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Showing all 12 results Save | Export
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Collison, Christina G.; Kim, Thomas; Cody, Jeremy; Anderson, Jason; Edelbach, Brian; Marmor, William; Kipsang, Rodgers; Ayotte, Charles; Saviola, Daniel; Niziol, Justin – Journal of Chemical Education, 2018
Reformed experimental activities (REActivities) are an innovative approach to the delivery of the traditional material in an undergraduate organic chemistry laboratory. A description of the design and implementation of REActivities at both a four- and two-year institution is discussed. The results obtained using a reformed teaching observational…
Descriptors: Undergraduate Students, Organic Chemistry, Science Laboratories, Laboratory Experiments
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Hsu, Pei-Ling – Journal of Science Education and Technology, 2018
Internships in science research settings have received increasing attention as a means of helping students construct appropriate understandings, practices, tools, and language in scientific activities. To advance student-scientist partnerships beyond the status quo, the study aimed to investigate how cogenerative dialogs (cogens) may help high…
Descriptors: Teaching Methods, Science Instruction, Dialogs (Language), High School Students
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Clark, Ted M.; Cervenec, Jason; Mamais, Jessica – Journal of Chemical Education, 2011
An initial goal of chemistry laboratory courses is almost always the "proper" use of laboratory resources including glassware and instruments. The proper use of glassware encompasses many topics, such as laboratory safety, technical proficiency, and recognition of function. However, as many chemical educators can attest, at both the K-12 and…
Descriptors: Chemistry, Laboratory Equipment, Laboratory Experiments, Laboratory Procedures
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Brewer, Sharon E.; Cinel, Bruno; Harrison, Michelle; Mohr, Christina L. – International Review of Research in Open and Distance Learning, 2013
In delivering chemistry courses by distance, a key challenge is to offer the learner an authentic and meaningful laboratory experience that still provides the rigour required to continue on in science. To satisfy this need, two distance general chemistry laboratory courses appropriate for Bachelor of Science (B.Sc.) students, including chemistry…
Descriptors: Distance Education, College Freshmen, Laboratory Training, Chemistry
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Witherow, D. Scott; Carson, Sue – Biochemistry and Molecular Biology Education, 2011
The study of protein-protein interactions is important to scientists in a wide range of disciplines. We present here the assessment of a lab-intensive course that teaches students techniques used to identify and further study protein-protein interactions. One of the unique elements of the course is that students perform a yeast two-hybrid screen…
Descriptors: Laboratory Experiments, Laboratory Training, Molecular Structure, Course Descriptions
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Colabroy, Keri L. – Biochemistry and Molecular Biology Education, 2011
Engaging undergraduate students in designing and executing original research should not only be accompanied by technique training but also intentional instruction in the critical analysis and writing of scientific literature. The course described here takes a rigorous approach to scientific reading and writing using primary literature as the model…
Descriptors: Undergraduate Students, Teaching Methods, Laboratory Experiments, Laboratory Training
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Macias, J. A. – IEEE Transactions on Education, 2012
Project-based learning is one of the main successful student-centered pedagogies broadly used in computing science courses. However, this approach can be insufficient when dealing with practical subjects that implicitly require many deliverables and a great deal of feedback and organizational resources. In this paper, a worked e-portfolio is…
Descriptors: Active Learning, Portfolios (Background Materials), Engineering Education, Feedback (Response)
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Smith, Catherine J. – Chemistry Education Research and Practice, 2012
Despite being criticised for placing little emphasis on thinking, the majority of laboratory work at school level is taught "via" expository "recipe-style" labs. This has been seen to result in students struggling to be able to apply the practical techniques they have learnt in the classroom outside the narrow environment in which they were…
Descriptors: Study Skills, Chemistry, Independent Study, Skill Development
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Bolanakis, Dimosthenis E.; Kotsis, Konstantinos T.; Laopoulos, Theodore – European Journal of Engineering Education, 2010
In the last decades, the technological and scientific evolution of the computing discipline has been widely affecting research in software engineering education, which nowadays advocates more enlightened and liberal ideas. This article reviews cross-disciplinary research on a computer architecture class in consideration of its switching to…
Descriptors: Engineering Education, Computers, Client Server Architecture, Computer System Design
Coscarelli, William C. – 1977
This study, part of an instructional development project, explores the effects of three different representations of functional algorithms in an introductory chemistry laboratory. Intact classes were randomly assigned to a flowchart, list, or standard prose representation of the procedures (algorithms). At the completion of 11 laboratory sessions,…
Descriptors: Algorithms, Chemistry, Critical Thinking, Educational Research
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Newton, Len – Science Education International, 1999
Describes some aspects of practical work in science education which can be supported by information and communications technology (ICT). Presents issues to consider when planning ICT-based practical work. (WRM)
Descriptors: Computer Uses in Education, Educational Technology, Elementary Secondary Education, Information Technology
Sullivan, Dennis J.; And Others – 1974
A survey of 28 military industrial, government, and academic learning centers was conducted. The purposes were to document the state of the art in the establishment and operation of these centers and to determine their potential usefulness in terms of being able to provide individualized, cost-effective instruction in Air Force training programs.…
Descriptors: Cost Effectiveness, Educational Facilities, Educational Objectives, Educational Resources