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Aaron G. Frye; Matthew E. Cooper; Lisa G. Bullard – Chemical Engineering Education, 2024
The outcomes of students who completed a ChE graduate bridging course sequence were compared against a group of students with ad hoc preparation. Bridging course students were found to have a modestly higher rate of graduate degree conferral and slightly lower graduate GPAs (though the GPA effect size was found to be small to medium) compared to…
Descriptors: Chemical Engineering, Engineering Education, Outcomes of Education, Graduate Students
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
Geeta Verma; Sogol Asaei; Jacob D. Hostert; Rebecca Ahn; Julie N. Renner – Chemical Engineering Education, 2024
A synergetic approach to combine service learning at the university level with a high school outreach program is described. A holistic view is presented by discussing the importance of outreach and service learning, survey results, and outcomes. Overall, it was found that the unique program increased the self-efficacy (belief about one's…
Descriptors: Outreach Programs, Females, Service Learning, Self Efficacy
Helmbrecht, Hawley; Nance, Elizabeth – Chemical Engineering Education, 2022
Tutorials for EXperimentalisT Interactive LEarning (TEXTILE) is an interactive semi-linear module-based curriculum for training students at various educational levels on data science methodologies currently utilized by research laboratories. We show how we developed our eleven module TEXTILE program to train 15 students from high school,…
Descriptors: Data Science, Methods, Science Laboratories, High School Students
Nease, Jake; Adams, Thomas A., II – Chemical Engineering Education, 2019
BLACKOUT! is a turn-based video game that introduces undergraduate and high school students to the types of power generation available in most electricity markets. The workshop portion of BLACKOUT! introduces students to the advantages and disadvantages of power generation by coal, natural gas, nuclear, wind and solar. The students then take the…
Descriptors: Experiential Learning, Video Games, Workshops, Power Technology
Schultz, Kelly M.; Snyder, Mark A. – Chemical Engineering Education, 2019
A hands-on educational module was created to illustrate the scope of chemical engineering. Students are taught fundamental concepts that they integrate in a laboratory experience designing and fabricating a 'plant-on-a-chip' microfluidic device capable of continuous processing of reactive flows. Students gain insight into chemical engineering…
Descriptors: Chemical Engineering, STEM Education, Outreach Programs, Student Recruitment
Geng, Jianming; Chen, Kaiyuan; Wang, Nengxin; Ling, Sihan; Guo, Muqi; Huang, Zuyi – Chemical Engineering Education, 2019
US high school (HS) students are lagging behind their foreign peers in math performance. It is thus necessary to design teaching modules that motivate US HS students to learn more math and to improve their math skills. Our study set out to test two different software programs designed for the development of such skills. MATLAB Simulink provides a…
Descriptors: High School Students, Secondary School Mathematics, Mathematics Education, Computer Software
Bendall, Sophie; Birdsall-Wilson, Max; Jenkins, Rhodri; Chew, Y. M. John; Chuck, Christopher J. – Journal of Chemical Education, 2015
Chemical engineering is rarely encountered before higher-level education in the U.S. or in Europe, leaving prospective students unaware of what an applied chemistry or chemical engineering degree entails. In this lab experiment, we report the implementation of a three-day course to showcase chemical engineering principles for 16-17 year olds…
Descriptors: Science Instruction, Chemical Engineering, Science Laboratories, Laboratory Experiments
Jacobberger, Robert M.; Machhi, Rushad; Wroblewski, Jennifer; Taylor, Ben; Gillian-Daniel, Anne Lynn; Arnold, Michael S. – Journal of Chemical Education, 2015
Graphene's unique combination of exceptional mechanical, electronic, and thermal properties makes this material a promising candidate to enable next-generation technologies in a wide range of fields, including electronics, energy, and medicine. However, educational activities involving graphene have been limited due to the high expense and…
Descriptors: Science Instruction, Secondary School Science, High Schools, College Science
Using Familiar Contexts to Ease the Transition between A-Level and First-Year Degree-Level Chemistry
Turner, John J. – School Science Review, 2013
This article endeavours to define how an understanding of the context of chemical principles and processes investigated at A-level (post-16) and earlier can be continued and contribute to easing the tensions and uncertainties encountered by chemistry and chemical engineering students on entry to university. The importance of using chemistry…
Descriptors: Chemistry, Science Instruction, Chemical Engineering, Scientific Concepts
Orbey, Nese; Clay, Molly; Russell, T.W. Fraser – Chemical Engineering Education, 2014
An approach to explain chemical engineering through a Web-based interactive game design was developed and used with college freshman and junior/senior high school students. The goal of this approach was to demonstrate how to model a lab-scale experiment, and use the results to design and operate a chemical reactor. The game incorporates both…
Descriptors: Chemical Engineering, Engineering Education, Science Education, Web Based Instruction
Franco-Mariscal, Antonio Joaquín – Journal of Chemical Education, 2015
This paper presents a project about the chemical elements made by 15-year-old Spanish high school students of Chemistry. It focuses on context-based teaching combined with the advantages of creating a large mural which subsequently is exposed in the school. The project consisted of researching the chemical elements in the different materials that…
Descriptors: Context Effect, High School Students, Science Materials, Structural Analysis (Science)
Sharpe, Erica; Andreescu, Silvana – Journal of Chemical Education, 2015
We describe a laboratory experiment that employs the Nanoceria Reducing Antioxidant Capacity (or NanoCerac) Assay to introduce students to portable nanoparticle-based paper sensors for rapid analysis and field detection of polyphenol antioxidants. The experiment gives students a hands-on opportunity to utilize nanoparticle chemistry to develop…
Descriptors: Science Instruction, Science Laboratories, Laboratory Experiments, Science Experiments
Renner, Julie N.; Emady, Heather N.; Galas, Richards J., Jr.; Zhange, Rong; Baertsch, Chelsey D.; Liu, Julie C. – Chemical Engineering Education, 2013
A cartilage tissue engineering laboratory activity was developed as part of the Exciting Discoveries for Girls in Engineering (EDGE) Summer Camp sponsored by the Women In Engineering Program (WIEP) at Purdue University. Our goal was to increase awareness of chemical engineering and tissue engineering in female high school students through a…
Descriptors: Science Instruction, Secondary School Science, Chemical Engineering, Science Laboratories
Gupta, Anju – Journal of STEM Education: Innovations and Research, 2015
This one-day workshop for pre-service teachers was aimed at implementing a uniquely designed and ready-to-implement chemical engineering curriculum in high school coursework. This educational and professional development opportunity introduced: 1) chemical engineering curriculum and career opportunities, 2) basic industrial processes and flow…
Descriptors: Chemical Engineering, Science Instruction, High Schools, Secondary School Teachers
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