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Showing 1 to 15 of 54 results Save | Export
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Gallardo-Williams, Maria; Morsch, Layne A.; Paye, Ciana; Seery, Michael K. – Chemistry Education Research and Practice, 2020
Student-generated videos are growing in popularity in education generally, and in chemistry education there are several reports emerging on their use in practice. Interest in their use in chemistry is grounded in the visual nature of chemistry, the role of laboratory work in chemistry, and a desire to enhance digital literacy skills. In this…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Video Technology
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Roe, Seán M.; Johnson, Christopher D.; Tansey, Etain A. – Advances in Physiology Education, 2014
The measurement and representation of the electrical activity of muscles [electromyography (EMG)] have a long history from the Victorian Era until today. Currently, EMG has uses both as a research tool, in noninvasively recording muscle activation, and clinically in the diagnosis and assessment of nerve and muscle disease and injury as well as in…
Descriptors: Physiology, Laboratories, Learning Activities, Human Body
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Scalise, Kathleen; Douskey, Michelle; Stacy, Angelica – Higher Education Pedagogies, 2018
This article focuses on learning gains in the area of higher education STEM (science, technology, engineering, and mathematics) through new approaches to the formative assessment feedback cycle. Learning gains were examined for stratified randomized comparison and two treatment groups of 943 students organized into 41 laboratory sections in…
Descriptors: Higher Education, STEM Education, Formative Evaluation, Chemistry
Anderson, Neil; McGowan, Aidan; Hanna, Philip; Busch, John – Australian Association for Research in Education, 2015
There is a perception amongst some of those learning computer programming that the principles of object-oriented programming (where behaviour is often encapsulated across multiple class files) can be difficult to grasp, especially when taught through a traditional, didactic "talk-and-chalk" method or in a lecture-based environment. We…
Descriptors: Programming, Concept Formation, Teaching Methods, Creative Teaching
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Stuart, Michael D.; Henry, R. W. – American Biology Teacher, 2002
Explains the benefits of using plastinated specimens on students' conceptual understanding. Argues for dropping the dissection component from introductory biology courses due to threatened animal populations and the high cost of providing some of the specimens. Describes how to use plastinated specimens in an investigative laboratory approach.…
Descriptors: Biology, Concept Formation, Dissection, Higher Education
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Agrawal, Dulli C.; Menon, V. Jayaram – Physics Education, 1998
Describes a procedure based on the assumption that during the rated lifetime of a light bulb roughly half of the radius of the filament evaporates. Explains how the filament's operating temperature can be deduced. (DDR)
Descriptors: Concept Formation, Electricity, Foreign Countries, Higher Education
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Johnstone, A. H.; Watt, A.; Zaman, T. U. – Physics Education, 1998
Reports the results of an experiment with undergraduates in a physics laboratory that indicates that preparation before a lab session improves student performance in the lab. Also concludes that follow-up work can lead to meaningful learning. (DDR)
Descriptors: Academic Achievement, Concept Formation, Educational Strategies, Foreign Countries
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Clarke, Lauren – Mathematics Teacher, 1997
Presents an activity devised as a method of introducing periodic functions that can enable students to gain a deeper understanding of the concept of function. Employs a calculator-based laboratory, a light sensing probe, and an appropriate calculator. Calculator programs and sample data are included. (DDR)
Descriptors: Computer Assisted Instruction, Concept Formation, Elementary Secondary Education, Functions (Mathematics)
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Yang, Min J.; Atkinson, George F. – Journal of Chemical Education, 1998
Addresses the difficulty that teaching assistants and new faculty members may experience in finding a convenient outline of the task of preparing an experiment for undergraduates. Explains all phases of developing a laboratory exercise and includes a list of things to consider for each phase. (DDR)
Descriptors: Chemistry, Concept Formation, Curriculum Development, Faculty Development
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Silberman, Robert; And Others – Journal of Chemical Education, 1987
Discusses the need to develop laboratory practical examinations in chemistry which attempt to measure students higher order thinking skills and conceptual understanding rather than simply their laboratory skills. Examples of examination questions being used in general chemistry laboratory courses at the State University of New York at Cortland are…
Descriptors: Chemistry, Cognitive Processes, College Science, Concept Formation
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Robinson, William R. – Journal of Chemical Education, 1998
Argues that visual images can act as conceptual pegs for concepts or complicated procedures and help students perform better in the cognitive, affective, and manipulative domains of the laboratory. Conclusion was based on a study of chemistry laboratory students (N=83). (DDR)
Descriptors: Chemical Reactions, Chemistry, Concept Formation, Data Collection
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Leder, Gilah C. – For the Learning of Mathematics, 1987
This study details the establishment of a teacher/learner laboratory at Monash University in Australia and the information it yielded about the learning and teaching of mathematics. Both instructors and learners understood they were cooperating to help develop an understanding of difficulties in learning and teaching strategies and ways to reduce…
Descriptors: College Mathematics, Concept Formation, Higher Education, Learning Laboratories
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Van Domelen, David J.; Van Heuvelen, Alan – American Journal of Physics, 2002
Compares two laboratory treatments: (1) Constructing and Applying the Concepts of Physics (CACP) which is guided-inquiry; and (2) Toys in Motion (TIM) which focuses on problem solving skills and design work. Discusses the two laboratory courses and assessment procedures. (YDS)
Descriptors: Concept Formation, Higher Education, Inquiry, Problem Solving
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Abbott, David S.; Saul, Jeffery M.; Parker, George W.; Beichner, Robert J. – American Journal of Physics, 2000
Investigates whether replacing a single traditional laboratory activity with a widely-used, non-microcomputer-based laboratory, research-based activity could produce improved conceptual understanding of a topic in electricity. Shows that a single instructional experience utilizing the research-based tutorial materials is superior to a traditional…
Descriptors: Concept Formation, Electricity, Engineering Education, Higher Education
Clark, Michael J. – Australian Science Teachers' Journal, 1998
Presents an open-ended experiment designed to observe a range of processes and effects associated with electrolysis of an aqueous solution of copper sulfate. Lists materials and procedures. (DDR)
Descriptors: Chemical Reactions, Chemistry, Concept Formation, Foreign Countries
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