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Anbalagan Anithasri – Biochemistry and Molecular Biology Education, 2024
The poem Ode on the Odyssey of lipoproteins describes the structure, functions and metabolism of lipoproteins namely Chylomicrons, LDL, VLDL and HDL. This poem is a triolet with eight lines in each stanza. Odyssey is the travel experience of an adventurous journey when someone travels far and wide. This poem describes the transport adventures of…
Descriptors: Biochemistry, Metabolism, Scientific Concepts, Student Interests
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Seshadri Reddy Varikasuvu; Lavanya Ranvee; Saurabh Varshney; Himel Mondal – Advances in Physiology Education, 2024
Competency-based physiology and biochemistry education can benefit from the creative integration of imaginative narratives into traditional teaching methods. This paper proposes an innovative model using a pen and palm analogy to visualize enzyme function theories. The pen (substrate) must fit snugly into the palm (enzyme's active site) for…
Descriptors: College Students, Physiology, Biochemistry, Interdisciplinary Approach
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Bradley, Joff P. N. – Educational Philosophy and Theory, 2021
Devoted to the late Paul Virilio (1932-2018) and in the advent of debates surrounding the Anthropocene and in light of corresponding changes to conceptions of scale and image, this paper attempts to extrapolate a Virilian pedagogy of the image. It is Virilio's work which remains timely and singularly fecund in this area and it is for this reason…
Descriptors: Teaching Methods, Educational Philosophy, Climate, Attitude Change
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Babaian, Caryn; Kumar, Sudhir – American Biology Teacher, 2021
We present a drawing discovery lab that crosscuts multiple disciplines in biology and links concepts in genetics and evolutionary thinking to enhance understanding of the genotype-to-phenotype transformation. These combined concepts are also linked to ecological frameworks in nature through the model of biological plasticity. Students and teachers…
Descriptors: Genetics, Biology, Science Instruction, Scientific Concepts
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Lin, Jang-Long; Cheng, Meng-Fei; Chang, Jih-Yuan; Huang, Hsin-Lin; Chang, Ying-Chi; Li, Hsiao-Wen; Lin, Deng-Min – Physics Teacher, 2014
Science presented as magic is one way to engender surprise and curiosity in students, and perhaps interest and motivation for further inquiry.
Descriptors: Science Instruction, Inquiry, Scientific Concepts, Student Motivation
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Hilppö, Jaakko; Rajala, Antti; Zittoun, Tania; Kumpulainen, Kristiina; Lipponen, Lasse – Frontline Learning Research, 2016
In this paper, we introduce a conceptual framework for researching the dynamics of imagination in science classroom interactions. While educational interest in imagination has recently increased, prior research has not adequately accounted for how imagination is realized in and through classroom interactions, nor has it created a framework for its…
Descriptors: Science Education, Imagination, Creativity, Elementary School Science
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Tabor-Morris, A. E. – Physics Education, 2015
How can physics teachers help students develop consistent problem solving techniques for both simple and complicated physics problems, such as those that encompass objects undergoing multiple forces (mechanical or electrical) as individually portrayed in free-body diagrams and/or phenomenon involving multiple objects, such as Doppler effect…
Descriptors: Science Instruction, Scientific Concepts, Problem Solving, Mechanics (Physics)
Nilsook, Prachyanun; Utakrit, Nattakant; Clayden, Judy – Educational Technology, 2014
Imagination is a powerful engine that can drive people to bring their ideas, dreams, and desires to reality. The imagination constructs stories that lead people to create. Combining imagination with engineering knowledge creates inventions which initially might seem fantastic. The authors provide in this article a brief overview of a successful…
Descriptors: Creativity, Thinking Skills, Imagination, Scientific Concepts
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Enfield, Mark; Mathew, Eliza – Science and Children, 2012
Young children love stories, and teachers love to read stories. Young children also love to explore the motion of objects--they watch tossed balls, observe objects rolling down ramps, and are mesmerized by spinning tops. Yet it can be challenging to integrate these two loves, stories and exploring motion, in one lesson. Furthermore, while children…
Descriptors: Enrichment Activities, Young Children, Motion, Demonstrations (Educational)
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Plymire, Darcy C. – Journal of Physical Education, Recreation & Dance, 2012
The purpose of this article is to show how to use popular culture as a method of teaching scientific concepts. Specifically, the reality-television program The Biggest Loser is used as an example for teaching the concept of the sociological imagination by illustrating the disconnect between personal solutions for weight loss and the demands of…
Descriptors: Popular Culture, Scientific Concepts, Social Problems, Imagination
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Conn, Kathleen – Science Teacher, 2012
Drama and imagination have a place in every classroom, not just in the English teacher's. In fact, nowhere are they more critical to students' motivation than in bringing to life the often arcane equations of science. By inventing curiosity-provoking scenarios that require students to apply science concepts and processes as integral and…
Descriptors: Creativity, Rote Learning, Learning Motivation, Memorization
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Shulman, Graham – Journal of Child Psychotherapy, 2010
This article discusses the impact of the damaged object on the development and functioning of psychic life with particular reference to the sense of reality. The damaged object is of pivotal significance in Klein's and Winnicott's models of psychic development and experience in early infancy. A key dimension of the development and functioning of…
Descriptors: Psychiatry, Cognitive Ability, Mental Health, Imagination
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Deblonde, Marian; Van Oudheusden, Michiel; Evers, Johan; Goorden, Lieve – Bulletin of Science, Technology & Society, 2008
In the first phase of the research project Nanotechnologies for Tomorrow's Society (www.nanosoc.be), the research consortium explored a variety of futuristic visions or technoscientific imaginaries. This exploration took the form of a Policy Delphi, adapted to the particular objective of jointly constructing nano-imaginaries, taking participants'…
Descriptors: Educational Change, Research and Development, Science and Society, Creative Thinking