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Conference Session
Laboratory Courses and Programming in the Aerospace Curriculum
Collection
2020 ASEE Virtual Annual Conference Content Access
Authors
Mary E. Johnson Ph.D., Purdue Polytechnic Institute; Tracy L. Yother, Purdue University - Purdue Polytechnic Lafayette
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Aerospace
Paper ID #29954Lifelong Learning in an Aircraft Engine Systems Laboratory CourseProf. Mary E. Johnson PhD, Purdue Polytechnic Institute Mary E. Johnson is a Professor in Aviation and Transportation at Purdue University in West Lafayette, Indiana. She earned her BS, MS and PhD in Industrial Engineering from The University of Texas at Arlington. After 5 years in aerospace manufacturing, Dr. Johnson joined the Automation & Robotics Research Institute in Fort Worth and was program manager for applied research programs. Fourteen years later, she was an Industrial Engineering assistant professor at Texas A&M - Commerce
Conference Session
Laboratory Courses and Programming in the Aerospace Curriculum
Collection
2020 ASEE Virtual Annual Conference Content Access
Authors
Waterloo Tsutsui, Purdue University at West Lafayette; Ruben D. Lopez-Parra, Purdue University at West Lafayette (COE); Genisson Silva Coutinho, Instituto Federal de Educação, Ciência e Tecnologia da Bahia; Alberto W. Mello, Embry-Riddle Aeronautical University; Michael David Sangid, Purdue University; Tamara J. Moore, Purdue University at West Lafayette
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Aerospace
Presidential Early Career Award for Scientists and Engineers (PECASE) in 2012. American c Society for Engineering Education, 2020 The Implementation of Virtual Labs in Aerospace Structures EducationAbstractVirtual laboratories are valuable resources to support students’ learning in engineering andscience. They allow students to perform experiments with minimum resources, be prepared forother hands-on activities or lectures, and better understand the conceptual knowledge of thediscipline. Due to those benefits, the School of Aeronautics and Astronautics at PurdueUniversity has been implementing virtual labs in the lab course of AAE 20401
Conference Session
Laboratory Courses and Programming in the Aerospace Curriculum
Collection
2020 ASEE Virtual Annual Conference Content Access
Authors
Kathryn Anne Wingate, University of Colorado at Boulder; Aaron W. Johnson, University of Colorado Boulder; Lyndsay Rose Ruane; Dennis Akos
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Diversity
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Aerospace
Conference Session
Solid and Structural Mechanics in Aerospace Engineering
Collection
2016 ASEE Annual Conference & Exposition
Authors
David C. Fleming, Florida Institute of Technology
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Diversity
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Aerospace
received the Kerry Bruce Clark award for Excellence in Teaching, Florida Tech’s highest teaching award, for the 2013-2014 aca- demic year. c American Society for Engineering Education, 2016 A Fatigue Life Experiment for Aerospace Engineering UndergraduatesAbstractThe importance of fatigue in aerospace structural design suggests the need for this topic to beaddressed as part of aerospace engineering undergraduate curricula. This paper describes asequence of laboratory experiments for upper level aerospace engineering students thatemphasizes stress concentrations and their role in quasistatic and fatigue loading. The fatigueexperiment is conducted with a
Conference Session
Efficient Authenticity: Modeling, Labs, Real-World Applications in Aerospace
Collection
2017 ASEE Annual Conference & Exposition
Authors
Kuldeep S. Rawat, Elizabeth City State University; Ellis Eugene Lawrence, Elizabeth City State University; Orestes Devino Gooden, Elizabeth City State University
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Diversity
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Aerospace
that is readily accessible in more urbanareas of the state. However, with recent growth in the aviation and aerospace industry in theregion, there now exists the potential to link K-12 education to the aerospace industry. Thisinitiative adopts Roadshow-in-a-Box model, extends laboratory resources and is an importantstep towards expanding STEM literacy and career exposure for students from the mosteconomically distressed region in the State. The initiative is expected to serve over 200 schools,located within the twenty-one (21) counties surrounding ECSU, over a period of three years.This highly interactive learning lab on wheels provides students with hands-on activities,laboratory equipment, simulations, information, and rich digital media
Conference Session
Aerospace Division Technical Session 1
Collection
2018 ASEE Annual Conference & Exposition
Authors
Tian Tian, University of Central Florida; Ronald F. DeMara P.E., University of Central Florida
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Diversity
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Aerospace
