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Inêz, Tiago Guimarães; de Lacerda Brito, Breno Pascal; El-Hani, Charbel N. – Science & Education, 2023
It has been shown that many people do not understand how scientific knowledge is built and accepted, even after scientific education. One way to deal with this problem is through teaching about the Nature of Science (NOS). NOS can be understood as a pedagogical construct aiming to foster the understanding of the main characteristics of scientific…
Descriptors: Scientific Principles, Science Instruction, Biology, Teaching Methods
Almorza, D.; Prada, A.; Kandús, M. V.; Salerno, J. C. – Journal of Biological Education, 2023
Graduates in biology or genetics learn Mendel's laws and Hardy-Weinberg equilibrium as students, and they know, use, and sometimes teach these concepts. However, it is unusual to learn about stochastic processes during the graduate studies of these topics, although the applications of Markov chains in the fields of genetics or biology are…
Descriptors: Graduate Students, College Science, Biology, Genetics
Reinisch, Bianca; Fricke, Kristina – Science Education, 2022
Previous research about the presence of nature of science (NOS) within science textbooks has been found to be lacking in sufficient coverage. However, given the shift in how scholars conceive of NOS, the shortcomings may not be present in the textbooks but rather in the NOS frameworks used to analyze textbooks. Whereas traditional NOS has taken a…
Descriptors: Scientific Principles, Science Instruction, Teaching Methods, Biology
Comparing Undergraduate Nature of Science Views in Traditional versus Inquiry-Taught Science Courses
Alex T. St. Louis; Hayat Hokayem – Journal of College Science Teaching, 2023
This qualitative study compares the views about nature of science (NOS) between students enrolled in a traditional lecture and laboratory course and students in an inquiry-based class to the view of the scientists who taught the course. We administered the Views of Nature of Science Form C (VNOS-C) to identify students' views after partaking in…
Descriptors: Scientific Principles, Student Attitudes, Lecture Method, Science Laboratories
Moser, Bradley – Physics Teacher, 2021
A classic, life science-themed fluid dynamics scenario is blood flow through a constriction. Physics teachers traditionally ask students if the pressure experienced by the blood in the constriction is greater, lesser, or the same as before the constriction. The conventional approach to resolving this question calls upon the equation of continuity,…
Descriptors: Physics, Science Instruction, Scientific Principles, Teaching Methods
Ann Cleveland; Asli Sezen-Barrie; Franziska Peterson; Sara Lindsay – Journal of College Science Teaching, 2025
Quantitative reasoning (QR) competencies are increasingly called for in the data rich and complex environment of STEM disciplines, including biology. Curricular reform efforts in QR have been directed at disseminating course design and pedagogy but less work has been directed at understanding what faculty at large view as crucial for student…
Descriptors: Biology, Introductory Courses, Science Instruction, Statistics Education
Li, Chen; Yu, Jian; Li, Gaofeng – International Journal of Science and Mathematics Education, 2023
Integrating the nature of science (NOS) into textbooks is one of the challenges in science curricula. This case study assessed the issue based on a sample of high school biology textbooks in Mainland China. We quantitatively compared changes in the extent, quality, and distribution of NOS representations between 2004 and 2019 editions. Three main…
Descriptors: Biology, Science Instruction, Case Studies, Scientific Principles
Gasparatou, Renia – Cultural Studies of Science Education, 2019
Aragón, Acevedo-Díaz and García-Carmona study prospective biology teachers' understanding of the Nature of Science (NOS). In my comment, I would first like to step back and ask "what it is to understand something", i.e. the sciences. I will turn to a quasi-Wittgensteinian epistemological tradition and suggest that, contrary to our habit…
Descriptors: Scientific Principles, Educational Philosophy, Biology, Science Instruction
Carrasco-Hernandez, R. – Journal of Biological Education, 2020
The aim of the present assay is to provide a simple algorithm as well as a didactic theoretical framework that may serve as an introduction to understanding modern habitat suitability (HS) modelling techniques in Ecology and Biogeography. The proposal is built on classical descriptive statistics and classical ecological theories. Shelford's theory…
Descriptors: Teaching Methods, Biology, Science Instruction, Animal Behavior
Christopher J. Panebianco; Madhura P. Nijsure; Erin E. Berlew; Annie L. Jeong; Joel D. Boerckel – Biomedical Engineering Education, 2024
Mechanobiology is an interdisciplinary field that aims to understand how physical forces impact biological systems. Enhancing our knowledge of mechanobiology has become increasingly important for understanding human disease and developing novel therapeutics. There is a societal need to teach diverse students principles of mechanobiology so that we…
Descriptors: Learning Modules, Active Learning, Inquiry, Interdisciplinary Approach
Wise, Michael J.; Collins, Rachel – Bioscene: Journal of College Biology Teaching, 2020
Because the escalating loss of species is one of the most serious environmental crises we face, it is vital that students of biology comprehend and can communicate the roles that biodiversity plays in the functioning of ecosystems. Here, we report on a laboratory experiment that has been highly successful in our introductory biology courses at…
Descriptors: Ecology, Biology, Science Instruction, Teaching Methods
Christensen, Dana; Lombardi, Doug – Science & Education, 2020
Computational thinking is a contemporary science and engineering practice that has been introduced to the US science classrooms due to its emphasis in the "Next Generation Science Standards" (NGSS). However, including computational thinking into science instruction may be challenging. Therefore, for biological evolution (an essential…
Descriptors: Biology, Evolution, Thinking Skills, Teaching Methods
Kapsala, Nausica; Galani, Apostolia; Mavrikaki, Evangelia – Center for Educational Policy Studies Journal, 2022
The nature of science describes what science is, how it works, and its interactions with society under the perspectives of philosophy, history, sociology, and psychology of science. Understanding it is an essential aspect of scientific literacy. Given the critical role that school textbooks hold, considering what is taught and how it is taught in…
Descriptors: Scientific Principles, Science Instruction, Teaching Methods, Secondary School Students
Valencia Narbona, Martina; Núñez Nieto, Paola; Cofré Mardones, Hernán – International Journal of Science Education, 2023
There is worldwide agreement that the understanding of the Nature of Science (NOS) is a critical component of scientific literacy. However, evidence indicates that both pre-service and in-service science teachers hold naïve views about NOS. Even so, the characteristics of pre-service teachers that influence their learning of NOS are not fully…
Descriptors: Scientific Principles, History, Science Instruction, Teaching Methods
Johnston, Angie M.; Sheskin, Mark; Johnson, Samuel G. B.; Keil, Frank C. – Child Development, 2018
One of the core functions of explanation is to support prediction and generalization. However, some explanations license a broader range of predictions than others. For instance, an explanation about biology could be presented as applying to a specific case (e.g., "this bear") or more generally across "all animals." The current…
Descriptors: Prediction, Generalization, Biology, Adults