scholarly journals The Experiences of Women in Undergraduate Engineering

Author(s):  
Natalie Mazur ◽  
Bronwyn Chorlton ◽  
John Gales

While it is understood that there is an issue in retention of women in STEM fields, there is little research addressing why this is occurring. This warrants the need to begin identifying the root of this issue, and the direct causes. Undergraduate engineering programs are the first phase students undertake in their pursuit of a career as a professional engineer, and even in this early phase an issue in retention is apparent. The present study addresses factors that may be preventing female students from remaining in the field. In this study, 261 undergraduate students enrolled in engineering programs at an accredited university in Ontario completed a 17-question survey that collected demographic data and asked questions related to challenges students may experience during their education. The survey questions were formulated to understand the severity to which each challenge affects males and females in different ways. Demographic factors were correlated with students’ answers, and significant differences between men’s and women’s answers were found. 65% of female students reported more discouragement or intimidation by peers and professors in their program, compared to 45% of male students. These findings may indicate that female students may be more susceptible to a culture of intimidation than male students. Another significant finding lies within a survey question formulated to understand if female and male engineers have their contributions represented equally. This question showed that male students recognized the names of male engineers 1.75 times more often than they recognized the names of female engineers. The results of this question show that, to some capacity, male engineering students do not recognize female engineers’ contributions as frequently as male engineers’ contributions. Moving forward, there is a need to support female students in engineering as well as to educate students on respect and equity.

2021 ◽  
Vol 11 (4) ◽  
pp. 147
Author(s):  
Wafa Labib ◽  
Amal Abdelsattar ◽  
Yasser Ibrahim ◽  
Abdelhakim Abdelhadi

Motivation to study engineering in undergraduate study is of great importance to students. It encourages undergraduate students to enroll in an engineering program and continue their studies without dropping out. Male students enroll in engineering programs with large numbers compared to female students in many parts of the world. In Saudi Arabia, there were limited engineering programs for female students. In this research, the motivation to study engineering is studied and compared between male and female students in the College of Engineering at Prince Sultan University, the first private university in Saudi Arabia. The study was conducted through a detailed survey distributed to 41 male engineering management students and 45 female architectural engineering students. These students’ performance and experience were considered and compared considering their gender to evaluate their persistence toward engineering study. According to the results obtained, the highest degree of the parents had a considerable effect on the selection of engineering major for male and female students. Most surveyed male and female students select an engineering major because of its positive impact on the community and its role in improving the way of life. Male students may differ in that they considered engineering in order to start their own business after graduation with a higher percentage compared to female students. There was a very limited role of the school in selecting engineering majors according to the surveyed male and female students. This role should be enhanced and utilized to encourage more female students to consider engineering majors in their college study.


2017 ◽  
Vol 7 (1) ◽  
Author(s):  
Charles Skipper ◽  
Lindsay Greenlee ◽  
Jannette Finch ◽  
Kaitlin Marley

Engineers in construction and manufacturing are expected to be able to work with and lead diverse, multidisciplinary teams. Engineering students entering the workforce must be not only technically competent, but also possess skills in working with other people. These traits are frequently lacking with newly graduated engineering students due to the highly technical focus of their curriculum. The opportunity to develop Emotional Intelligence skills is limited. This research proposed that Civil and Environmental Engineering (CEE) undergraduate students may possess a higher level of Emotional Intelligence than Electrical and Computer Engineering (ECE) undergraduate students. The research also proposed that if differences were observed, that causal influences could be identified. Undergraduate engineering students at The Citadel completed The TalentSmart Emotional Intelligence Appraisal® along with demographic data and a variety of questions regarding their undergraduate experience. This research included freshman and senior students in Civil and Environmental (CEE) and Electrical and Computer Engineering (ECE) at The Citadel. These surveys suggested that undergraduate engineering students increase their EI score as they advance from Freshman to Senior year. The surveys also suggest that Electrical and Computer Engineering (ECE) Majors do not advance in their EI scores from Freshman to Senior year as well as Civil and Environmental (CEE) majors. A positive connection was established between work experience and the impact on higher levels of EI. A positive correlation for growth in EI score was also demonstrated for students who attended high schools with smaller graduating classes. Based on the results of this research, the paper proposes CEE and ECE faculty place increased emphasis on encouraging students to pursue summer jobs, internships, and similar extracurricular programs. Both CEE and ECE faculty should evaluate their curriculum with an eye towards inculcating learning opportunities for EI into course work. Additionally, faculty and admission officials should give at least equal consideration to admitting students who graduate from smaller schools that may offer less college prep courses that may appeal to admissions officials