Paper ID #21117High-Fidelity Digitized Assessment of Heat Transfer Fundamentals using aTiered Delivery StrategyDr. Tian Tian, University of Central Florida Tian Tian is an Associate Lecturer of Mechanical and Aerospace Engineering at the University of Central Florida, which she joined in 2013. She has been frequently teaching undergraduate lecture and laboratory components of Heat Transfer, Thermodynamics and Fluid Mechanics. Her educational research interests focus on project-based learning, online learning, and the digitization of STEM assessments. She received the Teaching Incentive Award, Excellence in Undergraduate
Conference Session
Aerospace Division Technical Session 1
Collection
2018 ASEE Annual Conference & Exposition
Authors
Adeel Khalid, Kennesaw State University; Christopher Douglas Roper; J. Andrew Pirrello Jr., Kennesaw State University ; Alain J. Santos
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Diversity
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Aerospace
have access to literature beforehand and receive a lecture prior to the flight perform better than thosethat only review the literature or only receive a lecture before the simulation. Also, the efficacy of the hands-on learning in a laboratory environment is discussed.Keywords: Flight Training, Simulation, Hands-on Learning, Laboratory learning, Retention 1. IntroductionIn this IRB-approved (Institutional Review Board) study, student learning and retention is assessedusing a motion-based fixed-wing flight simulator. Students are given introduction to the principlesof flight. Then they fly the aircraft flight simulator and are asked to complete a pre-defined mission.Points are given for successfully completing several legs of the mission
Conference Session
Solid and Structural Mechanics in Aerospace Engineering
Collection
2016 ASEE Annual Conference & Exposition
Authors
Gozdem Kilaz, Purdue University - West Lafayette; Ronald Sterkenburg, Purdue University - West Lafayette
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Diversity
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Aerospace
Paper ID #14933Hybrid Course Design in Manufacturing Courses to Improve Learning in theClassroomDr. Gozdem Kilaz, Purdue University - West Lafayette Gozdem Kilaz is an Assistant Professor of Aviation Technology Department at Purdue University. Dr. Kilaz holds B.S., M.S., and Ph.D. degrees in Chemical Engineering. She serves as the Chief Scientist for the Air Transport Institute for Environmental Sustainability (AirTIES). Her research is focused on avia- tion biofuels and sustainability. Her courtesy appointment with the Laboratory of Renewable Resources Engineering (LORRE) research center provides collaboration between
Conference Session
Aerospace Division Technical Session 1
Collection
2018 ASEE Annual Conference & Exposition
Authors
Kuldeep S Rawat, Elizabeth City State University; Ellis Eugene Lawrence, Elizabeth City State University; Robin Renee Mangham, Elizabeth City State University; Orestes Devino Gooden, Elizabeth City State University
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Diversity
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Aerospace
program to expose students to STEMlearning, especially minorities from rural counties surrounding ECSU. Student activities weredelivered through Friday Academy, Saturday Academy and Summer Academies withparticipation from 235 middle and high school students. The participants comprised of 43.83%Male and 56.17% Female, participating in a total of thirty-six (36) to forty (40) hours of hands-on experience. The three key components of K-12 Aerospace Academy program at ECSU are: (i)Curriculum Enhancement Activities (CEAs) – Hands-on, inquiry-based K-12 STEM curricula,(ii) Aerospace Educational Laboratory (AEL) – both stationary and mobile, and (iii) FamilyConnection – parental involvement and informal education. The curriculum supports the
Conference Session
Aerospace Technical Session 2
Collection
2015 ASEE Annual Conference & Exposition
Authors
M. Christopher Cotting, United States Air Force Test Pilot School
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Diversity
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Aerospace
an unsafe condition, whereas pilots must realize the complex coordinationthat is occurring on the ground in a control room, and the need to have efficient and optimizedtests to minimize programmatic costs.Curriculum Execution Challenges Page 26.193.11Each student day allows for 3 to 4 hours of academic instruction, with 1 to 2 flight events alsoscheduled during that day. A simulation laboratory, instructor feedback session, or oral reportmay take the place of a flying event as required. An academic event will often last 3 to 5 days,with a test given at the end of an event. Each academic event is part of a larger course that alsoincludes
Conference Session
Aerospace Student Projects, Engineering Design and Research
Collection
2020 ASEE Virtual Annual Conference Content Access
Authors
Kuldeep S Rawat, Elizabeth City State University; Chandra Bhushan Asthana P.E., Elizabeth City State University
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Diversity
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Aerospace
