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Objective/Research Question: There is a growing demand for skilled workers in engineering and technology fields. However, the number of engineering technology degrees awarded is much less compared to engineering, and a high percentage of students in engineering technology do not persist beyond the first year. To meet the demands for skilled workers, it is important to understand the experiences of engineering technology students to identify factors that contribute to their matriculation and persistence. The purpose of this paper is to summarize the research that exists on the academic and personal experiences of engineering technology and welding technology students. The research questions guiding this study are: (a) what are the academic and personal experiences of engineering technology and welding technology students at 2- and 4-year institutions? and (b) what are students’ experiences with persisting in engineering technology? Methods: Using our research questions and predetermined inclusion criteria, we performed a literature review of relevant articles retrieved from Scopus and ERIC ProQuest databases. Results: We identify three areas of opportunities for future research examination: (a) experiences of students of marginalized populations in engineering technology, (b) how to leverage career and technical education and 2-year engineering technology programs to support matriculation, and (c) ways to address the negative stigma associated with engineering technology programs. Conclusions/Contributions: To meet the demands of the nation’s economy and future workforce, it is important to further examine the experiences of engineering technology students.more » « less
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Learners of Biomedical Engineering (BME) programs report difficulties finding relevant jobs post-graduation and also express a disconnect between their training and future professional roles. In addition, because of the interdisciplinary nature of BME, there is a lack of shared understanding of the field between learners, departments, and employers. This lack of understanding further contributes to the disconnect between instruction and practice. To bridge the gap between curricular experiences and learners' understanding of career opportunities in BME, we developed a series of 1-credit (4-week) BME-In-Practice Modules that exposed biomedical learners to biomedical engineering practice. Each 1-credit module in the series was designed to run for four weeks and focused on different areas in BME such as Tissue engineering, Computational Modeling, Medical Device Development, Drug Development, Regulations, and Neural Engineering. Learners' enrolled in one or multiple modules and engaged in experiential learning for 4-weeks to gain knowledge and skills relevant to the BME area of focus in the module(s). Following the conclusion of the BME-In-Practice series, we collected survey data from learners who participated in the modules to address the following research questions: 1) What are learners' goals and motivations for enrolling in the BME-In-Practice Module(s)? and 2) How did learners' experiences with the module(s) align with their goals and influence their graduation plans? The survey was administered using Qualtrics and consisted of multiple open-ended questions examining learners' goals and motivations for participating in the BME-in-Practice Module(s) and questions assessing their experiences with the series. Responses to the open-ended survey questions were analyzed using a qualitative interpretive approach. Our results identify different goals related to learners' professional interests and competencies when enrolling in the module. Learners' reported gaining practical experiences as well as clarity and direction about their professional futures. We also discuss the graduation plans and outcomes reported by the learners' who participated in the modules, followed by implications for practice and future research.more » « less
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