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5.0
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99%
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Not teaching in Spring 2026 | |||||
MSEN 6325 William VanDenberghe | |||||
A- | |||||
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Not teaching in Spring 2026 | |||||
MSEN 6325 William VanDenberghe | |||||
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William VanDenberghe
[email protected]Grades: 298
Median GPA: B
Mean GPA: 2.689
3.9
Professor rating
3.7
Difficulty
26
Ratings given
81%
Would take again
Semiconductor Materials, Defects, and Devices
MSEN 6325
Erik Jonsson School of Engineering and Computer Science
This course provides the fundamental basis for understanding semiconductor electronic materials and devices. Starting from basic materials properties and electronic band structure, intrinsic and extrinsic semiconductors, the necessary derivation of carrier distributions, transport processes and equations, ac and dc response in junctions and capacitors, and the impact of bulk and interface defects are explored in traditional and novel nanoelectronic devices. 3 credit hours.
Prerequisites: MSEN 5310 and MSEN 6319 and MSEN 6324.
Offering Frequency: Each year
Grades: 27
Median GPA: A-
Mean GPA: 3.580
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William VanDenberghe
[email protected]Grades: 298
Median GPA: B
Mean GPA: 2.689
3.9
Professor rating
3.7
Difficulty
26
Ratings given
81%
Would take again
Semiconductor Materials, Defects, and Devices
MSEN 6325
Erik Jonsson School of Engineering and Computer Science
This course provides the fundamental basis for understanding semiconductor electronic materials and devices. Starting from basic materials properties and electronic band structure, intrinsic and extrinsic semiconductors, the necessary derivation of carrier distributions, transport processes and equations, ac and dc response in junctions and capacitors, and the impact of bulk and interface defects are explored in traditional and novel nanoelectronic devices. 3 credit hours.
Prerequisites: MSEN 5310 and MSEN 6319 and MSEN 6324.
Offering Frequency: Each year
Grades: 27
Median GPA: A-
Mean GPA: 3.580
Click a checkbox to add something to compare.