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Showing 1 to 15 of 71 results Save | Export
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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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Guron, Marta; Slentz, Alexis E. – Journal of Chemical Education, 2021
Approaching elective courses and courses on special topics in Chemistry can seem daunting at times, given the varied backgrounds of the students, together with the broad nature of topics. Often, institutions may give incentives for creating sustainability related course offerings, but knowing where to start and how to organize the information…
Descriptors: Interdisciplinary Approach, Science Instruction, Teaching Methods, Sustainability
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Dean M. Miller; Angela Natale; Tatiana K. McAnulty; Rachel D. Swope; Emily A. McNaughton; Aviauna Beckett; Hannah E. Snoke; Annalee M. Schmidt; John N. Alumasa; Shawn Xiong – Journal of Chemical Education, 2022
Course-based Undergraduate Research Experiences (CUREs) incorporate research opportunities into the existing curriculum often by providing alternatives or replacing the traditional cookbook-based laboratory courses. Over the past 50 years, CURE courses have been shown to benefit both students and faculty members alike. Despite the large number of…
Descriptors: Interdisciplinary Approach, Undergraduate Students, Student Research, Scientific Research
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Mageswary Karpudewan; Noor Haslina Daman Huri – Journal of Chemical Education, 2023
Transforming the chemistry curriculum to an interdisciplinary perspective is essential for preparing students to meet interdisciplinary career demands and to brace themselves for the challenges of complex environmental and health issues. The study introduces four interdisciplinary electrochemistry STEM-lab activities as an alternative to the…
Descriptors: Interdisciplinary Approach, Science Instruction, Teaching Methods, Chemistry
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Šíma, Jan – Cultural Studies of Science Education, 2016
Students not familiar with chemistry tend to misinterpret analytical chemistry as some kind of the sorcery where analytical chemists working as modern wizards handle magical black boxes able to provide fascinating results. However, this approach is evidently improper and misleading. Therefore, the position of modern analytical chemistry among…
Descriptors: Chemistry, Science Instruction, Interdisciplinary Approach, Science Curriculum
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Koutalidi, Sophia; Scoullos, Michael – Chemistry Education Research and Practice, 2016
Biogeochemical cycles support all anthropogenic activities and are affected by them, therefore they are intricately interlinked with global environmental and socioeconomic issues. Elements of these cycles that are already included in the science/chemical curriculum and textbooks intended for formal education in Greek secondary schools were…
Descriptors: Science Instruction, Secondary School Science, Biochemistry, Chemistry
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Ghatora, Baljit; Strutt, Robert – New Directions in the Teaching of Physical Sciences, 2017
With the ever increasing pace of change in the Chemical and Pharmaceutical Industry, universities need to be more aware of the skill set that employers are seeking in graduates. These skills often include risk taking, creative thinking and entrepreneurship; skills that are not naturally associated with chemistry-related curriculums. This research…
Descriptors: Entrepreneurship, Teaching Methods, Chemistry, Risk
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Woolmer, Cherie; Sneddon, Peter; Curry, Gordon; Hill, Bob; Fehertavi, Szonja; Longbone, Charlotte; Wallace, Katherine – International Journal for Academic Development, 2016
This paper reflects upon the development of a multidisciplinary lesson plan aimed at developing science skills for Physics and Astronomy, Geographical and Earth Sciences, and Chemistry students at a research intensive Scottish university. The lesson plan was co-developed with a small group of staff and undergraduate students from these…
Descriptors: Foreign Countries, Undergraduate Students, Research Universities, Teacher Student Relationship
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Gentile, Lisa; Caudill, Lester; Fetea, Mirela; Hill, April; Hoke, Kathy; Lawson, Barry; Lipan, Ovidiu; Kerckhove, Michael; Parish, Carol; Stenger, Krista; Szajda, Doug – Journal of College Science Teaching, 2012
To help undergraduates make connections among disciplines so they are able to approach, evaluate, and contribute to the solutions of important global problems, our campus has been focused on interdisciplinary research and education opportunities across the science, technology, engineering, and mathematics (STEM) disciplines. This paper describes…
Descriptors: Physics, Majors (Students), Interdisciplinary Approach, Computer Science
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Smithenry, Dennis William – International Journal of Science Education, 2010
The case study presented in this paper examines the work of one high school chemistry teacher who has integrated guided inquiry into a yearlong, traditional curricular framework in ways that take into account the constraints and realities of her classroom. The study's findings suggest (1) the extent and frequency to which teachers can…
Descriptors: Chemistry, Science Teachers, Case Studies, Inquiry
Leppien, Jann H.; Purcell, Jeanne H. – Corwin, 2011
Based on the best-selling book "The Parallel Curriculum", this professional development resource gives multifaceted examples of rigorous learning opportunities for science students in Grades 6-12. The four sample units revolve around genetics, the convergence of science and society, the integration of language arts and biology, and the periodic…
Descriptors: Elementary School Science, Secondary School Science, Science Curriculum, Interdisciplinary Approach
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Sumter, Takita Felder; Owens, Patrick M. – Biochemistry and Molecular Biology Education, 2011
The need for a revised curriculum within the life sciences has been well-established. One strategy to improve student preparation in the life sciences is to redesign introductory courses like biology, chemistry, and physics so that they better reflect their disciplinary interdependence. We describe a medically relevant, context-based approach to…
Descriptors: Introductory Courses, Scientific Principles, Student Interests, Chemistry
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Purvis-Roberts, Kathleen L.; Edwalds-Gilbert, Gretchen; Landsberg, Adam S.; Copp, Newton; Ulsh, Lisa; Drew, David E. – Journal of Chemical Education, 2009
A new interdisciplinary, introductory science course was offered for the first time during the 2007-2008 school year. The purpose of the course is to introduce students to the idea of working at the intersections of biology, chemistry, and physics and to recognize interconnections between the disciplines. Interdisciplinary laboratories are a key…
Descriptors: College Science, Physics, Chemistry, Laboratories
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Visser, Talitha C.; Coenders, Fer G. M.; Terlouw, Cees; Pieters, Jules M. – Journal of Science Teacher Education, 2010
Teachers involved in the implementation of a curriculum innovation can be prepared for this task through a professional development program. In this paper, we describe essential characteristics (identified empirically and theoretically) for such a professional development program that promotes the acquisition of competences by these teachers. The…
Descriptors: Educational Innovation, Curriculum Implementation, Physical Geography, Science Teachers
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Kennedy, Brian J. – Journal of Chemical Education, 2008
This paper describes and discusses the unique chemistry course opportunities beyond the advanced placement-level available at a science and technology magnet high school. Students may select entry-level courses such as honors and advanced placement chemistry; they may also take electives in organic chemistry with instrumental methods of analysis;…
Descriptors: Advanced Placement, Organic Chemistry, Teaching Methods, High School Students
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