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Faulconer, E. K.; Griffith, J. C.; Wood, B. L.; Acharyya, S.; Roberts, D. L. – Chemistry Education Research and Practice, 2018
While the equivalence between online and traditional classrooms has been well researched, very little effort has been expended to do such comparisons for college level introductory chemistry. The existing literature has only one study that investigated chemistry lectures at an entire course level as opposed to particular course components such as…
Descriptors: Online Courses, Electronic Learning, Conventional Instruction, Comparative Analysis
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Wise, Michael J. – Journal of the Scholarship of Teaching and Learning, 2017
With the goal of increasing the immediacy of the relationship between tenure-track professors and students, science departments in liberal arts colleges may try to arrange their curriculum so that students have the same professor in both the lecture and the lab section of introductory courses. While this goal seems laudable, empirical data are…
Descriptors: Science Instruction, College Science, College Faculty, Science Laboratories
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Lin, Shih-Yin; Aiken, John M.; Seaton, Daniel T.; Douglas, Scott S.; Greco, Edwin F.; Thoms, Brian D.; Schatz, Michael F. – Physical Review Physics Education Research, 2017
The advent of new educational technologies has stimulated interest in using online videos to deliver content in university courses. We examined student engagement with 78 online videos that we created and were incorporated into a one-semester flipped introductory mechanics course at the Georgia Institute of Technology. We found that students were…
Descriptors: Physics, Learner Engagement, Science Instruction, Online Courses
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Goacher, Robyn E.; Kline, Cynthia M.; Targus, Alexis; Vermette, Paul J. – Journal of College Science Teaching, 2017
We describe how a practical instructional development process helped a first-year assistant professor rapidly develop, implement, and assess the impact on her Analytical Chemistry course caused by three changes: (a) moving the lab into the same semester as the lecture, (b) developing a more collaborative classroom environment, and (c) increasing…
Descriptors: Science Instruction, College Science, Chemistry, Science Laboratories
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Finn, Kevin; FitzPatrick, Kathleen; Yan, Zi – Journal of College Science Teaching, 2017
Students often struggle in introductory health sciences courses; some students have difficulty in upper level classes. To address this, we converted three lecture/lab courses, traditional first-year Anatomy and Physiology (A&P I), upper level Biomechanics, and upper level Microbiology to an integrated studio model. We used the Student…
Descriptors: Health Sciences, Lecture Method, Student Satisfaction, Academic Achievement
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Sato, Brian K.; Lee, Amanda K.; Alam, Usman; Dang, Jennifer V.; Dacanay, Samantha J.; Morgado, Pedro; Pirino, Giorgia; Brunner, Jo Ellen; Castillo, Leanne A.; Chan, Valerie W.; Sandholtz, Judith H. – CBE - Life Sciences Education, 2017
Despite the ubiquity of prerequisites in undergraduate science, technology, engineering, and mathematics curricula, there has been minimal effort to assess their value in a data-driven manner. Using both quantitative and qualitative data, we examined the impact of prerequisites in the context of a microbiology lecture and lab course pairing.…
Descriptors: Mixed Methods Research, Prerequisites, Required Courses, Microbiology
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Kiste, Alan L.; Scott, Gregory E.; Bukenberger, Jesse; Markmann, Miles; Moore, Jennifer – Chemistry Education Research and Practice, 2017
Twenty years ago, a major curriculum revision at a large, comprehensive university in the Western United States led to the implementation of an integrated lecture/laboratory (studio) experience for our engineering students taking general chemistry. Based on these twenty years of experience, construction of four purpose-built studio classrooms to…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Outcomes of Education
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Collins, Eva-Maria S.; Calhoun, Tessa R. – Journal of College Science Teaching, 2014
This article presents the combination of three enhanced educational approaches for training future scientists. These methods incorporate skills generally not introduced in the freshman year: student-led blackboard introductions; the writing of scientific papers; and the design, execution, and presentation of an independent lab module. We tested…
Descriptors: Science Instruction, College Science, College Freshmen, Lecture Method
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Forcino, Frank L. – Journal of Geoscience Education, 2013
Laboratory sections of university Earth science courses provide hands-on, inquiry-based activities for students in support of lecture and discussion. Here, I compare student conceptual knowledge outcomes of laboratory sections by administering an independent concept inventory at the beginning and end of two courses: one that had a lecture and a…
Descriptors: Earth Science, Introductory Courses, Science Laboratories, Outcomes of Education
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Harvey, Pamela A.; Wall, Christopher; Luckey, Stephen W.; Langer, Stephen; Leinwand, Leslie A. – CBE - Life Sciences Education, 2014
Undergraduate science education curricula are traditionally composed of didactic instruction with a small number of laboratory courses that provide introductory training in research techniques. Research on learning methodologies suggests this model is relatively ineffective, whereas participation in independent research projects promotes enhanced…
Descriptors: Undergraduate Students, Undergraduate Study, Student Research, College Science
Pakhira, Deblina – ProQuest LLC, 2012
Exposure to organic chemistry concepts in the laboratory can positively affect student performance, learning new chemistry concepts and building motivation towards learning chemistry in the lecture. In this study, quantitative methods were employed to assess differences in student performance, learning, and motivation in an organic chemistry…
Descriptors: Organic Chemistry, College Science, Science Instruction, Lecture Method
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Fogarty, Ian; Geelan, David – Journal of Computers in Mathematics and Science Teaching, 2013
Students in 4 Canadian high school physics classes completed instructional sequences in two key physics topics related to motion--Straight Line Motion and Newton's First Law. Different sequences of laboratory investigation, teacher explanation (lecture) and the use of computer-based scientific visualizations (animations and simulations) were…
Descriptors: Foreign Countries, Computer Simulation, Animation, Computer Assisted Instruction
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Dawson, Teresa; Fedko, Sarah; Johnston, Nancy; Khoo, Elaine; King, Sarah; Mall, Saira; Olaveson, Mary; Patterson, Janice; Persaud, Kamini; Sardone, Frances; Shahbazi, Zohreh; Skene, Allyson; Young, Martha; Hasenkampf, Clare A. – Canadian Journal for the Scholarship of Teaching and Learning, 2010
We have undertaken an integrated and collaborative approach to developing foundational skills of students in a first year, Introductory Biology course. The course is a large lecture and laboratory course with enrollments ranging from 800-1000 per year. Teaching and Learning experts were brought into the course as weekly "Foundation Skills for…
Descriptors: Science Process Skills, Biology, Introductory Courses, College Science
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Fencl, Heidi; Butler, Angie Huenink – International Journal for the Scholarship of Teaching and Learning, 2007
Classical physics has a long history of using demonstrations and experiments to develop ideas in introductory courses. The purpose of this exploration is to examine the effectiveness of a desk-top activity for helping students develop abstract reasoning. In the pilot exploration, students in three laboratory sections of a single physics course…
Descriptors: Manipulative Materials, Hands on Science, Teaching Methods, Abstract Reasoning