Results for 'Female engineering students'

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  1.  22
    Learning Experience and Socio-Cultural Influences on Female Engineering Students’ Perspectives on Engineering Courses and Careers.Balamuralithara Balakrishnan & Foon Siang Low - 2016 - Minerva 54 (2):219-239.
    As developed and developing countries move towards greater technological development in the 21st century, the need for engineers has increased substantially. Japan is facing the dilemma of insufficient engineers; therefore, the country has to rely on foreign workers. This problem may be resolved if there is a continuous effort to increase the number of women engineers, who currently represent only 1%–2% of engineers in Japan. In this study, the satisfaction level of the learning experience of Japanese female engineering (...)
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  2.  41
    More on enrolling female students in science and engineering.Cynthia Townley - 2010 - Science and Engineering Ethics 16 (2):295-301.
    This paper investigates reasons for practices and policies that are designed to promote higher levels of enrolment by women in scientific disciplines. It challenges the assumptions and problematic arguments of a recent article questioning their legitimacy. Considering the motivations for and merits of such programs suggests a practical response to the question of whether there should be programs to attract female science and engineering students.
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  3.  22
    A Study of Cheating Beliefs, Engagement, and Perception – The Case of Business and Engineering Students.Carla M. Ghanem & Najib A. Mozahem - 2019 - Journal of Academic Ethics 17 (3):291-312.
    Studies have found that academic dishonesty is widespread. Of particular interest is the case of business students since many are expected to be the leaders of tomorrow. This study examines the cheating behaviors and perceptions of 819 business and engineering students at three private Lebanese universities, two of which are ranked as the top two universities in the country. Our results show that cheating is pervasive in the universities to an alarming degree. We first analyzed the data (...)
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  4.  8
    Self-Control Capacity Moderates the Effect of Stereotype Threat on Female University Students’ Worry During a Math Performance Situation.Alex Bertrams, Christoph Lindner, Francesca Muntoni & Jan Retelsdorf - 2022 - Frontiers in Psychology 13.
    Stereotype threat is a possible reason for difficulties faced by girls and women in the fields of science, technology, engineering, and mathematics. The threat experienced due to gender can cause elevated worry during performance situations. That is, if the stereotype that women are not as good as men in math becomes salient, this stereotype activation draws women’s attention to task-irrelevant worry caused by the fear of conforming to the negative stereotype. Increased worry can reduce cognitive resources, potentially leading to (...)
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  5.  42
    On enrolling more female students in science and engineering.Mathieu Bouville - 2008 - Science and Engineering Ethics 14 (2):279-290.
    Many people hold this truth to be self-evident that universities should enroll more female students in science and engineering; the main question then being how. Typical arguments include possible benefits to women, possible benefits to the economy, and the unfairness of the current female under-representation. However, when clearly stated and scrutinized these arguments in fact lead to the conclusion that there should be more women in scientific disciplines in higher education in the sense that we should (...)
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  6.  21
    Gendered learning experience of engineering and technology students.Haifa Takruri-Rizk, Kathrine Jensen & Kathryn Booth - 2008 - Acm Sigcas Computers and Society 38 (1):40-52.
    UK National statistics for science, engineering and technology studies and careers confirm the under-representation of women in these disciplines. A literature review formed the basis for developing survey questionnaires exploring issues of female students' attraction to, and retention in, engineering and technology studies. Findings indicate that having family members in the engineering or technology industry plays an important part in the students' choice of degree topic and future career. In particular, we found that (...) students need to be encouraged to study a "male dominated" subject, such as engineering or technology but that teachers do not contribute much to such encouragement. While at university, female students were more comfortable in small practical sessions rather than in a large lecture theatre environment and, when evaluating self-confidence in their skills at graduation, the female students were less confident than their male colleagues. In addition, the study highlights that gaining work experience through an industrial placement should be one of the priorities for engineering and technology students. A high level of determination and wanting to do engineering or technology is especially necessary for women who may be discouraged by the stereotyped image of engineering and technology studies and professions. (shrink)
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  7.  29
    The status–power arena: a comprehensive agent-based model of social status dynamics and gender in groups of children.Gert Jan Hofstede, Jillian Student & Mark R. Kramer - 2023 - AI and Society 38 (6):2511-2531.
