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Showing 1 to 15 of 183 results
Figueira, Angela C. M.; Rocha, Joao B. T. – Biochemistry and Molecular Biology Education, 2014
This article presents a problem-based learning (PBL) approach to teaching elementary biochemistry to undergraduate students. The activity was based on "the foods we eat." It was used to engage students' curiosity and to initiate learning about a subject that could be used by the future teachers in the high school. The experimental…
Descriptors: Undergraduate Students, College Science, Biochemistry, Problem Based Learning
Rowland, Susan L.; Myatt, Paula M. – Biochemistry and Molecular Biology Education, 2014
SoTL stands for the Scholarship of Teaching and Learning. The acronym, said "sottle" or "sote-all," describes research that involves rigorous examination of teaching and learning by faculty who are actively involved in the educational process. The number of natural-science faculty engaged in SoTL is increasing, and their…
Descriptors: College Faculty, Educational Research, Scholarship, Natural Sciences
Wilkesman, Jeff; Castro, Diana; Contreras, Lellys M.; Kurz, Liliana – Biochemistry and Molecular Biology Education, 2014
This laboratory exercise presents a novel way to introduce undergraduate students to the specific detection of enzymatic activity by electrophoresis. First, students prepare a crude peroxidase extract and then analyze the homogenate via electrophoresis. Zymography, that is, a SDS-PAGE method to detect enzyme activity, is used to specifically…
Descriptors: Science Laboratories, College Science, Undergraduate Students, Molecular Structure
McDougal, Owen M.; Cornia, Nic; Sambasivarao, S. V.; Remm, Andrew; Mallory, Chris; Oxford, Julia Thom; Maupin, C. Mark; Andersen, Tim – Biochemistry and Molecular Biology Education, 2014
DockoMatic 2.0 is a powerful open source software program (downloadable from sourceforge.net) that allows users to utilize a readily accessible computational tool to explore biomolecules and their interactions. This manuscript describes a practical tutorial for use in the undergraduate curriculum that introduces students to macromolecular…
Descriptors: Science Instruction, Computer Software, Educational Technology, Computer Uses in Education
Moran, Paloma; Galindo, Juan – Biochemistry and Molecular Biology Education, 2011
We report a practical home-made microcentrifuge to be used for teaching purposes. It was made using a salad spinner and two polymerase chain reaction (PCR) tubes racks. It can accommodate 2 standard size 96-well plates or 24 strips or up to 192 microfuge tube. The centrifuge is hand-operated and is ideal for short spin down purposes. (Contains 3…
Descriptors: Science Course Improvement Projects, Science Materials, Science Equipment, Material Development
Cox, James R. – Biochemistry and Molecular Biology Education, 2011
This report describes the incorporation of digital learning elements in organic chemistry and biochemistry courses. The first example is the use of pen-based technology and a large-format PowerPoint slide to construct a map that integrates various metabolic pathways and control points. Students can use this map to visualize the integrated nature…
Descriptors: Organic Chemistry, Biochemistry, Educational Technology, Web Based Instruction
Bell, Ellis – Biochemistry and Molecular Biology Education, 2011
A course design for first-year science students is described, where the focus is on the skills necessary to do science. The course uses original research projects, designed by the students, to teach a variety of skills including reading the scientific literature, hypothesis development and testing, experimental design, data analysis and…
Descriptors: Research Design, Research Methodology, Data Analysis, Research
Zhang, Xiaorong – Biochemistry and Molecular Biology Education, 2011
We incorporated a bioinformatics component into the freshman biology course that allows students to explore cystic fibrosis (CF), a common genetic disorder, using bioinformatics tools and skills. Students learn about CF through searching genetic databases, analyzing genetic sequences, and observing the three-dimensional structures of proteins…
Descriptors: Genetic Disorders, Genetics, Biology, Scientific Concepts
Ruller, Roberto; Silva-Rocha, Rafael; Silva, Artur; Schneider, Maria Paula Cruz; Ward, Richard John – Biochemistry and Molecular Biology Education, 2011
Protein engineering is a powerful tool, which correlates protein structure with specific functions, both in applied biotechnology and in basic research. Here, we present a practical teaching course for engineering the green fluorescent protein (GFP) from "Aequorea victoria" by a random mutagenesis strategy using error-prone polymerase chain…
Descriptors: Chemistry, Biotechnology, Engineering, Scientific Research
Fuselier, Linda; Bougary, Azhar; Malott, Michelle – Biochemistry and Molecular Biology Education, 2011
Students benefit most from their science education when they participate fully in the process of science in the context of real-world problems. We describe a student-directed open-inquiry lab experience that has no predetermined outcomes and requires students to engage in all components of scientific inquiry from posing a question through…
Descriptors: World Problems, Student Attitudes, Molecular Biology, Science Education
Anderson, Trevor R.; Rogan, John M. – Biochemistry and Molecular Biology Education, 2011
This article summarizes the major components of curriculum design: vision, operationalization of the vision, design, and evaluation. It stresses that the relationship between these components is dynamic, and that the process of curriculum design does not proceed via a linear application of these components. The article then summarizes some of the…
Descriptors: Curriculum Development, Curriculum Design, Educational Research, Vision
An Approach to Teaching General Chemistry II that Highlights the Interdisciplinary Nature of Science
Sumter, Takita Felder; Owens, Patrick M. – Biochemistry and Molecular Biology Education, 2011
The need for a revised curriculum within the life sciences has been well-established. One strategy to improve student preparation in the life sciences is to redesign introductory courses like biology, chemistry, and physics so that they better reflect their disciplinary interdependence. We describe a medically relevant, context-based approach to…
Descriptors: Introductory Courses, Scientific Principles, Student Interests, Chemistry
Crowley, Thomas E. – Biochemistry and Molecular Biology Education, 2010
In "Photobacterium," the flavin reductase encoded by "lux"G regenerates the reduced form of flavin mononucleotide (FMN). Reduced FMN is one of the substrates of the luciferase enzyme that catalyzes a light-emitting reaction. A set of experiments, that employs a "lux"G-expression plasmid construct (pGhis) and is suitable for an undergraduate…
Descriptors: Biochemistry, Laboratory Experiments, Microbiology, Light
Weinlander, Kenneth M.; Hall, David J.; De Stasio, Elizabeth A. – Biochemistry and Molecular Biology Education, 2010
We describe here two open-ended laboratory investigations for an undergraduate laboratory course that uses students' DNA as templates for quantitative real-time PCR and for traditional PCR followed by RFLP analysis. Students are captivated by the immediacy of the application and the relevance of the genotypes and traits, lactase persistence or…
Descriptors: Molecular Biology, Genetics, Laboratory Experiments, Undergraduate Students
Parra, Karlett J.; Osgood, Marcy P.; Pappas, Donald L., Jr. – Biochemistry and Molecular Biology Education, 2010
We describe a 10-week laboratory course of guided research experiments thematically linked by topic, which had an ultimate goal of strengthening the undergraduate research-teaching nexus. This undergraduate laboratory course is a direct extension of faculty research interests. From DNA isolation, characterization, and mutagenesis, to protein…
Descriptors: Undergraduate Study, Genetics, Molecular Biology, Biochemistry

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