Author(s):  
Juliette Sweeney

In Canada, the proportion of female students in engineering is considerably lower than the proportion of female students in higher education. Using Tinto’s (1993) theories concerning social and academic integration, this study investigated the relationships between the proportion of female undergraduate engineering students, and the proportion of female faculty, and departmental lead faculty.  Using descriptive statistics, the study established that distinct and persistent differences exist in the proportions of female enrolment among schools and among sub-disciplines. This paper addresses a gap in the literature concerning the impact of sub-discipline choice on women's engagement and success within undergraduate engineering programs in Canada. The proportion of female students was found to vary considerably across the sub-disciplines, from 48% in biosystems to 15% in software engineering [14]. The paper will present female sub-discipline enrolment trends over time and discuss the impact of sub-discipline choice and institutional factors on female students' successful academic and social integration within Canadian engineering schools.  


2017 ◽  
Vol 12 (1) ◽  
pp. 116
Author(s):  
Kimberly Miller

A Review of: Hulseberg, A., & Twait, M. (2016). Sophomores speaking: An exploratory study of student research practices. College & Undergraduate Libraries, 23(2), 130-150. http://dx.doi.org/10.1080/10691316.2014.981907 Abstract Objective – To understand sophomore undergraduate students’ research practices. Design – Mixed methods online survey and participant interviews. Setting – A small liberal arts college in the Midwestern United States of America. Subjects – The sample consisted of 660 second-year students; 139 students responded to the survey (21% response rate). In-depth interviews were conducted with 13 of the 139 survey respondents. Methods – A 13-item survey was emailed to sophomore students during October 2012. To analyze the results, the authors and a library student intern developed a coding scheme to apply to open-ended survey questions. Survey respondents could also volunteer for in-depth interviews. A total of 50 survey respondents volunteered, and 14 were invited for in-depth interviews between December 2012 and January 2013. The interview protocol included open-ended questions about students’ research experiences. Students were also asked to identify and discuss one recent research project. Interviews were audio and video recorded; data from one interview was lost due to technology failure, resulting in data analysis of 13 interviews. Interview transcripts were coded by an anthropology doctoral student, the study authors, and a library student assistant. Main Results – The survey found that students completed fewer research projects and used fewer library resources as sophomores than they did as first-year students. For example, only 4.9% (n=7) of students reported completing zero research assignments in their first year, compared with 34.5% (n=48) in their second year. When asked if there were library resources or skills they wanted to know about sooner in their academic career, students’ top reply was “Nothing” (34.5%, n=48), followed by “Navigating the physical space” (15.8%, n=22), “Librarians/staff & reference desk” (11.5%, n=16), and “Effective searching & evaluating sources” (10.8%, n=15). Male and female students’ responses differed, with male students less likely overall to express interest in library resources. While 42.4% (n=59) of students replied that they would consult with a librarian for help with their research projects, this option ranked third after professors (83.5%, n=116) and peers (70.5%, n=98). Again, responses varied by gender, with female students (49.5%, n=49) more likely than male students (26.3%, n=10) to contact a librarian about a research project. Most interview participants replied that searching online, including library resources, was their research starting point. Students most often selected research topics, based on their interest, from a professor-approved list. Students identified “relevant content, familiarity . . . , and credibility” (p. 138) as important source evaluation characteristics. The majority of students also used library information sources in their research, including databases, research guides, and the catalogue. Students most often mentioned struggling with “finding sources/identifying keywords” (n=6) and “finding known items” (n=6). Unlike survey respondents, interview participants unanimously reported consulting with a librarian. Most students (n=11) received library instruction as first-year students, and some suggested that this instruction helped them feel comfortable asking for help. Finally, most students felt that their research habits improved from their first year to their second year, specifically with regards to “their research technique, improved confidence . . . and an expanded source horizon” (p. 143). Conclusion – The authors recommend continuing strong information literacy support to first-year students, as well as working with faculty members and other campus partners to promote reference services to sophomores. When compared to previous research, the current study reports a higher percentage of students seeking librarian assistance; however, because some students also reported confusion about when and how to ask for help, further analysis could explore how reference librarians capitalize on peer and faculty “referral networks” (p. 145). Finding that students face significant challenges early in the research process was consistent with previous research, and future study might reveal more about this specific phenomenon in sophomores. Interviews should also be extended to include students who are non-library users. Finally, the authors suggest that the findings provide no evidence of a “sophomore information literacy slump” (p. 146).


