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Showing 1 to 15 of 33 results Save | Export
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Qu, Andrew; Nicolas, Madeleine; Leung, Eric Minshing; Jones, Serena Monique; Katyal, Priya; Punia, Kamia; Maxfield, Macrae; Montclare, Jin Kim – Journal of Chemical Education, 2022
Virtual chemistry laboratory modules were investigated as a potential learning resource that complements traditional in-person experiments. In collaboration with a high school instructor, we designed two interactive modules, "Rates of Reaction" and "Models of Organic Molecules," which became part of a previously reported online…
Descriptors: Electronic Learning, Science Experiments, Chemistry, High School Students
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De Haan, David O.; Schafer, Julia A.; Gillette, Eleanor I. – Journal of Chemical Education, 2021
There is an increasing need for research chemists and biochemists to have a basic familiarity with computer programming. Adding programming content to already crowded STEM undergraduate curricula, however, can be challenging. When programming content is introduced within the chemistry curriculum, it is most often incorporated into upper division…
Descriptors: Science Instruction, College Science, STEM Education, Programming
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Jinglin Fu; Anthony Monte Carlo; Doris Zheng – Journal of Chemical Education, 2025
The COVID-19 pandemic has accelerated the shift from traditional in-person teaching to remote and online learning, necessitating a more adaptable educational platform to serve the diverse needs of students. Transforming hands-on "wet lab" activities into virtual "dry lab" exercises can promote a more accessible and flexible…
Descriptors: Undergraduate Students, College Science, Science Education, Biochemistry
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Samsonau, Sergey V. – Physics Education, 2018
This paper presents a set of laboratory classes to be taught as a part of a 1 year calculus-based physics class. It is composed of 7 modules designed to bring together experiments and computer simulations. Each module uses both simulations and experiments to address a phenomenon under study, and lasts for 3 weeks (21 weeks total for the whole…
Descriptors: Physics, Science Instruction, Science Laboratories, Learning Modules
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Schultz, Kelly M.; Snyder, Mark A. – Chemical Engineering Education, 2019
A hands-on educational module was created to illustrate the scope of chemical engineering. Students are taught fundamental concepts that they integrate in a laboratory experience designing and fabricating a 'plant-on-a-chip' microfluidic device capable of continuous processing of reactive flows. Students gain insight into chemical engineering…
Descriptors: Chemical Engineering, STEM Education, Outreach Programs, Student Recruitment
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Reinoso, Elina B.; Bettera, Susana G. – Biochemistry and Molecular Biology Education, 2016
In this article, we describe a basic practical laboratory designed for fifth-year undergraduate students of Microbiology as part of the Epidemiology course. This practice provides the students with the tools for molecular epidemiological analysis of pathogenic microorganisms using a rapid and simple PCR technique. The aim of this work was to assay…
Descriptors: Epidemiology, Genetics, Teaching Methods, Molecular Biology
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Chien, Sen-I; Su, Chaochin; Chou, Chin-Cheng; Li, Wen-Ren – Journal of Chemical Education, 2018
The present study describes the design of a simple teaching module for each student to fabricate a dye-sensitized solar cell (DSSC) that could power a small fan motor. The significance of this laboratory exercise is to stimulate students' motivation by visualizing the light being converted into electricity, which is then switched over to kinetic…
Descriptors: Science Instruction, Energy, Kinetics, High School Students
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Giri, Basant; Peesara, Ravichander R.; Yanagisawa, Naoki; Dutta, Debashis – Journal of Chemical Education, 2015
Implementing enzyme-linked immunosorbent assays (ELISA) in microchannels offers several advantages over its traditional microtiter plate-based format, including a reduced sample volume requirement, shorter incubation period, and greater sensitivity. Moreover, microfluidic ELISA platforms are inexpensive to fabricate and allow integration of…
Descriptors: Undergraduate Students, Laboratory Experiments, Learning Modules, Program Implementation
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Coker, Jeffrey Scott – Journal of College Science Teaching, 2017
Despite numerous calls for science education to be driven by authentic investigation, many laboratory experiences continue to consist of disconnected weekly units during which students carry out instructions that lead to some predetermined finding. This study developed and evaluated a pedagogical design for introductory biology labs where students…
Descriptors: Introductory Courses, Science Laboratories, Science Experiments, Student Projects
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Gunasekaran, M.; Potluri, R. – IEEE Transactions on Education, 2012
This paper presents low-cost experiments for a control systems laboratory module that is worth one and a third credits. The experiments are organized around the microcontroller-based control of a permanent magnet dc motor. The experimental setups were built in-house. Except for the operating system, the software used is primarily freeware or free…
Descriptors: Systems Approach, Science Activities, Educational Experiments, Science Experiments
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Collison, Christina G.; Cody, Jeremy; Smith, Darren; Swartzenberg, Jennifer – Journal of Chemical Education, 2015
A novel studio-based lab module that incorporates student-centered activities was designed and implemented to introduce second-year undergraduate students to the first-semester organic chemistry laboratory. The "First Day" studio module incorporates learning objectives for the course, lab safety, and keeping a professional lab notebook.
Descriptors: Organic Chemistry, Laboratory Experiments, Learning Modules, Student Centered Curriculum
Joseph M. Hayes – Journal of Chemical Education, 2014
A 3D model visualization and basic molecular modeling laboratory suitable for first-year undergraduates studying introductory medicinal chemistry is presented. The 2 h practical is embedded within a series of lectures on drug design, target-drug interactions, enzymes, receptors, nucleic acids, and basic pharmacokinetics. Serving as a teaching aid…
Descriptors: Visualization, Models, Visual Aids, Undergraduate Students
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Holmes, Leah; Atkinson, Melissa; Schofield, Jonathan – School Science Review, 2012
The Wellcome Trust is running a national engagement and education initiative inspired by the London 2012 Olympic and Paralympic Games. "In the Zone" involves sending practical science kits to every UK school and college. Here, we discuss the development of the school activities and how the feedback from pilot schools helped to shape the…
Descriptors: Partnerships in Education, Foreign Countries, Feedback (Response), Science Instruction
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Collison, Christina G.; Cody, Jeremy; Stanford, Courtney – Journal of Chemical Education, 2012
A novel S[subscript N]1-S[subscript N]2 studio-based lab module that incorporates inquiry-based learning was designed and implemented. The studio module was taught in a newly renovated lab space designed with an integrated classroom. The students were divided into two groups for the lesson with one group conducting a studio-module lab and the…
Descriptors: Active Learning, Organic Chemistry, Inquiry, Science Laboratories
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Cepic, Mojca – European Journal of Physics Education, 2012
The introduction of teaching about liquid crystals is discussed from several points of view: the rationale why to teach them, the basics about liquid crystals or what the teacher should teach about them, the fundamental pre-knowledge of students required, the set of experiments accompanying the teaching and the brief report on the already…
Descriptors: Science Instruction, Science Experiments, Physics, Scientific Concepts
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