    Despite the urgency of this issue, AI still struggles to represent social life. This article presents a comprehensive agent-based model that investigates status-power dynamics in groups. Kemper’s sociological status–power theory of social relationships, and a literature review on school children in middle youth, is its basis. The model allows us to investigate causation of the near-ubiquitous phenomenon that females have lower social status on average than males. Possible causes included in the model are children’s dispositional traits (kindness, beauty, and physical (...)
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  8.  8
    Fascinating or dull? Female students’ attitudes towards STEM subjects and careers.Ciara Lane, Sila Kaya-Capocci, Regina Kelly, Tracey O’Connell & Merrilyn Goos - 2022 - Frontiers in Psychology 13.
    Internationally, the need to advance science, technology, engineering and mathematics education is recognized as being vital for meeting social and economic challenges and developing a scientifically, mathematically, and technologically literate citizenry. In many countries, however, there are gender differences in the participation and achievement of girls and women in STEM education and STEM careers, usually to the disadvantage of females. This paper aims to identify challenges to female students’ participation in STEM both at post-primary level and beyond (...)
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  9.  29
    Attitudes of sixth form female students toward the IT field.Katja Leiviskä & Mikko Siponen - 2010 - Acm Sigcas Computers and Society 40 (1):34-49.
    It is well known that girls are not interested in computer science, information systems, and software engineering studies. While the underlying reasons for this phenomenon have been studied in the US, Canada, and Australia, only a few studies have been carried out in Europe and in Scandinavia. To fill this gap in the research, we have analyzed the qualitative responses of 64 female sixth form students concerning their attitudes towards studying information technology, including computer science, information systems, (...)
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  10.  85
    An Investigation of College Students' Perceptions of Academic Dishonesty, Reasons for Dishonesty, Achievement Goals, and Willingness to Report Dishonest Behavior.Shu Ching Yang, Chiao-Ling Huang & An-Sing Chen - 2013 - Ethics and Behavior 23 (6):501-522.
    This study investigated students? perceptions of their own and their peers? academic dishonesty (AD), their reasons for this dishonesty, their achievement goals, and their willingness to report AD (WRAD) within a Chinese cultural context. The results identified students? belief that their peers had a greater likelihood of engaging in AD and had more motivation to do so than did the students themselves. Gender and academic major did not affect students? WRAD. However, students were significantly more (...)
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  11.  10
    Influence of deep learning-based journal reading guidance system on students’ national cognition and cultural acceptance.Wei Huang, Fangbin Song, Shenyu Zhang & Tian Xia - 2022 - Frontiers in Psychology 13.
    The purpose is to explore new cultivation modes of college students’ national cognition and cultural acceptance. Deep learning technology and Educational Psychology theory are introduced, and the influence of art journal reading on college students’ national cognition and cultural acceptance is analyzed under Educational Psychology. Firstly, the background of Educational Psychology, national cognition and cultural acceptance, and learning system are discussed following a literature review. The DL technology is introduced to construct the journal reading guidance system. The system (...)
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  12.  4
    Student Enrollment in High School AP Sciences and Calculus: How does it Correlate with STEM Careers?Mike Robinson - 2003 - Bulletin of Science, Technology and Society 23 (4):265-273.
    Many high schools offer students the opportunity to take advanced placement (AP) courses in many subjects including science and mathematics. Studies have shown that students who take these classes are more likely to succeed in college and that failure in engineering education is strongly correlated to deficiencies in mathematics and science. This article presents the background of AP classes and their impact on science, technology, engineering, and mathematics (STEM) career choices of college students. The results (...)
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  13.  9
    From Scarcity to Visibility: Gender Differences in the Careers of Doctoral Scientists and Engineers.J. Scott Long - 2001 - National Academies Press.