2021 ◽  
Vol 4 (1) ◽  
pp. 17-26
Author(s):  
Qian CHEN ◽  
Subadrah Madhawa Nair

The aim of the study is to assess the Chinese undergraduate students’ EFL descriptive writing ability according to gender and to explore four EFL lecturers’ views on how to help students enhance their EFL descriptive writing. This study employed descriptive research design using the QUAN-qual model. A descriptive writing test was used as an instrument and the essays of the students were marked by a lecturer. Purposive sampling was used to select samples which consists of 400 Chinese undergraduate students (200 males and 200 females) from Hunan City University in Hunan Province, China. Before the actual study, the researcher carried out a pilot test to investigate the reliability and validity of the instrument (descriptive writing test). The results obtained from the quantitative data showed that female students outperformed male students in their overall writing as well as each component of the writing. In relation to students’ writing level, the lecturers emphasized that it is very crucial to utilize the Process Approach in class to enhance students’ vocabulary and grammar foundation. In addition, students are required to practice writing more frequently which can arouse their enthusiasm in learning English.


Author(s):  
Paul Bigala

The study investigated gender differences in attitudes towards sexuality in the context of HIV/AIDS among undergraduate students. The cross-sectional study was conducted among 1,498 randomly selected students. The majority of the students interviewed were females at 53.9% (M= 20.24, SD=2.98) compared to 46.1% males (M=21.67, SD=3.35). More Males (16%) responded in the affirmative with regard to having more than one sexual partner than female students (10%). Also, more male students (32.7%) than female students (18.6%) indicated that using condom reduces sexual pleasure and over 40% of both sets of respondents indicated that sexual intercourse should only be done between married couples. This study underscores the need to strengthen HIV/AIDS programmes to include issues on sexuality and encourage undergraduate students to attend these programmes.


Author(s):  
Huu Duc Vo ◽  
Jean-Yves Trépanier

An ambitious project in propulsion was introduced as part of the final-year integrator project offerings of the mechanical and aerospace engineering programs at École Polytechnique de Montréal in 2011–2012. It has been running successfully for the past three academic years. The project consists in the design, fabrication, and placement into service of a functional instrumented multistage compressor test rig, including the compressor, for research in compressor aerodynamics. A team of 15–17 senior-year undergraduate engineering students is given a set of design and performance specifications and measurement requirements, an electric motor and drive, a data acquisition system, and some measurement probes. They must complete the project in two semesters with a budget on the order of Can$15,000. The compressor is made from rapid prototyping to keep production cost and time reasonable. However, the required rotation speed of 7200 rpm stretches the limits of the plastic material and presents the same structural challenges as industrial compressors running at higher speeds. The students are split into subteams according to the required disciplines, namely, compressor aerodynamics, general aerodynamics, structures, dynamics, mechanical design and integration, instrumentation, and project management. For the initial phase, which covers the first two months, the students receive short seminars from experts in academia and industry in each discipline and use the knowledge from fundamental engineering courses to analytically model the different components to come up with a preliminary design. In the second phase, covering three to six, the students are trained at commercial simulation tools and use them for detailed analysis to refine and finalize the design. In each of the first two phases, the students present their work in design reviews with a jury made up of engineers from industry and supervising professors. During the final phase, the compressor is built and tested with data acquisition and motor control programs written by the students. Finally, the students present their results with comparison of measured performance with numerical and analytical predictions from the first two phases and hand over their compressor rig with design and test reports as well as a user manual and an assembly/maintenance manual. This complete project allows the students to put into practice virtually all the courses of their undergraduate engineering curriculum while giving them an extensive taste of the rich and intellectually challenging environment of gas turbine and turbomachinery engineering.


