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Kolikant, Yifat Ben-David; McKenna, Ann; Yalvac, Bugrahan – New Directions for Teaching and Learning, 2006
This chapter describes how engineering faculty and learning scientists developed a collective wisdom--shared language, capabilities, and world view--in order to work together to achieve a common goal of developing course materials in the domain of biomedical engineering. (Contains 1 table and 1 figure.)
Descriptors: Engineering, Engineering Education, Biomedicine, Higher Education

Marra, Rose M.; Pangborn, Robert N. – New Directions for Teaching and Learning, 2001
Discusses the special considerations, objectives, and mechanisms for mentoring in engineering and other technical environments. Describes how students benefit from mentoring in an engineering curriculum and gives specific examples of student-mentoring programs. (EV)
Descriptors: College Students, Engineering Education, Higher Education, Mentors

Sangrey, Dwight A.; Phelan, Thomas – New Directions for Teaching and Learning, 1989
The challenge for engineering education is to capture, from the beginning of the freshman year, the student's interest in liberal learning and then to accomplish four aims of general education. The aims include: language (reading, writing, and speaking skills), ethics, context, and adaptability. (Author/MLW)
Descriptors: Communication (Thought Transfer), Engineering Education, Ethics, General Education

Cogdell, J. R. – New Directions for Teaching and Learning, 1995
A discussion of academic advising provides general advice for faculty advisors and looks at distinctive elements in academic advising for technical subjects, particularly those encountered with transfer students who have technical credits to transfer. Use of computer-based information systems in this context is also examined briefly. (Author/MSE)
Descriptors: Academic Advising, College Credits, College Faculty, Computer Oriented Programs

Grogan, William R.; And Others – New Directions for Teaching and Learning, 1988
The background of the Worcester Polytechnic Institute experiential program, how it was established, and how it currently operates are described. The Major Qualifying Project and the Interactive Qualifying Project, faculty roles and administrative structures, the humanities and evaluation of the program are discussed. (MLW)
Descriptors: College Faculty, College Students, Design, Engineering Education

Pope, Leodocia M. – New Directions for Teaching and Learning, 1995
This discussion, intended for faculty new to academic advising, offers insights into common perceptions and problems encountered in advising female students pursuing majors in science and engineering. Faculty advisors can both help these students achieve their full potential and learn from them. (MSE)
Descriptors: Academic Advising, Career Choice, College Faculty, Engineering Education

Hativa, Nira – New Directions for Teaching and Learning, 1995
Two lessons from comparable undergraduate courses in physics and engineering are analyzed to identify content, issues emphasized, and concepts used. Differences reflecting the pure nature of one field (physics) in contrast to the applied nature of the other are identified. Implications for classroom instruction and for research on college teaching…
Descriptors: Classroom Techniques, College Instruction, Comparative Analysis, Concept Formation

Sanchez, Lilia A.; And Others – New Directions for Teaching and Learning, 1995
In a freshman engineering graphics course at Santa Clara University (California), mechanical engineering students learn to solve ill-structured design problems using graphic communication skills. Integration of a critical thinking component has guided the faculty's own iterative, interactive process of designing a more effective teaching method.…
Descriptors: College Freshmen, College Instruction, Communication Skills, Course Descriptions

Willemsen, Eleanor W. – New Directions for Teaching and Learning, 1995
The role of metacognition in fostering or inhibiting success in introductory quantitative college courses is examined. One teacher's efforts to build student confidence in an elementary statistics course for psychology are described, and student resistance to active learning methods is discussed. (MSE)
Descriptors: Academic Achievement, Academic Persistence, Active Learning, Classroom Techniques

Pavelich, Michael J.; And Others – New Directions for Teaching and Learning, 1995
In an integrated four-course sequence, Colorado School of Mines engineering and science students work on open-ended, real-world problems prepared by government agencies and private companies that interact as clients with student teams. The program fosters intellectual development, teamwork, and communication skills. (Author/MSE)
Descriptors: College Freshmen, College Instruction, College Science, College Sophomores

Gainen, Joanne – New Directions for Teaching and Learning, 1995
Each year, about one-third of college freshmen who select majors in science, mathematics, and engineering switch to other fields. Faculty may be able to reduce student attrition from quantitative majors by addressing four barriers to success: (1) pre-college preparation; (2) peer culture; (3) classroom climate; and (4) sink-or-swim instructional…
Descriptors: Academic Achievement, Academic Persistence, Classroom Environment, College Freshmen

Bonsangue, Martin Vern; Drew, David Eli – New Directions for Teaching and Learning, 1995
The Academic Excellence Workshop at California State Polytechnic University (Pomona) has greatly improved performance and persistence of women and Latino science, mathematics, and engineering majors taking calculus, the crucial gateway course. This suggests persistence and success are more related to college classroom experiences and expectations…
Descriptors: Academic Achievement, Academic Persistence, Calculus, Classroom Environment
Online Evaluations of Teaching: An Examination of Current Practice and Considerations for the Future
Ballantyne, Christina – New Directions for Teaching and Learning, 2003
As the World Wide Web becomes an integral part of higher education, universities must determine the viability of using the Internet for their student evaluation systems. This chapter highlights important online-student-rating issues raised in this volume and in other research through a case study of Murdoch University's (Perth, Australia) online…
Descriptors: Internet, Student Evaluation, Student Evaluation of Teacher Performance, Higher Education

Woods, Donald R. – New Directions for Teaching and Learning, 1996
Two McMaster University (Canada) chemical engineering courses enrolling 30-50 students incorporate problem-based learning (PBL). Issues addressed in implementation included overcoming faculty and student resistance, integrating PBL methods within a predominantly conventional curriculum, developing PBL problems and objectives, and using tutorless…
Descriptors: Achievement Gains, Alumni, Chemical Engineering, Classroom Techniques