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Schneider, Kimberley R.; VanBennekom, Neyda; Bahr, David; Burkett, Susan; Lusth, John C.; Pressley, Shelley – Journal of College Science Teaching, 2016
Three different course models devoted to preparing science and engineering students for successful research endeavors were offered at three research institutions. Goals of this work include (a) involving students early in their academic career so they can gain the most out of subsequent research experiences and (b) providing basic skills to make…
Descriptors: STEM Education, Student Research, Science Education, Engineering Education
Musekamp, Frank; Pearce, Jacob – Assessment & Evaluation in Higher Education, 2016
The goal of this paper is to examine the relationship of student motivation and achievement in low-stakes assessment contexts. Using Pearson product-moment correlations and hierarchical linear regression modelling to analyse data on 794 tertiary students who undertook a low-stakes engineering mechanics assessment (along with the questionnaire of…
Descriptors: Student Motivation, Academic Achievement, College Students, Engineering Education
Chudler, Eric H.; Bergsman, Kristen Clapper – CBE - Life Sciences Education, 2016
Neural engineering is an emerging field of high relevance to students, teachers, and the general public. This feature presents online resources that educators and scientists can use to introduce students to neural engineering and to integrate core ideas from the life sciences, physical sciences, social sciences, computer science, and engineering…
Descriptors: Science Instruction, Neurosciences, Brain Hemisphere Functions, Educational Resources
Camporesi, Roberto – International Journal of Mathematical Education in Science and Technology, 2016
We present an approach to the impulsive response method for solving linear constant-coefficient ordinary differential equations of any order based on the factorization of the differential operator. The approach is elementary, we only assume a basic knowledge of calculus and linear algebra. In particular, we avoid the use of distribution theory, as…
Descriptors: Algebra, Calculus, Equations (Mathematics), Mathematics Instruction
Cancela, Angeles; Maceiras, Rocio; Sánchez, Angel; Izquierdo, Milagros; Urréjola, Santiago – European Journal of Engineering Education, 2016
The aim of this paper is to describe the design of chemical engineering laboratory sessions in order to focus them on the learning company approach. This is an activity carried out in the classroom similar to the activities that exist in real companies. This could lead classroom practice to a more cooperative learning and a different style of…
Descriptors: Chemical Engineering, Laboratories, Teaching Methods, Student Projects
Toth, Eva Erdosne – Educational Technology Research and Development, 2016
Developing effective pedagogies to help students examine anomalous data is critical for the education of the next generation of scientists and engineers. By definition anomalous data do not concur with prior knowledge, theories and expectations. Such data are the common outcome of empirical investigation in hands-on laboratories (HOLs). These…
Descriptors: Data Analysis, Computer Simulation, Laboratories, Blended Learning
Yang, Eunice – Physics Teacher, 2016
This paper discusses the use of a free mobile engineering application (app) called Autodesk® ForceEffect™ to provide students assistance with spatial visualization of forces and more practice in solving/visualizing statics problems compared to the traditional pencil-and-paper method. ForceEffect analyzes static rigid-body systems using free-body…
Descriptors: Telecommunications, Handheld Devices, Technology Uses in Education, Computer Software
Gainsburg, Julie; Fox, John; Solan, Lawrence M. – Theory Into Practice, 2016
How is argumentation used in professional practice? As schools aim to ensure that students are college-and-career ready, classroom practices might be informed by argumentation in the professions. An analysis of evidence-based reasoning in 3 professions--engineering, law, and medicine--offers out-of-school perspectives on the practices and purposes…
Descriptors: Persuasive Discourse, Decision Making, Readiness, Evidence Based Practice
Nathan, Stephen A.; Loxsom, Fred – Physics Teacher, 2016
Sustainable energy is growing in importance as the public becomes more aware of climate change and the need to satisfy our society's energy demands while minimizing environmental impacts. To further this awareness and to better prepare a workforce for "green careers," we developed a sustainable energy laboratory course that is suitable…
Descriptors: High School Students, Undergraduate Students, Sustainability, Energy
Khizhnaya, Anna V.; Kutepov, Maksim M.; Gladkova, Marina N.; Gladkov, Alexey V.; Dvornikova, Elena I. – International Journal of Environmental and Science Education, 2016
The necessity of enhancement of the information component in the military engineer training is determined by the result of a comparative analysis of global and national engineering education standards. The purpose is to substantiate the effectiveness and relevance of applying information technology in the system of military engineer training of…
Descriptors: Foreign Countries, Information Technology, Military Training, Military Personnel
Wankat, Phillip C.; Bullard, Lisa G. – Chemical Engineering Education, 2016
This paper revisits the landmark CEE series, "The Future of Engineering Education," published in 2000 (available free in the CEE archives on the internet) to examine the predictions made in the original paper as well as the tools and approaches documented. Most of the advice offered in the original series remains current. Despite new…
Descriptors: Futures (of Society), Educational Trends, Engineering Education, Prediction
Goodman, Kevin; Davis, Julian; McDonald, Thomas – American Journal of Engineering Education, 2016
In an effort to motivate undergraduate engineering students to prepare for class by reviewing material before lectures, a "Look-Ahead" problem was utilized. Students from two undergraduate engineering courses; Statics and Electronic Circuits, were assigned problems from course material that had not yet been covered in class. These…
Descriptors: Undergraduate Students, Engineering Education, Assignments, Reading Assignments
Cárcamo Bahamonde, Andrea; Gómez Urgelles, Joan; Fortuny Aymemí, Josep – Journal of Technology and Science Education, 2016
The modern dynamic world requires that basic science courses for engineering, including linear algebra, emphasise the development of mathematical abilities primarily associated with modelling and interpreting, which are not exclusively calculus abilities. Considering this, an instructional design was created based on mathematical modelling and…
Descriptors: Mathematical Models, Algebra, Mathematical Concepts, Engineering Education
Houseal, Ana K. – Electronic Journal of Science Education, 2016
A Framework for K-12 Science Education [the Framework] and the resulting Next Generation Science Standards [NGSS] are based upon current research about teaching and learning science. Thus, they provide a structure that science classrooms can use to change from places where students learn about science to places were students "do"…
Descriptors: Models, Elementary School Teachers, Secondary School Teachers, Science Instruction
Love, Tyler S. – Science Educator, 2017
The release of the Next Generation Science Standards (NGSS) (NGSS Lead States, 2013a) raised concerns regarding elementary school science educators' preparation to adequately teach engineering practices using potentially hazardous engineering tools and materials (Love, 2014, 2015b; NSTA, 2016; Roy, 2012, 2013, 2014a, 2014b, 2015). This study…
Descriptors: Elementary School Teachers, Engineering Education, Teacher Competencies, Safety

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