    Although women have made important inroads in science and engineering since the early 1970s, their progress in these fields has stalled over the past several years. This study looks at women in science and engineering careers in the 1970s and 1980s, documenting differences in career outcomes between men and women and between women of different races and ethnic backgrounds. The panel presents what is known about the following questions and explores their policy implications: In what sectors are (...) Ph.D.s employed? What salary disparities exist between men and women in these fields? How is marital status associated with career attainment? Does it help a career to have a postdoctoral appointment? How well are female scientists and engineers represented in management? Within the broader context of education and the labor market, the book provides detailed comparisons between men and women Ph.D.s in a number of measures: financial support for education, academic rank achieved, salary, and others. The study covers engineering; the mathematical, physical, life, and social and behavioral sciences; medical school faculty; and recipients of National Institutes of Health grants. Findings and recommendations in this volume will be of interest to practitioners, faculty, and students in science and engineering as well as education administrators, employers, and researchers in these fields. (shrink)
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  14.  16
    How Do Chemistry Faculty and Graduate Students Engage in Decision Making on Issues Related to Ethical and Responsible Conduct of Research Including Authorship?Yiyang Gao, Jasmin Wilson & Patricia Ann Mabrouk - 2022 - Science and Engineering Ethics 28 (3):1-26.
    In the United States National Science Foundation and the National Institutes of Health have mandated training STEM doctoral students in the ethical and responsible conduct of research to improve doctoral students' ethical decision-making skills; however, little is known about the process and factors that STEM faculty and graduate students use in their decision-making. This exploratory case study examined how four triads of chemistry faculty and their doctoral students recruited from three research universities in the eastern United (...)
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  15.  18
    Changes in United States Latino/a High School Students’ Science Motivational Beliefs: Within Group Differences Across Science Subjects, Gender, Immigrant Status, and Perceived Support.Ta-Yang Hsieh, Yangyang Liu & Sandra D. Simpkins - 2019 - Frontiers in Psychology 10.
    Science motivational beliefs are crucial for STEM (science, technology, engineering, and math) performance and persistence, but these beliefs typically decline during high school. We expanded the literature on adolescents’ science motivational beliefs by examining: 1) changes in motivational beliefs in three specific science subjects, 2) how gender, immigrant generation status, and perceived support from key social agents predicted differences in adolescents’ science motivational beliefs, and 3) these processes among Latino/as in the United States, whose underrepresentation in STEM is understudied. (...)
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  16.  55
    Individual and Organizational Predictors of the Ethicality of Graduate Students’ Responses to Research Integrity Issues.Philip J. Langlais & Blake J. Bent - 2014 - Science and Engineering Ethics 20 (4):897-921.
    The development of effective means to enhance research integrity by universities requires baseline measures of individual, programmatic, and institutional factors known to contribute to ethical decision making and behavior. In the present study, master’s thesis and Ph.D. students in the fields of biological, health and social sciences at a research extensive university completed a field appropriate measure of research ethical decision making and rated the seriousness of the research issue and importance for implementing the selection response. In addition they (...)
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  17.  25
    Engineering Students’ Views of Corporate Social Responsibility: A Case Study from Petroleum Engineering.Jessica M. Smith, Carrie J. McClelland & Nicole M. Smith - 2017 - Science and Engineering Ethics 23 (6):1775-1790.
    The mining and energy industries present unique challenges to engineers, who must navigate sometimes competing responsibilities and codes of conduct, such as personal senses of right and wrong, professional ethics codes, and their employers’ corporate social responsibility policies. Corporate social responsibility is the current dominant framework used by industry to conceptualize firms’ responsibilities to their stakeholders, yet has it plays a relatively minor role in engineering ethics education. In this article, we report on an interdisciplinary pedagogical intervention in a (...)
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  18.  10
    I Am in Room 523.Kathleen Burke & Shafik Bhalloo - 2020 - Journal of Business Ethics Education 17:215-220.
    Initiatives to encourage more women in STEM-related industries have had mixed results. Adding more women to longstanding male-dominated STEM occupations has highlighted issues in workplace culture that are hostile to women. In this case, the CEO of an engineers' professional association, NSE, is accused of making a sexually suggestive remark to two female engineers at the annual convention. One of the women, Claire, lodged a complaint with the board. After reviewing the investigation report, the board voted to ask the (...)
