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White, Harold B., III; Usher, David C. – Biochemistry and Molecular Biology Education, 2015
Undergraduates having their first research experience frequently have little idea of what to expect. Institutions offering summer research experiences attempt to address this issue through programs that introduce students to the process and culture of science. However, didactic approaches frequently bore students who prefer more interactive…
Descriptors: Novices, Undergraduate Students, Summer Science Programs, Student Research
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Pillay, Ché S. – Biochemistry and Molecular Biology Education, 2020
Jupyter notebooks are widely used for data analysis across a large number of scientific disciplines. As a result of the COVID-19 pandemic, I developed a series of computational exercises using the Jupyter notebook to replace the laboratory exercises usually undertaken in my course. My students had no prior coding knowledge and therefore these…
Descriptors: COVID-19, Pandemics, Educational Technology, Technology Uses in Education
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Johnston, Jill; Kant, Sashi; Gysbers, Vanessa; Hancock, Dale; Denyer, Gareth – Biochemistry and Molecular Biology Education, 2014
Despite many apparent advantages, including security, back-up, remote access, workflow, and data management, the use of electronic laboratory notebooks (ELNs) in the modern research laboratory is still developing. This presents a challenge to instructors who want to give undergraduate students an introduction to the kinds of data curation and…
Descriptors: Portfolios (Background Materials), Electronic Publishing, Undergraduate Students, Biochemistry
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Wallert, Mark A.; Provost, Joseph J. – Biochemistry and Molecular Biology Education, 2014
To enhance the preparedness of graduates from the Biochemistry and Biotechnology (BCBT) Major at Minnesota State University Moorhead for employment in the bioscience industry we have developed a new Industry certificate program. The BCBT Industry Certificate was developed to address specific skill sets that local, regional, and national industry…
Descriptors: Biochemistry, Biotechnology, Undergraduate Students, Career Readiness
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Garrett, Teresa A.; Osmundson, Joseph; Isaacson, Marisa; Herrera, Jennifer – Biochemistry and Molecular Biology Education, 2015
In traditional introductory biochemistry laboratory classes students learn techniques for protein purification and analysis by following provided, established, step-by-step procedures. Students are exposed to a variety of biochemical techniques but are often not developing procedures or collecting new, original data. In this laboratory module,…
Descriptors: Undergraduate Study, College Science, Biochemistry, Science Laboratories
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Kong, Sunnie; Kumta, Shruti; Vardar-Ulu, Didem – Biochemistry and Molecular Biology Education, 2022
The COVID-19 pandemic emphasized the importance of peer communication networks for student outcomes. Herein, we describe the use of supplemental instructional videos created by former students and integrated into electronic lab notebooks, to restore the lost community-learning component using student voices in a de-densified upper-division…
Descriptors: Alumni, Peer Teaching, Science Instruction, Supplementary Reading Materials
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Gupta, Yash Munnalal; Kirana, Satwika Nindya; Homchan, Somjit; Tanasarnpaiboon, Supatcharee – Biochemistry and Molecular Biology Education, 2023
The COVID-19 pandemic has forced the Bioinformatics course to switch from on-site teaching to remote learning. This shift has prompted a change in teaching methods and laboratory activities. Students need to have a basic understanding of DNA sequences and how to analyze them using custom scripts. To facilitate learning, we have modified the course…
Descriptors: Programming Languages, Teaching Methods, Computer Software, Genetics
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Chen, Stefanie H. – Biochemistry and Molecular Biology Education, 2022
The COVID-19 pandemic forced many courses to move online, presenting a particular challenge for hands-on laboratory courses. One such course in our Biotechnology track is an advanced Protein Interactions lecture/laboratory course. This 8-week course typically meets for 5 h a week in the laboratory space. For the Fall 2020 version of the course,…
Descriptors: Distance Education, Laboratory Experiments, Science Instruction, Video Technology
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Poolman, Toryn M.; Townsend-Nicholson, Andrea; Cain, Amanda – Biochemistry and Molecular Biology Education, 2022
The final year of a biochemistry degree is usually a time to experience research. However, laboratory-based research projects were not possible during COVID-19. Instead, we used open datasets to provide computational research projects in metagenomics to biochemistry undergraduates (80 students with limited computing experience). We aimed to give…
Descriptors: Genetics, Undergraduate Students, Biological Sciences, Internet
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Kaste, Joshua A. M.; Green, Antwan; Shachar-Hill, Yair – Biochemistry and Molecular Biology Education, 2023
The modeling of rates of biochemical reactions--fluxes--in metabolic networks is widely used for both basic biological research and biotechnological applications. A number of different modeling methods have been developed to estimate and predict fluxes, including kinetic and constraint-based (Metabolic Flux Analysis and flux balance analysis)…
Descriptors: Science Instruction, Teaching Methods, Prediction, Metabolism
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Oelkers, Peter M. – Biochemistry and Molecular Biology Education, 2017
A single semester molecular biology laboratory has been developed in which students design and execute a project examining transcriptional regulation in "Saccharomyces cerevisiae." Three weeks of planning are allocated to developing a hypothesis through literature searches and use of bioinformatics. Common experimental plans address a…
Descriptors: Laboratory Experiments, Molecular Biology, Active Learning, Inquiry
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Hall, Mona L.; Vardar-Ulu, Didem – Biochemistry and Molecular Biology Education, 2014
The laboratory setting is an exciting and gratifying place to teach because you can actively engage the students in the learning process through hands-on activities; it is a dynamic environment amenable to collaborative work, critical thinking, problem-solving and discovery. The guided inquiry-based approach described here guides the students…
Descriptors: Inquiry, Active Learning, Biochemistry, Science Instruction