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Richard, Melissa; Coley, John D.; Tanner, Kimberly D. – CBE - Life Sciences Education, 2017
Natural selection is a central concept throughout biology; however, it is a process frequently misunderstood. Bacterial resistance to antibiotic medications provides a contextual example of the relevance of evolutionary theory and is also commonly misunderstood. While research has shed light on student misconceptions of natural selection, minimal…
Descriptors: Undergraduate Students, College Science, Evolution, Logical Thinking
Cooper, Robert A. – Journal of Biological Education, 2017
Student reasoning about cases of natural selection is often plagued by errors that stem from miscategorising selection as a direct, causal process, misunderstanding the role of randomness, and from the intuitive ideas of intentionality, teleology and essentialism. The common thread throughout many of these reasoning errors is a failure to apply…
Descriptors: Science Process Skills, Misconceptions, Ecology, Evolution
Xu, Dongchen; Chi, Michelene T. H. – Universal Journal of Educational Research, 2016
Students often have misconceptions about natural selection as they misuse a direct causal schema to explain the process. Natural selection is in fact an emergent process where random interactions lead to changes in a population. The misconceptions stem from students' lack of emergent schema for natural selection. In order to help students…
Descriptors: Science Education, Science Instruction, Scientific Concepts, Evolution
Tran, Mark V.; Weigel, Emily G.; Richmond, Gail – Journal of College Science Teaching, 2014
For biologists, a proper understanding of evolutionary processes is fundamentally important. However, undergraduate biology students often struggle to understand evolutionary processes, replacing factual knowledge with misconceptions on the subject. Classroom discussions can be effective active learning tools used to address these misconceptions…
Descriptors: Undergraduate Students, Biology, Science Instruction, Knowledge Level
Sota, Melinda – ProQuest LLC, 2012
Analogies play significant roles in communication as well as in problem solving and model building in science domains. Analogies have also been incorporated into several different instructional strategies--most notably in science domains where the concepts and principles to be learned are abstract or complex. Although several instructional models…
Descriptors: Evolution, Logical Thinking, Concept Formation, Science Instruction
Weeks, Brian E. – ProQuest LLC, 2013
College students often come to the study of evolutionary biology with many misconceptions of how the processes of natural selection and speciation occur. How to relinquish these misconceptions with learners is a question that many educators face in introductory biology courses. Constructivism as a theoretical framework has become an accepted and…
Descriptors: Misconceptions, Scientific Concepts, Simulation, College Students
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)
Knowing the Natural World: The Construction of Knowledge about Evolution in and out of the Classroom
Perkins, Alison Emily Havard – ProQuest LLC, 2009
Evolution is a central underlying concept to a significant number of discourses in civilized society, but the complexity of understanding basic tenets of this important theory is just now coming to light. Knowledge about evolution is constructed from both formal and "free-choice" opportunities, like television. Nature programs are commonly…
Descriptors: Evolution, Misconceptions, Learning Processes, Physical Environment

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