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Yu-Xuan Hong; Meng-Fan Wang; Yu Ge; Hong Yu; Chun-Yan Ni; Wei-Yi Chen; Pierre Braunstein; Jian-Ping Lang – Journal of Chemical Education, 2023
The [2 + 2] photocycloaddition reaction of olefins is an effective, atom-economical approach to produce cyclobutane compounds in organic synthetic chemistry, and they usually exhibit high regioselectivity and stereoselectivity. Here we devised a solid-state [2 + 2] photocycloaddition experiment that introduces senior undergraduate students with…
Descriptors: Science Experiments, Organic Chemistry, Scientific Concepts, Undergraduate Study
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Marco Reith; Andreas Nehring – Journal of Chemical Education, 2022
Scientific reasoning competencies enable students to engage in scientific inquiry through a wide range of methods, for example by asking questions, formulating hypotheses, and planning, carrying out, and evaluating experiments. Laboratories are particularly suitable to foster these competencies in higher education. In order to give lab educators…
Descriptors: Thinking Skills, Undergraduate Students, Inquiry, Laboratory Experiments
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Mariana Hamer; Micaela Hamer; Miguel J. Vago; M. Florencia Leal Denis – Journal of Chemical Education, 2024
In analytical chemistry, discussing different method sand techniques of analysis is essential to promote critical thinking and reasoning. Analytical courses in the chemist, pharmacist, and biochemist curricula represent the opportunity to study concepts such as experimental design, sampling, development, and optimization of protocols, data…
Descriptors: Chemistry, Science Education, Hands on Science, Thinking Skills
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Balabanoff, Morgan; Harrold, Archer; Moon, Alena – Electronic Journal for Research in Science & Mathematics Education, 2023
Previous work has highlighted the difficulties students have when explaining wave behavior. We present an investigation of chemistry students' understanding of the double-slit experiment, where students were asked to explain a series of PhET simulations illustrating a single continuous light source, single-slit diffraction, and double-slit…
Descriptors: Chemistry, Thinking Skills, Science Experiments, Light
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Jennifer Harmon – Journal of Family and Consumer Sciences, 2024
The interdisciplinary nature, breadth of topics and frequently evolving industries Family and Consumer Sciences (FCS) courses engage with make it difficult for one approach to be appropriate in all circumstances. The Advanced Textiles, 4000 level course participating in this study focused mainly on color science, dyes and dyeing, in addition to…
Descriptors: Textiles Instruction, Experiential Learning, College Students, Family and Consumer Sciences
Holly D. Bendorf; Gricelda Arredondo – Journal of Chemical Education, 2023
In this laboratory experiment, first-semester organic chemistry students use mechanistic reasoning to propose possible outcomes for the reaction of vanillin isobutyrate with a hydride source. The students subsequently run the reaction, isolate the product, and acquire its infrared spectrum. The experiment provides students with the opportunity to…
Descriptors: Spectroscopy, Science Experiments, Science Laboratories, Organic Chemistry
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Sinem Dinçol Özgür – European Journal of Psychology of Education, 2024
The current study aims to examine the effects of prospective chemistry teachers' chemistry laboratory teaching experiences using different laboratory approaches on their metacognitive thinking skills and perceptions of problem-solving skills. The study is designed as "'the quasi-experimental non-equivalent pre-test/post-test control group…
Descriptors: Chemistry, Science Instruction, Science Teachers, Preservice Teachers
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Agustian, Hendra Y.; Finne, Laura Teinholt; Jørgensen, Jonas Tarp; Pedersen, Maja Ingerslev; Christiansen, Frederik Voetmann; Gammelgaard, Bente; Nielsen, Jan Alexis – Review of Education, 2022
Laboratory work has been a common element of science courses at university level for around two centuries, but its practice has been criticised by scholars in the field and related stakeholders. Mainly on a rationale of financial justification and educational efficacy, more evidence for learning has been called for. The aims of this systematic…
Descriptors: Chemistry, Science Instruction, Science Laboratories, College Science
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Taylor, Melissa A.; Loder, Danielle M.; Herr, Michael J.; Nichols, Richard A. – Anatomical Sciences Education, 2023
Many medical schools have undergone curricular reform recently. With these reforms, time spent teaching anatomy has been reduced, and there has been a general shift to a pass/fail grading system. At Indiana University School of Medicine (IUSM), a new curriculum was implemented in fall 2016. The year-long human gross anatomy course taught in 2015…
Descriptors: Educational Change, Anatomy, Medical Students, Medical Education
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Walsh, Cole; Lewandowski, H. J.; Holmes, N. G. – Physical Review Physics Education Research, 2022
Instructional labs are fundamental to an undergraduate physics curriculum, but their possible learning goals are vast with limited evidence to support any particular goal. In this study, we evaluate the efficacy of labs with different goals and structures on students' critical thinking skills and views about experimentation, using an extensive…
Descriptors: Science Process Skills, Science Instruction, Critical Thinking, Science Experiments
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Katharine Hubbard; Dominic Henri; Graham Scott; Howard Snelling; Elke Roediger – International Journal of Science Education, 2025
The COVID-19 pandemic posed significant challenges for practical teaching within the sciences. While many instructors adopted innovative alternatives to conventional practicals, many relied on digital approaches that did not give students hands-on experience. In this study we evaluate the use of 'at home' practical kits used in first year physics…
Descriptors: Foreign Countries, Undergraduate Students, Physics, Science Instruction
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Natalia Spitha; Yujian Zhang; Samuel Pazicni; Sarah A. Fullington; Carla Morais; Amanda Rae Buchberger; Pamela S. Doolittle – Chemistry Education Research and Practice, 2024
The Beer-Lambert law is a fundamental relationship in chemistry that helps connect macroscopic experimental observations (i.e., the amount of light exiting a solution sample) to a symbolic model composed of system-level parameters (e.g., concentration values). Despite the wide use of the Beer-Lambert law in the undergraduate chemistry curriculum…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, Scientific Principles
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Maureen E. Dunbar; Jacqueline J. Shade – HAPS Educator, 2024
Teaching introductory anatomy and physiology (A&P) requires a careful balance of conveying core content while at the same time fostering a deep interest in the subject matter. This is especially true in the laboratory where students are expected to not only master experimental procedures but also connect what they learn in the laboratory to…
Descriptors: Undergraduate Students, Anatomy, Physiology, Science Instruction
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Chunmei Huang; Shumei Cao; Xing Liu; Jian Zhou – Journal of Chemical Education, 2023
Crystal materials are an important pillar of advanced technology. Among them, the preparation of large-sized single crystal materials is of great importance for their practical application. Herein, we select the well-known nonlinear optical crystal KH[subscript 2]PO[subscript 4] and impressive deep-blue colored crystal CuSO[subscript…
Descriptors: Chemistry, Undergraduate Students, Physical Sciences, Scientific Concepts
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Sharma, R. K.; Yadav, Subham; Gupta, Radhika; Arora, Gunjan – Journal of Chemical Education, 2019
Systems thinking is highly desirable for re-imagining chemistry education, which will help in the development of an integrated and sustainable approach that takes into account the interdependence of a system under study with other components of the ecosystem rather than practicing a fragmented approach. Thus, to develop a systems' perspective into…
Descriptors: Science Instruction, Science Experiments, Sustainability, Science Laboratories
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