Author(s):  
Nael Barakat ◽  
Heidi Jiao

Increasing demand on workforce for nanotechnology implementation has resulted in an exponential increase of demand on educational material and methods to qualify this workforce. However, nanotechnology is a field that integrates many areas of science and engineering requiring a significant amount of background knowledge in both theory and application to build upon. This challenge is significantly magnified when trying to teach nanotechnology concepts and applications at the undergraduate engineering level. A considerable amount of time is needed for an undergraduate engineering student to be able to design and build a useful device applying nanotechnology concepts, within one course time. This paper presents an actual experience in teaching hands-on applications in nanotechnology to undergraduate engineering students through an optimized model, within a normal course time. The model significantly reduces the time needed by undergraduate students to learn the necessary manufacturing techniques and apply them to produce useful products at the micro and nano levels, by ensuring that infrastructure and legwork related to the educational process are partially completed and verified, before the course starts. The model also provides improved outcomes as all its pre-course work is also tested with students working under different arrangements of professors’ supervision. The result is an optimized infrastructure setup for micro and nanotechnology design and manufacturing education, built with students in mind, to be completed within the frame of one semester course. The model was implemented at GVSU-SOE as the core hands-on part of a senior undergraduate course titled (EGR 457 nano/micro systems engineering). Students in the course were able to go through the design and build steps of different MEMS and NEMS products, while learning and utilizing cleanroom equipment and procedures. This was based on infrastructural arrangements by students preceding this class by a semester and working closely with the professors. Assessment was conducted on both sides of the model and results were collected for evaluation and improvement of the model.


Author(s):  
Richard B. Mindek ◽  
Joseph M. Guerrera

Educating engineering students in the appropriate methods for analyzing and problem solving fundamental manufacturing processes is a challenge in undergraduate engineering education, given the increasingly limited room in the curriculum as well as the limited time and resources. Although junior and senior level laboratory courses have traditionally been used as a pedagogical platform for conveying this type of knowledge to undergraduate students, the broad range of manufacturing topics that can be covered along with the limited time within a laboratory course structure has sometimes limited the effectiveness of this approach. At the same time, some undergraduate students require a much deeper knowledge of certain manufacturing topics, practices or research techniques, especially those who may already be working in a manufacturing environment as part of a summer internship or part-time employment. The current work shows how modeling, actual machining tests and problem solving techniques were recently used to analyze a manufacturing process within a senior design project course. Specifically, an Instantaneous Rigid Force Model, originally put forward by Tlusty (1,2) was validated and used to assess cutting forces and the ability to detect tool defects during milling operations. Results from the tests showed that the model accurately predicts cutting forces during milling, but have some variation due to cutter vibration and deflection, which were not considered in the model. It was also confirmed that a defect as small as 0.050 inches by 0.025 inches was consistently detectable at multiple test conditions for a 0.5-inch diameter, 4-flute helical end mill. Based on the results, it is suggested that a force cutting model that includes the effect of cutter vibration be used in future work. The results presented demonstrate a level of knowledge in milling operations analysis beyond what can typically be taught in most undergraduate engineering laboratory courses.


2016 ◽  
Vol 16 (4) ◽  
pp. 359-374 ◽  
Author(s):  
Rosa M. Banda ◽  
Alonzo M. Flowers

While an abundance of literature addresses undergraduate students’ lack of success in engineering programs, fewer studies examine the persistence of minority females, especially of Latinas. This study employed a qualitative method of inquiry to gain insight into the reasons why Latina undergraduate engineering majors sought membership in student organizations. Data analysis emerged the following findings: (a) fulfilling academic and social needs, (b) seeking a sense of belonging, and (c) choosing not to coalesce on the basis of race. The categorization of the aforementioned broad themes provides greater insight into the reasons why Latinas sought membership in certain student organizations.


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