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Dong, Li-Kun; Li, Zi-Hao; Zhang, Shu-Yu – Journal of Chemical Education, 2021
Student-centered teaching has become increasingly common in higher education as researchers have demonstrated its efficacy in recent decades. Herein, we hope to establish an efficient problem-based learning (PBL) method, which can help upper-division students learn organic chemistry content by combining teaching materials, experimental literature,…
Descriptors: Student Centered Learning, Science Instruction, College Science, Problem Based Learning
Koumara, Anna; Plakitsi, Katerina; Lederman, Norman – Science Teacher, 2022
How do scientists make inferences for something they cannot directly observe? The Black Box approach seems ideal to help students understand how scientists work. Black Boxes are sealed units; their interior is not accessible. The effort to determine their possible content (internal structure) demands successive modifications in hypothesis,…
Descriptors: Teaching Methods, Science Instruction, Electronic Equipment, Scientific Principles
Nielsen, Rudi P.; Sørensen, Jens L.; Simonsen, Morten E.; Madsen, Henrik T.; Muff, Jens; Strandgaard, Morten; Søgaard, Erik G. – Journal of Chemical Education, 2016
Chemical engineering is mostly taught using traditional classroom teaching and laboratory experiments when possible. Being a wide discipline encompassing topics such as analytical chemistry, process design, and microbiology, it may be argued that brewing of beer has many relations to chemical engineering topic-wise. This work illustrates how…
Descriptors: Chemical Engineering, Science Instruction, Scientific Principles, Microbiology
Lambert-Torres, Germano; de Moraes, Carlos Henrique Valerio; Coutinho, Maurilio Pereira; Martins, Helga Gonzaga; Borges da Silva, Luiz Eduardo – European Journal of Engineering Education, 2017
This paper describes a non-classical logic course primarily indicated for graduate students in electrical engineering and energy engineering. The content of this course is based on the vision that it is not enough for a student to indefinitely accumulate knowledge; it is necessary to explore all the occasions to update, deepen, and enrich that…
Descriptors: Engineering Education, Energy, Energy Education, Power Technology
Kjeldsen, Tinne Hoff; Lützen, Jesper – Science & Education, 2015
In this paper, we discuss the history of the concept of function and emphasize in particular how problems in physics have led to essential changes in its definition and application in mathematical practices. Euler defined a function as an analytic expression, whereas Dirichlet defined it as a variable that depends in an arbitrary manner on another…
Descriptors: Mathematics Instruction, Science Instruction, Physics, Interdisciplinary Approach
Gates, Alexander E.; Kalczynski, Michael J. – Journal of Geoscience Education, 2016
A hands-on game based upon principles of oil accumulation and drilling was highly effective at generating enthusiasm toward the geosciences in urban youth from underrepresented minority groups in Newark, NJ. Participating 9th-grade high school students showed little interest in the geosciences prior to participating in the oil game, even if they…
Descriptors: Urban Youth, Earth Science, Science Interests, Grade 9
Forringer, Ted – Physics Teacher, 2014
In our science for non-science majors course "21st Century Physics," we investigate modern "Hubble plots" (plots of velocity versus distance for deep space objects) in order to discuss the Big Bang, dark matter, and dark energy. There are two potential challenges that our students face when encountering these topics for the…
Descriptors: Inquiry, Nonmajors, Physics, Discovery Processes
Meyer, Allison Antink – Science Teacher, 2012
Science teachers are often content to leave creativity to the arts and humanities classes. Fostering creativity in science, if attempted at all, is a challenge often relegated to the gifted classroom. But not just the privileged few have the capacity to be creative. Simply restructuring existing lessons can help promote creativity in all science…
Descriptors: Thinking Skills, Creativity, Science Teachers, Humanities
di Fuccia, David; Witteck, Torsten; Markic, Silvija; Eilks, Ingo – EURASIA Journal of Mathematics, Science & Technology Education, 2012
By the 1970s a fundamental shift had taken place in German science education. This was a shift away from the learning of more-or-less isolated facts and facets in Biology, Chemistry, and Physics towards a restructuring of science teaching along the general principles of the respective science domains. The changes included also the addition of…
Descriptors: Evidence, Research and Development, Scientific Principles, Problem Based Learning
Oliver-Hoyo, Maria T.; Pinto, Gabriel; Llorens-Molina, Juan Antonio – Journal of Chemical Education, 2009
Two commercial self-heating food products have been used to apply chemical concepts such as stoichiometry, enthalpies of reactions and solutions, and heat transfer in a classroom activity. These products are the self-heating beverages sold in Europe and the Meals, Ready to Eat or MREs used primarily by the military in the United States. The main…
Descriptors: Problem Based Learning, Chemistry, Heat, Teaching Methods
Simic-Muller, Ksenija; Turner, Erin E.; Varley, Maura C. – Teaching Children Mathematics, 2009
This article describes an after-school mathematics program for Latino students. The program focuses on field trips to explore the mathematical practices of the community's businesses. The authors elaborate the project's general structure and illustrate the principles that guided the program. (Contains 3 tables.)
Descriptors: Field Trips, After School Education, After School Programs, Educational Practices
Zenger, K. – European Journal of Engineering Education, 2007
The principles, difficulties and challenges in control education are discussed and compared to the similar problems in the teaching of mathematics and systems science in general. The difficulties of today's students to appreciate the classical teaching of engineering disciplines, which are based on rigorous and scientifically sound grounds, are…
Descriptors: Engineering Education, Engineering, Teaching Methods, Systems Approach
Bramble, Judith – New Directions for Teaching and Learning, 2005
General-education science courses should provide students with a foundation of knowledge about how the natural world works, a clear understanding of the nature of science and scientific inquiry, and an appreciation for the relationship between science and society. This chapter suggests a variety of approaches to engage students in their own…
Descriptors: Science and Society, Liberal Arts, Scientific Principles, General Education
Peer reviewedBennett, Catherine; Brooks, Jacqueline Grennon; Morvillo, Nancy – Educational Leadership, 1999
In the Discover Lab, a science education center at the State University of New York at Stony Brook, students learn to investigate, critique, and test big scientific questions and devise their own answers. Students are guided through cyclical processes of inquiry, logic and reasoning, testing and experimentation, and communication. (MLH)
Descriptors: Astronomy, Constructivism (Learning), Discovery Learning, Elementary Education
Olson, Joanne K. – Science Scope, 2003
The nature of science is a vital part of students' educational experience. It includes understanding what science is and how it works, in accordance with Content Standard G of the "National Science Education Standards" (NRC 1996). Effective science instruction requires incorporation of science content, science processes, and the nature of science.…
Descriptors: Scientific Principles, Science Instruction, Science Education, National Standards

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