Paper ID #26817Incorporating DOD Research and Historical Materials into a Second-semesterIntroductory Calculus-based Physics CourseDr. Mary Yvonne Lanzerotti, U.S. Military Academy Dr. Lanzerotti is an Assistant Professor in the Department of Physics and Nuclear Engineering at United States Military Academy (West Point, NY). She has conducted research presented at 2017 ASEE on learner-centered teaching techniques in her classes at Air Force Institute of Technology, where she was an Associate Professor of Computer Engineering. She has also held positions at IBM at the Thomas J. Watson Research Center, where she was
or without the pandemic. However,the pandemic is likely to accelerate the changes. The demand to move from traditional learningto online learning may be even higher in computing and information technology programs due togrowing enrollment and tight resources. After the outbreak is controlled, the trend to moveonline probably will continue.This paper will cover the experience in online teaching and learning in our Information andComputer Technology Programs. Strategies of converting in-person courses to online courseswill be discussed.2. MOTIVATIONInformation technology operations in industry have moved from in-house to the cloud steadilyover the past two decades. Since mid-2000s, we have followed the trend and converted many in-person
and other underrepresented groups in mathematics, science and engi- neering.Prof. Nicholas Langhoff, Skyline College Nicholas Langhoff is an associate professor of engineering and computer science at Skyline College in San Bruno, California. He received his M.S. degree from San Francisco State University in embedded elec- trical engineering and computer systems. His educational research interests include technology-enhanced instruction, online education, metacognitive teaching and learning strategies, reading apprenticeship in STEM, and the development of novel instructional equipment and curricula for enhancing academic suc- cess in science and engineering.Dr. Erik N Dunmire, College of Marin Erik Dunmire is a
data collected for accreditation.Methodology:ESG 201: “Learning from Engineering Disaster”, a 3 credit asynchronous online undergraduatecourse taught to both engineering and non-engineering majors by the presenter at Stony BrookUniversity for the past 12 years, has proved to be a successful method for teaching ethics as wellas the broader societal implications of engineering processes and technological design (10). Acombination of lectures, case studies, laboratory demonstrations, interviews, video site visits andteam-based collaborative analysis of engineering failures and their implications (societal,environmental, economic, legal, psychological) has proved successful in teaching the role ofengineers and engineering in society, as well as
Server Analysis Services (SSAS), Google BigQuery • cloud computing services: Amazon Web Service (AWS), Microsoft Azure, Google Cloud • data plotting and visualization: Matplotlib, Basemap, Seaborn, D3 and Google Visualization API • GIS tools • Computational environment: Jupyter (IPython) Notebook • making a Github siteThe bootcamp culminated with a choice of week-long projects designed with various levels of dif-ficulty. Most of the mini-projects used datasets from Kaggle, [5], or UCI, [6]. The first year thatwe ran the project we had trouble coordinating between the four instructors. The second year, wehad all teaching materials completed one month in advance of the bootcamp so things ran muchsmoother.We preferred students who had
, their professionalization. Assuch, in this paper, the focus is on how PhD graduate students from historically minoritizedcommunities perceive their sense of belonging within their research laboratories, theirprograms/departments and their professions. It is also discussed how teaching self-advocacyeducation impact how students navigate environments in higher education, such as in knowledgeof policies and help seeking. Challenges in sustaining this type of programming will also bediscussed and opportunities for expanding them more broadly within graduate programs at otherHSIs and institutions interested in expanding their supports to include non-academic outcomes ofstudents.Programming Students are given opportunities to attend seminars
assisted me in performing and teaching aspects of data analytics and data science. My diverse research background has allowed me to learn about different areas of engineering and I can use everything I have already learned and apply it to the next job, project, or task. ©American Society for Engineering Education, 2023Investigating the effects of course modalityon student performance and satisfaction in online learning.AbstractThe objective of engineering education is to explore and establish effective instructionalstrategies in higher education that can enhance student learning outcomes. Due to the COVID-19 pandemic, numerous students have had to transition from traditional in-person learning
