Apply foresight tools such as scenario planning, backcasting, and systems mapping. Collaborate on creative problem-solving through storytelling, design, and strategic thinking. Communicate complex ...
Learn to apply control systems in automotive, energy, aerospace, robotics, and manufacturing sectors. Apply feedback control laws to stabilize systems and achieve performance goals. Control systems ...
Use individual and team exercises to build skills for a dynamic systems approach. Engineered systems increasingly must exploit complex interactions between multiple domains—mechanical, electrical, ...
ECEN 5613 is a 3 credit hour course and is the first course in CU's Professional Certificate in Embedded Systems. It is one of the Embedded Systems Engineering program core courses and provides an ...
Integrating processors, sensors, and data exchange functionality into everyday objects, the Internet of Things (IoT) pushes computing capabilities far beyond desktops and servers, weaving computation ...
*The degree requirements listed below are considered a draft until fully approved through the Western Oregon University curriculum process. [section=IS 199 Information Systems Topics (1-6)] Course ...
This course will give you the foundation for FPGA design in Embedded Systems. You will learn what an FPGA is and how this technology was developed, how to select the best FPGA architecture for a given ...
Excel is the most used software in any organization. This course includes advanced Excel including the use of Excel objects, Macros, Functions, Goal Seek, Solver, Visual Basic for Applications (VBA), ...
One of the most robust backward design models developed for higher education is L. Dee Fink’s integrated course design. Fink outlines a streamlined process for designing academic courses, divided into ...
Integrating processors, sensors, and data exchange functionality into everyday objects, the Internet of Things (IoT) pushes computing capabilities far beyond desktops and servers. On December 6, ...