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Showing 1 to 15 of 34 results Save | Export
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Wilcox, Jesse; Kruse, Jerrid; Decker, Scott – Science and Children, 2021
What does a scientist do? What is an engineer? What is technology? What do mathematicians do? Questions about the nature of STEM are fundamental to help elementary students gain a deep understanding of the STEM disciplines. Yet, starting a lesson with such abstract questions can be difficult for any learner. Instead, teachers can use concrete STEM…
Descriptors: STEM Education, Elementary School Students, Elementary School Teachers, Teaching Methods
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Chuasontia, Itsarapong; Sirirat, Tanita – Physics Education, 2021
This research aimed to design an instructional module to teach light diffraction by a grating to secondary students applying a science, technology, engineering, and mathematics (STEM)-integrated approach. Based on this approach, instructional management integrated the disciplines of physics and mathematics with engineering design process…
Descriptors: Science Instruction, Light, STEM Education, Grade 11
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Bain, Kinsey; Rodriguez, Jon-Marc G.; Towns, Marcy H. – Journal of Chemical Education, 2018
Zero-order systems provide an interesting opportunity for students to think about the underlying mechanism behind the physical phenomena being modeled. The work reported here is part of a larger study that seeks to characterize how students integrate chemistry and mathematics in the context of chemical kinetics. Thirty-six general chemistry…
Descriptors: Chemistry, Science Instruction, College Science, Undergraduate Study
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Falconer, John L.; Nicodemus, Garret D. – Chemical Engineering Education, 2014
Interactive Mathematica simulations with graphical displays of system behavior are an excellent addition to chemical engineering courses. The Manipulate command in Mathematica creates on-screen controls that allow users to change system variables and see the graphical output almost instantaneously. They can be used both in and outside class. More…
Descriptors: Computer Simulation, Mathematics, Engineering Education, Chemical Engineering
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Ehsan, Hoda; Rehmat, Abeera P.; Cardella, Monica E. – Science and Children, 2019
Computational thinking can provide a basis for problem solving, for making evidence-based decisions, and for learning to code or create programs. Therefore, it is critical that all students across the K-12 continuum--including students in the early grades--have opportunities to begin developing problem solving and computational thinking skills.…
Descriptors: Teaching Methods, STEM Education, Computer Science Education, Thinking Skills
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Brooks, Hannah – Science Teacher, 2017
In most STEM industries, teamwork is essential. Engineers, scientists, statisticians, and medical professionals, for example, must communicate with one another and work together. Someday, students may enter the STEM (science, technology, engineering, and math) workforce, where they also will need to collaborate effectively. This article describes…
Descriptors: Teamwork, Science Instruction, Molecular Biology, STEM Education
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Klymchuk, Sergiy; Kachapova, Farida – International Journal of Mathematical Education in Science and Technology, 2012
This article is devoted to practical aspects of teaching and learning of probability at university. It presents the difficulties and attitudes of first-year university science and engineering students towards using paradoxes and counterexamples as a pedagogical strategy in teaching and learning of probability. It also presents a student's point of…
Descriptors: Probability, Higher Education, Science Education, Science Instruction
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Hall, Angela – Education in Science, 2012
A recent curriculum development from the Nuffield Foundation rose to the challenge of producing a set of resources to establish STEM (Science, Technology, Engineering and Mathematics) as a curriculum focus. The result is two STEM cross-curricular projects: "Games," inspired by the London Olympics, and "Futures," a novel…
Descriptors: Curriculum Development, Sustainable Development, Science Instruction, National Curriculum
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Liu, Yucheng; Artigue, Aaron; Sommers, Jeremy; Chambers, Terence – European Journal of Engineering Education, 2011
Objectives of a project-oriented mechanical engineering course, Engineering Design, were achieved through a design project, where students designed, built and demonstrated an extreme version of a basic Theo Jansen device. Through this project, junior students in the University of Louisiana fully developed the capability of applying mathematic and…
Descriptors: Engineering Education, Teacher Effectiveness, Engineering, Communication Skills
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Hall, Jori N.; Ahn, Jeehae; Greene, Jennifer C. – American Journal of Evaluation, 2012
Values-engagement in evaluation involves both describing stakeholder values and prescribing certain values. Describing stakeholder values is common practice in responsive evaluation traditions. Prescribing or advocating particular values is only "explicitly" part of democratic, culturally responsive, critical, and other openly…
Descriptors: Evaluation Methods, Mathematics, Mathematics Instruction, Mathematics Education
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Hu, Dehui; Rebello, N. Sanjay – Physical Review Special Topics - Physics Education Research, 2014
Developing expertise in physics problem solving requires the ability to use mathematics effectively in physical scenarios. Novices and experts often perceive the use of mathematics in physics differently. Students' perceptions and how they frame the use of mathematics in physics play an important role in their physics problem solving. In this…
Descriptors: College Students, Epistemology, Mathematics, Physics
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Magana, Alejandra J.; Brophy, Sean P.; Bryan, Lynn A. – International Journal of Science Education, 2012
Size and scale cognition is a critical ability associated with reasoning with concepts in different disciplines of science, technology, engineering, and mathematics. As such, researchers and educators have identified the need for young learners and their educators to become scale-literate. Informed by developmental psychology literature and recent…
Descriptors: Engineering Education, Engineering, Models, STEM Education
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Bairaktarova, Diana; Cox, Monica F.; Evangelou, Demetra – European Journal of Engineering Education, 2011
This synthesis paper explores current leadership training in science, technology, engineering and mathematics (STEM) education in Bulgaria. The analysis begins with discussion of global factors influencing the implementation of leadership training in STEM education in general and then presents information about the current status of leadership…
Descriptors: Mathematics Education, Leadership Training, Engineering, Foreign Countries
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Cho, Young-Ki – Physics Teacher, 2012
Coupled oscillators are an example of resonant energy exchange that is an interesting topic for many students in various majors, such as physics, chemistry, and electrical and mechanical engineering. However, this subject matter is considered too advanced for freshmen and sophomores, usually because of the level of mathematics involved.…
Descriptors: Physics, Majors (Students), Engineering, Laboratory Equipment
Halfond, Jay A. – New England Journal of Higher Education, 2010
The author notes that the sciences are now something one must latch onto early and successfully as a teenager, and endure against all odds. This pivotal point requires maturity and even myopia--delayed gratification and voluntary dorkiness--traits not common in the young. As a nation, Americans are losing their hegemony in the sciences. In just…
Descriptors: Federal Programs, Sciences, Science Education, Science Instruction
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