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Sumant S. Patankar – Chemical Engineering Education, 2024
The semiconductor industry offers ample employment opportunities for chemical engineers. The CHIPS Act prioritizes workforce training as a key contributor to the success and growth of semiconductor manufacturing. UF ChE teaches semiconductor processing lab modules to both undergraduate and graduate students. At the graduate level UF ChE offers…
Descriptors: Engineering Education, Electronic Equipment, Photography, Design
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Natacha Souto-Melgar – Chemical Engineering Education, 2025
This paper describes the combination of problem-based learning (PBL) and simulation tools in the chemical engineering unit operation laboratory course, focusing on heat transfer concepts using a shell-and-tube heat exchanger experiment. This approach has significantly enhanced student learning outcomes by bridging theory with practice, fostering a…
Descriptors: Chemical Engineering, Heat, Problem Based Learning, Critical Thinking
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Jacob Lakomy; John Kopas; Jon Friedman; Ajay Patel; Alex J. Bertuccio – Chemical Engineering Education, 2024
A hydroponics experiment growing microgreens was piloted by seniors where trials were conducted over 9-day growth periods and designed to test 12 different growth conditions in triplicate, including varying nutrient supply, nutrient flow rate, and seed density. Plant growth was assessed through changes in daily mass, height, and final dry weight.…
Descriptors: College Seniors, Agricultural Engineering, Chemical Engineering, Chemistry
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Ressia, Delfina; Ferro, Macarena A.; Trobiani Di Canto, Juliana A.; Saugo, Melisa; Ciolino, Andrés E. – Chemical Engineering Education, 2023
This paper reports the quantification of Ca, Mg, and Fe as micronutrients in different vegetables (spinach, sugar beets, and carrots) from raw and processed samples. Simple extraction procedures, titrations, and spectrophotometric analysis were used to determine the amounts of micronutrients before and after cooking. From the obtained results, an…
Descriptors: Chemistry, Nutrition, Food, Science Instruction
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Funkenbusch, LiLu Tian; Rivera-Jiménez, Sindia – Chemical Engineering Education, 2023
The continuous distillation experiment in the Unit Operations Lab was moved to a virtual platform. Students used old data and equipment specifications to simulate the column in Aspen HYSYS. Students experimented without the limitations of existing equipment. For example, they studied the number of trays in the virtual column, something that is…
Descriptors: Chemistry, Science Instruction, Feedback (Response), Student Attitudes
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Jessica E. Torres; Julie C. Liu – Chemical Engineering Education, 2024
To increase interest in chemical engineering and introduce non-traditional chemical engineering fields to high school women, an outreach activity focused on the biomedical applications of polymers was developed. Surveys given to students before and after the activity demonstrated greater agreement with the statements "I am interested in…
Descriptors: Engineering Education, Females, High School Students, Public Schools
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Panebianco, Christopher J.; Iatridis, James C.; Weiser, Jennifer R. – Chemical Engineering Education, 2022
Due to the COVID-19 pandemic, many universities have switched to online learning platforms, which inhibits engineering students from completing formative hands-on experiments. To address this, we developed at-home experiments for an undergraduate biomaterials course. These inquiry-based learning experiments were well received by students and…
Descriptors: COVID-19, Pandemics, Inquiry, Laboratory Experiments
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Elkhatat, Ahmed M.; Al-Muhtaseb, Shaheen A. – Chemical Engineering Education, 2022
A Computer-Aided Learning Package as Inquiry-Guided Learning (CALP/IGL) was implemented in a cooling tower experiment for 43 students enrolled in four sections of the Unit Operations Laboratory course in the chemical engineering program at Qatar University. The impact of this approach on the attainment of learning outcomes was evaluated. Results…
Descriptors: Inquiry, Active Learning, Engineering Education, Computer Assisted Instruction
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Andrea L. Schuman; Alaa Abdalla; Jennifer Case; David B. Knight – Chemical Engineering Education, 2025
Study abroad attempts to prepare students to effectively work in a multi-national environment. This study compares students' experiences in a unit operations laboratory course offered in multiple modalities: at students' home university, and four- and eight-week study abroad. The results examine the impact of support on students' learning and…
Descriptors: Study Abroad, Program Length, Comparative Analysis, Educational Experience
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Cerretani, Colin; Kelkile, Esayas; Landry, Alexandra – Chemical Engineering Education, 2017
We discuss the successful creation and implementation of a biotechnology track within the chemical engineering unit operations course. The track focuses on engineering principles relevant to brewing. Following laboratory modules investigating heat transfer processes and yeast fermentation kinetics, student groups design and implement a project to…
Descriptors: Chemical Engineering, Laboratory Experiments, Biotechnology, Kinetics
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Reynolds, Olivia May; Khan, Aminul Islam; Thiessen, David B.; Dutta, Prashanta; Adesope, Olusola O.; Van Wie, Bernard J. – Chemical Engineering Education, 2022
The development, testing, and classroom implementation of a low-cost, reproducible, desktop sized, highly visual double-pipe heat exchanger are presented. Quantitative measurements with the module reveal its usefulness for demonstrating basic and advanced convective heat transfer theory while worksheet-guided inquiries promote student engagement.…
Descriptors: Chemistry, Science Instruction, Thermodynamics, Laboratory Experiments
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Vigeant, Margot; Golightly, Amy – Chemical Engineering Education, 2022
In 2019 and 2020, third-year chemical engineering majors completed a concept inventory at the beginning and end of the semester in their thermodynamics course. Midway through spring semester of 2020, the course switched to emergency remote instruction, replacing hands-on inquiry-based laboratory activities (IBLAs) with short videos. Analysis of…
Descriptors: Undergraduate Students, College Science, Chemical Engineering, Majors (Students)
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Vasquez, Erick S.; Bohrer, Kelly; Noe-Hays, Abraham; Davis, Arthur; DeWitt, Matthew; Elsass, Michael J. – Chemical Engineering Education, 2022
Online and blended learning opportunities in Chemical Engineering curriculum emerged due to COVID-19. After eight weeks of in-person Unit Operations Laboratory sessions, a remote-learning open-ended final project was assigned to student teams. The assignment involved aspects related to entrepreneurially-minded learning (EML) and community-based…
Descriptors: Entrepreneurship, Blended Learning, Chemical Engineering, COVID-19
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Gao, Jie; Crossley, Steven P.; Nollert, Matthias U.; Lobban, Lance L.; Papavassiliou, Dimitrios V. – Chemical Engineering Education, 2021
This paper reports an innovative, hybrid teaching model for a junior level lab course. This model leverages in-person lab operation by adding a student-led online learning mode. Both course outcomes and student outcomes were evaluated. Student feedback was collected, and its analysis showed both positive and negative impacts in this hybrid model.…
Descriptors: Pandemics, COVID-19, School Closing, Online Courses
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Han, Duanduan; Ugaz, Victor – Chemical Engineering Education, 2017
Three self-contained mini-labs were integrated into a core undergraduate fluid mechanics course, with the goal of delivering hands-on content in a manner scalable to large class sizes. These mini-labs supported learning objectives involving friction loss in pipes, flow measurement, and centrifugal pump analysis. The hands-on experiments were…
Descriptors: Mechanics (Physics), Data Analysis, Pilot Projects, Undergraduate Study
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