AC 2007-2802: STUDENT FEEDBACK AND LESSONS LEARNED FROM ADDINGLABORATORY EXPERIENCES TO THE REINFORCED CONCRETE DESIGNCOURSEMicah Hale, University of ArkansasSeamus Freyne, Manhattan CollegeStephan Durham, University of Colorado at Denver Page 12.1311.1© American Society for Engineering Education, 2007 Student Feedback and Lessons Learned from Adding Laboratory Experiences to the Reinforced Concrete Design CourseAbstractIn an effort to demonstrate lecture course material, a class project was added to the seniorlevel Reinforced Concrete Design course that incorporated beam testing. The concept ofbeam testing is not new. Many universities test reinforced concrete
AC 2007-1425: DEMONSTRATING NEURAL FUNCTION THROUGH BOTHHANDS-ON AND COMPUTER-SIMULATED LABORATORY MODULESJennifer Kang Derwent, Illinois Institute of Technology Page 12.445.1© American Society for Engineering Education, 2007 Demonstrating Neural Function through Both Hands-on and Computer Simulated Laboratory ModulesAbstractThe Department of Biomedical Engineering (BME) at Illinois Institute of Technology (IIT)focuses on three areas of study: Cell and Tissue Engineering, Neural Engineering and MedicalImaging. Within the Neural Engineering curriculum, students take a core class called “BME 445Quantitative Neural Function”. The major objective of this class
Gallaher, University of Michigan Undergraduate Student, Electrical EngineeringKatie Thorne, Michigan Technological University Undergraduate Student, PhysicsRafael Ramos, University of Michigan Graduate Student, Space ScienceBrian Gilchrist, University of Michigan Professor, Electrical Engineering and Space SciencePeter Washabaugh, University of Michigan Associate Professor, Aerospace Engineering Page 12.1065.1© American Society for Engineering Education, 2007 Microgravity Flight Testing as a Case Study on the Student Space Systems Fabrication LaboratoryAbstractAs a student-run organization, the Student Space Systems Fabrication Laboratory (S3FL)provides over a
AC 2007-1519: NSF GRANTEE PRESENTATION: RESULTS OF ACOLLABORATIVE REMOTE “OPTICAL CIRCUITS” LABORATORYIMPLEMENTATIONDeniz Gurkan, University of HoustonAlan Mickelson, University of Colorado at BoulderDriss Benhaddou, University of Houston Page 12.1114.1© American Society for Engineering Education, 2007 NSF Grantee Presentation: Results of a Collaborative Remote “Optical Circuits” Laboratory ImplementationThe ROCK (Remote Optical Circuits Knowledge) project is an NSF funded project thataims to create remotely-controlled optical circuits laboratory experiments. We expect thisproject to help introduce hands-on laboratory for distance education. While hands
Determining Process Capability of an Industrial Process in Laboratory Using Computer Aided Hardware and Software ToolsAbstractQuality means suitability for use and it is inversely proportional to variability of product, service,people, processes, and environment. However, it is the dynamic state that is associated with eachof the above and that meets or exceeds expectations of a customer. Quality improvement istherefore the progressive reduction of variability. The gradual reduction of process and productvariability can be done by successive determination and removal of the causes responsible for thevariability.For a process industry, causes of product variability happen generally
AC 2007-1803: INTEGRATIVE DESIGN AND EXPERIMENTAL ANALYSIS: AYEARLONG LABORATORY COURSE IN BIOMEDICAL ENGINEERINGTimothy Allen, University of Virginia Dr. Timothy E. Allen is an Assistant Professor in the Department of Biomedical Engineering at the University of Virginia. He received a B.S.E. in Biomedical Engineering at Duke University and M.S. and Ph.D. degrees in Bioengineering at the University of California, San Diego. Dr. Allen's teaching activities include coordinating the undergraduate teaching labs and capstone design courses in the BME department at the University of Virginia, and his research interests are in the fields of computational systems biology and genomics.Brett Blackman
include interdisciplinary engineering, asset management, decision-making, GASB#34, economic development, performance assessment, policy, performance-assessment, organizational assessment, and public relations. Dr. Orndoff’s research incorporates economics, public administration, public policy, political science, public finance, planning, and sociology aspects Page 12.1618.1© American Society for Engineering Education, 2007 “Making Statics Dynamic!” -Combining Lecture and Laboratory into an Interdisciplinary, Problem-based, Active Learning Environment.AbstractThe new U.A
