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Guy, Richard; Pisani, Heather R.; Rich, Peter; Leahy, Cathy; Mandarano, Giovanni; Molyneux, Tom – Anatomical Sciences Education, 2015
An Interactive electronic Atlas (IeA) was developed to assist first-year nursing students with interpretation of laboratory-based prosected cadaveric material. It was designed, using pedagogically sound principles, as a student-centered resource accessible to students from a wide range of learning backgrounds. It consisted of a highly simplified…
Descriptors: Atlases, Nursing Students, Science Laboratories, Blended Learning
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Fabregat-Sanjuan, Albert; Pàmies-Vilà, Rosa; Ferrando Piera, Francesc; De la Flor López, Silvia – Journal of Technology and Science Education, 2017
This paper presents a blended-learning strategy for improving the teaching method applied in the laboratory subject Manufacturing Technologies. The teaching method has been changed from a predominantly teacher-centred to an active learning system with a student-centred focus and e-learning activities. In face-to-face classes, a game-based learning…
Descriptors: Foreign Countries, Blended Learning, Self Evaluation (Individuals), Instructional Improvement
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Saucedo, Skyler R. – Physics Teacher, 2013
Gel electrophoresis, used by geneticists and forensic experts alike, is an immensely popular technique that utilizes an electric field to separate molecules and proteins by size and charge. At the microscopic level, a dye or complex protein like DNA is passed through agarose, a gelatinous three-dimensional matrix of pores and nano-sized tunnels.…
Descriptors: Physics, Secondary School Science, Science Instruction, High Schools
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Brooks, William S.; Woodley, Kristina T. C. Panizzi; Jackson, James R.; Hoesley, Craig J. – Anatomical Sciences Education, 2015
The University of Alabama School of Medicine (UASOM) instituted a fully integrated, organ system-based preclinical curriculum in 2007. Gross anatomy and embryology were integrated with other basic science disciplines throughout the first two years of undergraduate medical education. Here we describe the methods of instruction and integration of…
Descriptors: Anatomy, Medical Education, College Curriculum, Integrated Curriculum
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Tseng, Wei-Ting; Lin, Ya-Ping – Anatomical Sciences Education, 2016
The cadaver dissection course remains a time-honored tradition in medical education, partly because of its importance in cultivating professional attitudes in students. This study aims to investigate students' attitudes--specifically characterized as "detached concern"--in a cadaver dissection course. An interpretative phenomenological…
Descriptors: Medical Students, Student Attitudes, Anatomy, Laboratory Procedures
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Choi-Lundberg, Derek L.; Low, Tze Feng; Patman, Phillip; Turner, Paul; Sinha, Sankar N. – Anatomical Sciences Education, 2016
Gross anatomy instruction in medical curricula involve a range of resources and activities including dissection, prosected specimens, anatomical models, radiological images, surface anatomy, textbooks, atlases, and computer-assisted learning (CAL). These resources and activities are underpinned by the expectation that students will actively engage…
Descriptors: Medical Students, Anatomy, Independent Study, Medical Schools
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Wedlich, Richard C.; Pires, Amanda; Fazzino, Lisa; Fransen, Joseph M. – Journal of Chemical Education, 2013
Laboratories submitting experimental results to the Food and Drug Administration (FDA) or the Environmental Protection Agency (EPA) in support of Good Laboratory Practice (GLP) nonclinical laboratory studies must conduct such work in compliance with the GLP regulations. To consistently meet these requirements, lab managers employ a "divide…
Descriptors: Science Instruction, College Science, Undergraduate Study, Graduate Study
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Williams, Deborah H.; Shipley, Gerhard P. – International Journal of STEM Education, 2018
Background: Native Americans are underrepresented in science, technology, engineering, and mathematics (STEM). We investigated whether having to violate cultural taboos might be a factor in the decisions of some Native Americans not to pursue STEM degrees. Many STEM faculty likely know very little about Native Americans' historical experiences…
Descriptors: American Indian Students, American Indian Culture, STEM Education, Disproportionate Representation
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Hutchinson-Anderson, Kelly; Johnson, Kaileigh; Craig, Paul A. – Journal of College Science Teaching, 2015
The authors examined college students' perceptions about their middle school and high school preparation for college science courses as well as what led them to study or not study science in college. Analysis of a survey using mixed methods revealed that the more laboratory techniques students felt proficient in conducting and the more science AP…
Descriptors: College Students, Student Attitudes, Prior Learning, College Preparation
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Huitt, Tiffany W.; Killins, Anita; Brooks, William S. – Anatomical Sciences Education, 2015
As the healthcare climate shifts toward increased interdisciplinary patient care, it is essential that students become accomplished at group problem solving and develop positive attitudes toward teamwork. Team-based learning (TBL) has become a popular approach to medical education because of its ability to promote active learning, problem-solving…
Descriptors: Cooperative Learning, Teamwork, Anatomy, Science Laboratories
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Pratten, Margaret K.; Merrick, Deborah; Burr, Steven A. – Anatomical Sciences Education, 2014
The authors describe and evaluate a method to motivate medical students to maximize the effectiveness of dissection opportunities by using In-Course-Assessments (ICAs) to encourage teamwork. A student's final mark was derived by combining the group dissection mark, group mark for questions, and their individual question mark. An analysis of the…
Descriptors: Medical Students, Medical Education, Anatomy, Laboratory Procedures
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Bokor, Julie – American Biology Teacher, 2012
Practicing correct pipetting procedure doesn't have to be boring. "Pipetting by Coordinates" is an effective way to teach necessary pipetting skills in an enjoyable manner. Students create designs as they add volumes of colored water to specific wells and gain experience using a basic biotechnology tool.
Descriptors: Biotechnology, Laboratory Procedures, Science Instruction, Skill Development
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Peterson, Diana Coomes; Mlynarczyk, Gregory S.A. – Anatomical Sciences Education, 2016
This study examined whether student learning outcome measures are influenced by the addition of three-dimensional and digital teaching tools to a traditional dissection and lecture learning format curricula. The study was performed in a semester long graduate level course that incorporated both gross anatomy and neuroanatomy curricula. Methods…
Descriptors: Curriculum Design, Science Instruction, Anatomy, Outcomes of Education
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Walker, J. P.; Sampson, V.; Southerland, S.; Enderle, P. J. – Chemistry Education Research and Practice, 2016
This study examines the extent to which the type of instruction used during a general chemistry laboratory course affects students' ability to use core ideas to engage in science practices. We use Ford's (2008) description of the nature of scientific practices to categorize what students do in the laboratory as either empirical or…
Descriptors: Chemistry, Laboratory Experiments, Laboratory Procedures, Intermode Differences
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Karacop, Ataman; Diken, Emine Hatun – Journal of Education and Practice, 2017
The purpose of this study is to investigate the effects of laboratory approach based on jigsaw method with cooperative learning and confirmatory laboratory approach on university students' cognitive process development in Science teaching laboratory applications, and to determine the opinions of the students on applied laboratory methods. The…
Descriptors: Cooperative Learning, Science Teachers, Science Process Skills, Class Activities
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