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Showing 1 to 15 of 81 results Save | Export
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Gabriella Fluhler-Thornburg; John McKillip – Journal of College Science Teaching, 2024
Laboratory learning in the life sciences is historically centered around following recipe-like instructions to complete activities with defined outcomes. The American Association for the Advancement of Science's "Vision and Change" report has called for a change in science teaching. The report emphasizes the importance of providing…
Descriptors: Undergraduate Students, Student Research, Science Laboratories, Biological Sciences
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Omar A. El Seoud; Nicolas Keppeler; Daiana M. F. Sandrini; Giovanni R. Morselli – Journal of Chemical Education, 2023
An active-learning approach was employed in a project for our chemistry major students on the synthesis of biodiesel (BD) from an Amazon region oil. The project, involving activities in class and in the laboratory, was given during 8 weeks of the spring semester of 2022. The students were asked about their previous contact with the synthesis and…
Descriptors: Chemistry, Science Laboratories, Majors (Students), Undergraduate Students
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Ruth, Alissa; Brewis, Alexandra; Beresford, Melissa; Smith, Michael E.; Stojanowski, Christopher; SturtzSreetharan, Cindi; Wutich, Amber – Scholarship and Practice of Undergraduate Research, 2023
The impact of undergraduate research experiences (UREs) is supported by evidence from physical and life science fields, especially when student-apprentices work in traditional laboratories. Within social sciences specifically, some excellent student outcomes associated with UREs adhere to non-lab-based modalities like course-based research…
Descriptors: Undergraduate Students, Research Methodology, Student Research, Active Learning
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Daniel Zarate; Kathleen Sheahan; Jingchun Li – Journal of College Science Teaching, 2024
Active learning provides students with meaningful and introspective roles in education. However, active learning is difficult to achieve in online class settings, particularly for biology laboratories initially designed to offer direct interactions with live organisms. During the COVID-19 pandemic, a transition to online learning was required in…
Descriptors: Distance Education, Science Laboratories, Undergraduate Students, Biology
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Bernard T. Drumm; Ronan Bree; Caoimhin S. Griffin; Niall O’Leary – Advances in Physiology Education, 2024
Laboratory practicals in life science subjects are traditionally assessed by written reports that reflect disciplinary norms for documenting experimental activities. However, the exclusive application of this assessment has the potential to engage only a narrow range of competencies. In this study, we explored how multiple modes of laboratory…
Descriptors: Foreign Countries, Undergraduate Students, Biological Sciences, Science Laboratories
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Andrea C. Bardales; Quynh Vo; Dmitry M. Kolpashchikov – Journal of Chemical Education, 2024
It has been shown that active learning strategies are effective in teaching complex STEM concepts. In this study, we developed and implemented a laboratory experiment for teaching the concepts of Boolean logic gates, molecular beacon probes, molecular computing, DNA logic gates, microRNA, and molecular diagnosis of hepatocellular carcinoma, which…
Descriptors: Active Learning, STEM Education, Scientific Concepts, Concept Formation
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Fabia´n Garzo´n-Posse; Yovanny Quevedo-Acosta; Diego Gamba-Sa´nchez – Journal of Chemical Education, 2022
Three different experiments that allow the synthesis of the drug paracetamol are described; such experiments were designed for their implementation in undergraduate organic chemistry courses, considering the medical and economic importance of paracetamol. The experience wants to show the students some "real world" applications of organic…
Descriptors: College Science, Active Learning, Undergraduate Students, Science Laboratories
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Elizabeth Ragland; Elizabeth L. Karcher – NACTA Journal, 2022
Inquiry-based learning (IBL) is a student-centered teaching technique that promotes engagement through higher-order thinking, collaboration, and creativity. This study examines the impact of IBL levels on students' interest, motivation, and engagement. Three levels of IBL (traditional, structured, and guided) were implemented in an introductory…
Descriptors: Active Learning, Inquiry, Learning Activities, Introductory Courses
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Sun, Hao; Wang, Pinmei; Li, Yudong – Biochemistry and Molecular Biology Education, 2023
Abstract Microbiome study requires both molecular techniques and bioinformatics skills, which are challenging for biologists to participate in this growing field. To introduce microbiome concepts and skills to students, a 6-week wet-lab and bioinformatics course for undergraduates was implemented through the project-based learning (PBL) approach.…
Descriptors: Science Laboratories, Educational Technology, Computer Simulation, Genetics
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Kong-Ching Wong; K. Brant Knutzen; Ignatius Ip; Steve Po-Yam Li – Journal of Chemical Education, 2023
Surface chemistry is a challenging realm for most students because of its abstract nature and numerous associated mathematical equations. Herein we report a set of dedicated sequential inquiry-based learning (IBL) activities enriched with virtual laboratory learning and hands-on instructions. The activities were intended to help students grasp…
Descriptors: Active Learning, Inquiry, Chemistry, Educational Technology
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Carroll, Hannah M.; Houston, Derek D.; Ankerstjerne, Suzanne; Wanamaker, Alan D., Jr. – Journal of Biological Education, 2021
Stable isotopes in natural materials provide a powerful way to study energy flow in many systems and are widely used in fields such as archaeology, ecology, forensics, geochemistry, geology, oceanography, palaeoecology and palaeoclimatology. Based on the manner in which stable isotopes fractionate in natural systems, they allow scientists to…
Descriptors: Ecology, Science Instruction, Food, Earth Science
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Bur, Scott K.; Pomerantz, William C. K.; Bade, Morgan L.; Gee, Clifford T. – Journal of Chemical Education, 2021
Curriculum-based undergraduate research experiences (CUREs) have been shown to increase student retention in STEM fields and are starting to become more widely adopted in chemistry curricula. Here we describe a 10-week CURE that is suitable for a second-semester organic chemistry laboratory course. Students synthesize small molecules and use…
Descriptors: Organic Chemistry, College Science, Undergraduate Students, Scientific Research
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Rana, Azeem; Jillani, Shehzada Muhammad Sajid; Alhooshani, Khalid – Journal of Chemical Education, 2021
Water analysis is an excellent interdisciplinary topic for project-based learning. An undergraduate course was designed to engage the senior undergraduate chemistry students in a real-life experience. In this course, students developed methodologies based on published American Society for Testing and Materials (ASTM) methods for the measurement of…
Descriptors: Water Quality, Student Projects, Active Learning, Undergraduate Students
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Asmus, Stephen E.; Batey, Kaylind G.; Gale-Butto, Serena N.; Schmitt, Barrie L. – Journal of Biological Education, 2019
Cell migration, a fundamental process in development, wound healing, and immune function, is a common topic in undergraduate cell biology courses. We developed laboratory exercises with an inquiry-based learning (IBL) approach in which cell migration could be examined with the scratch assay, adapted from the primary literature. A narrow scratch…
Descriptors: Science Laboratories, Biology, Cytology, Inquiry
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Jing-Ping Liu; Pian Yan; Jinxi Lan; Rongying Yang; Wenqin Wang; Yulin Chen; Jingmin Wang; Yong Zhao; Jing Shen – Journal of Chemical Education, 2023
The Clemmensen reduction is a common example of a reaction demonstrating the deoxygenation of carbonyl groups, which is a topic that has been widely studied in the field of organic chemistry. The use of trimethylchlorosilane, as a substitute for concentrated hydrochloric acid, allows for the reduction of carbonyl groups. The Clemmensen reduction…
Descriptors: Undergraduate Students, Organic Chemistry, Science Laboratories, Undergraduate Study
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