integrate modern educational technology tools and inquiry-basedhands-on learning activities to reinforce science and mathematical concepts required to enterSTEM careers, especially high-demand and emerging field of drone technology.Students learned about potential college and career opportunities and why a background inadvanced science and mathematics is crucial to achieving these careers. However, a balancemust be met for providing a rigorous informal academic environment for the students whileallowing them to enjoy the program’s activities so that they will remember the experiencepositively and perhaps consider STEM-related degrees and careers. We met this challenge bysupplementing classroom instruction with exposure to laboratory and field-based
Conference Session
Innovations in Curriculum, Projects, and Pedagogy in Aerospace Engineering Education
Collection
2019 ASEE Annual Conference & Exposition
Authors
Aaron W. Johnson, University of Michigan; Jessica E S Swenson, University of Michigan
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Diversity
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Aerospace
University ofMichigan, students are required to take 41 credits of engineering science courses (32% of thetotal credits required for graduation) and only 19 credits of design and laboratory courses (14.8%of total credits). Furthermore, of the 11 current ABET Student Outcomes only one of these, a) anability to apply knowledge of mathematics, science, and engineering, directly speaks to thecontent of these engineering science courses [1].Despite the prominence of engineering science courses in the curriculum, these courses havebeen studied less in engineering education research than design courses [2]. Ideally, theseengineering science courses should give students the theoretical background that they can applyin engineering design courses, on student
Conference Session
Design Courses 2, Aerospace Assets
Collection
2021 ASEE Virtual Annual Conference Content Access
Authors
Cristhian David Coronel, Nihon Gakko University; Mayra Luján Mosqueda, Nihon Gakko University; Blas Fernando Vega BV, Agencia Espacial del Paraguay; Diego Herbin Stalder, Universidad Nacional de Asunción; Jorge H. Kurita, Universidad Nacional de Asunción
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Aerospace
appointedto lead the research department of the School of Engineering. From 2017 he is appointed to be the head ofthe Mechanical Engineering Department at Universidad Nacional de Asuncion. He is currently workingas the director of the Planning Directorate of the Paraguayan Space Agency. American c Society for Engineering Education, 2021 Building 1U CubeSat as a Tool to Promote Project-Based Learning in Paraguay, a case studyIntroductionIn Paraguay, various higher education institutions such as universities do not have properlyequipped engineering laboratories because it requires a significant investment [1]. Also, theselaboratories may require extensive infrastructure
Conference Session
Aerospace Engineering Education
Collection
2016 ASEE Annual Conference & Exposition
Authors
Antonette T. Cummings P.E., Purdue University, West Lafayette; William C. Oakes, Purdue University, West Lafayette; Carla B. Zoltowski, Purdue University, West Lafayette
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Diversity
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Aerospace
Conference Session
Learning in a Socially-Distanced Environment
Collection
2021 ASEE Virtual Annual Conference Content Access
Authors
Wm. Michael Butler, Virginia Polytechnic Institute and State University; Kenneth Reid, University of Indianapolis
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Diversity
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Aerospace
function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives [6]Programs necessarily define points within the curriculum where these outcomes are included incoursework. In some cases, these are included in coursework in ways where there may not be anatural fit in a typical lecture or lecture/laboratory course, or that appear to be contrived.Teamwork may consist of students put into groups based on proximity, with minimal instructionin how to effectively operate as a team; while this is indeed working within a group, it isarguably not effective teamwork [7]-[9]. Effective communication often consists of in-classpresentations
Conference Session
Aerospace Engineering Education
Collection
2019 ASEE Annual Conference & Exposition
Authors
Chadia A. Aji, Tuskegee University; M. Javed Khan, Tuskegee University
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Diversity
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Aerospace
Research, vol. 74, pp. 59-109[12] J. W. Thomas (2000). A review of research on project-based learning, accessed on Jan. 29.2019, www.bie.org/index.php/site/RE/pbl_research/29[13] B. D. Jones, “Motivating students to engage in learning: The MUSIC model of academicmotivation,” International Journal of Teaching and Learning in Higher Education, vol. 21 (2),272-285, accessed on Jan. 29, 2019, http://files.eric.ed.gov/fulltext/EJ899315.pdf[14] R. J. Marzano, D. J. Pickering and T. Heflebowen, The highly engaged classroom, MarzanoResearch Laboratory, 2011[15] A. Bandura, “Self-efficacy mechanism in human agency,” American Psychologist, vol. 37(2), pp. 122–147, 1982, doi:10.1037/0003-066X.37.2.122[16] A. Carroll and S. Houghton, “Self-efficacy and
