scholarly journals EXPERIENCE TEACHING CIRCUIT COURSES TO CIVIL ENGINEERS

Author(s):  
Michael Cooper-Stachowsky ◽  
Ayman El-Hag

At the University of Waterloo, students from many non-electrical engineering programs are required totake basic circuits courses. These courses are often disliked by students who do not see their relevance andcannot contextualize the material. In 2019 a new version of this course was developed to cater to the specific needs of civil engineering students. The new course was based around teaching civil engineers circuit theory through relevant examples and focusing on the content that civil engineers would reasonably be expected to see in the field.  Lab exercises were developed to encourage independent capacity in circuit building and deep understanding of sensors and instrumentation. Student satisfaction with the course and performance on assessments has increased with the changes.

1986 ◽  
Vol 23 (03) ◽  
pp. 271-275
Author(s):  
R. Cengiz Ertekin ◽  
Bradford A. Porter

Student chapters of the American Society of Civil Engineers participate annually in a competition for the design, construction and performance of concrete canoes that meet certain minimum rule restrictions. This paper reports on the craft entered in the 1984 competition by students at the University of California/ Berkeley. The Berkeley team came in second in the men's and women's races and placed first in both design and construction.


Author(s):  
Aneta George ◽  
Liam Peyton

The Graduate Attribute Information Analysis system (GAIA) was developed at the University of Ottawa to support data collection and performance management of graduate attributes for engineering programs at the program level and at the course level [10]. This paper reports on our research to develop support for cohort analysis and reporting by providing a single consistent view of graduate attributes (GA) and performance indicators for groups of students who started and finished an engineering program at the same time. This is supported by two special purpose reports: Graduate Attribute Report per Cohort (GAR/C) and Course Progression Report per Cohort (CPR/C). The former shows average GA data per attribute, the latter tracks student achievement as students progress in their program. It also adds to the historic data trend analysis for a program. Furthermore, a COOP Progress Report per cohort (COOPR/C) is generated.


1994 ◽  
Vol 31 (2) ◽  
pp. 111-127
Author(s):  
Zenon J. Pudlowski

Developing computer-aided education in electrical engineering This paper gives a comprehensive overview of the variety of research and developmental activities for computer-based education which is carried out in the Department of Electrical Engineering at The University of Sydney, particular emphasis being placed on the research and development of computer-based training programs for undergraduate electrical engineering students.


Author(s):  
Elizabeth M. Starkey ◽  
Cailyn Spencer ◽  
Kevin Lesniak ◽  
Conrad Tucker ◽  
Scarlett R. Miller

Recent shifts into larger class sizes and online learning have caused engineering educators to rethink the way they integrate inductive, or active learning activities into their courses. One way engineering educators have done this is through the integration of new technological environments. However, little is known about how the type of technological environment utilized in active learning exercises impacts student learning and satisfaction. Thus, as a first step to understanding the impact of technological advancements on student learning and satisfaction, a study was conducted with 18 senior level undergraduate engineering students who were asked to perform product dissection, or the systematic disassembly of a product, using three technological interfaces (computer, iPad, immersive virtual reality). Variations in the complexity of the product dissected were also explored. The results of this study indicate that variations in technological interfaces did not impact student learning as assessed by a Student Learning Assessment (SLA). However, the complexity of the product dissected did impact learning, with students scoring significantly lower on the SLA when dissecting the most complex product. The results also indicated that students perceived learning and satisfaction were highest when using the immersive virtual reality system. These results suggest that the costs of investing in more technological advanced systems for product dissection may not yet outweigh the educational benefits. However, the increase in student satisfaction with VR environments has the potential to positively impact student retention in engineering programs.


TecnoLógicas ◽  
2019 ◽  
Vol 22 (46) ◽  
pp. 171-183
Author(s):  
Álvaro Espinel-Ortega ◽  
Adriana Vega-E

When electrical engineering students start their instrumentation and measurement course, they have previously taken calculus, physics, probability, and statistics. However, they have problems to apply the knowledge they acquired to solve problems related to electrical measurements and variables in the profession, such as water flows, solar radiation, wind speed and water levels. This paper shows how to integrate all the concepts involved in the process to calculate measurement uncertainty in order to improve the way the results of measurements and/or error determination processes are described. For that purpose, this study presents an applied exercise and a methodological process by means of an example, where the value of a resistance is determined taking into account the data of voltage and current measurements and using few data. The objective is to focus the process on estimating Type A and Type B uncertainty and the factors that affect the measurement processes, such as uncertainty due to random variations of the measured signals, instrument defects, imprecision of the instruments, or their resolution. During the calculation of uncertainty proposed here, students use the probabilistic knowledge they have acquired after they determined the value of the uncertainty U from the combined uncertainty u𝑐 (R), where the coverage factor is taken into account. This allows us to learn about the importance of expressing the results with higher (+) or lower (-) values of uncertainty. In the exercise carried out in this work, R = 733.31 +/- 8.10 ohm.