AC 2007-620: DEVELOPMENT OF A RADIOCHEMISTRY LABORATORY FORTHE PRODUCTION OF TC-99M USING NEUTRON ACTIVATIONSheldon Landsberger, University of Texas-Austin Dr. Sheldon Landsberger is the Coordinator of the Nuclear and Radiation Engineering Program at the University of Texas at Austin and teaches a graduate course in Nuclear and Radiochemistry.Jessica Rosinski, University of Texas-AustinPaul Buckley, Lewis-Clark State CollegeDan Dugan, Washington State UniversityJames Elliston, Washington State UniversityRoy Filby, Washigton State UniversityJeremy Lessman, Washington State UniversityAlena Paulenova, Oregon State University
of Adaptive Control, Neuro –fuzzy systems, Internet based Teleoperational systems and Robotics &Automation.Mohammed Faruqi, Texas A&M University-Kingsville Dr. Faruqi is an associate professor of Civil and Architectural Engineering at Texas A & M University-Kingsville. His interests are: engineering education, and applications of composites to concrete structures. Page 12.981.1© American Society for Engineering Education, 2007 INTRODUCING THERMAL AND FLUID SYSTEMS TO INDUSTRIAL ENGINEERING TECHNOLOGY STUDENTS WITH HANDS-ON LABORATORY EXPERIENCEAbstractThis paper describes a thermal-fluid
AC 2007-716: INQUIRY-BASED ACTIVITIES IN A SECOND SEMESTERPHYSICS LABORATORY: RESULTS OF A TWO-YEAR ASSESSMENTRobert Ross, University of Detroit MercyPrasad Venugopal, University of Detroit Mercy Page 12.901.1© American Society for Engineering Education, 2007 INQUIRY-BASED ACTIVITIES IN A SECOND SEMESTER PHYSICS LABORATORY: RESULTS OF A TWO-YEAR ASSESSMENTIntroductionThe Physics program at the University of Detroit Mercy has redesigned the introductory physicslaboratory course on electromagnetism in order to implement an inquiry-based approach1-4 intothe learning experiences of our students. The redesigned experiments have been modeled
industry working for such companies as Battelle's Columbus Laboratories, Rockwell International, and Claspan Corporation. He joined the University of Cincinnati in 1985.Brian Resnick, University of Cincinnati Brian Resnick is an Assistant Professor of Electrical and Computer Engineering Technology at the University of Cincinnati. He received a BSEE and MSEE from The University of Cincinnati and is a Senior Member of the Institute of Electrical and Electronics Engineers (IEEE) and a registered professional engineer in the state of Ohio. He is the current Chair of the IEEE Cincinnati Section. His speciality is software engineering and prior to joining the university he had a software
AC 2008-1298: GRADUATE LEARNING THROUGH TEACHING: DESIGN OF ADSSS SYSTEM FOR UNDERGRADUATE WIRELESS COMMUNICATIONSLABORATORYLingtao Zhang, Western Carolina UniversityRobert Adams, Western Carolina UniversityJames Zhang, Western Carolina University Page 13.652.1© American Society for Engineering Education, 2008 Graduate Learning through Teaching: Design of a DSSS System for Undergraduate Wireless Communications Laboratory Lingtao Zhang, Robert Adams, and James Z. Zhang Department of Engineering and Technology, Western Carolina University, Cullowhee, NC 28723AbstractOver the past few years, wireless communications technology
AC 2008-1316: REALISTIC LOOKING INTERFACES: IN SEARCH OF THE BESTERGONOMIC METAPHORS FOR REMOTE AND VIRTUAL LABORATORYINTERFACESDavid Olowokere, University of Alabama at BirminghamKayode P. Ayodele, Obafemi Awolowo UniversityLawrence O. kehinde, Texas Southern University, Houston, TexasOlutola Jonah, Obafemi Awolowo UniversityTemitope O. Ajayi, Obafemi Awolowo University, Ile-Ife, NigeriaO.O. Akinwunmi, Obafemi Awolowo University, Ile-Ife, Nigeria Page 13.1025.1© American Society for Engineering Education, 2008 Realistic Looking Interfaces: in Search of the Best Ergonomic Metaphors for Remote and Virtual Laboratory Interfaces.AbstractIn the last few years
Engineering Education, 2008 Using Student Projects to Develop Laboratory Experiments for
AC 2008-1386: ENHANCING LABORATORY EXPERIENCE TO STUDENTS BYINTRODUCING USB CONNECTIVITY INTO LAB ENVIRONMENT USING FTDIGurinder Singh, Future Technology Devices International Ltd. (USA) Lakshmi Munukutla received her Ph.D. degree in Solid State Physics from Ohio University, Athens, Ohio and M.Sc and B.Sc degrees from Andhra University, India. She has been active in research and published several journal articles. She is the Chair of the Electronic Systems Department at Arizona State University at the Polytechnic campus.Lakshmi Munukutla, Arizona State University Gurinder Singh brings almost a decade of experience in the electronics industry to his position as Senior Field Applications Engineer
