Mohamed A. S. Zaghloul

dblp:219/0998 · DBLP profile ↗
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7ranked-venue papers
4as first author
7since 2021 · last 2024
0000-0001-6451-5757ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Human-computer interaction and ubiquitous computing · 7 · 4 first-author · 7 since 2021
YearPublicationVenuePosition
2024 WIP: Introducing Green Computing and Sustainable Software Development in Computer Engineering Curricula
abstract
In this Research-To-Practice WIP paper, the authors are going to introduce educational modules about green computing and sustainable software development in an elective course, named Algorithms for Big Data, which is taught at the Electrical and Computer Engineering Department hosting this study. The initiative is aiming to educate undergraduate computer engineers about the negative impact of the software industry on the environment and how to design sustainable solutions for different sectors of this industry. The impact of the new modules on students is assessed via a survey and the results show that students find the modules to be interesting and enriched their knowledge about the problem. The authors will also share the best methods of incorporating green computing and sustainable software development in undergraduate engineering curricula.
Amr M. Hassan, Mohamed A. S. Zaghloul
FIE2
2024 WIP: Complementary Teaching Modes to Promote Design Self-Efficacy
abstract
This work-in-progress (WIP), innovative-practice paper describes the piloting of laboratory experiments that emulate real-world engineering design practices during the instruction of a sophomore-level introductory circuits course. Results reflect positively on design self-efficacy and suggest promise for future work. Introductory electronic circuits courses have historically been taught within an analytical framework. Recent design-based pedagogical changes, i.e., the incorporation of makerspaces, simulations, and design-oriented assignments, to Electrical and Computer Engineering (ECE) curricula have shown the benefits of multi-modal approaches to instruction. The research suggests that student motivation, satisfaction, and performance are enhanced through the application of design-based learning challenges. The authors believe that active and experiential learning opportunities can be coupled with computational tools and traditional instruction to provide a range of frameworks that serve different types of learners. As a part of this study, students spent three hours per week in a makerspace where they completed twelve re-designed laboratory assignments with integrated simulation exercises and design challenges. Students who completed the course before and after implementing these changes were surveyed to gauge the influence that the lab changes have on their self-efficacy with course material and circuit design. Student responses to Likert-scale questions, tested with the Wilcoxon Signed Rank Sums test, show significant improvements in student confidence with simulation and computational tools and with utilizing computer translational and scalable matrix-solving techniques for linear circuits. In addition, while students expressed the difficulty of working on open-ended, independent learning challenges, their reflection responses also indicated the value of the experience. This pilot study serves as a basis for further investigation into how different modalities may complement one another and lead to independent concept application and design self-efficacy in young engineers.
Heather M. Phillips, Nicholas A. Nobile, Matthew M. Barry, Rajkumar Kubendran, Mohamed A. S. Zaghloul, Ahmed H. Dallal
FIE5
2024 WIP: Measuring the Impact of Design Problem Solving on Diversity, Equity, and Inclusion in ECE Classes
abstract
This work-in-progress research-to-practice paper describes a study of the effects of design problem solving on diversity, equity, and inclusion in Electrical and Computer Engineering classes. Design problems promote design thinking which entails students thinking about how to deploy new knowledge to come up with solutions. In this study, the effect of design problem solving on diversity, equity, and inclusion, is examined as 52 students have faced challenges of design problems in an electrical and computer engineering class.
Mohamed A. S. Zaghloul, Amr M. Hassan
FIE1
2024 WIP: Developing Novice Design Thinkers
abstract
This work-in-progress research-to-practice paper describes a study of the effects of early introduction of Electrical and Computer Engineering students to design problem solving. Design problems promote design thinking which entails students thinking about how to deploy new knowledge to come up with solutions. The courses in this study are sophomore-level, core courses which entail classical lecturing and analytical problems that only end with a unique solution. Design problem solving modules are introduced to sophomore courses and the student's performance and satisfaction are gaged.
Mohamed A. S. Zaghloul, Heather M. Phillips, Amr M. Hassan, Samuel J. Dickerson
FIE1
2021 Students' Perspectives on Online Lecture Delivery Methods for Programming Courses: A Survey-based Study during COVID-19
abstract
This Research to Practice Full Paper presents a detailed study on the perspectives of students on different online lecture delivery method for programming classes, amid the COVID-19 pandemic. During the period of spring, summer, and fall 2020, a total of 770 students across six different courses, and spanning the freshman, sophomore, and junior years, were surveyed to express their opinions in three different online lecture delivery methods, in the school hosting this study. The survey was designed to capture the main problems and obstacles the student had faced in an online learning environment. The authors analyze the obtained results and recommend best practices to successfully lead programming classes in an online learning environment.
Amr M. Hassan, Ahmed H. Dallal, Mohamed A. S. Zaghloul
FIE3
2021 A survey-based study of students' perspectives on remote electronics and electronics lab courses during COVID-19 pandemic
abstract
Electronics courses were commonly completed with hardware and software labs to complement teaching electronics theory and enrich the learning experience for students. The COVID-19 pandemic has adversely affected the practical implementation of electronic circuits and the quality of electronics teaching. In this survey-based study, instructors of electronics book courses and labs, during the first year of the pandemic, discuss how to alleviate the limitations of the pandemic on electronics teaching. This study is a work-in-progress.
Mohamed A. S. Zaghloul, Amr M. Hassan, Ahmed H. Dallal
FIE1
2021 Is Remote Learning Becoming the New Norm? A Survey-based Study on the Causes Behind the Poor in-person Classroom Attendances During the Pandemic
abstract
The COVID-19 pandemic has impeded the education process in many ways. It has been reported that both instructors and students have dreaded the transformation to online platforms and have deemed the emergency classes ineffectual. However, by the end of the first year of the pandemic, when in-person attendance was permitted through hybrid classrooms, poor in-person classroom attendances were commonly reported. In this study, the instructors and students are surveyed to reveal the challenges of the transformation to online classes, and to induce the causes behind the poor in-person attendance of classes during the pandemic. This study is a work in progress.
Mohamed A. S. Zaghloul, Amr M. Hassan, Ahmed H. Dallal
FIE1