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Inas Sausan; Elda Frediana Rety Kartika; Faizal Akhmad Adi Masbukhin; Sukma Wahyu Wijayanti; Ayu Fahimah Diniyah Wathi; Dola Suciana – Journal of Chemical Education, 2025
STEAM (Science, Technology, Engineering, Arts, Mathematics) learning is designed to contextualize the abstract concepts of science in chemistry learning. Integration STEAM in chemistry learning needs a learning model to help students understand real-world problems. For this reason, STEAM-PBL (Project Based Learning) was employed. This paper…
Descriptors: Science Education, Chemistry, Information Sources, Social Media
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Bishnu P. Regmi; Shantel Fleming – Journal of Chemical Education, 2023
Photochemical reactions are the reactions that are induced by light. Many of these reactions are found in natural processes, including photosynthesis and the formation and decomposition of ozone in the atmosphere. Classroom demonstrations are effective in enhancing students' learning and retention. Herein, we have developed a simple demonstration…
Descriptors: Chemistry, Light, Science Instruction, Retention (Psychology)
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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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Rajesh Viswanathan; Nirmala Krishnamurthy – Journal of Chemical Education, 2023
Active learning strategies engage students productively in the process of learning through problem-solving activities and discussions, over and above the routine method of listening passively to the instructor. This work highlights the redesign of a medicinal chemistry course by augmenting traditional lectures with active learning sessions in…
Descriptors: Active Learning, Science Instruction, Chemistry, Student Attitudes
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Kim, Kihyang; Paik, Seoung-Hey – Journal of Chemical Education, 2021
Water electrolysis, a well-known and simple experiment, confirms that a water molecule comprises hydrogen and oxygen atoms. In this experiment, hydroxide or hydrogen ions generated from each electrode were identified using an indicator based on the assumption that electrodes, electrolytes, and indicators do not participate in the water…
Descriptors: Water, Science Instruction, Chemistry, Science Experiments
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Karen Ho; Yen Luong; Carl Sherwood; Douglas B. Clark – Chemistry Education Research and Practice, 2024
Many students find introductory general chemistry courses difficult because they feel alienated by traditional approaches to teaching and learning. This can become particularly problematic in laboratory sessions where students simply follow processes and procedures that students can view as being mundane and lacking creativity. Contextualised…
Descriptors: Chemistry, Science Instruction, Story Telling, College Science
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Cle´mence Iacconi; Jonathan Piard; Elena Tosi-Brandi; Franc¸ois Azambourg; Marion Dubois; Vincent Cre´ance; Loi¨c Bertrand – Journal of Chemical Education, 2024
There is a gap between the importance of certain archeological material sources and their perception, both by professionals and by the general public. Textiles, for example, are essential to understanding practices that marked daily life and rituals in the past, but they have often been extremely degraded over time, particularly in temperate…
Descriptors: Archaeology, Chemistry, Active Learning, Student Projects
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Rachel M. Doughty – Journal of Chemical Education, 2024
Escape rooms are making their way into the chemistry classroom as a learning tool. However, escape rooms require a large amount of preparation and setup, and they are only novel and exciting for a single play-through. For escape room games to be incorporated into multiple class periods, they must be streamlined for reuse. In this work, I introduce…
Descriptors: Problem Solving, Educational Games, Learning Activities, Chemistry
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Gregory Amato; Natalia Vargas Perdomo; Nianyue Zhang; Xiaoshi Xie; Jie Ji; Cansu Bolukbas; Zhen Wen; Rafik Naccache; Yuan Fang; Diana Consuelo Rodri´guez Burbano; Oleksandr Ivasenko; Louis Cuccia – Journal of Chemical Education, 2023
Since 2012, when triboelectric nanogenerators (TENGs) were first reported by Wang and co-workers, various applications have taken advantage of their ability to transform mechanical energy into electrical energy. TENG applications cover many fields, including electronics, physics, materials science, and engineering. The differences in the language…
Descriptors: Energy, Chemistry, Science Instruction, Active Learning
Cathy Ellen Mehl – ProQuest LLC, 2022
Over the past several decades, science education reform has emphasized moving from content driven courses to more interactive, inquiry-based methodologies. This change has been supported by research by Chi (2009) and represented as three-dimensional learning in the Next Generation Science Standards (NRC, 2013). The typical structure of many high…
Descriptors: Student Experience, Chemistry, Science Instruction, High School Students
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Farah Diana; Abdul Gani; Muhammad Syukri; Arhamni binti Hamid; Nurazidawati Mohamad Arsad – Journal of Science Learning, 2023
Many factors in teaching chemistry influence students' soft skills and learning motivation. An attractive model is important in determining students' success in chemistry learning. This research aims to determine the level of soft skill abilities and students' learning motivation in implementing chemoentrepreneurship through project-based…
Descriptors: Entrepreneurship, Chemistry, Science Instruction, Active Learning
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Xiao Li; Marc Mun~iz; Karlun Chun; Jonathan Tai; Francesca Guerra; Darrin M. York – Journal of Chemical Education, 2022
Atomic orbitals represent an essential construct used to develop chemical bonding models, upon which other more advanced chemistry topics are built. In this article, we share a series of active-learning activities and a gamified approach to develop students' representational competence about atomic orbitals and to engage students in learning the…
Descriptors: Learner Engagement, Chemistry, Science Instruction, Active Learning
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Christopher Stratton; Avery Christensen; Chelsey Jordan; Brian A. Salvatore; Elahe Mahdavian – Biochemistry and Molecular Biology Education, 2024
We present a new highly interdisciplinary project-based course in computer aided drug discovery (CADD). This course was developed in response to a call for alternative pedagogical approaches during the COVID-19 pandemic, which caused the cancellation of a face-to-face summer research program sponsored by the Louisiana Biomedical Research Network…
Descriptors: Educational Technology, Computer Assisted Instruction, Science Instruction, Drug Therapy
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Ronald L. Reyes; Junjun A. Villanueva – Journal of Chemical Education, 2024
In pursuit of active learning and fostering conceptual understanding, educators and researchers have tirelessly endeavored to reshape the perception of chemistry, transcending its apparent barriers of technical jargon, semantics, and symbolism. One innovative approach that aligns with this mission is the integration of narratives into chemical…
Descriptors: Introductory Courses, Chemistry, Science Instruction, Visualization
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Elizabeth B. Vaughan; Saraswathi Tummuru; Jack Barbera – Chemistry Education Research and Practice, 2025
Students' expectations for their laboratory coursework are theorized to have an impact on their learning experiences and behaviors, such as engagement. Before students' expectations and engagement can be explored in different types of undergraduate chemistry laboratory courses, appropriate measures of these constructs must be identified, and…
Descriptors: Undergraduate Students, Organic Chemistry, Chemistry, Science Instruction
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