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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
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
Linus Svenberg; Lovisa Malm; Narin Abdollahzadeh; Negar Gohari; Maria Almlo¨v; Annika Norin; Åsa Emmer – Journal of Chemical Education, 2023
The understanding of analytical chemistry and its application in different areas of life science is something that should be encouraged for students studying chemistry, and also something that appeals to many students. Life science includes a vast variety of areas, out of which some are more easily approached in student projects. The chemical…
Descriptors: Chemistry, Ecology, Secondary School Science, High School Students
Ru-Xin Liu; Feng Xiong; Chao Chen; Tong-Mei Ding; Shu-Yu Zhang – Journal of Chemical Education, 2023
Project-based learning is widely used in organic laboratories. This goal-oriented and inquiry-based learning model complements student-centered training. Such models focus on complicated issues or real-world problems on the frontier of chemistry. Students progress through three project phases: preproject, during the project, and postproject.…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Conservation (Environment)
Seamus Delaney; Andras Fehervari; Vaughan Moon; Madeleine Schultz – Journal of Chemical Education, 2022
As the most widely used manufactured material on the planet, concrete provides an excellent and underused context for chemistry practical activities. Although concrete's importance as a building material cannot be overstated, the traditional preparation of concrete is associated with enormous greenhouse gas emissions as well as unsustainable use…
Descriptors: Sustainability, Construction Materials, Active Learning, Inquiry
Justin H. Carmel; Joseph Lichter – Journal of Chemical Education, 2023
Given the emphasis placed on laboratory reform and student engagement in authentic science practice, this manuscript outlines the development of a hybrid project-based laboratory (HPBL) curriculum centered around specific instructor goals and provides examples on how those goals were met by the experiments and how the change in curriculum affected…
Descriptors: Undergraduate Students, Science Instruction, Chemistry, Laboratory Experiments
Amer, Miquel Àngel; Luque-Corredera, Carlos; Bartolomé, Elena – Journal of Chemical Education, 2022
The application of the Study and Research Path (SRP) methodology for learning general chemistry, a fundamental course often found in the first-year curriculum of many technical degrees, is investigated. In recent years, SRPs have emerged as interesting inquiry and project-based teaching formats. In an SRP, the search for an answer to a generating…
Descriptors: Water Quality, Chemistry, Science Instruction, Introductory Courses
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
WanYusof, Wan Roslina; Kimi, Melody; Wan Zullkiplee, Wan SharifatunHandayani; Zailani, Mohd Alhafiizh; Shahabudin, Mardhiah; Ismail, Abdul Al-Hafiz; Abd. Aziz Abdullah, Sharifah Mona; Ismail, Iswan Nur Ariff; Raja Gopal, Dhana Jay – Journal of Chemical Education, 2022
Chemistry is one of the STEM (science, technology, engineering, and mathematics) subjects that has been perceived as an unattractive subject among students due to its scientific theories and practices in a laboratory. Practical and scientific writing skills are two crucial components in chemistry courses, including at the Pre-University level,…
Descriptors: Active Learning, Student Projects, Content Area Writing, Writing Skills
Herrmann, Kayleigh M.; Murnane, Robert; Brucoli, Federico – Journal of Chemical Education, 2021
This undergraduate dissertation project was designed to enhance organic and analytical chemistry skills of final year forensic science students. A modified Birch reaction method was employed to synthesize amphetamine from ephedrine and detect the most known byproduct of clandestine manufacture of amphetamines, e.g.,…
Descriptors: Crime, Theses, Undergraduate Students, Chemistry
D'eon, Jessica C.; Stirchak, Laura T.; Brown, Abenen-Shepsu; Saifuddin, Yusra – Journal of Chemical Education, 2021
Understanding how to interpret and manipulate large data sets is increasingly important today; however, this experience has been slow to trickle down to the typical undergraduate student. Here, we describe the implementation of a project-based learning experience that uses portable air sensors for the real-time measurement of carbon dioxide,…
Descriptors: Active Learning, Student Projects, Pollution, Physical Environment
Vergara-Castan~eda, Arely; Cha´vez-Miyauchi, Toma´s-Eduardo; Beni´tez-Rico, Adriana; Ogando-Justo, Ana-Bele´n – Journal of Chemical Education, 2021
Actions taken to control the propagation of COVID-19 forced most activities to switch into an online environment. Education was no exception. In most of the cases the transition turned out well, and online education proved to be a good alternative to the traditional model. However, in the case of practical courses, the situation is quite different…
Descriptors: Student Projects, Active Learning, Chemistry, Science Instruction
Bopegedera, A. M. R. P.; Coughenour, Christopher L. – Journal of Chemical Education, 2021
A new project-based laboratory (PJBL) was developed for general chemistry students to tackle the steps involved in chemical water quality analysis using an accessible, real-world hydrologic system (the lakes of the Lower Grand Coulee, Washington). This PJBL was developed in a joint general chemistry and environmental geology course by a…
Descriptors: Interdisciplinary Approach, Active Learning, Student Projects, Inquiry
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
Zak, Andrew J.; Bugada, Luke F.; Ma, Xiao Yin; Wen, Fei – Journal of Chemical Education, 2021
Over the past decade, the increasingly globalized society has continually redefined the qualities and skills of an ideal engineering graduate for industry and academic careers, and, more recently, in light of a global pandemic in 2020, the pedagogical environment has shifted toward a virtual classroom setting. Because the engineering and social…
Descriptors: Electronic Learning, Learner Engagement, Outcomes of Education, Chemical Engineering