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Gervásio, João; Sampaio, Yala; Muniz, Paulo; Yamada, Camila; Felicori, Liza F. – Biochemistry and Molecular Biology Education, 2022
Learning synthetic biology is often seen as a far distant possibility, restricted to those who have the privilege of an academic career. We propose a student-centered discussion group around synthetic biology, aimed at people from high school onwards with different backgrounds to interact and learn about synthetic biology. We developed a 14-week…
Descriptors: Biology, Science Instruction, Group Discussion, Teaching Methods
Effects of Interactive-Mobile Learning Modules in Students' Engagement and Understanding in Genetics
Denis Dyvee Errabo; Areeya Amor Ongoco – Journal of Research in Innovative Teaching & Learning, 2024
Purpose: The principal aim of the research was to develop Interactive Mobile Learning Modules (IMLM) as an approach to innovative teaching practices in online distance education. Design/methodology/approach: The study employed educational action research, using a quasi-experimental design catering to ninth-grade students (N = 104) attending a…
Descriptors: Handheld Devices, Telecommunications, Experiential Learning, Learner Engagement
Jinglin Fu; Anthony Monte Carlo; Doris Zheng – Journal of Chemical Education, 2025
The COVID-19 pandemic has accelerated the shift from traditional in-person teaching to remote and online learning, necessitating a more adaptable educational platform to serve the diverse needs of students. Transforming hands-on "wet lab" activities into virtual "dry lab" exercises can promote a more accessible and flexible…
Descriptors: Undergraduate Students, College Science, Science Education, Biochemistry
Homburger, Sheila A.; Drits-Esser, Dina; Malone, Molly; Stark, Louisa A. – American Biology Teacher, 2021
Arguing from evidence is one of eight key science practices in which students should engage. It is an essential component of science, yet students have difficulties with this practice. We describe a scaffolded claims-evidence-reasoning (CER) argumentation framework that is embedded within a new eight-week, freely available curriculum unit…
Descriptors: Persuasive Discourse, Science Instruction, Evidence, Logical Thinking
Jungck, John R. – PRIMUS, 2022
Finite Mathematics has become an enormously rich and productive area of contemporary mathematical biology. Fortunately, educators have developed educational modules based upon many of the models that have used Finite Mathematics in mathematical biology research. A sufficient variety of computer modules that employ graph theory (phylogenetic trees,…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Models, Learning Modules
Reinoso, Elina B.; Bettera, Susana G. – Biochemistry and Molecular Biology Education, 2016
In this article, we describe a basic practical laboratory designed for fifth-year undergraduate students of Microbiology as part of the Epidemiology course. This practice provides the students with the tools for molecular epidemiological analysis of pathogenic microorganisms using a rapid and simple PCR technique. The aim of this work was to assay…
Descriptors: Epidemiology, Genetics, Teaching Methods, Molecular Biology
Guilford, Jacquelyn; Bustamante, Annette; Mackura, Kelly; Hirsch, Susan; Lyon, Edward; Estrada, Kelly – Science Teacher, 2017
Learning science is language intensive. Students might have to interpret the meaning of models, support claims with evidence, communicate arguments, and discuss phenomena and scientific principles. For English Language Learners (ELLs), engaging in scientific and engineering practices includes additional challenges. This article describes a series…
Descriptors: Scientific Literacy, Science Achievement, English Language Learners, Scientific Principles
Hoffman, Kathleen; Leupen, Sarah; Dowell, Kathy; Kephart, Kerrie; Leips, Jeff – CBE - Life Sciences Education, 2016
Redesigning undergraduate biology courses to integrate quantitative reasoning and skill development is critical to prepare students for careers in modern medicine and scientific research. In this paper, we report on the development, implementation, and assessment of stand-alone modules that integrate quantitative reasoning into introductory…
Descriptors: Undergraduate Study, College Science, Biology, Thinking Skills
Yang, Xinmiao; Hartman, Mark R.; Harrington, Kristin T.; Etson, Candice M.; Fierman, Matthew B.; Slonim, Donna K.; Walt, David R. – CBE - Life Sciences Education, 2017
With the development of new sequencing and bioinformatics technologies, concepts relating to personal genomics play an increasingly important role in our society. To promote interest and understanding of sequencing and bioinformatics in the high school classroom, we developed and implemented a laboratory-based teaching module called "The…
Descriptors: Science Instruction, Secondary School Science, High School Students, Genetics
Poulin, Jessica; Ramamurthy, Bina; Dittmar, Katharina – Journal of College Science Teaching, 2013
Population genetics is fundamental to understanding evolutionary theory, and is taught in most introductory biology/evolution courses. Many students are unaware that understanding this topic requires pertinent knowledge
of mathematics and consequently struggle with the subject. As a response to this problem, a virtual tool (Pop!World) was…
Descriptors: Genetics, Evolution, Learning Modules, Introductory Courses
Dean, Derek M.; Wilder, Jason A. – Biochemistry and Molecular Biology Education, 2011
We describe an investigative laboratory module designed to give college undergraduates strong practical and theoretical experience with recombinant DNA methods within 3 weeks. After deducing restriction enzyme maps for two different plasmids, students ligate the plasmids together in the same reaction, transform "E. coli" with this mixture of…
Descriptors: Genetics, Teaching Methods, Investigations, Program Descriptions
Grisham, William; Schottler, Natalie A.; Valli-Marill, Joanne; Beck, Lisa; Beatty, Jackson – CBE - Life Sciences Education, 2010
This completely computer-based module's purpose is to introduce students to bioinformatics resources. We present an easy-to-adopt module that weaves together several important bioinformatic tools so students can grasp how these tools are used in answering research questions. Students integrate information gathered from websites dealing with…
Descriptors: Genetics, Biotechnology, Molecular Biology, Anatomy
Herron, Sherry; Gopal, Tamilselvi – Journal of Computers in Mathematics and Science Teaching, 2012
We conducted a series of summer workshops on bioinformatics to increase educators' knowledge of this new field of inquiry with the assumption that their knowledge will, in turn, impact student achievement. The workshops incorporated experiential learning and self-reflection (Loucks-Horsley et al. 1998). Educators demonstrated significant increases…
Descriptors: Pretests Posttests, Experiential Learning, Teacher Workshops, Biology
Bello, Julia; Butler, Charles; Radavich, Rosanne; York, Alan; Oseto, Christian; Orvis, Kathryn; Pittendrigh, Barry R. – Science Education Review, 2007
Although members of the general public have often heard of the terms "genetic engineering" and, more recently, genomics, they typically have little to no knowledge about these topics, and in some cases are confused about basic concepts in these areas. There is currently a need for teaching models to explain concepts behind genomics.…
Descriptors: Logical Thinking, Genetics, Teaching Models, Scientific Concepts
Cooper, Scott; Hanmer, Deborah; Cerbin, Bill – American Biology Teacher, 2006
We studied the effect of formative assessment and feedback on learning. Students produced phylogenetic trees based upon morphological and molecular data. The trees were projected in class, feedback provided, and the process repeated twice with new data. Assessment revealed that these in-class modules resulted in significant improvement in student…
Descriptors: Feedback, Formative Evaluation, Problem Solving, Learning Modules

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