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Showing 1 to 15 of 81 results Save | Export
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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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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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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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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
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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)
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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
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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
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Hayuni Retno Widarti; Antuni Wiyarsi; Sri Yamtinah; Ari Syahidul Shidiq; Meyga Evi Ferama Sari; Putri Nanda Fauziah; Deni Ainur Rokhim – Journal of Education and Learning (EduLearn), 2025
One way to preserve culture in education is through ethnoscience-based learning, especially in chemical materials linked to various fields of science in life, including social and cultural. Ethnoscience is a process of reconstructing indigenous science knowledge with scientific science. This research aims to explore trends in ethnoscience-based…
Descriptors: Chemistry, Science Education, Ethnology, Indigenous Knowledge
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Sudarmin; Pujiastuti, Rr. Sri Endang; Asyhar, Rayandra; Prasetya, Agung Tri; Diliarosta, Skunda; Ariyatun – Journal of Technology and Science Education, 2023
This research aims to develop chemistry project-based learning with an Integrated Ethnoscience Approach in Science, Technology, Engineering, and Mathematics (Ethno-STEM) to improve students' conservation and entrepreneurial character. The research method refers to the Research and Development (R&D) model with the Four D. The research samples…
Descriptors: Chemistry, Student Projects, Active Learning, STEM Education
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Domenici, Valentina – Education Sciences, 2022
Non-formal learning environments, such as science museums, have a fundamental role in science education and high potentialities as ideal contexts for science teachers' training. These aspects have been analyzed and reported in several recent works mainly focused on students' perception of science and increased engagement towards scientific…
Descriptors: STEM Education, Active Learning, Student Projects, Learning Activities
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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
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Bouezzeddine, Montaha, Ed. – IntechOpen, 2022
"Insights Into Global Engineering Education After the Birth of Industry 5.0" presents a comprehensive overview of recent developments in the fields of engineering and technology. The book comprises single chapters authored by various researchers and edited by an expert active in the engineering education research area. It provides a…
Descriptors: Engineering Education, Global Approach, Industry, Chemistry
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Álvarez-Herrero, Juan-Francisco; Valls-Bautista, Cristina – European Journal of Science and Mathematics Education, 2021
This study consists of a longitudinal research using an active methodology to teach the contents of the periodic table to high school students, based on project-based learning and WebQuest. The aim of this investigation is to study the relationship between learning the periodic table and the type of strategy that students choose to achieve the…
Descriptors: Game Based Learning, Chemistry, High School Students, Student Projects
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Ijirana; Aminah, Sitti; Supriadi; Magfirah – Journal of Technology and Science Education, 2022
Critical thinking skills has to be sharpened particularly during the COVID-19 pandemic. This circumstance leads to the lack of student's passion to apply their thinking skills in doing something necessary. Therefore, it requires a learning improving critical thinking skills. This study aims to describe the critical thinking skills of chemistry…
Descriptors: Critical Thinking, COVID-19, Pandemics, Chemistry
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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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