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  19.  23
    Percepção da Imagem Corporal e Comportamento Alimentar: Estudo Com Acadêmicos de Centro Universitário.Mateus Barros de Carvalho, Paula Maria da Silva, Luiza Marly Freitas de Carvalho, Antonio Marcos Vaz de Lima & Keila Cristiane Batista Bezerra Lopes - 2019 - Simbio-Logias Revista Eletrônica de Educação Filosofia e Nutrição 11 (15):29-50.
    The concept of corporal image includes how own body, taking into account their constituent parts, as well as the feelings related the those characteristics. The entrance in academica life provokes alterations in the feeding behavior, and the exposition to the new social environment they can bring as consequence an increase in dissatisfaction. Objective: To investigate the satisfaction with the body image and eating behavior of academics at a university center. Methods: For data collection, the following instruments were used. The evaluation (...)
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  20.  46
    Engineering Student’s Ethical Awareness and Behavior: A New Motivational Model.Diana Bairaktarova & Anna Woodcock - 2017 - Science and Engineering Ethics 23 (4):1129-1157.
    Professional communities are experiencing scandals involving unethical and illegal practices daily. Yet it should not take a national major structure failure to highlight the importance of ethical awareness and behavior, or the need for the development and practice of ethical behavior in engineering students. Development of ethical behavior skills in future engineers is a key competency for engineering schools as ethical behavior is a part of the professional identity and practice of engineers. While engineering educators have (...)
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  21.  8
    The Trouble With Thinking Like Arena: Learning to Use Simulation Software.Reinaldo J. Moraga & Diane M. Rodgers - 2011 - Bulletin of Science, Technology and Society 31 (2):144-152.
    Simulation software used for modeling has become as ubiquitous as computers themselves. Despite growing reliance on simulation in educational and workplace settings, users encounter frustration in using simulation software programs. The authors conducted a study with 26 engineering students and interviewed them about their experience learning the simulation software Arena for optimization modeling. These students experienced frustration with the process of learning to “think” like the simulation software. Students explained their difficulty with learning the software in (...)
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  22.  24
    Engineering Students as Co-creators in an Ethics of Technology Course.Gunter Bombaerts, Karolina Doulougeri, Shelly Tsui, Erik Laes, Andreas Spahn & Diana Adela Martin - 2021 - Science and Engineering Ethics 27 (4):1-26.
    Research on the effectiveness of case studies in teaching engineering ethics in higher education is underdeveloped. To add to our knowledge, we have systematically compared the outcomes of two case approaches to an undergraduate course on the ethics of technology: a detached approach using real-life cases and a challenge-based learning approach with students and stakeholders acting as co-creators. We first developed a practical typology of case-study approaches and subsequently tested an evaluation method to assess the students’ learning (...)
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  23.  33
    Empowering Engineering Students in Ethical Risk Management: An Experimental Study.Yoann Guntzburger, Thierry C. Pauchant & Philippe A. Tanguy - 2019 - Science and Engineering Ethics 25 (3):911-937.
    The complexity of industrial reality, the plurality of legitimate perspectives on risks and the role of emotions in decision-making raise important ethical issues in risk management that are usually overlooked in engineering. Using a questionnaire answered by 200 engineering students from a major engineering school in Canada, the purpose of this study was to assess how their training has influenced their perceptions toward these issues. While our results challenge the stereotypical portrait of the engineer, they also (...)
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  24.  32
    Changing the Engineering Student Culture with Respect to Academic Integrity and Ethics.Tammy VanDeGrift, Heather Dillon & Loreal Camp - 2017 - Science and Engineering Ethics 23 (4):1159-1182.
    Engineers create airplanes, buildings, medical devices, and software, amongst many other things. Engineers abide by a professional code of ethics to uphold people’s safety and the reputation of the profession. Likewise, students abide by a code of academic integrity while learning the knowledge and necessary skills to prepare them for the engineering and computing professions. This paper reports on studies designed to improve the engineering student culture with respect to academic integrity and ethics. To understand the existing (...)
