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Loughlin, Wendy A.; Cresswell, Sarah L. – Journal of Chemical Education, 2021
Students in advanced undergraduate chemistry laboratories are required to undertake a wide range of complex and multistep syntheses and analytical procedures, and prospective employers of chemistry graduates seek students with proven skills in these areas. Our approach has been to use video resources which are made available to students both ahead…
Descriptors: Interactive Video, Technology Integration, Science Instruction, Instructional Effectiveness
Whelan, Alexander; Leddy, John J.; Ramnanan, Christopher J. – Anatomical Sciences Education, 2018
The purpose of this study was to evaluate the extracurricular cadaveric dissection program available to medical students at an institution with a modern (time-compressed, student-centered, and prosection-based) approach to medical anatomy education. Quantitative (Likert-style questions) and qualitative data (thematic analysis of open-ended…
Descriptors: Educational Benefits, Science Instruction, Anatomy, Laboratory Procedures
Nixon, Ryan S.; Godfrey, T. J.; Mayhew, Nicholas T.; Wiegert, Craig C. – Physical Review Physics Education Research, 2016
Lab activities are an important element of an undergraduate physics course. In these lab activities, students construct and interpret graphs in order to connect the procedures of the lab with an understanding of the related physics concepts. This study investigated undergraduate students' construction and interpretation of graphs with best-fit…
Descriptors: Undergraduate Students, Graphs, Physics, Laboratory Procedures
Davidson, Jenna L. – ProQuest LLC, 2017
This quantitative study examined levels of achievement in learning outcomes when using a face-to-face dissection lab compared to an online dissection lab. Constructivist theory and Understanding by Design learning framework were at the core of this research study design. Data was collected from 24 health science students at a private Midwestern…
Descriptors: Anatomy, Laboratory Procedures, Science Laboratories, Conventional Instruction
Luster-Teasley, Stephanie; Hargrove-Leak, Sirena; Gibson, Willietta; Leak, Roland – Journal of STEM Education: Innovations and Research, 2017
This educational research seeks to develop novel laboratory modules by using Case Studies in the Science Teaching method to introduce sustainability and environmental engineering laboratory concepts to 21st century learners. The increased interest in "going green" has led to a surge in the number of engineering students studying…
Descriptors: Case Studies, Sustainability, Introductory Courses, Science Instruction
Peer reviewedRaghubir, Karran P. – Journal of Research in Science Teaching, 1979
Compares two grade 12 science classes, one receiving instruction using the Laboratory-Investigative Approach, and the other using the Lecture-Laboratory Approach, in terms of certain cognitive factors and associated attitudes. (GA)
Descriptors: Attitudes, Cognitive Processes, Cognitive Style, Educational Research
McNulty, John A.; Sonntag, Beth; Sinacore, James M. – Anatomical Sciences Education, 2009
Web-based computer-aided instruction (CAI) has become increasingly important to medical curricula. This multi-year study investigated the effectiveness of CAI and the factors affecting level of individual use. Three CAI were tested that differed in specificity of applicability to the curriculum and in the level of student interaction with the CAI.…
Descriptors: Medical Students, Cognitive Style, Computer Assisted Instruction, Student Surveys
Peer reviewedRubin, Amram; Tamir, Pinchas – American Biology Teacher, 1988
Proposes an approach to school laboratory experiences which leads to gradual acquisition of inquiry skills based on the idea of advance organizers. Presents a design which is context familiar and can serve as an introduction to scientific inquiry. Discusses student achievement, and teacher and student attitudes. (CW)
Descriptors: Academic Achievement, Cognitive Development, Cognitive Structures, Cognitive Style
Thomson, Barbara S. – 1993
The goals of this curriculum, developed as a summer course for the Young Scholars Program at The Ohio State University-Columbus, are as follows: (1) enable students to develop an understanding of the concept of a system; (2) help students gain an appreciation of the value of systems; (3) develop skills in working with systems; (4) expand skills in…
Descriptors: Career Exploration, Cognitive Style, Course Content, Field Trips

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