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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
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
Heddy, Benjamin C.; Sinatra, Gale M. – Science Education, 2013
Teaching and learning about complex scientific content, such as biological evolution, is challenging in part because students have a difficult time seeing the relevance of evolution in their everyday lives. The purpose of this study was to explore the effectiveness of the Teaching for Transformative Experiences in Science (TTES) model (Pugh, 2002)…
Descriptors: Misconceptions, Science Instruction, Transformative Learning, Evolution
Price, Rebecca M.; Andrews, Tessa C.; McElhinny, Teresa L.; Mead, Louise S.; Abraham, Joel K.; Thanukos, Anna; Perez, Kathryn E. – CBE - Life Sciences Education, 2014
Understanding genetic drift is crucial for a comprehensive understanding of biology, yet it is difficult to learn because it combines the conceptual challenges of both evolution and randomness. To help assess strategies for teaching genetic drift, we have developed and evaluated the Genetic Drift Inventory (GeDI), a concept inventory that measures…
Descriptors: Genetics, Evolution, Biology, Higher Education
Kalinowski, Steven T.; Leonard, Mary J.; Andrews, Tessa M.; Litt, Andrea R. – CBE - Life Sciences Education, 2013
Students in introductory biology courses frequently have misconceptions regarding natural selection. In this paper, we describe six activities that biology instructors can use to teach undergraduate students in introductory biology courses how natural selection causes evolution. These activities begin with a lesson introducing students to natural…
Descriptors: Evolution, Undergraduate Students, Biology, Science Instruction
Andrews, T. M.; Price, R. M.; Mead, L. S.; McElhinny, T. L.; Thanukos, A.; Perez, K. E.; Herreid, C. F.; Terry, D. R.; Lemons, P. P. – CBE - Life Sciences Education, 2012
This study explores biology undergraduates' misconceptions about genetic drift. We use qualitative and quantitative methods to describe students' definitions, identify common misconceptions, and examine differences before and after instruction on genetic drift. We identify and describe five overarching categories that include 16 distinct…
Descriptors: Genetics, Biology, Methods, Misconceptions
Shtulman, Andrew; Calabi, Prassede – Merrill-Palmer Quarterly: Journal of Developmental Psychology, 2013
Recent research suggests that a major obstacle to evolution understanding is an essentialist view of the biological world. The present study investigated the effects of formal biology instruction on such misconceptions. Participants (N = 291) completed an assessment of their understanding of six aspects of evolution (variation, inheritance,…
Descriptors: Evolution, Comprehension, Barriers, World Views
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
Rice, Diana C.; Kaya, Sibel – Research in Science Education, 2012
This study investigated the relations among preservice elementary teachers' ideas about evolution, their understanding of basic science concepts and college science coursework. Forty-two percent of 240 participants did not accept the theory of human evolution, but held inconsistent ideas about related topics, such as co-existence of humans and…
Descriptors: Evolution, Preservice Teachers, Plate Tectonics, Paleontology
Baum, David A.; Offner, Susan – American Biology Teacher, 2008
Phylogenetic trees, which are depictions of the inferred evolutionary relationships among a set of species, now permeate almost all branches of biology and are appearing in increasing numbers in biology textbooks. While few state standards explicitly require knowledge of phylogenetics, most require some knowledge of evolutionary biology, and many…
Descriptors: Evolution, Textbooks, State Standards, Biology
Martin-Hansen, Lisa Michelle – Science & Education, 2008
This study took place during a First Year Seminar course where 20 incoming college freshmen studied the central topic of the nature of science within the context of biological evolution. The instructor researched students' understandings in the nature of science as they progressed through the course by examining a variety of qualitative and…
Descriptors: College Freshmen, Student Attitudes, Scientific Principles, Misconceptions
Quijas, P. C. Garcia; Aguilar, L. M. Arevalo – European Journal of Physics, 2007
Recently, there have been many efforts to use the research techniques developed in the field of physics education research to improve the teaching and learning of quantum mechanics. In particular, part of this research is focusing on misconceptions held by students. For instance, a set of misconceptions is associated with the concept of stationary…
Descriptors: Quantum Mechanics, Physics, Misconceptions, Science Education
Perry, Judy; Meir, Eli; Herron, Jon C.; Maruca, Susan; Stal, Derek – CBE - Life Sciences Education, 2008
To understand evolutionary theory, students must be able to understand and use evolutionary trees and their underlying concepts. Active, hands-on curricula relevant to macroevolution can be challenging to implement across large college-level classes where textbook learning is the norm. We evaluated two approaches to helping students learn…
Descriptors: Evolution, Biology, Hands on Science, College Science
Schrein, Caitlin M.; Lynch, John M.; Brem, Sarah K.; Marchant, Gary E.; Schedler, Karen K.; Spencer, Mark A.; Kazilek, Charles J. – Journal of Effective Teaching, 2009
This paper summarizes the content and results of a workshop about the teaching of evolution presented to public middle school and high school science teachers by individuals involved both in university education and the professional development of teachers. The goals of the workshop were to: (1) provide teachers with knowledge and resources to…
Descriptors: Workshops, College Science, High Schools, Middle Schools
Crow, Linda – Journal of College Science Teaching, 2004
One of the unifying themes of modern biology is evolution. In introductory biology courses, evolution is studied in some detail and used as a focal point for many courses. For many teachers of those courses, the greatest frustration is their inability to help students become Darwinian. Students do not reject evolutionary ideas, but they quickly…
Descriptors: Misconceptions, Biology, Evolution, Genetics
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