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Showing 76 to 90 of 1,133 results Save | Export
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Aytenew, Getaye; Chen, Chang – Journal of Curriculum and Teaching, 2021
In this paper, a comparative evaluation of the undergraduate program of Chemical Engineering curriculums of Chinese and Ethiopian universities was performed. The study employed systematic qualitative methods to synthesize the current qualitative researches into an explanatory process. To comprehend the Chemical Engineering curriculum structure in…
Descriptors: Foreign Countries, Chemical Engineering, Undergraduate Study, Curriculum
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Loureiro, Joana A.; Pereira, Maria C. – Journal of Chemical Education, 2021
Solid lipid nanoparticles (SLNs) are exciting nanoparticles used for transporting therapeutic drugs into an organism. In this laboratory work, a simple experiment is performed to introduce master's students into the field of nanotechnology, here applied to health including the applications in the healthcare/pharmaceutical and cosmetic industry.…
Descriptors: Laboratory Experiments, Science Instruction, Graduate Students, Masters Programs
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Khadom, Anees A. – Journal of Education and Learning (EduLearn), 2021
The present short paper is an attempt in the direction of understanding the learning problems of undergraduate students. Sample of chemical engineering students was selected to perform a simple exam test. The test was divided into four steps. Closed book - individual student, Closed book - cooperative students, Open book - cooperative students,…
Descriptors: Problem Solving, Undergraduate Students, Chemical Engineering, Engineering Education
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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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Christopher V. H.-H. Chen; Scott Banta – Chemical Engineering Education, 2023
As more chemical engineering students enter careers beyond the field, students need more guidance in applying their problem solving skills to a challenges beyond the plant or refinery. Since Fall 2019, we have implemented case-based learning across our Material and Energy Balances course to help students practice chemical engineering thinking as a…
Descriptors: Teaching Methods, Chemical Engineering, Engineering Education, Problem Solving
Ophélie Allyssa Desmet; Tarun Tejasvi Mutukuri – Gifted Child Quarterly, 2025
This study explores talent-development trajectories of early-career chemical engineers to identify key components for success in the field using the talent development megamodel as a theoretical framework. Interviews with 12 recent PhD graduates reveal a trajectory across four developmental stages: (a) math ability and science ability, (b)…
Descriptors: Talent Development, Academically Gifted, Chemical Engineering, Graduate Students
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Simões, Manuel; Malcata, F. Xavier – Journal of Chemical Education, 2020
A laboratory experiment is described in which students carry out immobilization of the enzyme invertase via entrapment in alginate (Ca-alginate) and, accordingly, estimate values for kinetic constants and mass transfer coefficients. Immobilization of enzymes, or confinement thereof to a defined space with retention of most catalytic activity, is…
Descriptors: Science Instruction, Science Laboratories, Scientific Concepts, College Science
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Bodnar, Cheryl; Dringenberg, Emily; Butler, Brittany; Burkey, Daniel; Anastasio, Daniel; Cooper, Matthew – Chemical Engineering Education, 2020
Chemical engineering students need to be prepared to make process safety decisions in industry. Through analysis of the decision-making process of senior chemical engineering students, we found students would rather be "better safe than sorry" and did not often acknowledge complexities associated with their decisions. Their decisions…
Descriptors: Chemical Engineering, Safety, Decision Making, Science Laboratories
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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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Piyatida Changpueng; Fasawang Pattanapichet – PASAA: Journal of Language Teaching and Learning in Thailand, 2024
The flipped classroom instructional approach gained popularity after the COVID-19 pandemic, which significantly disrupted language instruction. This study aimed to evaluate the effectiveness of a full online flipped classroom instructional model to enhance students' meeting skills and their engagement. The model consisted of two lessons: group…
Descriptors: Flipped Classroom, Teaching Methods, Online Courses, Electronic Learning
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Roman, Claudia; Delgado, Miguel A.; Garcia-Morales, Moises – Chemical Engineering Education, 2021
The benefits of using Microsoft Excel built-in functions in an undergraduate Multistage Separations course are analyzed based on 15 years of experience teaching mass transfer in Chemical Engineering programs at both the Bachelor's and Master's levels. Eight reasons for using spreadsheets in a Mass Transfer virtual course are given. Through the…
Descriptors: Computation, Spreadsheets, Undergraduate Students, Engineering Education
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Al-Sobhi, Saad; Al-Muhtaseb, Shaheen; Elfaki, Hesan – Advances in Engineering Education, 2021
Proper chemical process simulation knowledge is valuable for senior chemical engineering students to deliver optimal design outcomes and achieve many learning objectives. This study aims to highlight the benefits of continuous improvements and innovations in chemical engineering's undergraduate curriculum. In particular, curriculum restructuring…
Descriptors: Chemical Engineering, Undergraduate Study, Curriculum Development, Computer Software
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Yunhua Li; Weizhong Liao; Cuixue Chen; Meiling Ye; Alexander Luis Imbault – Journal of Chemical Education, 2023
The electrolysis of water to produce hydrogen is a critical step in many green chemistry processes. The key to the efficiency of water electrolysis is the synthesis of an appropriate electrocatalyst. Three-dimensional (3D) printing is an increasingly important part of many industrial processes. In this study, we propose an efficient laboratory…
Descriptors: Printing, Computer Peripherals, Educational Technology, Chemistry
Leonie E. Krab-Hu¨sken; Linlin Pei; Pepijn G. de Vries; Saskia Lindhoud; Jos M. J. Paulusse; Pascal Jonkheijm; Albert S. Y. Wong – Journal of Chemical Education, 2023
This study aims to equip students with conceptual modeling skills to address compelling 21st-century challenges in chemistry and chemical engineering education. System-based concept mapping is a critical competence for analyzing global, often complex, problems. We examined how conceptual modeling could scaffold practical experimental design,…
Descriptors: Undergraduate Students, Chemical Engineering, Science Instruction, Sustainable Development
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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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