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  25.  10
    Educating Engineering Students to Address Bias and Discrimination Within Their Project Teams.Roland Tormey, Nihat Kotluk & Siara Isaac - 2023 - Science and Engineering Ethics 29 (1):1-21.
    What training should engineering students receive to enable them to contribute to reducing bias, discrimination and the persistent lack of diversity in engineering? Collaboration is central to professional engineering work and, consequently, teamwork and group projects are increasingly present in engineering curricula. However, the influence of unconscious bias on interactions within teams can negatively affect women and underrepresented groups and is now recognised as an important engineering ethics issue. This paper describes a workshop designed (...)
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  26.  10
    Senior Engineering Students’ Reflection on Their Learning of Ethics and Morality: A Qualitative Investigation of Influences and Lessons Learned.Shiloh James Howland, Dayoung Kim & Brent K. Jesiek - 2022 - International Journal of Ethics Education 7 (1):171-199.
    Informed by ABET accreditation criteria and broader societal needs, ethics has been emphasized as important for engineering professionals. Engineering students are thus exposed to professional ethics and related concerns throughout their college experiences both within and beyond the formal engineering curriculum, but little is known about what learning experiences and lessons engineering students view as most memorable and salient as they approach graduation. Therefore, this paper answers the following research questions: RQ1) What types of (...)
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  27.  27
    Does Studying ‘Ethics’ Improve Engineering Students’ Meta-Moral Cognitive Skills?Reena Cheruvalath - 2019 - Science and Engineering Ethics 25 (2):583-596.
    This study examines the assumption that training in professional ethics is a predictor of the meta-moral cognitive ability of engineering students. The main purpose of the study was to check the difference in the meta-moral cognitive abilities between those students who studied a course on professional ethics, as part of the engineering curriculum, and those who did not undertake such a course. Using the survey method, the author conducted a pilot study amongst 243 engineering undergraduates. (...)
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  28.  20
    Guiding Engineering Student Teams’ Ethics Discussions with Peer Advising.Eun Ah Lee, Nicholas Gans, Magdalena Grohman, Marco Tacca & Matthew J. Brown - 2020 - Science and Engineering Ethics 26 (3):1743-1769.
    This study explores how peer advising affects student project teams’ discussions of engineering ethics. Peer ethics advisors from non-engineering disciplines are expected to provide diverse perspectives and to help engineering student teams engage and sustain ethics discussions. To investigate how peer advising helps engineering student teams’ ethics discussions, three student teams in different peer advising conditions were closely observed: without any advisor, with a single volunteer advisor, and with an advising team working on the ethics advising (...)
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  29. Developing Engineering Students’ Moral Reasoning Skills Using Problem-Based Learning.Mara Harrell - 2019 - American Association of Philosophy Teachers Studies in Pedagogy 5:123-143.
    Problem-Based Learning has become an increasingly popular instructional method for a variety of disciplines at all levels. Many studies and meta-analyses of these studies have shown the efficacy of this method for developing knowledge and skills. I adopted this method for teaching Engineering Ethics at Carnegie Mellon University, which has as its main course objectives the development of moral reasoning skills, as well as collaboration and communication skills, with special attention given to ethical dilemmas that may arise in the (...)
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  30. Developing Engineering Students’ Moral Reasoning Skills Using Problem-Based Learning.Maralee Harrell - 2019 - American Association of Philosophy Teachers Studies in Pedagogy 5:123-143.
    Problem-Based Learning has become an increasingly popular instructional method for a variety of disciplines at all levels. Many studies and meta-analyses of these studies have shown the efficacy of this method for developing knowledge and skills. I adopted this method for teaching Engineering Ethics at Carnegie Mellon University, which has as its main course objectives the development of moral reasoning skills, as well as collaboration and communication skills, with special attention given to ethical dilemmas that may arise in the (...)
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  31.  7
    Engineering Students’ Affective Response to Climate Change.Elisa Warford - 2022 - Teaching Ethics 22 (1):1-15.
