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Gupta, Ayush; Elby, Andrew – International Journal of Science Education, 2011
Researchers have argued against deficit-based explanations of students' difficulties with mathematical sense-making, pointing instead to factors such as epistemology. Students' beliefs about knowledge and learning can hinder the activation and integration of productive knowledge they have. Such explanations, however, risk falling into a…
Descriptors: Physics, Engineering, Equations (Mathematics), Epistemology
Selmer, Sarah J.; Rye, James A.; Malone, Elizabeth; Fernandez, Danielle; Trebino, Kathryn – Science Activities: Classroom Projects and Curriculum Ideas, 2014
Statistical literacy is essential to scientific literacy, and the quest for such is best initiated in the elementary grades. The "Next Generation Science Standards and the Common Core State Standards for Mathematics" set forth practices (e.g., asking questions, using tools strategically to analyze and interpret data) and content (e.g.,…
Descriptors: Scientific Literacy, Elementary School Students, Science Instruction, Mathematics Instruction
Jablokow, Kathryn; Vercellone-Smith, Pamela – Advances in Engineering Education, 2011
With the rise of e-Learning in engineering education, understanding the impact of individual differences on the ways students communicate and collaborate on-line has become increasingly important. The research described here investigates the influence of cognitive style on the interactions within student social networks in an on-line learning…
Descriptors: Engineering, Engineering Education, Electronic Learning, Online Courses
Urbanic, R. J. – Journal of Learning Design, 2011
In Canadian engineering institutions, a significant design experience must occur in the final year of study. In the Department of Industrial and Manufacturing Systems at the University of Windsor, unsolved, open ended projects sponsored by industrial partners from a variety of sectors are provided to the student teams in order for them to apply…
Descriptors: Foreign Countries, Engineering Education, Interaction, Teamwork
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
Wendell, Kristen B. – Science and Children, 2012
Structural engineering can be a rich and exciting context for exploring and learning about the properties of materials. Even a structure as commonplace as a house requires careful consideration of important properties such as strength, stability, and insulation. As a former engineer and current elementary science teacher educator, the author has…
Descriptors: Engineering, Science Teachers, Elementary School Science, Grade 5
Didion, Catherine Jay; Guenther, Rita S.; Gunderson, Victoria – National Academies Press, 2012
Scientists, engineers, and medical professionals play a vital role in building the 21st- century science and technology enterprises that will create solutions and jobs critical to solving the large, complex, and interdisciplinary problems faced by society: problems in energy, sustainability, the environment, water, food, disease, and healthcare.…
Descriptors: Leadership, Engineering, Entrepreneurship, Graduate Students
Ibrahim, Bashirah; Rebello, N. Sanjay – Physical Review Special Topics - Physics Education Research, 2012
Previous studies have reported that students employed different problem solving approaches when presented with the same task structured with different representations. In this study, we explored and compared students' strategies as they attempted tasks from two topical areas, kinematics and work. Our participants were 19 engineering students…
Descriptors: Prior Learning, Physics, Problem Solving, Calculus
Reiser, Brian J.; Berland, Leema K.; Kenyon, Lisa – Science and Children, 2012
"A Framework for K-12 Science Education" identifies eight science and engineering practices for K-12 classrooms. These practices, along with core ideas and crosscutting concepts, define the nation's learning goals for science. An important advance from earlier standards (AAAS 1993, NRC 1996), these practices are clearly identified "not" as…
Descriptors: Thinking Skills, Persuasive Discourse, Elementary Secondary Education, Science Instruction
Carlone, Heidi; Smithenry, Dennis – Science and Children, 2014
Imagine two fourth-grade classes. Both contain students of comparable demographics and highly respected teachers each with four to five years of experience. Both classes engage in science curricula that emphasize science and engineering practices as outlined in the "Next Generation Science Standards" (NGSS Lead States 2013). Both classes…
Descriptors: Elementary School Students, Elementary School Teachers, Science Curriculum, Elementary School Curriculum
Martinez-Luaces, Victor – International Journal of Mathematical Education in Science and Technology, 2009
In engineering careers courses, differential equations are widely used to solve problems concerned with modelling. In particular, ordinary differential equations (O.D.E.) linear systems appear regularly in Chemical Engineering, Food Technology Engineering and Environmental Engineering courses, due to the usefulness in modelling chemical kinetics,…
Descriptors: Engineering Education, Kinetics, Equations (Mathematics), Teaching Methods
Nelson, Regina K. – ProQuest LLC, 2013
A mixed-methods research study was designed to test whether undergraduate engineering students were better prepared to learn advanced topics in biomedical engineering if they learned physiology via a quantitative, concept-based approach rather than a qualitative, system-based approach. Experiments were conducted with undergraduate engineering…
Descriptors: Undergraduate Students, Engineering Education, Educational Technology, Science Curriculum
Kolar-Begovic, Zdenka, Ed.; Kolar-Šuper, Ružica, Ed.; Jukic Matic, Ljerka, Ed. – Online Submission, 2017
The papers in the monograph address different topics related to mathematics teaching and learning processes which are of great interest to both students and prospective teachers. Some papers open new research questions, some show examples of good practice and others provide more information about earlier findings. The monograph consists of six…
Descriptors: Mathematics Education, Mathematics Instruction, Educational Research, College Students
Weyten, L.; Rombouts, P.; Catteau, B.; De Bock, M. – IEEE Transactions on Education, 2011
Symbolic circuit analysis is a cornerstone of electrical engineering education. Solving a suitable set of selected problems is essential to developing professional skills in the field. A new method is presented for automatic validation of circuit equations representing a student's intermediate steps in the solving process. Providing this immediate…
Descriptors: Foreign Countries, Electronic Learning, Feedback (Response), Engineering Education
Llamosa-Villalba, Ricardo; Delgado, Dario J.; Camacho, Heidi P.; Paéz, Ana M.; Valdivieso, Raúl F. – International Association for Development of the Information Society, 2014
This paper relates the "Agile School", an emerging archetype of the enterprise architecture: "Processes of Organizational Leadership" for leading and managing strategies, tactics and operations of forming in Higher Education Institutions. Agile School is a system for innovation and deep transformation of University Institutions…
Descriptors: Instructional Leadership, Educational Administration, Higher Education, Universities

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