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Showing 1 to 15 of 211 results Save | Export
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Dóra M. Szego – International Journal for Technology in Mathematics Education, 2023
Begun in the mid-90s, computers have long been a staple in teaching mathematics to engineering students. In recent years, with the effects of the COVID-19 pandemic and the arrival of Generation Z in tertiary education, the role of blended learning has increased. This paper highlights some of the greater challenges and successes of the transition…
Descriptors: Blended Learning, Mathematics Instruction, Engineering Education, College Students
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Yenkie, Kirti Maheshkumar – Chemical Engineering Education, 2020
The current business trends, such as Industry 4.0, require a modern chemical engineer to know about programming, advanced computational tools, and holistic thinking. To this end, an integrated approach, where theoretical concepts are supplemented by computational lab-based exercises and team projects promoting "Design Thinking" is…
Descriptors: Chemical Engineering, Engineering Education, Undergraduate Students, College Instruction
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Bill Cope; Mary Kalantzis – History of Education, 2023
The differences between computer-mediated and in-person learning are of increasing interest to educators, both with the rise of fully online education offerings and the move to 'blended learning' when teachers use computer-mediated learning to supplement and extend classroom activities. This paper offers a narrative history of the world's first…
Descriptors: Educational Change, Electronic Learning, Learning Management Systems, Educational History
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Chou, Karen C.; Moaveni, Saeed; Sapp, James D. – Journal of STEM Education: Innovations and Research, 2017
The integrity of a structural system depends on the strength of materials, shape of the individual member and the elements used to hold the members together. In most undergraduate civil engineering curricula, a structural steel and/or reinforced concrete design course is required. Usually, the main focus of these courses is on member selection…
Descriptors: Engineering Education, Metallurgy, Construction Materials, Computer Simulation
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Newland, James; Wong, Sissy S. – Science Teacher, 2022
This three-day integrated 5E inquiry lesson that includes physics, engineering, and biology concepts, uses physical computing and photoplethysmography to learn about one's pulse. The main learning objective is to have students communicate how wave phenomena, like a pulse, can be analyzed using sensors, which is called physical computing. This…
Descriptors: Physics, Engineering, Biology, Science Instruction
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Hernandez, Joel; Niyazov, Rafael; Tesfagiorgis, Kibrewossen – Journal of College Science Teaching, 2021
This article describes the use and advantages of the MATLAB-based program ReshmoBeam, developed to perform beam analysis, as it is done in statics courses of engineering curricula. An important goal of the article is to facilitate the dissemination of the program among faculty teaching these courses. The program is offered free to interested…
Descriptors: Computer Uses in Education, Engineering Education, Structural Elements (Construction), Mechanics (Physics)
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Mota-Babiloni, Adrián; Mateu-Royo, Carlos; Navarro-Esbrí, Joaquín; Barragán-Cervera, Ángel – Journal of Technology and Science Education, 2021
A significant amount of energy in the form of heat is lost in industrial processes once it is used in specific processes. Among different technologies, high-temperature heat pumps (HTHP) are a valuable method of recovering low-temperature waste heat in the industry in a very efficient way that can be activated using clean electricity. As a…
Descriptors: Computer Simulation, Laboratories, Engineering Education, Energy
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Ullah, AMM Sharif; Harib, Khalifa H. – Education Sciences, 2018
This article addresses the issue of educating engineering students with the knowledge and skills of Computer-Aided Design and Manufacturing (CAD/CAM). In particular, three carefully designed tutorials--cutting tool offsetting, tool-path generation for freeform surfaces, and the integration of advanced machine tools (e.g., hexapod-based machine…
Descriptors: Computer Assisted Design, Engineering Education, Tutorial Programs, College Curriculum
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Al-Moameri, Harith H.; Jaf, Luay A.; Suppes, Galen J. – Journal of Chemical Education, 2018
Traditional engineering textbooks are substantially limited by approaches relying on analytical solutions where most of the applications are described by differential equations without simple analytical solutions. An alternative is to design a textbook around computer-program-based simulations, where the simulations progressively evolve through…
Descriptors: Plastics, Textbooks, Chemistry, Engineering
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Briscoe, Michael – Science Teacher, 2019
FLEET is a free ship-design simulator that reaches students in their native environment--video games. It is also a physics simulator that applies content first learned through hands-on scientific investigations. Using FLEET, students design and use ships for various naval missions by mastering scientific concepts such as force, energy, and work,…
Descriptors: Video Games, Computer Simulation, Physics, Hands on Science
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Garcia-Carballeira, Felix; Calderon-Mateos, Alejandro; Alonso-Monsalve, Saul; Prieto-Cepeda, Javier – IEEE Transactions on Learning Technologies, 2020
Our educational project has three primary goals. First, we want to provide a robust vision of how hardware and software interplay, by integrating the design of an instruction set (through microprogramming) and using that instruction set for assembly programming. Second, we wish to offer a versatile and interactive tool where the previous…
Descriptors: Instructional Design, Computer Simulation, Technology Integration, Programming
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Velasco, Richard Carlos L. – Technology and Engineering Teacher, 2018
The evolution of digital technologies over the past couple of decades has contributed to a paradigm shift in education where the internet and web-based applications have become ubiquitous in primary and secondary classrooms (Glassman & Kang, 2011). With this shift came the digital phenomena known today as Web 2.0 technologies. Web 2.0…
Descriptors: Web 2.0 Technologies, Computer Uses in Education, Technology Education, Engineering Education
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Deal, Walter F., III; Hsiung, Steve C. – Technology and Engineering Teacher, 2016
Today there are a number of 3D printing technologies that are low cost and within the budgets of middle and high school programs. Educational technology companies offer a variety of 3D printing technologies and parallel curriculum materials to enable technology and engineering teachers to easily add 3D learning activities to their programs.…
Descriptors: Technology Education, Engineering Education, Manufacturing, Visual Aids
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Anupam, Aditya; Gupta, Ridhima; Naeemi, Azad; JafariNaimi, Nassim – IEEE Transactions on Education, 2018
Quantum mechanics (QMs) is a foundational subject in many science and engineering fields. It is difficult to teach, however, as it requires a fundamental revision of the assumptions and laws of classical physics and probability. Furthermore, introductory QM courses and texts predominantly focus on the mathematical formulations of the subject and…
Descriptors: Quantum Mechanics, Experiential Learning, Introductory Courses, Educational Games
Crearie, Linda – International Association for Development of the Information Society, 2016
Technological advances over the last decade have had a significant impact on the teaching and learning experiences students encounter today. We now take technologies such as Web 2.0, mobile devices, cloud computing, podcasts, social networking, super-fast broadband, and connectedness for granted. So what about the student use of these types of…
Descriptors: Undergraduate Students, Student Experience, Engineering Education, Computer Uses in Education
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