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Redish, Edward F. – Physics Teacher, 2021
An important step in learning to use math in science is learning to see symbolic equations not just as calculational tools, but as ways of expressing fundamental relationships among physical quantities, of coding conceptual information, and of organizing physics knowledge structures. In this paper, I propose "anchor equations" as a…
Descriptors: Physics, Science Instruction, Teaching Methods, Equations (Mathematics)
Boyle, Julie – Physics Education, 2019
This paper presents exemplification of the ways in which teachers can incorporate the ideology of maker education into STEAM club activities. The intention is to showcase how science teachers can infuse making into their pedagogy and inject more creativity into the learning process, yet still link it to existing science curricula, more…
Descriptors: Secondary School Science, Science Instruction, STEM Education, Art Education
Wegner, Claas; Gröben, Bernd; Berning, Nane; Tönnesmann, Nora – Teaching Science, 2017
Interdisciplinary teaching is a teaching method that is not as easy as other teaching methods to integrate into the everyday school schedule. This paper serves as an example and gives explanations on how this didactic approach can be applied. The lessons described were conducted successfully with a Year 11 class at a secondary school in which the…
Descriptors: Interdisciplinary Approach, Athletes, Teaching Methods, Grade 11
Johnson, Ingrid L.; Abbate, Vinny; Chase, Rachael – Strategies: A Journal for Physical and Sport Educators, 2017
The purpose of this article is to demonstrate the ease with which physical educators, or any other teacher in a school, can incorporate physical movement skills (physical literacy) while teaching reading, writing or any other content area at the same time.
Descriptors: Physical Education Teachers, Physical Education, Psychomotor Skills, Interdisciplinary Approach
Alpaslan, Muhammet Mustafa – Science Activities: Classroom Projects and Curriculum Ideas, 2017
In recent years, the integration of science and mathematics has become popular among educators because of its potential benefits for student learning. The purpose of this study is to introduce a two-day interdisciplinary lesson that brings science and mathematics concepts together, actively engaging students in working with percentages of the…
Descriptors: Integrated Activities, Learning Activities, Science Activities, Mathematics Activities
Huber, Daniel; Jones, Leslie; Helminski, Christine – Australian Mathematics Teacher, 2015
The use of collaborative problem solving within mathematics education is imperative in this day and age of integrative science. The formation of interdisciplinary teams of mathematicians and scientists to investigate crucial problems is on the rise, as greater insight can be gained from an interdisciplinary perspective. Mathematical modelling, in…
Descriptors: Problem Solving, Mathematics, Mathematics Education, Mathematical Models
DePauw, Karen P. – Quest, 2014
Kinesiology faculty for the 21st century was one of the featured strands of the 2014 NAKHE Collaborative Congress: "STEPS into the future: Exploring opportunities and facing the challenges for the 21st century." Following a brief introduction delegates were assigned to discussion groups with conversations focused around six…
Descriptors: Movement Education, College Faculty, Educational Change, Interdisciplinary Approach
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)
Hefty, Lukas J. – Teaching Children Mathematics, 2015
The National Council of Teachers of Mathematics' (NCTM's) "Principles and Standards for School Mathematics" (2000) outlines fi ve Process Standards that are essential for developing deep understanding of mathematics: (1) Problem Solving; (2) Reasoning and Proof; (3) Communication; (4) Connections; and (5) Representation. The Common Core…
Descriptors: Mathematics Instruction, Problem Solving, Mathematical Logic, Validity
Smith, Toni M.; Seshaiyer, Padmanabhan; Peixoto, Nathalia; Suh, Jennifer M.; Bagshaw, Graham; Collins, Laurena K. – Mathematics Teaching in the Middle School, 2013
As much as ever before, mathematics teachers are searching for ways to connect mathematics to real-life scenarios within STEM contexts. As students develop skill in proportional reasoning, they examine graphical representations of linear functions, learn to associate "slope" with "steepness" and rate of change, and develop…
Descriptors: Mathematics Instruction, Secondary School Mathematics, Middle Schools, Teaching Methods
Sandifer, Cody – Science and Children, 2011
Pairing an inquiry lesson with a traditional reading activity creates a jarring philosophical mismatch between the interaction, deep thinking, and scientific reasoning that drives meaningful inquiry instruction and the "scan the text, copy the answers" response often obtained from elementary nonfiction readers. Realizing that there must be a…
Descriptors: Content Area Reading, Interdisciplinary Approach, Grade 5, Inquiry
Darling, Gerald – Science Scope, 2012
In eighth grade, students usually learn about forces in science class and linear relationships in math class, crucial topics that form the foundation for further study in science and engineering. An activity that links these two fundamental concepts involves measuring the distance a spring stretches as a function of how much weight is suspended…
Descriptors: Mathematics Instruction, Fundamental Concepts, Grade 8, Motion
Benenson, Gary; Stewart-Dawkins, Shawndel; White, Gwynn – Advances in Engineering Education, 2012
In spite of numerous calls for action, e.g., Executive Office of the President (2010), there have been few efforts nationally to promote engineering education in the elementary grades. Of these, hardly any have targeted underrepresented populations (National Academy of Engineering, 2009, p. 74). The collaboration described in this paper is a…
Descriptors: Engineering Education, Elementary Education, STEM Education, Design
Burrill, Rebecca – Teaching Artist Journal, 2010
The author is naturally a kinesthetic learner. As a child she was steeped in the wilds of seashore, fields, and woods in which she was free to roam, explore, and imagine in a deeply sensual, movement-oriented world. Because of these first experiences of freedom of movement and spontaneity in the highly intense natural world, she found the…
Descriptors: Creativity, Sensory Integration, Freedom, Motion
Gagen, Linda; Getchell, Nancy – Journal of Physical Education, Recreation & Dance (JOPERD), 2008
The NASPE standards for physical education programs stress that students should not only achieve competence in physical skills but also acquire and integrate the underlying concepts that can lead to effective movement. Physical educators can successfully embed these underlying concepts into the daily skill instruction and guided practice in their…
Descriptors: Physical Education, Interdisciplinary Approach, Motion, Teaching Methods
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