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- ChemE Curriculum: Junior, Senior, and Graduate
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- 2018 ASEE Annual Conference & Exposition
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Angela R Bielefeldt, University of Colorado, Boulder; Madeline Polmear, University of Colorado, Boulder; Chris Swan, Tufts University; Daniel Knight, University of Colorado, Boulder; Nathan E. Canney
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Chemical Engineering
Paper ID #21683Ethics and Societal Impacts in the Education of Chemical Engineering Un-dergraduate and Graduate StudentsDr. Angela R Bielefeldt, University of Colorado, Boulder Angela Bielefeldt is a professor at the University of Colorado Boulder in the Department of Civil, Envi- ronmental, and Architectural Engineering (CEAE). She has served as the ABET assessment coordinator in her department since 2008. Professor Bielefeldt’s research interests in engineering education include service-learning, sustainable engineering, social responsibility, ethics, and diversity.Ms. Madeline Polmear, University of Colorado, Boulder
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Reginald E Rogers Jr, Rochester Institute of Technology (COE)
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Chemical Engineering
Paper ID #21300Work in Progress: Integrating Process Safety and Ethics in Classroom Dis-cussion through SurveysDr. Reginald E Rogers Jr, Rochester Institute of Technology (COE) Reginald Rogers is an Associate Professor in the Department of Chemical Engineering at Rochester In- stitute of Technology. His research focuses on the use of carbon nanomaterials for water treatment and sodium-ion battery applications. Dr. Rogers has been recognized for his teaching, research, and service efforts through numerous invited seminars and awards. Notable awards include the 2015 Partner of the Year Award from RIT’s Multicultural Center for
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Brittany Lynn Butler; Daniel D. Anastasio, Rose-Hulman Institute of Technology; Daniel D. Burkey, University of Connecticut; Matthew Cooper, North Carolina State University; Cheryl A Bodnar, Rowan University
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Chemical Engineering
Phenomena, Professional Development / Ethics and Mathematical / Compu- tational Methods. He is the recipient of various teaching and educational research awards, including the 2015 Raymond W. Fahien Award from the ASEE Chemical Engineering Division. Dr. Cooper’s research interests include effective teaching and assessment, conceptual and inductive learning, integrating writing and speaking into the curriculum and professional ethics.Dr. Cheryl A Bodnar, Rowan University Cheryl A. Bodnar, Ph.D., CTDP is an Assistant Professor in the Department of Experiential Engineering Education at Rowan University. Dr. Bodnar’s research interests relate to the incorporation of active learn- ing techniques in undergraduate classes as
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- ChemE Curriculum: Junior, Senior, and Graduate
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- 2018 ASEE Annual Conference & Exposition
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Margot A. Vigeant, Bucknell University; David L. Silverstein P.E., University of Kentucky; Kevin D. Dahm, Rowan University; Laura P. Ford, University of Tulsa; Jennifer Cole, Northwestern University; Lucas James Landherr, Northeastern University
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Chemical Engineering
assessed? Practice data analysis 100% 93.4% Practice effective teamwork 98.4% 80.3% Demonstrate laboratory ethics 98.4% 93.4% Exercise creativity within an 88.5% 62.3% engineering context Become familiar with 78.7% 62.3% appropriate instrumentation Design an experiment 78.7% 62.3% Identify strengths and 77.1% 57.4% weaknesses of theoretical models as descriptors of real- world outcomes Practice professional 67.2% 24.6% communication Practice
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Tracy L. Carter, Northeastern University; Samira M. Azarin, University of Minnesota, Twin Cities; Janie Brennan, Washington University in St. Louis; Elizabeth Hill, University of Minnesota Duluth; Amy J. Karlsson, University of Maryland - College Park
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Chemical Engineering
Safety Teaching Practices Large, private, Practice the ability to identify needs • University certifications in chemical Northeastern (problems) and then design and hygiene and waste management region, R1 conduct engineering experiments, to • Process safety checklist before meet the desired needs within realistic experiments constraints such as economic, • Design of experiments by students, environmental, social, political, including identification of hazards ethical, health and safety, and mitigation methods, using manufacturability, OR sustainability
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Adam T Melvin, Louisiana State University; Lisa G. Bullard, North Carolina State University
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Chemical Engineering
longer used theexcuse of lack of knowledge or lack of expectations as a defense when confronted about theacademic integrity violation [4]. Since the premiere of the video, one of the authors at NC Statehas developed additional resources in the area of academic integrity, including suggested syllabuslanguage, a reflection assignment, discussion prompts for a discussion of ethical behavior, anassignment cover sheet, and a form to prohibit students from sharing copyrighted course content[5]. As a result of these changes to the MEB course at NC State University, the number of cheatingincidents has decreased by 50% over pre-intervention numbers, and almost all students who areconfronted with evidence of their violation have chosen to accept
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- Diversity and Global Experiences
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- 2018 ASEE Annual Conference & Exposition
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David DiBiasio, Worcester Polytechnic Institute; Kristin Boudreau, Worcester Polytechnic Institute; Leslie Dodson, Worcester Polytechnic Institute; Curtis Abel, Worcester Polytechnic Institute
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Chemical Engineering
, where she also serves as Head of the Department of Humanities and Arts. Her training is in nineteenth-century literature, but for the past 9 years she has taught engineering ethics, first-year en- gineering courses, and humanities for engineers. She has also worked with students and colleagues to develop role-playing games teaching engineering within its complex humanistic context. NOTE: this paper has co-authors.Dr. Leslie Dodson, Worcester Polytechnic Institute Leslie Dodson is a Faculty Teaching Fellow in Undergraduate Studies at WPI. She received her PhD from the University of Colorado-Boulder’s College of Engineering and Applied Science, ATLAS Institute. Her current research interests focus on the intersections
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Jamie Gomez, University of New Mexico; Vanessa Svihla, University of New Mexico
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Diversity
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Chemical Engineering
deficits. We additionally askedthem to explain what interests and experiences drove them to become an engineer.In the following class session, they conducted a team gap analysis, placing a tick mark for eachperson who had each specific professional skill (additional areas focused on lifelong learning,ethics, problem solving, and technical competence). Students self-assessed whether theypossessed each skill, making this a binary choice (present/absent) for each member. For ourpurposes in this paper, we narrow our scope to the areas below, which were well covered by sub-topics:Professional Communications Skills Technical writing (technical summaries, technical descriptions, reports) Professional writing (emails, memos) Oral communication
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- Novel Classrooms
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Julie L. P. Jessop, University of Iowa; Anna L. Flaming, University of Iowa
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Chemical Engineering
like jigsaws.34 I’ve used them for problem-solving exercises (e.g., each teamlearns and teaches a method to calculate the pure component vapor pressure) and for soft-skill exercises (e.g., each team considers an ethical case study and then presents it to other teams fordeeper discussion). I can cover a lot of ground without taking a lot of time in class.Anna – The best learning activity is one that aligns well to the learning objective. One flexible,low-prep activity is the minute paper. It engages every member of the class as individuals, andyou can use their responses as the basis for