    In an engineering writing course whose theme is climate change and engineering, I foreground climate change as an ethical problem. At the end of the semester, I ask students to compare their attitudes toward climate change from when they began the course to their attitudes at the end. Some report that, as a result of knowing more about the difficulty and scale of the problem, they have become more pessimistic about our ability to solve it. Climate change (...)
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  32.  7
    Engineering Students’ Affective Response to Climate Change.Elisa Warford - 2022 - Teaching Ethics 22 (1):1-15.
    In an engineering writing course whose theme is climate change and engineering, I foreground climate change as an ethical problem. At the end of the semester, I ask students to compare their attitudes toward climate change from when they began the course to their attitudes at the end. Some report that, as a result of knowing more about the difficulty and scale of the problem, they have become more pessimistic about our ability to solve it. Climate change (...)
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  33.  1
    Comparing First-Year Engineering Student Conceptions of Ethical Decision-Making to Performance on Standardized Assessments of Ethical Reasoning.Richard T. Cimino, Scott C. Streiner, Daniel D. Burkey, Michael F. Young, Landon Bassett & Joshua B. Reed - 2024 - Science and Engineering Ethics 30 (3):1-21.
    The Defining Issues Test 2 (DIT-2) and Engineering Ethical Reasoning Instrument (EERI) are designed to measure ethical reasoning of general (DIT-2) and engineering-student (EERI) populations. These tools—and the DIT-2 especially—have gained wide usage for assessing the ethical reasoning of undergraduate students. This paper reports on a research study in which the ethical reasoning of first-year undergraduate engineering students at multiple universities was assessed with both of these tools. In addition to these two instruments, students (...)
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  34.  34
    Assessing Freshman Engineering Students’ Understanding of Ethical Behavior.Amber M. Henslee, Susan L. Murray, Gayla R. Olbricht, Douglas K. Ludlow, Malcolm E. Hays & Hannah M. Nelson - 2017 - Science and Engineering Ethics 23 (1):287-304.
    Academic dishonesty, including cheating and plagiarism, is on the rise in colleges, particularly among engineering students. While students decide to engage in these behaviors for many different reasons, academic integrity training can help improve their understanding of ethical decision making. The two studies outlined in this paper assess the effectiveness of an online module in increasing academic integrity among first semester engineering students. Study 1 tested the effectiveness of an academic honesty tutorial by using a (...)
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  35. Engineering students as technological artifacts: reflections on pragmatism and philosophy in engineering education.Brandiff R. Caron - 2020 - In Andrew Wells Garnar & Ashley Shew (eds.), Feedback Loops: Pragmatism about Science and Technology. Lanham: Lexington Books.
     
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  36.  8
    A study of biomedical engineering student critical reflection and ethical discussion around contemporary medical devices.Noelle Suppiger, Nawshin Tabassum, Sharon Miller & Steven Higbee - 2024 - International Journal of Ethics Education 9 (1):29-56.
    Due to the impact of biomedical technologies on human wellbeing, biomedical engineering presents discipline-specific ethical issues that can have global, economic, environmental, and societal consequences. Because ethics instruction is a component of accredited undergraduate engineering programs in the US, we developed an ethics assignment that provided biomedical engineering students with a framework for ethical decision-making and challenged them to critically reflect on ethical issues related to contemporary medical devices. Thematic analysis performed on student reflections (n = (...)
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  37.  17
    An Assessment of Undergraduate Engineering Students’ Critical Thinking Skills Guided by the Paul-Elder Critical Thinking Framework.Patricia A. Ralston, Anne E. Larson & Cathy L. Bays - 2011 - Inquiry: Critical Thinking Across the Disciplines 26 (3):25-32.
