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Ma, Lili – Journal of STEM Education: Innovations and Research, 2021
This paper summarizes our experience of teaching undergraduate robotic courses in the past ten years. The objective is to introduce students to the fundamental knowledge in robotics. Lecture topics covered subjects in both Autonomous Mobile Robots and Robotic Manipulator. In the lab sessions, students work on physical robots to acquire basic…
Descriptors: Teaching Methods, Robotics, Engineering Education, Computer Science Education
Heileman, Gregory L.; Abdallah, Chaouki T. – Change: The Magazine of Higher Learning, 2019
While occupying various academic leadership positions, the authors repeatedly encounter the use of the Accreditation Board for Engineering and Technology (ABET) accreditation to influence decision making around engineering curricula. For instance, ABET criteria are commonly cited as the reason why particular changes to engineering programs, such…
Descriptors: Accreditation (Institutions), Engineering Education, Outcomes of Education, Academic Achievement
Gottipati, Swapna; Shankararaman, Venky – Education and Information Technologies, 2018
The applications of learning outcomes and competency frameworks have brought better clarity to engineering programs in many universities. Several frameworks have been proposed to integrate outcomes and competencies into course design, delivery and assessment. However, in many cases, competencies are course-specific and their overall impact on the…
Descriptors: Outcomes of Education, Models, Engineering Education, Curriculum Design
Latinopoulos, Pericles; Angelidis, Panagiotis – European Journal of Engineering Education, 2014
The management of complex water problems is nowadays being practised through new ways and approaches. Therefore, water engineers, planners and managers should be appropriately educated through modern undergraduate curricula and by well-designed postgraduate specialisation programmes. Within this framework, a study of the specific characteristics…
Descriptors: Foreign Countries, Engineering, Engineering Education, Graduate Study
Rust, Terrie – Technology and Engineering Teacher, 2012
The nearly unanimous state acceptance of the Common Core State Standards (CCSS) in mathematics and English Language Arts (ELA) jolted many teachers out of their complacency. How was this major change going to impact their teaching and their curriculum? What changes would be made in student assessments and teacher accountability? The good news is…
Descriptors: State Standards, Accountability, Engineering Education, Engineering
Schuhmann, Richard J. – Journal of STEM Education: Innovations and Research, 2010
While industry and academia agree that leadership skills are critical for engineering graduates, there exists no consensus regarding the definition of "engineering leadership". The engineering leadership development program at Penn State University has a decade-long experience in teaching leadership to engineering undergraduates. In…
Descriptors: Educational Objectives, Leadership Training, Engineering, Leadership
Ritz, John M. – Journal of Technology Education, 2009
To develop meaningful instructional programs for technology education, goals need to be in place to direct the outcomes of curriculum development and teaching. Goals are program terminal outcomes that focus curriculum writers or teachers who structure content for learners. Goals provide direction so content can be delivered for long-term impact to…
Descriptors: Curriculum Development, Literacy, Technological Literacy, Technology Education
Waina, Richard B. – Eng Educ, 1969
Describes a method for specifying precise course objectives for undergraduate electrical engineering curriculum, and suggests treating curriculum design as a system engineering problem. (Author/WM)
Descriptors: Course Content, Curriculum Design, Curriculum Development, Educational Objectives
Flammer, Gordon H. – Journal of Engineering Education, 1972
Describes the design and management of a Feasible Ideal Instructional System (FIIS) in contrast with the present instructional system. Indicates that the FIIS is not a figment of pure imagination, but entirely practical in education. (CC)
Descriptors: Curriculum Design, Curriculum Development, Educational Objectives, Engineering Education
Todd, Robert H.; Magleby, Spencer P. – European Journal of Engineering Education, 2005
One of the principal objectives of engineering education is to prepare graduates for the practice of engineering in industry. Industry involvement in the educational process can be very helpful in devising programs to meet this objective. Yet, engineering education has a number of other stakeholders including students, faculty, academic…
Descriptors: Engineering Education, Industry, Educational Objectives, Engineering
Allan, John J.; And Others – 1970
Steps that should be taken to design and implement computer-based instruction (CBI) for undergraduate science and engineering courses are outlined, and these steps are based on the experience of faculty at the University of Texas at Austin. Among the steps described are development of course material, developmental and validation testing of…
Descriptors: College Science, Computer Assisted Instruction, Computer Oriented Programs, Course Evaluation
Center for Occupational Research and Development, Inc., Waco, TX. – 1982
Developed as a resource to assist in a major revision underway in Georgia area technical schools to change curricula for preparing engineering technicians, this preliminary program-planning guide describes curriculum structures for specialized programs in three major areas--electronics, electromechanics, and mechanics. The handbook, which is…
Descriptors: Competency Based Education, Course Descriptions, Curriculum Design, Curriculum Development
McNeill, Barry W.; Bellamy, Lynn – 1994
This document consists of a workshop presentation on curriculum development, design, specification, and assessment in the engineering classroom. Ten sessions focus on: (1) the format and purpose of the workshop, which is designed to help instructors develop an understanding of the basic principles of curriculum and instruction and the ability to…
Descriptors: Active Learning, Cognitive Processes, Cognitive Style, College Instruction