inthe Electromechanical Analysis Laboratory to promote hands-on and real-world experiences tostudents enrolled in the mechanical and the electromechanical engineering technology programsat the State University of New York, Alfred. Because the students taking this course come fromtwo different backgrounds, mechanical engineering technology and electrical engineeringtechnology, the incorporation of virtual instruments has helped to balance the difference in thebackgrounds. The paper describes in detail how the experiments have been organized to ensurethat students from both backgrounds acquire the knowledge and skills in the mechanical and theelectrical components of the course.IntroductionThe present work describes our experiences in
providepedagogical feedback to engineering laboratory graduate teaching assistants. The project beganwith use of the VaNTH Observation System, a direct observation instrument which providesfeedback about the extent to which an instructor’s interactions with students fit within thedimensions of the “How People Learn” framework, a model of effective teaching and learning aspresented in the National Research Council monograph, How People Learn: Brain, Mind,Experience, and School. Preliminary findings revealed challenges to the use of this instrument ina first-year engineering laboratory course taught by graduate teaching assistants. To provideinformation for the adaptation of this instrument for use in the laboratory environment and to aidin developing new
AC 2008-1098: DEVELOPMENT OF AN OPERATIONAL AMPLIFIER VIRTUALLABORATORY BASED ON ILAB ARCHITECTURE AND NI ELVISKayode P. Ayodele, Obafemi Awolowo UniversityLawrence O. kehinde, Texas Southern University, Houston, TexasOlutola Jonah, Obafemi Awolowo UniversityOlusoji Ilori, Obafemi Awolowo UniversityE.O.B. ajayi, Obafemi Awolowo University, NigeriaOladipo O. Osasona, Obafemi Awolowo University, Ile-Ife, Nigeria Page 13.426.1© American Society for Engineering Education, 2008 Development of an Operational Amplifier Virtual Laboratory based on iLab Architecture and NI ELVISAbstractWe have developed and deployed ‘OpAmp Lab’, a pedagogic operational
Laboratory Course for Lower-division Engineering StudentsAbstractThis paper presents a project-based laboratory course on electronics design and manufacturing.The goal of this course is to provide lower-division engineering students a hands-on experienceinvolving actual printed circuit board (PCB) design, layout, fabrication, assembly, and testing.Through project-based learning, students not only learn technical skills in designing andmanufacturing an electronic device, but also develop their project management andcommunication skills early in their course of study at the university. The course outline andexamples of the student projects are presented in this paper as well as project evaluations andstudents’ feedback. This paper
Engineering, Youngstown State University in Ohio. His current research interest includes Power Systems, Electromagnetics, & Power Electronics & Industrial Controls. Page 13.391.1© American Society for Engineering Education, 2008 Developing an Induction Heating System Laboratory with DSP Microprocessors and Power Electronic DevicesAbstractThis induction heating system laboratory will be integrated into our existing energy conversionlabs for senior students. Students will not only understand how the high alternating currentinduces eddy current in the work piece to convert the resistive losses into
. Page 13.755.1© American Society for Engineering Education, 2008 Integrated Curriculum and Laboratory Development of an Undergraduate Telecommunications and Computer Networking ProgramAbstractThis paper describes the ongoing development of the integrated telecom curriculum andlaboratories. The current laboratory includes a general networking lab and a network securitylab. Eventually, we want to offer an enriched curriculum supported by an integrated networkenvironment where traditional telephone network, VOIP, data network and backbone fiber opticnetwork coexist with data, voice and video traffic. Our goal for the lab is to allow students to seean integrated telecommunication system, rather
AC 2008-1898: THE ULTIMATE CAP STONE COURSE: A LABORATORY BASEDPROBLEM SOLVING DESIGN PROJECTJohn Marshall, University of Southern Maine JOHN MARSHALL’s specialization is Industrial Power and Automation, focusing on active/intelligent materials and advanced control systems. Grants have enabled him to design and equip a state-of-the-art power and control problem solving learning environment. Page 13.1276.1© American Society for Engineering Education, 2008 The Ultimate Capstone Course: A Laboratory Based Problem Solving Design ProjectIntroductionThe purpose of this paper is to provide
AC 2008-1960: HANDS-ON EXPERIENCE WITH A TURBOJET ENGINE IN THETHERMAL SCIENCE LABORATORY COURSEMessiha Saad, North Carolina A&T State University Messiha Saad is an Assistant Professor of Mechanical Engineering at North Carolina A&T State University. He received his Ph.D. from North Carolina State University. He taught mechanical engineering core courses for more than twelve years; he also teaches internal combustion engines, design of thermal systems, and related courses in the thermal science areas. He received numerous teaching awards including: “The Most Helpful Teacher of the Year Award” in 2005, “Procter & Gamble Student Choice Award – Favorite Teacher” in 2004, and “Teacher