    Faculty in a large, urban school of engineering designed a longitudinal study to assess the critical thinking skills of undergraduate students as they progressed through the engineering program. The Paul-Elder critical thinking framework was used to design course assignments and develop a holistic assessment rubric. This paper presents the analysis of the freshman course artifacts (baseline and course critical thinking assignments) and associated faculty scoring sessions for all three cohorts. A total of 649 first semester freshman (...) at least 18 years old agreed to participate in the study. The majority were white males with a mean high school grade point average of 3.73, ACT composite score of 28.33, and final freshman engineering course grade of 3.57. There was a statistically significant positive relationship between the freshman course artifacts and the faculty scores. Data from the study are being used to enhance the critical thinking experiences for undergraduate engineering students. (shrink)
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  38.  15
    Measuring ethical development of engineering students across universities and class years.Michaela LaPatin, Arkajyoti Roy, Cristina Poleacovschi, Kate Padgett-Walsh, Scott Feinstein, Cassandra Rutherford, Luan Nguyen & Kasey M. Faust - 2023 - International Journal of Ethics Education 8 (1):49-65.
    While the technical aspects of engineering are emphasized in education and industry, the ethical aspects are, in some ways, just as vital. Engineering instructors should teach undergraduates about their ethical responsibilities in the realm of engineering. Students would then be more likely to grasp their responsibilities as professionals. For many students, undergraduate study is a time of growth and change, with their ethical development just beginning to take shape. In this study, we aim to understand (...)
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  39.  11
    Refusal speech act realization in Sarawani Balochi dialect: A case study of female university students.Abbas Ali Ahangar & Seddigheh Zeynali - 2013 - Lodz Papers in Pragmatics 9 (2):245-274.
    This study investigates the effect of power and gender of the addressees on the type and number of refusal strategies employed by Sarawani Baloch female university students following Beebe, Takahashi, and Uliss-Weltz’s taxonomy. Employing refusal strategies mostly the same as those in the given classification by SBFUS confirms the universality of applying refusal strategies. However, SBFUS also employed some new strategies not predicted in this scheme, suggesting the effect of their religion and culture. The results also disclose that (...)
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  40.  7
    'Re-engineering' student administration - a practical case-study.Andrew West - 1999 - Perspectives: Policy and Practice in Higher Education 3 (4):114-117.
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  41.  17
    Attributions of female college students to variations in pupil size.Nancy Tomlinson, Robert A. Hicks & Robert J. Pellegrini - 1978 - Bulletin of the Psychonomic Society 12 (6):477-478.
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  42.  6
    Technology and Ethics for Engineering Students.Roli Varma - 2000 - Bulletin of Science, Technology and Society 20 (3):217-224.
    Many engineering schools still do not allocate enough resources to the process of understanding the social and ethical dimensions of scientific and technological activities. This article argues that engineering curriculum in the United States should include courses that use theories and concepts from humanities and social sciences to study issues confronting the engineering profession. On the theoretical front, engineering students need to understand favorable and unfavorable consequences of technology-based progress, social and political qualities of technological (...)
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  43.  14
    An Assessment of Undergraduate Engineering Students’ Critical Thinking Skills Guided by the Paul-Elder Critical Thinking Framework.Patricia A. Ralston, Anne E. Larson & Cathy L. Bays - 2011 - Inquiry: Critical Thinking Across the Disciplines 26 (3):25-32.
    Faculty in a large, urban school of engineering designed a longitudinal study to assess the critical thinking skills of undergraduate students as they progressed through the engineering program. The Paul-Elder critical thinking framework was used to design course assignments and develop a holistic assessment rubric. This paper presents the analysis of the freshman course artifacts (baseline and course critical thinking assignments) and associated faculty scoring sessions for all three cohorts. A total of 649 first semester freshman (...) at least 18 years old agreed to participate in the study. The majority were white males with a mean high school grade point average of 3.73, ACT composite score of 28.33, and final freshman engineering course grade of 3.57. There was a statistically significant positive relationship between the freshman course artifacts and the faculty scores. Data from the study are being used to enhance the critical thinking experiences for undergraduate engineering students. (shrink)
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  44.  29
    Measures of Ethics and Social Responsibility Among Undergraduate Engineering Students: Findings from a Longitudinal Study.Shiloh James Howland, Brent K. Jesiek, Stephanie Claussen & Carla B. Zoltowski - 2024 - Science and Engineering Ethics 30 (1):1-26.