Conference Session
Aerospace Technical Session 2
Collection
2015 ASEE Annual Conference & Exposition
Authors
Kathy Schmidt Jackson, Pennsylvania State University, University Park; Mark D. Maughmer, Pennsylvania State University, University Park; Benjamin T. Pipenberg, The Pennsylvania State University; Nicholas Jared Grasser, The Pennsylvania State University; Stephen Van Wert, The Pennsylvania State University
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Diversity
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Aerospace
thecourse are that students should, upon their completion of the course, be able to:1.) Complete the preliminary design for an aircraft such that it satisfies assigned specifications2.) Design a system, component, or process that meets given requirements in aircraft systems3.) Identify, formulate, and solve engineering problems4.) Function on multi-disciplinary teams5.) Communicate and present effectively the results and consequences of their technical efforts6.) Determine what the ethical responsibilities are to themselves, to employers, and to societyThe course has a lecture component as well as the laboratory sessions. The purpose of the lectureportion of the class is to support the students’ design and fabrication activities. As a result
Conference Session
Teaching Methodology & Assessment 2
Collection
2021 ASEE Virtual Annual Conference Content Access
Authors
George Frederick Halow, University of Michigan; Maia E. Herrington, University of Michigan; Melanie Spare, Siemens Digital Industries Software; Shannon O'Donnell, Siemens Digital Industries Software; Gilbert Morris, Retired (formerly Siemens)
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Diversity
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Aerospace
Conference Session
Aerospace Technical Session 2
Collection
2015 ASEE Annual Conference & Exposition
Authors
Antonette T. Cummings P.E., Purdue University; William C. Oakes, Purdue University, West Lafayette
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Diversity
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Aerospace
review for difficult concepts; he highlighted cognitiveload theory and related it to problem-based learning [9]. In this work, he highlights thatmeasurement variation, which uses probability and statistics, is the difficult concept targeted in Page 26.840.9his research. He argued the effectiveness of scaffolding with worksheets in a laboratory settingover lectures and textbooks in problem-based learning in order to teach difficult engineeringconcepts.Other researchers, in proving the usefulness of simulations for teaching, highlighted typicalproblems that students encounter. In broad categories, students have difficulty with generatinghypotheses
Conference Session
Aerospace Hot Topic: Unmanned Aerial Systems
Collection
2017 ASEE Annual Conference & Exposition
Authors
Subodh Bhandari, California State Polytechnic University, Pomona
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Diversity
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Aerospace
Engineeringdepartments get opportunity to learn about the application of these disciplines to the AerospaceEngineering and unmanned aerial systems.80% of the students who responded to the survey questionnaire said that the project was helpfulfor them in learning disciplines in engineering and science other than their major discipline.Most of the students also said that the projects helped them acquire new skills.Also, a number of Aerospace Engineering have been getting employment for the industry careersthat have traditionally required Computer Science or Electrical & Electronics Engineeringgraduates such as in Jet Propulsion Laboratory, and Unmanned Systems Division of NorthropGrumman Corporation.D. Continued Involvement in UAS Research ProjectsMost of the
Conference Session
Efficient Authenticity: Modeling, Labs, Real-World Applications in Aerospace
Collection
2017 ASEE Annual Conference & Exposition
Authors
Muhammad Omar Memon, University of Dayton; Dathan Erdahl Ph.D., University of Dayton Research Institute; Saad Riffat Qureshi, University of Dayton
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Diversity
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Aerospace
Simulator. When workingin the simulator facility, laboratory assistants were on hand to answer questions and facilitateefficient and safe interaction with the system hardware. Figure 2. Merlin Flight Simulator at the University of DaytonIntegrating Merlin Flight Simulator With student groups (of three to four) already created for the final project, the project wasdivided into two parts; understanding aircraft stability and control through use of the MerlinFlight Simulator and modeling and simulation of the stability derivatives using a computerprogram. In-class lectures were strategically placed in the timespan between the two parts of theproject. Early in the semester, student groups went into the simulator with very basic
Conference Session
Hands-On Activities and Student Learning in Aerospace Engineering - I - Student Papers
Collection
2019 ASEE Annual Conference & Exposition
Authors