Paper ID #35506Student and Professor Collaboration to Develop a First Year ElectricalEngineering Capacitance Laboratory with Common MaterialsMs. Kayla ThompsonDr. Matthew Garett Young, Arkansas Tech University Matthew G. Young received his B. Sc. in Electrical Engineering from Arkansas Tech University in 2009. He obtained his M. Sc. in Microelectronics-Photonics at the University of Arkansas in 2012. For his M. Sc. studies, he focused on the growth of silicon nanowires via plasma-enhanced chemical vapor deposition. In August of 2016, he joined the faculty at Arkansas Tech University as an Assistant Professor of Electrical
Modularization of the Engineering Graphics Computer Laboratory Sequence Based on a Concurrent Engineering Design Paradigm Ronald E. Barr, Thomas J. Krueger, and Ted A Aanstoos Mechanical Engineering Department University of Texas at Austin AbstractOur group is developing a modularized approach to the freshman engineering graphics computerlaboratory sequence based on a concurrent engineering design paradigm. This educationalparadigm starts with the development of a feature-based, parametric 3-D solid model. This 3-Dmodel then constitutes a digital database that can be applied to design analyses, such as
Session FA2-1 A Course Sequence in High Frequency Electronics with Hands-On Laboratory Experiences Charles Baylis, Randall Jean Wireless and Microwave Circuits and Systems Program Department of Electrical and Computer Engineering Baylor University AbstractThis paper describes the development of a course sequence in High Frequency Electronics atBaylor University. This sequence has been designed to provide students with a balanced learningexperience consisting of
Mohammad H. Elahinia is an assistant professor in the Department of Mechanical, Industrial and Manufacturing Engineering at the University of Toledo, where he also serves as the Co-Director for the Dynamic and Smart Systems Laboratory. His main research interest is application of smart materials. Currently he is investigating smart material applications for alternative fuel and hybrid vehicles.Walter Olson, University of Toledo Walter Olson is a professor of Mechanical Engineering specializing in dynamics in the Department of Mechanical, Industrial, and Manufacturing Engineering at the University of Toledo. His research on Hydraulic Hybrid Vehicles is sponsored by the US EPA as well as MIOH
AC 2008-2564: CLASSROOM TEACHING AIDS AND LABORATORYEXPERIMENTATION TO ENGAGE STUDENTS IN MATERIALS LEARNINGStephan Durham, University of Colorado at DenverMicah Hale, University of ArkansasSeamus Freyne, Manhattan College Page 13.296.1© American Society for Engineering Education, 2008 Classroom Teaching Aids and Laboratory Experimentation to Engage Students in Materials LearningAbstractMost civil engineering programs require one course in materials and materials testing. Thesecourses are designed to provide students with general knowledge of the production, properties,and behavior of common structural materials. Emphasis is often placed on the
AC 2008-2594: PITTKIT AND THE BREADBOARD LABORATORY INTERFACEPROCESSOR (BLIP): AN EDUCATIONAL APPARATUS CENTERED ON THEINDIVIDUAL STUDENTGeorge Stetten, University of Pittsburgh George Stetten is a Professor in the Bioengineering Department at the University of Pittsburgh, and a Research Professor in the Robotics Institute at Carnegie Mellon University.David Weiser, Respironics David Weiser is an engineer with Respironics, Inc., and was an undergraduate and then staff in the Department of Bioengineering at the University of Pittsburgh.Timothy Cooper, University of Pittsburgh Timothy Cooper is staff at the University of Pittsburgh Department of Bioengineering.Samantha Horvath, University of Pittsburgh
. Page 13.574.1© American Society for Engineering Education, 2008 Evaluating Development Boards for Laboratory Based Embedded Microcontroller Courses: A Formal Evaluation MatrixAbstract:With all the different development board options available for laboratory basedembedded microcontroller courses, how do you know that you have selected the bestoption? As part of the effort to improve the curriculum in the Electrical and ComputerEngineering Department at Purdue University, several different development boards wereevaluated. To assist in this process and make the “best” choice, a formal evaluationmatrix was developed to assess the various attributes of each option. The evaluationmatrix and rationale for the criteria are explained in