    Prior research on engineering students’ understandings of ethics and social responsibility has produced mixed and sometimes conflicting results. Seeking greater clarity in this area of investigation, we conducted an exploratory, longitudinal study at four universities in the United States to better understand how engineering undergraduate students perceive ethics and social responsibility and how those perceptions change over time. Undergraduate engineering students at four U.S. universities were surveyed three times: during their 1st (Fall 2015), 5th (...)
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    Changes in the Social Responsibility Attitudes of Engineering Students Over Time.Angela R. Bielefeldt & Nathan E. Canney - 2016 - Science and Engineering Ethics 22 (5):1535-1551.
    This research explored how engineering student views of their responsibility toward helping individuals and society through their profession, so-called social responsibility, change over time. A survey instrument was administered to students initially primarily in their first year, senior year, or graduate studies majoring in mechanical, civil, or environmental engineering at five institutions in September 2012, April 2013, and March 2014. The majority of the students did not change significantly in their social responsibility attitudes, but 23 % (...)
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  46.  50
    When worlds collide: Engineering students encounter social aspects of production. [REVIEW]Sarah Kuhn - 1998 - Science and Engineering Ethics 4 (4):457-472.
    To design effective and socially sensitive systems, engineers must be able to integrate a technology-based approach to engineering problems with concerns for social impact and the context of use. The conventional approach to engineering education is largely technology-based, and even when additional courses with a social orientation are added, engineering graduates are often not well prepared to design user- and context-sensitive systems. Using data from interviews with three engineering students who had significant exposure to a (...)
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    Longitudinal investigation of moral disengagement among undergraduate engineering students: findings from a mixed-methods study.Dayoung Kim, Brent K. Jesiek & Shiloh James Howland - 2022 - Ethics and Behavior 32 (8):691-713.
    The importance of ethics education for undergraduate engineering students has been emphasized due to the manifold impacts of engineering on society. However, little is known about moral disengagement among engineering students, which could potentially lead to unethical engineering practice. Especially, it is not known how engineering students’ moral disengagement changes over the course of their college studies. In this paper, we conducted a longitudinal, mixed-methods study to investigate moral disengagement among undergraduate (...) students (n = 274) using Bandura’s theory of moral disengagement as a theoretical framework. We found engineering students’ overall propensity to morally disengage did not change over time, but there were statistically significant differences in student responses to three mechanisms of moral disengagement. We further investigated these findings with students’ interviews. Based on our results, we discuss various theoretical and practical implications. (shrink)
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    The Ethical Education and Perspectives of Chinese Engineering Students: A Preliminary Investigation and Recommendations.Rockwell F. Clancy - 2020 - Science and Engineering Ethics 26 (4):1935-1965.
    To develop more effective ethics education for cross-cultural and international engineering, a study was conducted to determine what Chinese engineering students have learned and think about ethics. Recent research shows traditional approaches to ethics education are potentially ineffective, but also points towards ways of improving ethical behaviors. China is the world’s most populous country, graduating and employing the highest number of STEM majors, although little empirical research exists about the ethical knowledge and perspectives of Chinese engineering (...)
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    A Social Responsibility Guide for Engineering Students and Professionals of all Faith Traditions: An Overview.Vito L. Punzi - 2018 - Science and Engineering Ethics 24 (4):1253-1277.
    The development of the various themes of Catholic Social Teaching is based on numerous papal documents and ecclesiastical statements. While this paper provides a summary of a number of these documents, this paper focuses on two themes: the common good and care of the environment, and on three documents authored by Pope John Paul II in 1990, by Pope Benedict XVI in 2010, and by Pope Francis in 2015. By analyzing these documents from an engineer’s perspective, the author proposes a (...)
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    Changes in the Social Responsibility Attitudes of Engineering Students Over Time.Nathan E. Canney & Angela R. Bielefeldt - 2016 - Science and Engineering Ethics 22 (5):1535-1551.
    This research explored how engineering student views of their responsibility toward helping individuals and society through their profession, so-called social responsibility, change over time. A survey instrument was administered to students initially primarily in their first year, senior year, or graduate studies majoring in mechanical, civil, or environmental engineering at five institutions in September 2012, April 2013, and March 2014. The majority of the students did not change significantly in their social responsibility attitudes, but 23 % (...)
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