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Showing 1 to 15 of 130 results Save | Export
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Shaffer, Justin F.; Lopez, Jordan – Chemical Engineering Education, 2023
Chemical engineering students are typically required to take biology courses and many pursue biotechnology related careers. However, it is unknown what emotions students have toward biology that can influence curricular design. We surveyed 246 students and found that 74.6% have overall positive emotions toward biology because they find biology…
Descriptors: Chemical Engineering, Biology, Student Attitudes, Required Courses
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Keisha C. A. Antoine; Lealon L. Martin; Jorge F. Gabitto – Chemical Engineering Education, 2024
In this paper we demonstrate that using mixed reality (MR) technology can innovate our chemical engineering laboratory curriculum at Prairie View A&M University, a Historically Black College/University (HBCU). Particularly, we describe the development of a MR proof of concept to carry out a traditional fluid mechanics lab -- pressure drop as a…
Descriptors: Science Instruction, Black Colleges, Chemical Engineering, Science Laboratories
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Madalyn Wilson-Fetrow; Vanessa Svihla; Brandon Burnside; Abhaya Datye – Journal of Chemical Education, 2023
While students can learn both chemistry content and inquiry practices by participating in course-based undergraduate research experiences (CUREs), it is well documented that prior experiences shape perception. We conducted a case study to investigate students' first experiences with a CURE in an upper-division chemical engineering laboratory…
Descriptors: Undergraduate Students, Student Research, Student Experience, Chemical Engineering
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Bradley A. Cicciarelli; Eric A. Sherer; Timothy C. Reeves; Steven R. Toaddy; Marisa K. Orr – Chemical Engineering Education, 2025
To address attrition early in the chemical engineering curriculum, we provided students the opportunity to attend a two-day workshop focused on the major. Workshop attendees received information about upcoming courses and career paths and interacted with upper-level students and faculty in the major. Surveys were administered to assess student's…
Descriptors: Chemical Engineering, Workshops, College Students, Majors (Students)
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Lauri J. Partanen; Liisa Myyry; Henna Asikainen – Chemistry Education Research and Practice, 2024
We explored chemical engineering students' approaches to learning, study-related burnout, and perceptions of peer and self-assessment in a challenging physical chemistry thermodynamics course. Cluster analysis revealed three learning profiles based on students' approaches to learning: students who scored high in both organised studying and the…
Descriptors: Chemistry, Burnout, Peer Evaluation, Self Evaluation (Individuals)
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Lopez, Jordan; Shaffer, Justin F. – Chemical Engineering Education, 2021
In our chemical engineering curricula, students may enroll in introductory thermodynamics as a prerequisite to or as a corequisite with material and energy balances (MEB). We sought to determine why students enrolled in these courses in a given sequence whether it impacts performance. Students' enrollment decisions were mostly based on logistics…
Descriptors: Prerequisites, Required Courses, Chemical Engineering, Student Attitudes
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Xie, Weiguo; Davis, Richard A. – Chemical Engineering Education, 2022
A chemical engineering analysis course was modified to include analytics with advanced numerical methods. The course uses the MATLAB computational environment to develop student programming, modeling, analytics, and optimization skills. Case studies reinforce MATLAB, numerical methods, and advanced optimization skills. Students reported confidence…
Descriptors: Chemical Engineering, Computation, Programming, Mathematical Models
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Bale, Shivkumar; Singh, Ramesh – Interactive Learning Environments, 2023
This paper introduces a novel virtual method to conduct continuous distillation experiment in an undergraduate unit operation laboratory with the help of SPM 700 Distillation Column, one of the modules available in Simtronics, a commercial process operation simulator. Simtronics simulator is a powerful tool to teach process industry skills and it…
Descriptors: Engineering Education, Teaching Methods, Undergraduate Students, Laboratory Experiments
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Stierle, Rolf; Fischer, Matthias; Braun, Thorsten; Gross, Joachim – Chemical Engineering Education, 2023
How is it possible to create and continuously improve a quality learning environment for our students? We present our one-year course on engineering thermodynamics as a case study in which we investigate the learning environment based on a competency model from the students' perspective. Based on the analysis of our course structure and exam…
Descriptors: Engineering Education, Thermodynamics, College Students, Student Attitudes
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Jinchang Liu; Qin Liu – Journal of Chemical Education, 2023
The COVID-19 epidemic adversely impacted chemical engineering experiments(CEEs). Students underwent online learning, i.e., software simulation of the CEE course, instead of laboratory learning. A questionnaire survey revealed that students exhibited low enthusiasm for online learning, showing that online courses cannot ensure learning quality.…
Descriptors: Science Instruction, Chemical Engineering, Online Courses, Educational Technology
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An Jie Lye; Peng Yen Liew; Hidayah Mohd Fadzil; Chan Choong Foong – Journal of Chemical Education, 2023
Current engineering education should develop the noncognitive abilities of students. Psychological capital (PsyCap) is defined as an individual's strengths of self-efficacy, optimism, hope, and resiliency. PsyCap is an essential noncognitive ability that influences student mental health and academic performance, yet limited research has been done…
Descriptors: Emotional Intelligence, Student Characteristics, Chemical Engineering, Predictor Variables
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Asogwa, Uchenna; Duckett, T. Ryan; Mentzer, Gale A.; Liberatore, Matthew W. – Chemical Engineering Education, 2021
The impact of solving novel video-inspired homework problems on learning attitudes toward chemical engineering was examined at beginning and end of an undergraduate material and energy balances course using a modified Colorado Learning Attitudes about Science Survey instrument. Mean overall attitude of participants improved by a normalized gain…
Descriptors: Homework, Student Attitudes, Video Technology, Problem Solving
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Chenette, Heather C. S.; Neumann, Gregory T.; Anastasio, Daniel D. – Chemical Engineering Education, 2021
Unit operations laboratory courses culminate many topics from the curriculum and are often the first time students apply their knowledge in hands-on settings. However, many instructors do not directly assess key learning objectives, creating a disparity between desired and actual learning. Using multiple assessment tools, we analyzed student…
Descriptors: Chemical Engineering, Student Experience, Student Attitudes, Laboratories
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Alexis N. Prybutok; Ayinoluwa Abegunde; Kenzie Sanroman Gutierrez; Lauren Simitz; Chloe Archuleta; Jennifer Cole – Chemical Engineering Education, 2024
Engineering curriculum often fails to connect content and decisions to impacts on diverse, particularly marginalized, communities. Given that integration of social justice ideas into curriculum is currently uncommon among most faculty, we provide resources in the form of a workshop to help catalyze these efforts by teaching faculty how to…
Descriptors: Chemical Engineering, Social Justice, Racism, Workshops
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Prausnitz, Mark R.; Cuba-Torres, Christian M.; Liu, Nian; Lee, Yunki – Chemical Engineering Education, 2022
To characterize the professional interests, motivations, aspirations and demographics of chemical engineering (CHE) students, we surveyed almost 600 sophomores and seniors at Georgia Tech during the 1996-1997 and 2018-2019 academic years. Our objective was to study the evolution over two decades of: influences on student decision to study CHE,…
Descriptors: Chemical Engineering, Engineering Education, Student Interests, Undergraduate Students
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