Electronics, Semiconductors & Computer Engineering has emerged not merely as a new academic pathway, but as an essential direction that aligns with how modern technology is built, paving a new ...
Hager is known for his research on collaborative and vision-based robotics, time-series analysis of image data, and medical applications of image analysis and robotics. As a leader in the development ...
Electrical engineering is the study and application of electricity, electronics, and electromagnetism. In simple terms, it is about understanding how electricity works in order to use the knowledge ...
Engineering offers high salaries, strong job growth, and high satisfaction rates. With roles spanning from software to ...
Confused between Computer Engineering and Software Engineering? Read out the key comparison in computer vs software ...
*Opto-Electronics is an option in cooperation with the Department of Physics, and may be pursued by students enrolled in the MS Eng in EE program. This option contains required and recommended courses ...
Position yourself to become a leader in the high-demand fields of electrical and computer engineering with our master’s programs. CU Boulder is one of the nation’s top-ranked engineering programs, ...
A schematic of a next-generation ultra-thin camera that utilizes metasurfaces, a nano-optical device, to secure light paths: By aligning metasurfaces horizontally on a glass substrate, light reflects ...
Dean Triplett's research focuses on nanomanufacturing technologies that enable improved electronic and photonic device performance. Check out Dr. Triplett's Precision Imaging Research Lab. Campbell, C ...
As technology continues its ever-changing wave of innovations and updates, engineers must strive to stay ahead of electrical engineering trends. Why? Because the future of electronics influences ...
Fengnian Xia, who has conducted pioneering work in low-dimensional quantum materials and devices, was recently appointed the Tso-Ping Ma Professor of Electrical and Computer Engineering, effective ...
Slight temperature changes, imperceptible manufacturing imperfections, and heat generated by their own components can completely ruin an entire quantum quantum system-on-chip. Silicon photonics could ...