Foundation's top-tier designations in both research activity andcommunity engagement. This study is based upon a single section of ENCP 101 that was taughtduring the Fall 2015 semester in a hybrid format.The class met for two hours on Friday afternoons. These face-to-face class meeting times wereused for a variety of purposes. These included lectures on specific topics, class discussion,hands-on laboratory activities, field trips to various engineering-related locations on theuniversity campus, and opportunities for student teams to work on assignments related to socialmedia engineering leadership concepts. Approximately one-third of the instructional activitiesfor this course were delivered by distributed learning methods, meaning that instruction
Columbia University and the Cooper Union in New York City. She received her PhD from Columbia University in 2006, where her research focused on the mechanical and frictional properties of articular cartilage. Dr. Basalo ’s teaching experience includes Thermodynamics, Computer Graphics, Materials Science and laboratory courses. Since 2015 she has been actively involved in the University of Miami College of Engineering’s ”Redefining Engineering Education” strategic plan on educational innovation. As part of this plan, Dr. Basalo worked with 2 other faculty members to organize inaugural Senior Design Expo in May 2017, an exposition where over 200 senior students showcased their Capstone projects to the University of Miami
are accreditedby the Accreditation Board for Engineering and Technology (ABET). This accreditationprovides assurance that our ETECH programs meet the quality standards of the profession forwhich that program prepares graduates.Engineering and engineering technology are separate but closely related professional areas thatdiffer in some areas (Thomas, n.d.). ETECH courses stress the application of technicalknowledge and methods in the solution of practiced engineering problems. Engineering coursesstress the underlying theory of the subject matter. In ETECH programs, laboratory activities arean integral component, including the study of practical design solutions, manufacturingtechniques, and evaluation techniques for industrial type problems
graduate teaching assistant for computer aided engineering, biomedical engineering capstone design, and biomedical engineering introductory classes. Nicole’s engineering education inter- ests include problem based learning, retention efforts, and incorporation of current research into teaching. Her doctoral research is focused on the material properties of spinal cord tissues to contribute to the understanding and treatment of spinal cord injuries.Dr. Thomas H. Bradley, Colorado State University Thomas H. Bradley is an Associate Professor of Mechanical Engineering and Systems Engineering in the College of Engineering at Colorado State University, where he conducts research and teaches a variety of courses in analysis
Laboratory (AFRL). His academic research interest which correlated with his work at AFRL involve the areas of human and machine teaming, cyber-human systems, human and system Integration, control and intelligent control systems, machine learning and artificial intelligence applications, and system engineering design American c Society for Engineering Education, 2021 Work-in-Progress: Enhance Undergraduate Electrical Engineering Education with CPS/IoT InfusionAbstract: Electrical engineers serve a vital function in our modern world. Currently,undergraduate electrical engineering (EE) students are in high demands to be hired with thehighest median
Paper ID #23043Engagement in Practice: STEM Engagement through MentoringProf. Mariam Manuel, University of Houston Mariam Manuel is a graduate of the University of Houston’s teachHOUSTON program and the UTeach Engineering Master’s program at the University of Texas at Austin. In Spring 2016, Mariam returned to the University of Houston to serve as an Instructional Assistant Professor / Master Teacher for teach- HOUSTON. In this role, Mariam is charged with teaching and inspiring the next generation of high-quality math and science teachers through inquiry-based instruction and ongoing field experiences. Mariam also
field training (Observation Hours) in some courses and a semester-longinternship or clinical teaching capstone experience in one of the Secondary schools.Table 3 lists all degree plans for STEM Education track students, highlighting the SEHD courses.This extensive training in diverse engineering topics, hands-on laboratories, pedagogy andteaching skills, and field training led to the graduation of the students with qualifications to takethe State of Texas Certification Exam and hence receive the following: • Bachelor’s degree in engineering technology. • Teacher certification in mathematics (State of Texas). • Teacher certification in physical science (State of Texas). • Teacher certification in engineering (State of Texas).The
