AC 2009-1244: DESIGN CONSIDERATIONS FOR VIRTUAL-CLASSROOM ANDLABORATORY ENVIRONMENTSCharles Lesko, East Carolina University Charles Lesko is an Assistant Professor in the Department of Technology Systems, College of Technology & Computer Science at East Carolina University. He received his BS at the US Naval Academy; he holds a MS in Forensics from National University and a second MS in Computer Information Systems from Boston University; his PhD is in Applied Management from Walden University. His current teaching and research regime focus on strategic technology management and communication, information technology project management, and virtual reality technology use in the
whichstudents at different locations can greatly benefit by accessing remote laboratory equipment andobtaining hands-on experience [1-7]. Not only that, but Web technology is also able to providenew teaching techniques that are appealing to students [5]. On the other hand, RFID is one of the new technologies that is more visible than ever and hasa high potential of being used extensively in the near future. The existence of RFID laboratoriesin educational environments will serve the purpose of providing testing results and conclusions,as well as giving the involved students the opportunity to obtain hands-on experience, making Page 14.209.2them
to other platforms.ConclusionA combination of assembly and C language was used to teach the basics of microprocessorprogramming in the updated Microprocessors course at BSU, using a modern developmentenvironment (a soft processor instantiated on an FPGA with classic RISC architecture).Overlapping the teaching of both languages had a synergistic effect on educating the studentsabout microprocessors. In addition to learning how microprocessors work and control a broadrange of devices, the students learned problem-solving skills and practiced these skills withrealistic laboratory assignments and projects. Materials developed to teach the updatedMicroprocessors course are continuing to be expanded and refined.References[1] B.E. Dunne, A.J
AC 2009-1169: USING SYMBOLIC COMPUTATION, VISUALIZATION, ANDCOMPUTER-SIMULATION TOOLS TO ENHANCE TEACHING AND LEARNINGOF ENGINEERING ELECTROMAGNETICSRadian Belu, Drexel UniversityAlexandru Belu, Case Western Reserve University Page 14.1333.1© American Society for Engineering Education, 2009 Using Symbolic Computation, Visualization and Computer Simulation Tools to Enhance Teaching and Learning of Engineering ElectromagneticsAbstractIn this paper we will review various technologies and techniques in simulating anddeepening understanding of abstract and highly mathematical subjects such aselectromagnetics. Specifically the paper describes some of
and information retention12-14. A key benefit of a Webbased virtual laboratory compared to traditional laboratories is its lower cost, space requirements,and implementation. In recognition of these new trends15-17 and benefits of Web based teachingtechnologies, the authors have sought to develop and implement a Web based 3D computergraphics framework: Virtual Interactive Engineering on the Web (VIEW), dedicated to theadvancement of teaching and learning in the pre-engineering curriculum. This paper presents thedevelopment of the initial phase and first module in VIEW - the development of a VirtualTensile Testing Laboratory (VTTL) used as a supplement in the course: Introduction toEngineering Materials
maximum and to add material requires removing other material. There simplyisn’t room in the curriculum for another class, so either electives must be traded or themicrocontroller skills must be taught in existing classes.The disadvantage of the integrated approach presented in this paper is that more faculty must“buy in” to the program and be able to teach microcontroller applications, and that some originalmaterial in each course featuring microcontrollers will be replaced. This paper will measurestudent perceptions of the approach taken in order to measure whether the advantages outweighthe disadvantages.The three courses targeted to add microcontroller material at the California Maritime Academyare Computer Programming, the Circuits Laboratory
from 16].We have solved these two challenges by updating our embedded system related coursework andlaboratories on a limited budget using student engineers. We have successfully used studentengineers in the past to develop custom laboratory equipment and teaching aids including a[adapted from 16]: Page 14.528.16≠ Verilog HDL controlled robot [12],≠ Labview based digital signal processing and bioinstrumentation laboratory program [13],≠ Robot to teach complex real time embedded systems concepts [14],≠ Visual simulator to teach real-time operating systems [15], and≠ A teaching platform based on the Motorola/Freescale HC12 and HCS12
virtual laboratories. Newcyberlearning environments have the potential to extend learning from traditional classrooms andphysical laboratories to include informal environments such as social networks and virtualspaces. Despite these significant advances, a larger theoretical framework of learning thatincludes cyberinfrastructure at its very core has not yet evolved.The purpose of this research is to provide a synthesis of the fundamental characteristics ofcyberlearning environments that are being created to facilitate student learning withinengineering disciplines. Furthermore, we examine in-depth how educators are definingcyberlearning within the context of learning theories in general, and engineering education inparticular.Our methodology
AC 2009-2275: RUNNING LINUX IN A WINDOWS COMPUTER LABEd Crowley, University of Houston Page 14.1039.1© American Society for Engineering Education, 2009 Running Linux in a Windows Computer LabAbstractIn many courses, the effective use of Linux, or other open source software, can expandand enhance active learning opportunities for students. Since many institutions havestandardized on Windows Computer Laboratories, implementing Linux based learningexperiences may initially seem problematic. However, with a Live Linux CD, you canquickly and easily run Linux, and related open source tools, in an existing WindowsComputer Lab.In this paper, we will explain how Linux Live CDs
