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Kamali Sripathi; Aidan Hoskinson – CBE - Life Sciences Education, 2024
Genetic variation is historically challenging for undergraduate students to master, potentially due to its grounding in both evolution and genetics. Traditionally, student expertise in genetic variation has been evaluated using Key Concepts. However, Cognitive Construals may add to a more nuanced picture of students' developing expertise. Here, we…
Descriptors: Genetics, Undergraduate Students, Science Instruction, Evolution
Pablo Antonio Archila; Silvia Restrepo; Anne-Marie Truscott de Mejía; Jorge Molina – Science & Education, 2024
Even though it is widely held that the theory of evolution is one of the pillars of the biological sciences, as we begin the third decade of the twenty-first century, it is alarming how little we know about science, technology, engineering, and mathematics (STEM) majors and non-STEM majors' misconceptions about evolution in countries such as…
Descriptors: Evolution, STEM Education, Majors (Students), Nonmajors
Matuk, Camillia; Uttal, David H. – Research in Science Education, 2020
Biologists use tree diagrams to illustrate phylogenetic relationships among species. However, both novices and experts are prone to misinterpret this notational form. A difficulty with reasoning with cladograms is that intuitive narrative conceptions of evolution as a linear progression interfere with perceiving the hierarchical relationships that…
Descriptors: Undergraduate Students, Biology, Visual Aids, Data Interpretation
Shawn K. Stover; Michelle L. Mabry – Bioscene: Journal of College Biology Teaching, 2022
Here, we present a ten-year assessment of core concept retention, with an emphasis on evolution, by senior biology majors at a small, private liberal arts college. For concepts that are regularly revisited throughout the biology curriculum, we found that knowledge retention was robust. However, for concepts that are encountered only during the…
Descriptors: Concept Formation, Retention (Psychology), Biology, Majors (Students)
Ferguson, Daniel G.; Jensen, Jamie L.; Arok, Adhieu; Bybee, Seth M.; Ogden, T. Heath – Journal of College Science Teaching, 2022
Acceptance of human evolution seems to be the majority position for the U.S. population; however, acceptance of evolution among conservative Christian groups is low, sometimes below 50%. There are many different reasons for this low acceptance, leading to a significant disconnect between scientific specialists and the general population. This…
Descriptors: Evolution, Science Instruction, Student Attitudes, Role Models
Kuschmierz, Paul; Beniermann, Anna; Graf, Dittmar – International Journal of Science Education, 2020
In evolution education, misconceptions about evolutionary concepts impact students' learning. Much research exists on assessing knowledge about evolution using different instruments. The current article introduces the KAEVO 2.0 instrument, which includes various evolutionary aspects representing microevolution and macroevolution. The introduced…
Descriptors: Science Education, Evolution, Scientific Concepts, Misconceptions
Karatas, Ayla – Journal of Education and Training Studies, 2019
Evolution is a cornerstone that combines all sub-branches of biology in a meaningful way. Developing a true understanding of evolution, however, can only be achieved through comprehensive education. In the community, teachers have an important role in removing erroneous attitudes toward evolution, in which science and biology teachers have a key…
Descriptors: Preservice Teachers, Student Attitudes, Opinions, Evolution
Glaze, Amanda – AERA Online Paper Repository, 2017
Evolution is the unifying theory in biological sciences, yet in the United States, a majority of the population holds beliefs that are in conflict with those concepts and therefore are not completely open to considering evolutionary theory. The Gallup poll on evolution, creationism and intelligent design is one of the longest running polls…
Descriptors: Evolution, Undergraduate Students, Biological Sciences, Misconceptions
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
Zhao, FangFang; Schuchardt, Anita – CBE - Life Sciences Education, 2019
Prior studies have shown that students have difficulty understanding the role of mutation in evolution and genetics. However, little is known about unifying themes underlying students' difficulty with mutation. In this study, we examined students' written explanations about mutation from a cognitive science perspective. According to one cognitive…
Descriptors: Student Motivation, Educational Change, Teaching Methods, Genetics
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
Trevors, Gregory; Muis, Krista R. – Journal of Research in Reading, 2015
We investigated the online and offline effects of learner and instructional characteristics on conceptual change of a robust misconception in science. Fifty-nine undergraduate university students with misconceptions about evolution were identified as espousing evaluativist or non-evaluativist epistemic beliefs in science. Participants were…
Descriptors: Undergraduate Students, Student Characteristics, Attitude Change, Scientific Attitudes
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
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
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