions. Students habitually use reasoning known in the literature as 'common sense' methodology that…
Descriptors: Misconceptions, College Students, Magnets, Scientific Concepts
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Frede, Valerie – Astronomy Education Review, 2008
This article describes the principles and investigation of a small-group laboratory activity based on refutational modeling to teach the concept of seasons to preservice elementary teachers. The results show that these teachers improved significantly when they had to refute their initial misconceptions practically. (Contains 8 figures and 1 table.)
Descriptors: Scientific Concepts, Astronomy, Science Activities, Preservice Teachers
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Grobstein, Paul – Journal of Research Practice, 2005
Both science itself, and the human culture of which it is a part, would benefit from a story of science that encourages wider engagement with and participation in the processes of scientific exploration. Such a story, based on a close analysis of scientific method, is presented here. It is the story of science as story telling and story revising.…
Descriptors: Story Telling, Scientific Methodology, Definitions, Validity