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Showing 1 to 15 of 41 results
Barber, Nicola C.; Stark, Louisa A. – CBE - Life Sciences Education, 2014
Cells are bustling factories with diverse and prolific arrays of molecular machinery. Remarkably, this machinery self-organizes to carry out the complex biochemical activities characteristic of life. When Watson and Crick published the structure of DNA, they noted that DNA base pairing creates a double-stranded form that provides a means of…
Descriptors: Science Instruction, Biochemistry, Genetics, Molecular Structure
Hester, Susan; Buxner, Sanlyn; Elfring, Lisa; Nagy, Lisa – CBE - Life Sciences Education, 2014
Recent calls for improving undergraduate biology education have emphasized the importance of students learning to apply quantitative skills to biological problems. Motivated by students' apparent inability to transfer their existing quantitative skills to biological contexts, we designed and taught an introductory molecular and cell biology…
Descriptors: Undergraduate Students, Introductory Courses, College Science, Science Instruction
Peer reviewedLuckie, Douglas B.; Rivkin, Aaron M.; Aubry, Jacob R.; Marengo, Benjamin J.; Creech, Leah R.; Sweeder, Ryan D. – CBE - Life Sciences Education, 2013
We studied gains in student learning over eight semesters in which an introductory biology course curriculum was changed to include optional verbal final exams (VFs). Students could opt to demonstrate their mastery of course material via structured oral exams with the professor. In a quantitative assessment of cell biology content knowledge,…
Descriptors: Introductory Courses, Cytology, College Science, Verbal Tests
Cox-Paulson, Elisabeth A.; Grana, Theresa M.; Harris, Michelle A.; Batzli, Janet M. – CBE - Life Sciences Education, 2012
Scientists routinely integrate information from various channels to explore topics under study. We designed a 4-wk undergraduate laboratory module that used a multifaceted approach to study a question in molecular genetics. Specifically, students investigated whether "Caenorhabditis elegans" can be a useful model system for studying genes…
Descriptors: Genetics, Laboratories, Human Body, Diseases
Gray, Ross; Gray, Andrew; Fite, Jessica L.; Jordan, Renee; Stark, Sarah; Naylor, Kari – CBE - Life Sciences Education, 2012
Phagocytosis and exocytosis are two cellular processes involving membrane dynamics. While it is easy to understand the purpose of these processes, it can be extremely difficult for students to comprehend the actual mechanisms. As membrane dynamics play a significant role in many cellular processes ranging from cell signaling to cell division to…
Descriptors: Educational Games, Botany, Cytology, Science Process Skills
Mayorga, Luis S.; Lopez, Maria Jose; Becker, Wayne M. – CBE - Life Sciences Education, 2012
Thermodynamic principles are basic to an understanding of the complex fluxes of energy and information required to keep cells alive. These microscopic machines are nonequilibrium systems at the micron scale that are maintained in pseudo-steady-state conditions by very sophisticated processes. Therefore, several nonstandard concepts need to be…
Descriptors: Thermodynamics, Chemistry, Scientific Concepts, Cytology
Jenkinson, Jodie; McGill, Gael – CBE - Life Sciences Education, 2012
Undergraduate biology education provides students with a number of learning challenges. Subject areas that are particularly difficult to understand include protein conformational change and stability, diffusion and random molecular motion, and molecular crowding. In this study, we examined the relative effectiveness of three-dimensional…
Descriptors: Animation, Medical Schools, Visualization, Motion
Newman, Dina L.; Catavero, Christina M.; Wright, L. Kate – CBE - Life Sciences Education, 2012
Cellular processes that rely on knowledge of molecular behavior are difficult for students to comprehend. For example, thorough understanding of meiosis requires students to integrate several complex concepts related to chromosome structure and function. Using a grounded theory approach, we have unified classroom observations, assessment data, and…
Descriptors: Genetics, Grounded Theory, Data Analysis, Concept Teaching
Kramer, IJsbrand M.; Dahmani, Hassen-Reda; Delouche, Pamina; Bidabe, Marissa; Schneeberger, Patricia – CBE - Life Sciences Education, 2012
The large number of experimentally determined molecular structures has led to the development of a new semiotic system in the life sciences, with increasing use of accurate molecular representations. To determine how this change impacts students' learning, we incorporated image tests into our introductory cell biology course. Groups of students…
Descriptors: Computer Uses in Education, Introductory Courses, Biology, Control Groups
Wiegant, Fred; Scager, Karin; Boonstra, Johannes – CBE - Life Sciences Education, 2011
This article reports on a one-semester Advanced Cell Biology course that endeavors to bridge the gap between gaining basic textbook knowledge about cell biology and learning to think and work as a researcher. The key elements of this course are 1) learning to work with primary articles in order to get acquainted with the field of choice, to learn…
Descriptors: Undergraduate Students, Scientific Research, Advanced Courses, Cytology
Siritunga, Dimuth; Montero-Rojas, Maria; Carrero, Katherine; Toro, Gladys; Velez, Ana; Carrero-Martinez, Franklin A. – CBE - Life Sciences Education, 2011
Today, more minority students are entering undergraduate programs than ever before, but they earn only 6% of all science or engineering PhDs awarded in the United States. Many studies suggest that hands-on research activities enhance students' interest in pursuing a research career. In this paper, we present a model for the implementation of…
Descriptors: Research Methodology, Genetics, Laboratories, Cytology
Richmond, Gail; Merritt, Brett; Urban-Lurain, Mark; Parker, Joyce – CBE - Life Sciences Education, 2010
Recent science education reform has been marked by a shift away from a focus on facts toward deep, rich, conceptual understanding. This requires assessment that also focuses on conceptual understanding rather than recall of facts. This study outlines our development of a new assessment framework and tool--a taxonomy--which, unlike existing…
Descriptors: Scientific Concepts, Molecular Biology, Educational Change, Cytology
Shi, Jia; Wood, William B.; Martin, Jennifer M.; Guild, Nancy A.; Vicens, Quentin; Knight, Jennifer K. – CBE - Life Sciences Education, 2010
We have developed and validated a tool for assessing understanding of a selection of fundamental concepts and basic knowledge in undergraduate introductory molecular and cell biology, focusing on areas in which students often have misconceptions. This multiple-choice Introductory Molecular and Cell Biology Assessment (IMCA) instrument is designed…
Descriptors: Fundamental Concepts, Student Evaluation, Cytology, Biology
Taylor, Jared L.; Smith, Karen M.; van Stolk, Adrian P.; Spiegelman, George B. – CBE - Life Sciences Education, 2010
Invention activities challenge students to tackle problems that superficially appear unrelated to the course material but illustrate underlying fundamental concepts that are fundamental to material that will be presented. During our invention activities in a first-year biology class, students were presented with problems that are parallel to those…
Descriptors: Fundamental Concepts, Problem Solving, Biology, Teaching Methods
Belanger, Kenneth D. – CBE - Life Sciences Education, 2009
Inquiry-driven lab exercises require students to think carefully about a question, carry out an investigation of that question, and critically analyze the results of their investigation. Here, we describe the implementation and assessment of an inquiry-based laboratory exercise in which students obtain and analyze novel data that contribute to our…
Descriptors: Scientific Research, Investigations, Molecular Biology, Data Analysis

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