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Wenyu Lai; Baolin Li – Journal of Chemical Education, 2025
Paal--Knorr reactions are a classical method for synthesizing pyrroles, using 1,4-dicarbonyl compound and amine as reactants. It has the characteristics of green chemistry, as only two molecules of water are lost. In this teaching and learning experiment, 2,5-hexanedione and 4-"tert"-butylaniline were used to synthesize…
Descriptors: Organic Chemistry, College Science, Environmental Education, Science Curriculum
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Orit Ben Zvi Assaraf; Vaille Dawson; Efrat Eilam; Tuba Gokpinar; Daphne Goldman; Nofar Naugauker; Gusti Agung Paramitha Eka Putri; Agung Wijaya Subiantoro; Sakari Tolppanen; Peta White; Helen Widdop Quinton; Justin Dillon – International Journal of Science Education, 2025
Climate change (CC) is the most significant global issue facing humanity, yet research addressing the perspectives of the key players influential in developing and implementing school-based CC curricula at a cross-country national level is scarce. This study examined the perceptions of policymakers, teacher professional development providers and…
Descriptors: Foreign Countries, Climate, Conservation (Environment), Conservation Education
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Dima Khazem; Michael J. Reiss – Research in Science Education, 2025
School science education needs to change its aims, content and pedagogies if it is to prepare students for the challenges of the Anthropocene. Climate change is the single biggest health threat facing people and other organisms. We argue for embedding EcoHealth as a curriculum aim within school science, as well as other subjects. Findings from a…
Descriptors: Science Education, Science Curriculum, Ecology, Health
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Adrienne Lester King; Cristi Bell-Huff; Collins Airhihenbuwa; Susan Ogletree; Christa Wright – Advances in Physiology Education, 2024
The prevalence and pervasive nature of emerging chemicals of concern have created widespread environmental injustice apprehensions in vulnerable communities. To alleviate and address these concerns, identifying, engaging, and training a diverse environmental health research workforce will be critical and necessary steps to combat and prevent the…
Descriptors: Diversity, Environmental Education, Public Health, High School Students
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Young, Sheila A.; Newton, Amanda R.; Fowler, Samantha R.; Park, Joo – Journal of Biological Education, 2023
This research shows that employing critical thinking (problem-solving and scientific reasoning) skills when learning about climate change helped undergraduate biology students to understand the subject matter better. In this post hoc analysis of pre- and post-test scores from a public Florida undergraduate college, we identified significant…
Descriptors: Critical Thinking, Undergraduate Students, Biology, Climate
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Arga Triyandana; Ibrahim Ibrohim; Bagyo Yanuwiyadi; Mohamad Amin; Maya Umi Hajar – International Electronic Journal of Elementary Education, 2024
This study aimed to develop and assess strategies for integrating a green curriculum into Indonesian elementary science education to improve environmental awareness and eco-friendly culture among students. Utilizing research development design, the research began with a needs analysis from five elementary schools, followed by a quasi-experiment in…
Descriptors: Environmental Education, Sustainable Development, Conservation (Environment), Educational Strategies
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Mongar, Kishore – Journal of Turkish Science Education, 2022
Education is considered to be one of the key tools for addressing sustainable environmental conservation while balancing sustainable socio-economic development to achieve Gross National Happiness in Bhutan. The Environmental Science subject was introduced to prepare students with knowledge, values, and skills to address sustainability. This study…
Descriptors: Alignment (Education), Textbooks, Science Education, Science Tests
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Anne Burke; Benjamin Boison; Magdalyn Knopp; Ayla Lawlor – Connected Science Learning, 2024
Apart from equipping learners with 21st-century skills, environmental science (ES) education fosters problem-solving, creativity, critical thinking, and a sense of responsibility and agency in children. Community science centers contribute to ES education by stirring up interest, enthusiasm, and awareness in both science and environmental issues;…
Descriptors: Curriculum Design, Learner Engagement, Environmental Education, STEM Education
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Brandin Conrath; Amy Voss Farris; Scott McDonald – Journal of Science Education and Technology, 2025
The changing landscape of geoscience learning has initiated growing interest in engaging science learners with climate data. One approach to teaching climate is the application of broadly accessible digital science curricula, which often include data tools such as visualizations, data representations, and simulations embedded within digital…
Descriptors: Earth Science, Wildlife, Science Education, Climate
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Fatima Viteri; Monserrath Pazmiño – Applied Environmental Education and Communication, 2024
This study developed a local climate change curriculum that incorporates generative learning strategies and emphasizes the creation of visually engaging educational content. The curriculum's impact was assessed by examining generative learning through recall and knowledge transfer, as well as declarative knowledge across elementary students with…
Descriptors: Environmental Education, Climate, Science Curriculum, Learning Strategies
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Pía José González-García; Anna Marbà-Tallada; Mariona Espinet – Chemistry Education Research and Practice, 2023
The introduction of Green Chemistry (GC) into school science curriculum is considered an important step that encourages students to build connections between chemistry, other school subjects, and different aspects of their daily lives. The concepts associated with GC can be applied throughout the various levels of education with different degrees…
Descriptors: Chemistry, Science Education, Environmental Education, Science Teachers
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Bopardikar, Anushree; Bernstein, Debra; McKenney, Susan – Journal of Biological Education, 2023
School-based citizen-science can be a powerful means to engage youth in environmental education, yet developing robust science curricula around citizen-science activities is tremendously challenging. Prior research provides limited examples and very little guidance for curriculum designers. To support the designers of school-based citizen-science…
Descriptors: Science Instruction, Teaching Methods, Curriculum Development, Instructional Design
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Alexandria Parker; Evan Noronha; Amanda Bongers – Journal of Chemical Education, 2023
The rise of global environmental issues has stressed the importance of sustainability and green chemistry teachings. Nevertheless, these topics remain largely untouched in most post-secondary organic chemistry lecture courses. This article investigates the barriers to integrating green and sustainable chemistry into organic chemistry classrooms…
Descriptors: Organic Chemistry, Science Teachers, Teacher Attitudes, Beliefs
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Blake Touchet; Diane Wright; Lin Andrews – Research Issues in Contemporary Education, 2024
Over the course of a two-year curriculum field test study that implemented a curriculum-based professional learning framework, we investigated the factors that influenced teachers' willingness and ability to implement NGSS-aligned, phenomenon-based storylines for teaching the nature of science, evolution, and climate change. Through qualitative…
Descriptors: Academic Standards, Teaching Methods, Barriers, Curriculum Implementation
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Seongheui Baek – Asia-Pacific Science Education, 2023
This study details the development of a plant STEAM education program aligned with the Grade 6 elementary school Korean national science curriculum, using a regionally linked curriculum as its design framework. The primary objective was to investigate the plant program's effectiveness in enhancing elementary students' environmental competencies.…
Descriptors: STEM Education, Art Education, Grade 6, Elementary School Students
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