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Showing 1 to 15 of 104 results
Stevens, Leslie M.; Hoskins, Sally G. – CBE - Life Sciences Education, 2014
The CREATE (Consider Read, Elucidate the hypotheses, Analyze and interpret the data, and Think of the next Experiment) strategy aims to demystify scientific research and scientists while building critical thinking, reading/analytical skills, and improved science attitudes through intensive analysis of primary literature. CREATE was developed and…
Descriptors: Primary Sources, Scientific Research, College Faculty, Teacher Workshops
Linton, Debra L.; Farmer, Jan Keith; Peterson, Ernie – CBE - Life Sciences Education, 2014
Meta-analyses of active-learning research consistently show that active-learning techniques result in greater student performance than traditional lecture-based courses. However, some individual studies show no effect of active-learning interventions. This may be due to inexperienced implementation of active learning. To minimize the effect of…
Descriptors: Active Learning, Peer Groups, Interaction, Meta Analysis
Van Lacum, Edwin B.; Ossevoort, Miriam A.; Goedhart, Martin J. – CBE - Life Sciences Education, 2014
The aim of this study is to evaluate a teaching strategy designed to teach first-year undergraduate life sciences students at a research university how to learn to read authentic research articles. Our approach--based on the work done in the field of genre analysis and argumentation theory--means that we teach students to read research articles by…
Descriptors: Undergraduate Students, Teaching Methods, Reading Motivation, Journal Articles
Wright, L. Kate; Fisk, J. Nick; Newman, Dina L. – CBE - Life Sciences Education, 2014
The central dogma of molecular biology, a model that has remained intact for decades, describes the transfer of genetic information from DNA to protein though an RNA intermediate. While recent work has illustrated many exceptions to the central dogma, it is still a common model used to describe and study the relationship between genes and protein…
Descriptors: Molecular Biology, Genetics, Models, Scientific Concepts
Bray Speth, Elena; Shaw, Neil; Momsen, Jennifer; Reinagel, Adam; Le, Paul; Taqieddin, Ranya; Long, Tammy – CBE - Life Sciences Education, 2014
Mutation is the key molecular mechanism generating phenotypic variation, which is the basis for evolution. In an introductory biology course, we used a model-based pedagogy that enabled students to integrate their understanding of genetics and evolution within multiple case studies. We used student-generated conceptual models to assess…
Descriptors: Biology, Science Instruction, College Science, Genetics
Linton, Debra L.; Pangle, Wiline M.; Wyatt, Kevin H.; Powell, Karli N.; Sherwood, Rachel E. – CBE - Life Sciences Education, 2014
We investigated some of the key features of effective active learning by comparing the outcomes of three different methods of implementing active-learning exercises in a majors introductory biology course. Students completed activities in one of three treatments: discussion, writing, and discussion + writing. Treatments were rotated weekly between…
Descriptors: Active Learning, Introductory Courses, Biology, Majors (Students)
Wieman, Carl; Gilbert, Sarah – CBE - Life Sciences Education, 2014
We have created an inventory to characterize the teaching practices used in science and mathematics courses. This inventory can aid instructors and departments in reflecting on their teaching. It has been tested with several hundred university instructors and courses from mathematics and four science disciplines. Most instructors complete the…
Descriptors: Foreign Countries, College Instruction, Science Instruction, Mathematics Instruction
Beck, Christopher; Butler, Amy; Burke da Silva, Karen – CBE - Life Sciences Education, 2014
Over the past decade, repeated calls have been made to incorporate more active teaching and learning in undergraduate biology courses. The emphasis on inquiry-based teaching is especially important in laboratory courses, as these are the courses in which students are applying the process of science. To determine the current state of research on…
Descriptors: Biology, Science Instruction, Science Laboratories, Active Learning
Smith, Michelle K.; Vinson, Erin L.; Smith, Jeremy A.; Lewin, Justin D.; Stetzer, MacKenzie R. – CBE - Life Sciences Education, 2014
At the University of Maine, middle and high school science, technology, engineering, and mathematics (STEM) teachers observed 51 STEM courses across 13 different departments and collected information on the active-engagement nature of instruction. The results of these observations show that faculty members teaching STEM courses cannot simply be…
Descriptors: STEM Education, Science Instruction, Teaching Methods, Science Teachers
Magana, Alejandra J.; Taleyarkhan, Manaz; Alvarado, Daniela Rivera; Kane, Michael; Springer, John; Clase, Kari – CBE - Life Sciences Education, 2014
Bioinformatics education can be broadly defined as the teaching and learning of the use of computer and information technology, along with mathematical and statistical analysis for gathering, storing, analyzing, interpreting, and integrating data to solve biological problems. The recent surge of genomics, proteomics, and structural biology in the…
Descriptors: Biology, Information Science, Literature Reviews, Science Education
Milkova, Liliana; Crossman, Colette; Wiles, Stephanie; Allen, Taylor – CBE - Life Sciences Education, 2013
An activity involving analysis of art in biology courses was designed with the goals of piquing undergraduates' curiosity, broadening the ways in which college students meaningfully engage with course content and concepts, and developing aspects of students' higher-level thinking skills, such as analysis, synthesis, and evaluation. To…
Descriptors: Skill Development, Biology, Science Activities, Learning Activities
Campbell, Andrew G.; Leibowitz, Michael J.; Murray, Sandra A.; Burgess, David; Denetclaw, Wilfred F.; Carrero-Martinez, Franklin A.; Asai, David J. – CBE - Life Sciences Education, 2013
Scientific workforce diversity is critical to ensuring the realization of our national research goals and minority-serving institutions play a vital role in preparing undergraduate students for science careers. This paper summarizes the outcomes of supporting career training and research practices by faculty from teaching-intensive,…
Descriptors: College Faculty, Scientific Research, Program Effectiveness, Faculty Development
Knight, Jennifer K.; Wise, Sarah B.; Southard, Katelyn M. – CBE - Life Sciences Education, 2013
Previous research has shown that undergraduate science students learn from peer discussions of in-class clicker questions. However, the features that characterize such discussions are largely unknown, as are the instructional factors that may lead students into productive discussions. To explore these questions, we recorded and transcribed 83…
Descriptors: Audience Response Systems, Handheld Devices, Educational Technology, Cues
Wu, Jinlu – CBE - Life Sciences Education, 2013
Laboratory education can play a vital role in developing a learner's autonomy and scientific inquiry skills. In an innovative, mutation-based learning (MBL) approach, students were instructed to redesign a teacher-designed standard experimental protocol by a "mutation" method in a molecular genetics laboratory course. Students could…
Descriptors: Genetics, Science Instruction, Science Laboratories, College Science
Smith, Michelle K.; Jones, Francis H. M.; Gilbert, Sarah L.; Wieman, Carl E. – CBE - Life Sciences Education, 2013
Instructors and the teaching practices they employ play a critical role in improving student learning in college science, technology, engineering, and mathematics (STEM) courses. Consequently, there is increasing interest in collecting information on the range and frequency of teaching practices at department-wide and institution-wide scales. To…
Descriptors: STEM Education, Classroom Observation Techniques, College Instruction, Teaching Methods

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