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| Name | Grades | Rating | |||
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Not teaching in Spring 2026 | |||||
MECH 3310 William Anderson | |||||
B- | |||||
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| Name | Grades | Rating | |||
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Not teaching in Spring 2026 | |||||
MECH 3310 William Anderson | |||||
B- | |||||

Grades: 587
Median GPA: B
Mean GPA: 2.940
2.5
Professor rating
3.9
Difficulty
29
Ratings given
46%
Would take again
Thermodynamics
MECH 3310
Erik Jonsson School of Engineering and Computer Science
Lecture course. This course focuses on introductory concepts and definitions of thermodynamics: energy and the first law of thermodynamics; evaluating properties and Ideal gas model; control volume analysis using energy; entropy and the second law of thermodynamics; refrigeration and power systems, Prerequisites: MECH 1208 and ENGR 3300 and PHYS 2325. 3 credit hours.
Prerequisite or Corequisite: CHEM 1311.
Offering Frequency: Each semester
Grades: 1,632
Median GPA: B+
Mean GPA: 3.134
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Grades: 587
Median GPA: B
Mean GPA: 2.940
2.5
Professor rating
3.9
Difficulty
29
Ratings given
46%
Would take again
Thermodynamics
MECH 3310
Erik Jonsson School of Engineering and Computer Science
Lecture course. This course focuses on introductory concepts and definitions of thermodynamics: energy and the first law of thermodynamics; evaluating properties and Ideal gas model; control volume analysis using energy; entropy and the second law of thermodynamics; refrigeration and power systems, Prerequisites: MECH 1208 and ENGR 3300 and PHYS 2325. 3 credit hours.
Prerequisite or Corequisite: CHEM 1311.
Offering Frequency: Each semester
Grades: 1,632
Median GPA: B+
Mean GPA: 3.134
Click a checkbox to add something to compare.