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Showing 1 to 15 of 39 results Save | Export
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Blanca A. Alani´s-Garza; David Paniagua-Vega; Olga Rodri´guez-Marti´nez; Norma Cavazos-Rocha; Ricardo Salazar-Aranda; Noemi´ Waksman-Minsky; Alma L. Saucedo – Journal of Chemical Education, 2023
The COVID-19 outbreak represented a remarkable challenge in universities and colleges since it forced the transition from a face-to-face model in classrooms and laboratories to a remote, online model using computers, tablets, and cell phones. In Mexico and other Latin American countries, the return to educational activities was a slow-paced…
Descriptors: Chemistry, Science Instruction, Teaching Methods, COVID-19
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Alexander Grushow – Journal of Chemical Education, 2022
A revised version of a traditional physical chemistry laboratory experiment has been developed to enhance student discussion in the laboratory and to improve students' connections between physical chemistry concepts and real molecular systems. In this experiment, students explore the keto-enol tautomerization of 2,4-pentanedione. However, unlike…
Descriptors: Chemistry, Science Experiments, Laboratory Experiments, Inquiry
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Niu Huang; Chao Li; Shili Gan; Cancan Le; Huan Liu; Wei Liu; Liqun Ye – Journal of Chemical Education, 2022
With the benefits of low cost, energy efficiency, and environmental protection, photocatalytic hydrogen production is considered to be the most promising technology for the development of a clean and sustainable society. However, the utilization of photocatalytically generated hydrogen is not very common yet. Therefore, tertiary education urgently…
Descriptors: Undergraduate Students, College Science, Chemistry, Botany
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Huang, Ying – Journal of Research in Science Teaching, 2022
Based on quantitative survey data collected from an inquiry-based general chemistry laboratory course, the current study used marginal models to evaluate changes in students' teamwork and problem-solving skills, attitudes to teamwork, and willingness to explore new issues before and after the course. The results suggest that introductory-level…
Descriptors: Inquiry, Active Learning, Science Education, Science Laboratories
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Hayashi, V.; Dutra, J.; Almeida, F.; Arakaki, R.; Midorikawa, E.; Canovas, S.; Cugnasca, P.; Ruggiero, W. – IEEE Transactions on Education, 2023
Contribution: This article describes one approach to foster technical skills (Digital Electronics) and professional skills (critical thinking, problem solving, communication, and collaboration) for Computer Engineering students in a fully remote way. Background: Engineering competencies development requires practical activities. Besides the…
Descriptors: Students, Engineering Education, Laboratory Training, Electronic Learning
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Kylie L. Luska – Journal of Chemical Education, 2022
A multioutcome, guided inquiry-based liquid--liquid extraction (LLE) experiment has been designed for introductory organic chemistry. Multiple outcomes were established by identifying a series of red and blue dyes that are (1) soluble in organic solvent, (2) soluble in aqueous solution, or (3) soluble in either the organic or aqueous layers by…
Descriptors: Science Instruction, Teaching Methods, Inquiry, Active Learning
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Leung, Siu Ling; Hargrove, Brianne A.; Marsh, Eric R.; Gregg, Andrea R.; Thole, Karen A. – Advances in Engineering Education, 2020
Today's engineering laboratory education often lacks opportunities for students to practice critical thinking through real-world problems. This particular objective is even harder to achieve through online laboratory experiments. In this article, we summarize our innovation in using a real-world challenge, analyze big data, to empower student data…
Descriptors: COVID-19, Pandemics, Educational Change, Engineering Education
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Sedwick, Victoria; Leal, Anne; Turner, Dea; Kanu, A. Bakarr – Journal of Chemical Education, 2018
The monitoring of metals in commercial products is essential for protecting public health against the hazards of metal toxicity. This article presents a guided inquiry (GI) experimental lab approach in a quantitative analysis lab class that enabled students' to determine the levels of aluminum in deodorant brands. The utility of a GI experimental…
Descriptors: Metallurgy, Chemistry, Science Education, Inquiry
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Chan, Man Ching Esther; Clarke, David – ZDM: The International Journal on Mathematics Education, 2017
Contemporary curriculum demands the development of both problem solving skills and negotiative skills required for collaborative group work. Tasks are required that create the best possible conditions for students to develop both of these skill sets. Open-ended tasks have been shown to provide these conditions, but they also require the teacher to…
Descriptors: Problem Solving, Task Analysis, Cooperative Learning, Skill Development
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Wedlich, Richard C.; Libera, Agata E.; Pires, Amanda; Therrien, Matthew T. – Journal of Chemical Education, 2013
The Good Laboratory Practice (GLP) regulations were put into place in 1978. They establish a standard of practice to ensure that results from the nonclinical laboratory study reported to the U.S. Food and Drug Administration (FDA) are valid and that the study report accurately reflects the conduct of the study. While the GLP regulations promulgate…
Descriptors: Laboratory Procedures, Best Practices, Federal Regulation, Quality Assurance
Gupta, Tanya – ProQuest LLC, 2012
Recent initiatives in the laboratory curriculum have encouraged an inquiry-based approach to learning and teaching in the laboratory. It has been argued that laboratory instruction should not just be hands-on, but it should portray the essence of inquiry through the process of experiential learning and reflective engagement in collaboration with…
Descriptors: Chemistry, Science Process Skills, Inquiry, Science Instruction
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Eyster, Linda – Science Teacher, 2010
Although science is a creative endeavor (NRC 1996, p. 46), many students think they are not encouraged--or even allowed--to be creative in the laboratory. When students think there is only one correct way to do a lab, their creativity is inhibited. Park and Seung (2008) argue for the importance of creativity in science classrooms and for the…
Descriptors: Creativity, Problem Solving, Laboratory Experiments, Laboratory Training
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Supalo, Cary A.; Wohlers, H. David; Humphrey, Jennifer R. – Journal of Science Education for Students with Disabilities, 2011
Students with blindness or low vision are often discouraged from full participation in laboratory science classes due to the inadequacy of current methodological approaches and the lack of sophisticated adaptive technologies. Consequently, these students rarely go on to pursue advanced studies and employment in the sciences. In response to his own…
Descriptors: Blindness, Visual Impairments, Chemistry, Science Education
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Sherman, Thomas M.; Sanders, Mark; Kwon, Hyuksoo; Pembridge, James – Journal of Technology Education, 2009
In 2006, the authors began a project to understand what happens in middle school technology education classrooms in order to document the goals that technology education teachers pursue, the instructional strategies they use to teach children to meet these outcomes, the measures they use to assess achievement of these goals, and the learning…
Descriptors: Educational Strategies, Investigations, Gender Issues, Technology Education
Gregory, Thomas B. – 1970
This manual provides a set of tasks for use in the microteaching context of a Teaching Laboratory to be used in teaching pupils an approach to problem solving. The introduction describes the contents and functioning of the Teaching Laboratory and the way in which the manual should be used. Details of five lessons are then given. The first lesson…
Descriptors: Educational Objectives, Evaluation Methods, Laboratory Training, Microteaching
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