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Juli D. Uhl; Megan Shiroda; Kevin C. Haudek – Journal of Biological Education, 2024
National calls to improve science education include focusing on scientific practices coupled with learning disciplinary core ideas. Among the practices is constructing explanations. In the field of cellular and molecular biology, explanations typically include a mechanism and can be used to make predictions about phenomena. In this work, we…
Descriptors: Molecular Biology, Cytology, Genetics, Scientific Concepts
Fatma Karaismailoglu; Mehtap Yildirim – Research in Science & Technological Education, 2024
Background: Spatial ability has an important place in science education, which is effective in raising future scientists. Although not in large numbers, studies show that teachers' spatial abilities somehow affect their teaching practices in the classroom and thus the spatial abilities of their students. Purpose: This study aimed to investigate…
Descriptors: Models, Educational Technology, Computer Simulation, Flipped Classroom
Lin, Henry J.; Lehoang, Jennifer; Kwan, Isabel; Baghaee, Anita; Prasad, Priya; Ha-Chen, Stephanie J.; Moss, Tanesha; Woods, Jeremy D. – Biochemistry and Molecular Biology Education, 2018
The 8 studs on a 2 × 4 Lego brick conveniently represent the outer shell of electrons for carbon, nitrogen, and oxygen atoms. We used Lego bricks to model these atoms, which are then joined together to form molecules by following the Lewis octet rule. A variety of small biological molecules can be modeled in this way, such as most amino acids,…
Descriptors: Toys, Molecular Biology, Science Instruction, Teaching Methods
Elwess, Nancy L.; Latourelle, Sandra M.; Myers, Luke – Journal of Biological Education, 2018
DNA Barcoding is a powerful molecular biology tool for the identification of species, analysis of gene flow from within and between populations and evaluating species concepts. The process can be incorporated into a college genetics or bioinformatics core curriculum. Here we demonstrate how, by simply using Plecoptera, we actively engaged students…
Descriptors: Genetics, Molecular Biology, College Science, College Students
Heinemann, Jack A.; Goldstien, Sharyn – Journal of Biological Education, 2022
Institution-crippling earthquakes limited teaching contact hours and range of teaching environments. New ways became needed to achieve the same learning outcomes in less time. Following that disaster, new methods based on active and test-enhanced learning were introduced into two undergraduate molecular biology courses. The courses had a mixture…
Descriptors: Active Learning, Undergraduate Students, Molecular Biology, Science Instruction
Wright, Leslie Kate; Cortez, Paulina; Franzen, Margaret A.; Newman, Dina L. – Biochemistry and Molecular Biology Education, 2022
Many biology students struggle to learn about the process of meiosis and have particular difficulty understanding the molecular basis of crossing over and the importance of homologous pairing for proper segregation. To help students overcome these challenges, we designed an activity that uses a newly developed Chromosome Connections Kit® from 3-D…
Descriptors: Science Instruction, Teaching Methods, Science Activities, Scientific Concepts
Pedro A. Fernandes; O´scar Passos; Maria J. Ramos – Journal of Chemical Education, 2022
The COVID-19 pandemic has brought many challenges to human beings, related to not only health and way of life but also teaching because of the interruption of the standard training at universities imposed by lockdowns. Concerning the latter, the academic community had to reinvent itself, in many ways, to carry on with prepandemic education. This…
Descriptors: COVID-19, Pandemics, Educational Technology, Computer Software
Slee, Joshua B.; McLaughlin, Jacqueline S. – Biochemistry and Molecular Biology Education, 2019
Often overlooked in many molecular cell biology laboratory and cell culture courses, suspension cells represent an important aspect of molecular cell biology and cell culture. Most primary cell cultures and cell lines are adherent cells which grow in monolayers on surfaces. However, other cells such as hematopoietic cells, certain tumor cells, and…
Descriptors: Science Instruction, Science Process Skills, Cytology, Molecular Biology
Ortiz Lechuga, Eugenia Guadalupe; Tovar Herrera, Omar Eduardo; Arévalo Niño, Katiushka – Biochemistry and Molecular Biology Education, 2019
In this work, we present the results of an undergrad student from the perspective of its first approach as a principal researcher in a project. In order to gain practical experience, one of the options for students that have interest in pursuing a postgraduate program corresponds to a research stay in a laboratory of their selected field…
Descriptors: Undergraduate Students, College Science, Biotechnology, Biochemistry
Green, Abigail I.; Parent, Kristin N.; Underwood, Sonia M.; Matz, Rebecca L. – American Biology Teacher, 2021
Core chemistry ideas can be useful tools for explaining biological phenomena, but students often have difficulty understanding these core ideas within general chemistry. Connecting these ideas to biologically relevant situations is even more difficult. These difficulties arise, in part, from a lack of explicit opportunities in relevant courses for…
Descriptors: Scientific Concepts, Chemistry, Biology, Interdisciplinary Approach
Bachhawat, Anand K.; Pandit, Shashi Bhushan; Banerjee, Indranil; Anand, Shashi; Sarkar, Roman; Mrigwani, Arpita; Mishra, Shravan Kumar – Biochemistry and Molecular Biology Education, 2020
Undergraduate laboratory courses, owing to their larger sizes and shorter time slots, are often conducted in highly structured modes. However, this approach is known to interfere with students' engagement in the experiments. To enhance students' engagement, we propose an alternative mode of running laboratory courses by creating some…
Descriptors: College Science, Undergraduate Study, Science Instruction, Science Laboratories
Poronnik, Philip; Sellwood, Matthew J. – Biochemistry and Molecular Biology Education, 2020
This brief review explores the ever-increasing role that technological affordances may play in the 21C biochemistry and molecular biology curriculum. We consider the need to develop digital and creative fluencies in our students and the importance of creativity and visualization in learning science. The potential of virtual reality (VR) platforms…
Descriptors: Science Instruction, Biochemistry, Molecular Biology, Educational Technology
Yoshida, R.; Page, R. – PRIMUS, 2022
In the fall of 2009 and in the spring of 2012, supported by the National Institute of General Medical Sciences (NIGMS) in the National Institutes of Health (NIH), we designed a course "Phylogenetic Analysis and Molecular Evolution" (PAME), the first cross-listed course across three different colleges (College of Arts and Sciences,…
Descriptors: Molecular Biology, Evolution, Molecular Structure, Graduate Students
Militello, Kevin T.; Reinhardt, Josephine A. – Biochemistry and Molecular Biology Education, 2019
Next generation sequencing has revolutionized molecular biology and has provided a mechanism for rapid DNA and RNA sequence analysis. Yet, there are few resources to introduce next generation sequencing into the undergraduate biochemistry and molecular biology curriculum. Herein, we describe the design, execution, and assessment of a four-week…
Descriptors: Science Laboratories, Molecular Biology, Undergraduate Study, College Science
Phelan, Shelley A.; Szabo, Elizabeth – Biochemistry and Molecular Biology Education, 2019
This sequence of labs was developed for an upper level undergraduate cell biology course at Fairfield University. The labs are based on the use of the K562 human erythroleukemia cell line, a model system that is exceptionally amenable to an undergraduate cell biology lab course due to its ease of maintenance and propagation and usefulness for…
Descriptors: Undergraduate Students, College Science, Science Instruction, Science Laboratories