- intrinsic: natural curiosity or interest in the activity itself - social: please the professor or peers - achievement: enhance position relative to others - instrumental: gain rewards beyond the activity itselfStudents motivated by intrinsic and social drivers will naturally engage in their education.Positive competition has been used in lecture settings to appeal to students motivated byachievement or instrumental drivers.13In the case of the protein production challenge: - In order to foster an inductive environment that mimics an “undergraduate research” experience, the project was given an open-ended structure in which students were challenged to develop their own optimized experimental procedure
. Fontecchio is the recipient of a NASA New Investigator award, the International Liquid Crystal Society Multimedia Prize, and the Drexel ECE Outstanding Research Award. He has authored over 35 peer-review publications on Electro-Optics and Condensed Matter Physics. His current research projects include developing liquid crystal polymer technology for optical film applications including electro-optic virtual focusing optics, reflective displays, flexible displays, power generating MEMS arrays, and photonic crystal structures with tunable defects. Page 13.798.1Eli Fromm, Drexel University Eli Fromm is
would be told that they have 5-10minutes (depending on the problem) to think through the problem, write down the correctequations and begin the solution/calculation process. The instructor is available toanswer questions during this time. The instructor then concludes the exercise bypresenting the entire solution to the class and answers follow-up questions. Typically,the solution is presented when a few of the more advanced students have completelysolved the problem and performed all necessary calculations while the vats majority ofthe students have completed the problem set-up. The instructor believes that whilestudents can benefit from being helped or listening to a peer explain his/her thinking withregards to the setup or solving of a
secondment from University College London, a strategic partner of NU. He is now the Director of UCL’s International Energy Policy Institute at their campus in Adelaide, Australia.Prof. Sarim Naji Al Zubaidy, Nazarbayev University Sarim Al-Zubaidy is Vice-Dean (Teaching Learning) at the School of Engineering, Nazarbayev Univer- sity, Kazakhstan. He has over thirty year experience in both senior academic and administrative positions in a variety of higher education institutions around the world. He has authored over 100 peer reviewed articles and technical papers. His expertise ranges from traditional to newly formed universities to those in transition.Dr. Joseph A. Menicucci Jr., Nazarbayev University Joseph A. Menicucci
engineering students. Finally, chemicalengineering students were particularly confident in their abilities to perform tasks related to theirscientific and course activities (write a lab report, interpret experimental results, applyknowledge to an assignment/test, get good grades). Students who choose chemical engineeringover other engineering disciplines come from marginally high socio-economic status.In addition to other factors, chemical engineering students showed a stronger interest and priorperformance in science than other engineers. In light of these findings, this paper explores thisemergent connection between science, specifically chemistry, and chemical engineering majors.In a recent paper, Zhang and colleagues found that, upon leaving
lose it” prevailed.The faculty responded to this situation by re-designing our undergraduate unit operations courseto include both statistics content and its direct application in the planning of laboratoryexperiments and analysis of data.The original junior-level three-credit course was comprised of two hours of lab (two 2 ½-hoursessions per week) and one hour of lecture. The course included a good blend of traditional andmodern experiments and lecture topics on lab safety, writing skills, professionalism and ethics,and a token discussion of statistics and experimental design. When a one-credit junior seminarcourse, “Chemical Engineering as a Profession,” was introduced in our curriculum, studentslearned about many of the professional topics
the initialdrafts.During the first phase of the course the students had a small number of textbook homework problemsand a write up of the case study analysis to do as individuals. Throughout the course they have amixture of group and individual problems that relate directly to the equipment they worked with inclass, and the data they collected using it. They are also required to submit periodic status reports sothat we can monitor each group’s progress and intervene if necessary. The students will have a finalexam consisting of an assessment of an existing case study design. The course grade is based 60% onthe design project, 5% on the case study analysis, 20% on homework, and 15% on the final designanalysis. The group portion of each
education. She has published 20 peer-reviewed publications in these areas, and her research has been funded by the NSF, AFRL, and LA-BOR. She also serves as an Associate Editor for the American Control Conference and the Conference on Decision and Control, two premier conferences in the controls community. She is a member of the IEEE, SIAM, and ASEE.Prof. Dexter Cahoy, Louisiana Tech University Dexter Cahoy is an Associate Professor in the College of Engineering and Science at Louisiana Tech University, Ruston, LA. He received his MS in Statistics from University of Alberta, Edmonton, Canada, and his PhD in Statistics from Case Western Reserve University, Cleveland, Ohio. As a professor at Louisiana Tech, he taught
referencing, and the consultation of resources.Critical discussion and thinking is encouraged during these courses and students write essays onthese different topics.Math and science courses: These courses provide students with a strong foundation in basicareas and provide the necessary background for the engineering courses to be taken later in thecurriculum. These courses constitute the enabling subjects of any curriculum, in the layout byArmstrong 6 in his proposal for a new Chemical Engineering curriculum for the futureEngineering fundamentals courses: This curricular component provides both a strong foundationof scientific and technical knowledge, as well as tools and methods applicable in actualengineering practice. Currently, this component
engineering and science courses. Laws et al. highlightsignificant learning gains in university students who participated in active learning classrooms(30% vs 75% of students who understood fundamental acceleration concepts)7. According toLaws et al., the elements that improved student learning include using peer instruction andcollaborative work; using activity-based guided-inquiry materials; using a learning cyclebeginning with predictions; emphasizing conceptual understanding; letting the physical world bethe authority; evaluating student understanding; making appropriate use of technology; andbeginning with the specific and moving to the general7.Inductive-learning is a method of learning which exposes the learner to an observation orexperience
form of use does not expose students to the site. Even at the basic level of using offline, instructors already using peer instruction or active learning with concept questions need only make minor changes to current practices and the AIChE Concept Warehouse may save them preparation time. 2. Online refers to using the website infrastructure and features. A major benefit of this mode of use is the ability to view results from assignments, which are presented aggregated, tabulated, and archived for later use and are available for download in Microsoft Excel format. If an instructor wants to use more of the features available online, instead of downloading questions they can integrate the use of
• Report writing • Good design requires a cost estimating • Oral presentation mastery of chemical engineering sciencesThe profession has nearly unanimous agreement that these learning goals are important andshould be achieved by performing a project within the undergraduate chemical engineeringcurriculum. Examples of design projects are available in many textbooks and from CACHE2. Page 12.1366.32.2 Learning Goals for Operability This paper presents an argument for an enhancement in the curriculum by providingadditional operability topics to achieve the following learning goals