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Dingwall, Stephanie – Journal of Chemical Education, 2020
The combination of the COVID-19 pandemic and social unrest turned education on its head this quarter. To keep students engaged, a plethora of techniques were employed, ranging from synchronous lectures and activities via the Zoom platform to the asynchronous online discussion board Piazza. Consideration of students' nonacademic struggles also…
Descriptors: Large Group Instruction, Science Instruction, Biochemistry, Introductory Courses
Cerchiara, Jack A.; Kim, Kerry J.; Meir, Eli; Wenderoth, Mary Pat; Doherty, Jennifer H. – Advances in Physiology Education, 2019
The basis for understanding neurophysiology is understanding ion movement across cell membranes. Students in introductory courses recognize ion concentration gradients as a driving force for ion movement but struggle to simultaneously account for electrical charge gradients. We developed a 17-multiple-choice item assessment of students'…
Descriptors: Introductory Courses, Neurology, Physiology, Cytology
Smith, Andri L.; Purcell, Rebecca J.; Vaughan, Joel M. – Biochemistry and Molecular Biology Education, 2015
Most students enroll in general education introductory nutrition classes because they want to improve their diets in order to lose weight or enhance athletic performance. These nonscience majors are often less interested in learning about the fundamental biochemical principles underlying nutrition or are surprised that this foundational knowledge…
Descriptors: Inquiry, Active Learning, Learning Activities, Nutrition Instruction
Bevan, Samantha J.; Chan, Cecilia W. L.; Tanner, Julian A. – Biochemistry and Molecular Biology Education, 2014
Although there is increasing evidence for a relationship between courses that emphasize student engagement and achievement of student deep learning, there is a paucity of quantitative comparative studies in a biochemistry and molecular biology context. Here, we present a pedagogical study in two contrasting parallel biochemistry introductory…
Descriptors: Biochemistry, Introductory Courses, Student Evaluation, Active Learning
Addison, Stephen; Wright, Adrienne; Milner, Rachel – Biochemistry and Molecular Biology Education, 2009
As part of ongoing efforts to enhance teaching practices in a large-class introductory biochemistry course, we have recently tested the effects of using a student response system (clickers) on student exam performances and engagement with the course material. We found no measurable difference in class mean composite examination score for students…
Descriptors: Student Reaction, Biochemistry, Teaching Methods, Academic Achievement

Windschitl, Mark – College Teaching, 1999
Describes and evaluates a technique used in two science lecture courses (biochemistry and introductory meteorology), in which lectures were interspersed with frequent, brief discussions within spontaneously formed small groups. Some differences were found in the ways the two professors managed the technique, but both felt in-class participation…
Descriptors: Biochemistry, Classroom Techniques, College Instruction, Comparative Analysis
Anderson, William L.; Mitchell, Steven M.; Osgood, Marcy P. – Biochemistry and Molecular Biology Education, 2005
Student performance in two different introductory biochemistry curricula are compared based on standardized testing of student content knowledge, problem-solving skills, and student opinions about the courses. One curriculum was used in four traditional, lecture-based classes (n = 381 students), whereas the second curriculum was used in two…
Descriptors: Instructional Effectiveness, Teaching Methods, Student Attitudes, Learning Experience