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Salinas, Dino G.; Gallardo, Mauricio O. – International Journal of Mathematical Education in Science and Technology, 2022
Biological systems exhibit strong dynamic variations; for example, a system may have a tendency towards either a steady state, periodic behaviour or chaotic oscillations. These findings, explained by dynamic systems theory, have allowed researchers to formally relate a wide variety of systems, such as the theory of rumour propagation, glucose…
Descriptors: Biology, Mathematics Instruction, Science Instruction, Teaching Methods
Yeo, Brandon Pei Hui; Foong, Lian Chee; Tam, Sheh May; Lee, Vivian; Hwang, Siaw San – Biochemistry and Molecular Biology Education, 2018
Structures and functions of protein motifs are widely included in many biology-based course syllabi. However, little emphasis is placed to link this knowledge to applications in biotechnology to enhance the learning experience. Here, the conserved motifs of nucleotide binding site-leucine rich repeats (NBS-LRR) proteins, successfully used for the…
Descriptors: Genetics, Science Instruction, Teaching Methods, Biochemistry
Cooper, Robert A. – American Biology Teacher, 2015
This paper presents an activity that engages students in model-based reasoning, requiring them to predict the behavior of the trp and lac operons under different environmental conditions. Students are presented six scenarios for the "trp" operon and five for the "lac" operon. In most of the scenarios, specific mutations have…
Descriptors: Biology, Models, Prediction, Vignettes
Baurhoo, Neerusha; Darwish, Shireef – American Biology Teacher, 2012
Predicting phenotypic outcomes from genetic crosses is often very difficult for biology students, especially those with learning disabilities. With our mathematical concept, struggling students in inclusive biology classrooms are now better equipped to solve genetic problems and predict phenotypes, because of improved understanding of dominance…
Descriptors: Learning Disabilities, Genetics, Biology, Mathematical Concepts

Mertens, Thomas R.; Walker, Julie O. – American Biology Teacher, 1992
Describes the Bajema strategy for teaching meiosis and how it is used in the general genetics course at Ball State University and can be used to identify students who have misconceptions of meiosis that can interfere with their learning the basics of Mendelian inheritance. (Contains 11 references.) (MDH)
Descriptors: Achievement, Biology, College Science, Correlation

Sinclair, Anne S. – Journal of Research and Development in Education, 1994
This study used qualitative and quantitative methods to examine the effects on students' learning, motivation, attitude, participation, and critical thinking when prediction activities were used in teaching genetic concepts in high school biology. The prediction activities enhanced students' critical analysis, interest, and participation.…
Descriptors: Achievement, Biological Sciences, Classroom Environment, Critical Thinking