Hannah Rose Stroud, Texas A&M University; Kristi J. Shryock, Texas A&M University; Darren John Hartl, Texas A&M University; Isaac Emmanuel Sabat, Texas A&M University; Kelly K. Dray, Texas A&M University
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Aerospace
Aerospace Engineering in 2009, both from Texas A&M University. He currently holds an Assistant Professor position at Texas A&M in his home department, and his work bridges the topics of advanced multifunctional material systems and their integration into aerospace platforms. After over three years as a Research Assistant Professor at Texas A&M, Dr. Hartl accepted joint appointments working at the Air Force Research Laboratory (AFRL) in the Materials and Manufacturing Directorate and Aerospace Systems Directorate. At Texas A&M, Dr. Hartl maintains a large and active research team consisting of graduate, undergraduate, and postdoctoral researchers. Darren has over 17 years of experience working with shape
Conference Session
Aerospace Division Technical Session 1
Collection
2018 ASEE Annual Conference & Exposition
Authors
Sharanabasaweshwara Asundi, Tuskegee University
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Diversity
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Aerospace
tracking, telemetry communication and an understanding of telecommandoperation. To accommodate the use of the classroom satellite kit, the Friday lab sessions wereextended. Participants would be divided into groups and each group would have an opportunityto assemble, disassemble and operate the classroom satellite in the ESD laboratory at PESUniversity. In the ESD lab, the participants put on ESD sensitive coats, shoes, gloves and got toexperience being a space systems engineer. It is important to mention here that along with theclassroom satellite kit, basic ham radio equipment along with packet radio adapters, shown inFigure 6, were also used to educate the participants in the methods of radio communication. Thethree components proved to be a
Conference Session
STEM Education Tied to Aerospace Engineering
Collection
2016 ASEE Annual Conference & Exposition
Authors
Hansel Burley, Texas Tech University; Terrance Denard Youngblood, Texas Tech University; Ibrahim H. Yeter, Texas Tech University; Casey Michael Williams, Texas Tech University
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Diversity
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Aerospace
students “to see beyond the fire and smoke” and use data todirect effort. These teachers represent about 50 high schools in this Southern state. They aretaught to use Socratic teaching methods, with a focus on formulating good questions that leadstudents to discovery across a range of topics that include those from aeronautics, electricalengineering, and fluid dynamics to those in algebra and calculus. Program staff also collectsmany anecdotes of program alumni being directly recruited by postsecondary engineering 2departments. Additionally, the program now has alumni who have done well and work forSpaceX, NASA and Jet Propulsion Laboratory. How
Conference Session
Aerospace Technical Session 3
Collection
2015 ASEE Annual Conference & Exposition
Authors
Michael C. Hatfield, University of Alaska, Fairbanks; Keith W Cunningham; Samuel Vanderwaal; Eyal Saiet, University of Alaska Fairbanks
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Diversity
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Aerospace
Professor, Electrical/Computer Engineering, UAF Earth & Planetary Remote Sensing, UAF Geophys- ical Institute Associate Director for Science & Education, Alaska Center for Unmanned Aircraft Systems Integration 2009-2012: Director, Air Force Research Laboratory Air Vehicles Directorate 2006-2009: Deputy Director, Air Force Office of Scientific Research 1999-2003: Deputy Head, USAF Academy De- partment of Astronautics 1992-1996: Assistant Professor, USAFA Department of Astronautics 3. PUB- LICATIONS 1. Cunningham, K., M. C. Hatfield, and R. Philemonoff, Unmanned Aircraft Systems in Alaskan Civil Research, 2014 Arctic Technology Conference, 2014 2. Hatfield, M. C., and J. G. Hawkins, Design of an Electronically
Conference Session
Flight and Control Simulators for Virtual Learning
Collection
2020 ASEE Virtual Annual Conference Content Access
Authors
A. Ram Kim, Iowa State University; Benjamin Ahn, Iowa State University of Science and Technology; Matthew Erik Nelson, Iowa State University
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Diversity
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Aerospace
. 2004 2004, pp. 147-150, doi: 10.1109/IPCC.2004.1375289.[14] I. Galván-Sánchez, D. Verano-Tacoronte, S. M. González-Betancor, M. Fernández- Monroy, and A. Bolívar-Cruz, "Assessing oral presentation skills in Electrical Engineering: Developing a valid and reliable rubric," The International Journal of Electrical Engineering & Education, vol. 54, no. 1, pp. 17-34, 2017, doi: 10.1177/0020720916659501.[15] R. S. Kellogg, J. A. Mann, and A. Dieterich, "Developing and using rubrics to evaluate subjective Engineering laboratory and design reports " in ASEE Conferences, Albuquerque, New Mexico, 2001, pp. 6.355.1-6.355.10.[16] J. H. Hanson and J. M. Williams, "Using Writing Assignments to Improve Self