is shown in Figure 1. One goal of this module is to help faculty thinkabout alignment of service and teaching with research.Module 2. Structuring Undergraduate Research to Help Yourself. Building on the concept map ofModule 1, we ask faculty to brainstorm specific activities that engage undergraduate research students ina way to create value for their own research, teaching, and service activities. Examples might be toengage summer undergraduate research students in the generation of preliminary research data for newresearch ideas, development of K-12 or other education and outreach program materials, or evendevelopment of an effective teaching laboratory or maker space at their institution. Participants are taskedwith drafting an
education institutions, they may not beutilized to the fullest by undergraduate students.Currently, literature is limited on undergraduate research experiences in the engineeringdisciplines. This may be attributed to multiple factors such as a significant emphasis onmathematics and science in the first two years of engineering curriculum, a strictly sequentialdegree path, and a lack of flexibility in the program requirements [3].The purpose of this work is to detail how a small teaching-focused four-year institutionincorporates undergraduate research opportunities in its academic programs through the use ofindependent studies specifically in the Electrical & Computer Engineering discipline. This paperwill emphasize the importance of
Paper ID #25131Work in Progress: A Transferable Model to Improve Retention and StudentSuccess in STEM through Undergraduate Research (NSF LEARN Consor-tium)Dr. Daniel Meeroff, Florida Atlantic University Daniel Meeroff is Professor and Associate Chair at Florida Atlantic University’s Department of Civil, En- vironmental & Geomatics Engineering. His area of specialization is Environmental Engineering, specifi- cally water and wastewater engineering, water quality, solid and hazardous waste management, and pollu- tion prevention. Dr. Meeroff is the founder and director of the Laboratories for Engineered Environmental
Paper ID #23835Improving Student Engagement in a Senior-Level Manufacturing Course forMechanical Engineering StudentsDr. Joshua Gargac, University of Mount Union Joshua Gargac is an assistant professor of mechanical engineering at the University of Mount Union in Alliance, OH, where he advises the mechanical engineering senior capstone projects and SAE Baja team. In addition, Dr. Gargac teaches first year engineering courses, computer-aided design, kinematics and dynamics of machinery, and manufacturing science. He received his BSME from Ohio Northern University and a Ph.D in Bioengineering from the University of Notre Dame
proposal shell’ which describes the problem from my working point of view.”[9].Mentors of the undergraduate students in some research laboratories:Undergraduates in engineering are not just confined in class lectures and teaching labs. They enjoysummer internship in several national research and development (R & D) laboratories, like Sandia,Lawrence Livermore, Lawrence Berkeley, etc. spread out throughout USA. Dr. Jeffrey Estes of PacificNorthwest National Laboratory, notes, “Connecting students to the world of science and technology thatexists beyond the academic classroom holds great potential for helping the students decide on and pursuea career pathway. Whether that path leads to a career in research, teaching, business, or a
development as"development which meets the needs of the present without compromising the ability of futuregenerations to meet their own needs2". Barbier3 interpreted the definition of the WECD bydescribing sustainable development as indistinguishable from the total development of society.Other definitions of sustainable development include: “Sustainable means using methods,systems and materials that won't deplete resources or harm natural cycles4.” Teaching forsustainable development is usually referred to as Sustainability Education, Education forSustainability, or Education for Sustainable Development (ESD). The United Nations adopts theterm ESD5, 6
design where it has been shown to yield a deeper understanding of theproblem space and users, increase ideation creativity, and improve interpersonal collaborations.However, there is limited awareness of instructor perceptions of empathy as a core engineeringskill with existing work limited to two studies that explicitly included faculty. One perspectivethat is currently missing is that of graduate students who often have a large amount of contactwith undergraduate students in their roles as teaching assistants and sessional instructors. Thispaper presents graduate student (n = 36) perceptions on empathy as a professional skill and as apedagogical instructional area captured in a survey distributed to current graduate students(professional and
systems. At Baylor University, he teaches courses in laboratory techniques, fluid mechanics, energy systems, and propulsion systems, as well as freshman engineering. Research interests include renewable energy to include small wind turbine aerodynamics and experimental convective heat transfer as applied to HVAC and gas turbine systems. Page 26.598.1 c American Society for Engineering Education, 2015 ENCOURAGING STUDENTS TO SEE THE ROLE OF SERVICE COURSES IN THEIR MAJORAbstractMany departments are involved with service courses which support both their programs andother