Author(s):  
Michael Turner

It is common for engineers but rare for engineering students to be asked to work on projects with people whose expertise is in other fields. In an effort to address this shortcoming at the University of Dayton, an interdisciplinary mechatronics class was developed. This lab based course with equal numbers of electrical engineering and mechanical engineering seniors focused on designing, building and controlling electromechanical systems. This paper covers the development of the course and the challenges posed in teaching such a course. The course is centered on the concept of building an autonomous system by integrating a well designed mechanism with a well designed electrical controller. Particular emphasis is placed on the challenge of covering material which is basic and familiar to one set of students while being novel and challenging to another set of students. Additional discussion is included on encouraging cross-disciplinary communication, preventing asymmetrical workloads and stimulating innovation.


Author(s):  
A. Grami ◽  
G. S. Rao ◽  
M. A. Rosen

The University of Ontario Institute of Technology (UOIT) is Ontario’s only laptop university, and among the few universities in the world where every seat in classrooms and laboratories is connected to the Internet, and the faculty are required to appropriately integrate the use of technology into the teaching-learning enterprise. In this paper, we discuss how the use of laptops in Internet-enabled learning spaces can enhance electrical engineering education. Issues of importance are highlighted. The discussions apply to the bachelor program in Electrical Engineering at the UOIT as well as to courses related to electrical engineering that form part of other engineering programs in UOIT’s Faculty of Engineering and Applied Science.


2018 ◽  
Vol 10 (4) ◽  
pp. 312-324
Author(s):  
Muhibul Haque Bhuyan ◽  
Nur Mohammad ◽  
Md. Rumanul Islam ◽  
Abdulla Al Noman

Electrical and Electronic Engineering (EEE) Department of Southeast University (SEU) considers student opinion as an essential component for the continuous quality improvement process of the program offered by the department. Because, students are the most important stakeholder of the department. To get their opinion and feedback about the department, a survey form was designed identifying six broad categories of the factors that determine the student satisfaction level. In each category, there were several questions that were included in the survey form to know to rate their level of satisfaction on each factor. The main focusing areas were quality of learning environment, academic strengths, campus life, physical facilities, management and leadership as well as extra- and co-curricular activities of the department. Responses were taken on a five-point likert scale for each question. Sample size were chosen based on Krejcie and Morgan formula from the group of a 580 registered existing stduents of the EEE department of Southeast University. Afte collection of data using the survey tools, we analyzed the data to determine the satisfaction level of EEE students studying at Southeast University. The results and analysis of the data were sent to the to the university authority to decide how to improve the quality of education and other facilities of the department as well as of the university.


Author(s):  
Marian Lissett Olaya

This article focuses on how the incorporation of autonomy into university students’ learning process improves their English language performance. The participants of this study were 25 students of engineering programs in a public university. Data collection was done through observation, a survey, and a group interview. Two categories that emerged after the data analysis supported the main finding that technology-based activities can be conceived as a starting point for the incorporation of autonomous learning in the English language education at the university.


Author(s):  
Rachel Figueiredo ◽  
Helen Power ◽  
Kate Mercer ◽  
Matthew Borland

As the information landscape becomes increasingly complex, librarians must adapt accordingly. With information so readily available, students overestimate their research skills and lack awareness of how the library can help. However, librarians’ academic training makes them ideal resources to support students’ complex information needs - whether students know it or not. In this paper, we argue that embedded librarianship is the solution to this disconnect between librarian and user. Specifically, this paper provides case studies at two Canadian universities of librarians approaching embedded librarianship from different directions. At the University of Waterloo, two engineering librarians worked toward an embedded model of librarianship where this was not yet an established model in the Faculty of Engineering. At the University of Saskatchewan, a librarian was hired with the intention of the new position being embedded, without a formal structure or precedent for this within the College of Engineering.  The term “embedded librarian” describes a service model where an academic librarian participates in an academic course or program on a continuing basis in order to understand the learning objectives and determine which resources best support them. In order to “do this, the librarian has to be familiar with the work and understand the domain and goals. Doing this, the librarian becomes an invaluable member of the team” [1]. The variables associated with embeddedness include location, funding, management and supervision, and participation [1]. To this end, the authors explore how each of these variables contribute to the success of moving towards this embedded model: how moving out of the library influences overall connection, how they acquired funding to grow a new collection, how management supports the overall goal, and how sustained participation in the program grows new opportunities.  At both universities, librarians have seen most success embedding in programs with a strong emphasis on integrated STEM education where the focus is on providing real-world context with the aim of graduating well-rounded engineers [2]. The authors will discuss how programmatic learning outcomes and trends in integrated and interdisciplinary education have allowed them to stretch beyond the traditional boundaries of academic librarianship to demonstrate value to the Engineering departments in new ways.  This paper reports on the experiences, advantages, and lessons learned in moving toward this model, and provides concrete examples for adapting these concepts to programs at other institutions. Through an intrinsic case study [3] the authors aim to understand how librarians’ embeddedness can adapt and change to support student learning in different contexts. This session is targeted towards practicing engineering librarians and engineering faculty members and educators. Attendees will leave the session with ideas on how to stimulate new partnerships between their library and Engineering programs.  


Sign in / Sign up

Export Citation Format

Share Document