for The Journal of Technology Studies. Dr. Bannatyne is also very active in international work and has spoken extensively throughout the United States, Israel, and Russia on the subject of technology's impact in society, the historical aspects of social change due to technology, and computer education courses in the republics of the former Soviet Union.Dan Baldwin, Indiana University-Purdue University, Indianapolis Dan Baldwin is an Assistant Professor of Computer Graphics Technology at IUPUI. Before joining the Purdue School of Engineering and Technology Dan worked as an award-winning freelance illustrator and designer. Dan currently teaches courses in illustration, graphic design, and
AC 2009-1941: USE OF A LOW-COST CAMERA-BASED POSITIONING SYSTEMIN A FIRST-YEAR ENGINEERING CORNERSTONE DESIGN PROJECTMichael Vernier, Ohio State University Michael A. Vernier is a Graduate Teaching Assistant for the OSU Fundamentals of Engineering for Honors (FEH) Program where he teaches the laboratory portion of the three-quarter FEH engineering course sequence and develops course materials. Mr. Vernier earned his BS in Electrical and Computer Engineering (2007) from The Ohio State University and is currently a Master’s Candidate in Electrical and Computer Engineering at The Ohio State University, researching control system design for autonomous vehicles.Craig Morin, Ohio State University
Simulation of the Thermal Method for Nondestructive TestingIntroductionThe thermal nondestructive testing (TNDT) method is widely used for inspection of industrialparts and components. The method involves heating the object and subsequently measuringthe temperature of its surface. This change in temperature provides information about the testobject’s structure. The surface temperature changes if the discontinuity exists inside theobject.The laboratory training allows students to understand the fundamental processes, which takeplace during the TNDT procedure. Students are able to simulate this procedure use FEMLABsoftware package. This interactive software package is based on application of partialdifferential equations for
Berlin Institute of Technology. After receiving his Dipom in Physics from the Berlin Institute of Technology he worked as a teaching assistant at the School of Mathematics and Natural Sciences. He spent the academic year 2000/01 at the Georgia Institute of Technology, Atlanta. Starting in 2001 he worked as a project manager and lecturerer at the Berlin Institute of Technology where he ist concerned with the mathematical education of engineers and physicists. Contact Information: Technische Universität Berlin Medienzentrum für Lehre und Forschung Sekretariat MA 7-2 Erhard Zorn Mail: erhard@math.tu-berlin.de Phone: +49/(0)30/314 23646 Fax: +49/(0)30/314 24413Olivier
AC 2009-162: INTRODUCING ROBOTSRyan Meuth, Missouri University of Science and Technology Ryan Meuth received his Bachelors and Masters degrees in Computer Engineering from the University of Missouri –Rolla in 2005 and 2007 respectively. He is currently a Computer Engineering PhD student at Missouri University of Science and Technology (formerly the University of Missouri – Rolla). He works as a research assistant in the Applied Computational Intelligence Laboratory, contributing to research projects on optimizing the behavior of robot swarms, large scale optimization problems such as computer Go, and high performance computing methods utilizing video game consoles and graphics processing units. His
such as originalbook references or hand-written listings. Figure 1. Learning Metadata: characteristics of a resourceDescriptions can become very large if a certain range of attributes is not selected. For thispurpose, LOM contains nine main categories. We will give more importance to its educationalfeatures, but remaining aspects must be fulfilled too. DIEEC (Electrical, Electronic and ControlEngineering Department) has compiled a large number of exercises from various subjects:analog systems, circuit theory, etc. They are a really helpful complement to laboratory sessions,as students can understand physical models of components without any risk. These digitalmaterials were disseminated through text books or instructional CD
-learningsoftware makes it more likely for them to “drift off.”We recently completed a campus-wide study of student motivation. In this paper, we present theresults of that study, and report on the relationship motivation has with student satisfaction. Webegin with a description of the campus technology supporting education.2. Campus Teaching TechnologyGrove City College (GCC) is a private, comprehensive college now in its 16th year of a 1:1computing program. Currently, the college provides an HP Tablet PC (tc4400) to all its nearly2500 students and the majority of its faculty. For these students and faculty, the Tablet PC istheir sole computing platform. It is common for students to use the Tablet PC both inside andoutside the classroom, including
-loop control of the system, as well as provide a user interface where key system parameters aredisplayed. As part of our integrated freshman curriculum, this project provides hands-onexperience to accompany traditional approaches to teaching science and engineeringfundamentals including conservation of mass and energy, basic salt-water chemistry and electriccircuitry. Assessment of the skills imparted through this project is provided using before andafter survey data measuring student confidence in designing, fabricating and testing a workingelectro-mechanically controlled system. Page 14.56.2Introduction Engineering educators who are
revolution5 due to thefact that there is not really a new pedagogical methodology in the way of teaching. The realchange is based on the new services, and the new possibilities that they offer to both students andteachers. Page 14.1040.3The concept of e-learning was used to define the online environments where students rarelycame to the university. Over time the offer of distance learning courses has increased, relievingtraditional courses. These courses also include doctoral programs. Table 1. Different current Technologies Technologies Wiki & Blogs
AC 2009-1809: LEVERAGING WORKFORCE NEEDS TO INFORMCURRICULAR CHANGE IN COMPUTING EDUCATION FOR ENGINEERING:THE CPACE PROJECTClaudia E. Vergara, Michigan State University Claudia Elena Vergara. PhD Purdue University. Fields of expertise: Plant Biology and STEM Education Research Dr. Vergara is a Postdoctoral Fellow at the Center for Research in College Science Teaching and Learning (CRCSTL) at Michigan State University. Her research interest is in STEM education through research projects on instructional design, implementation and assessment of student learning, aimed to improve science and technology education.Mark Urban-Lurain, Michigan State University Mark Urban-Lurain is the Director of