Dutch and in English. During this time his primary teaching and course develop- ment responsibilities were wide-ranging, but included running the Unit Operations laboratory, introducing Aspen Plus software to the curriculum, and developing a course for a new M.S. program on Renewable Energy (EUREC). In conjunction with his teaching appointment, he supervised dozens of internships (a part of the curriculum at the Hanze), and a number of undergraduate research projects with the Energy Knowledge Center (EKC) as well as a master’s thesis. In 2016, Dr. Barankin returned to the US to teach at the Colorado School of Mines. His primary teaching and course development responsibilities here include the Unit Operations Lab and
], which introducessome active programming teaching methods. Portela employed four approaches to develop theinstructional plan, namely: BYOD, flipped classroom, gamification, and using the skills ofindividual students to solve posed problems. Tewolde presented a method for improving studentmotivation in a microcontroller-based embedded systems course to enhance students’ role inactive learning [10]. The method consists of three tools, namely: laboratory assignments forpractical hands-on activities, “peer teaching” techniques, and self-proposal, which enablesindividual creativity. For some complex and difficult to understand courses such as programmingalgorithms-related subjects, Garcia et al. [11] proposed a method in the form of
Paper ID #38995RHL-BEADLE: Bringing Equitable Access to Digital Logic Design inEngineering EducationProf. Rania Hussein, University of Washington Dr. Rania Hussein is an Associate Teaching Professor in the Electrical and Computer Engineering de- partment at the University of Washington, where she also serves as the founder, principal investigator, and director of the Remote Hub Lab (RHLab). With her research focus on embedded systems, medical image analysis, digital twinning, and remote engineering, Dr. Hussein is committed to developing inno- vative solutions that enhance equity and access in engineering education and
Paper ID #28714Work in Progress: Involving Teachers in International Community EngagedLearning Projects to Enhance Their Understanding of Engineering andIntercultural AwarenessDr. Margaret Pinnell, University of Dayton Dr. Margaret Pinnell is the Associate Dean for Faculty and Staff Development in the school of engineering and associate professor in the Department of Mechanical and Aerospace Engineering at the University of Dayton. She teaches undergraduate and graduate materials related courses including Introduction to Ma- terials, Materials Laboratory, Engineering Innovation, Biomaterials and Engineering Design and Appro
(.sldprt) file and the Teaching Assistantdetermined orientation and printing speeds. The students did not a have firsthand involvementwith a 3D printer during this experience.The second experience included more student involvement. The honor students had theopportunity to witness their design being printed on the Makerbot. This included the conversionof their SolidWorks® model to a .stl file for printing, the setup and slicing of their model usingthe printer’s software, and physical encounters with the printer. On the scheduled day of printing,each group was individually brought into the 3D printing laboratory to learn and evaluate theirmodel before actually printing. The students were briefly introduced to the way .stl files work,the different
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
University as senior lecturer in 2002. In 2012 he recieved his Ph.D. from Stellenbosch University, and in 2016 he moved to the Technical University of Denmark (DTU) as Associate Professor. At DTU, Dr. Randewijk has built up three undergraduate laboratories at DTU to aid in the teaching of electrical machine, power systems, and in the field of power system protection and substation automation. Dr. Randewijk is a senior member of the IEEE.Dr. David Navarro-Duran, Tecnol´ogico de Monterrey American c Society for Engineering Education, 2021 Virtual Globalization: An experience for engineering students in the Education 4.0 FrameworkAbstractIn
addressing the national imperative ofincreasing underrepresented minorities in STEM, it is therefore critical to prepare teachersserving Native American students in STEM and its impact on their communities. Disseminationof the results of RET participants’ research projects through poster sessions and conferences,further increases the efforts to bridge the gap between Native Americans and higher educationstudies in STEM.MethodsIn the RET ROKET program, teachers participate in an AILDI course concerning language,culture revitalization, and teaching methods to improve science education for Native Americanstudents; engage in an interactive ORW to learn optics laboratory techniques, through hands-onexperiments with lasers, fiber optics, solar cells, and