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Catie Nielson; Emma Pitt; Michal Fux; Kristin de Nesnera; Nicole Betz; Jessica S. Leffers; Kimberly D. Tanner; John D. Coley – CBE - Life Sciences Education, 2025
Previous research has shown that students employ intuitive thinking when understanding scientific concepts. Three types of intuitive thinking--essentialist, teleological, and anthropic thinking--are used in biology learning and can lead to misconceptions. However, it is unknown how commonly these types of intuitive thinking, or cognitive…
Descriptors: Language Usage, College Students, Biology, Scientific Concepts
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
Caryn Babaian; Sudhir Kumar – American Biology Teacher, 2024
When students think of evolution, they might imagine T. rex, or perhaps an abiotic scene of sizzling electrical storms and harsh reducing atmospheres, an Earth that looks like a lunar landscape. Natural selection automatically elicits responses that include "survival of the fittest," and "descent with modification," and with…
Descriptors: Evolution, Science Education, Cancer, Teaching Methods
Stern, Florian; Kampourakis, Kostas; Müller, Andreas – Journal of Research in Science Teaching, 2023
Biology education research has shown that deeply rooted intuitions can influence students' understanding of biological phenomena. One example is design teleology, the intuition that organisms' traits were designed to fulfill a goal. Another example is psychological essentialism, the intuition that organisms have fixed essences. Past research has…
Descriptors: Biology, Science Education, Genetics, Scientific Concepts
Anastasia Misheva – ProQuest LLC, 2023
Evolution is a key feature of undergraduate biology education: the American Association for the Advancement of Science (AAAS) has identified evolution as one of the five core concepts of biology, and it is relevant to a wide array of biology-related careers. If biology instructors want students to use evolution to address scientific challenges…
Descriptors: Evolution, Biology, Science Instruction, Undergraduate Students
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
Carolina Parraguez; Paola Núñez; Dirk Krüger; Hernán Cofré – Journal of Biological Education, 2023
Although much research exists of students' alternative conceptions about evolution and natural selection, the way in which these vary in time and how scientific explanations change during instruction remains to be described and understood. Therefore, the main objective of this research is to characterise the nature of the change in student…
Descriptors: Science Instruction, Grade 9, Evolution, Student Attitudes
Spier, Sarah K.; Dauer, Joseph T. – American Biology Teacher, 2023
There is an emphasis on survival-based selection in biology education that can allow students to neglect other important evolutionary components, such as sexual selection, reproduction, and inheritance. Student understanding of the role of reproduction in evolution is as important as student understanding of the role of survival. Limiting…
Descriptors: Biology, Science Education, Birth, Genetics
Fayadh Hamed Alanazi; Amani Khalaf. H. Alghamdi – Journal of Biological Education, 2024
This study explored the usefulness of the open dialogue strategy to help Saudi Arabian primary teachers teach, and fourth-grade students learn, the key biological concept of classification, which is a significant challenge for students to grasp, especially the concept of humans versus animals. The convenience sample comprised N = 84 Grade four…
Descriptors: Foreign Countries, Elementary School Teachers, Elementary School Students, Grade 4
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)
Christensen, Dana; Lombardi, Doug – International Journal of Science Education, 2023
The purpose of this study was to quantitatively assess the integration of computational thinking with learning about biological evolution. Specifically, we investigated the effectiveness of a framework from a recently developed learning progression that emphasises the complex nature of teaching both computational thinking and biological evolution.…
Descriptors: Computation, Thinking Skills, Biology, Evolution
Rachel Leigh Salter Harding – ProQuest LLC, 2021
Evolution is central to biology education and yet, it is often one of the most misunderstood and controversial topics that biology educators must teach. Research spanning the last four decades has shown that students continue to struggle, even with direct instruction, to understand the process of evolution by natural selection. In my first…
Descriptors: Evolution, Concept Formation, STEM Education, Biology
Sundberg, Bodil; Andersson, Magdalena – Center for Educational Policy Studies Journal, 2023
Learning about evolution can be challenging for students, as a full understanding may require them to see the world in new ways, to master a disciplinary language and to understand complex processes. Drawing on a long line of theoretically grounded arguments of philosophers and researchers for including wonder in science teaching, we report on the…
Descriptors: Evolution, Science Education, Student Interests, Scientific Concepts
Tim Hartelt; Helge Martens – Journal of Research in Science Teaching, 2024
Intuitive conceptions based on cognitive biases (teleology, anthropomorphism, and essentialism) often prove helpful in everyday life while simultaneously being problematic in scientific contexts. Nonetheless, students often have intuitive conceptions of scientific topics such as evolution. As potential approaches to enable students to…
Descriptors: Self Evaluation (Individuals), Metacognition, Self Control, Intuition
Franklin U. Onowugbeda; Peter A. Okebukola; Deborah O. Agbanimu; Oluseyi A. Ajayi; Adekunle I. Oladejo; Fred Awaah; Ibukunolu A. Ademola; Olasunkanmi A. Gbeleyi; Esther O. Peter; Adeleke M. Ige – Research in Science & Technological Education, 2024
Background: Studies in biology have shown that students perceive variation and evolution to be difficult areas to learn. This has sparked rote learning of variation and evolution concepts and is evidenced in poor performance in tests involving these concepts. Purpose: In light of the significant role of variation and evolution in a human's…
Descriptors: Biology, Science Instruction, Scientific Concepts, Evolution

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