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| Name | Grades | Rating | |||
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Not teaching in Spring 2026 | |||||
MECH 3370 William Anderson | |||||
B | |||||
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| Name | Grades | Rating | |||
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Not teaching in Spring 2026 | |||||
MECH 3370 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
Applied Thermodynamics
MECH 3370
Erik Jonsson School of Engineering and Computer Science
Lecture course. This course extends the coverage of thermodynamics beyond that found in an introductory Thermodynamics. Applications are emphasized by examining the use of thermodynamic concepts to analyze various devices, systems, and processes. The course includes a more advanced treatment of fundamental thermodynamic concepts as well as an introduction to several advanced topics of relevance to mechanical engineering such as energy, reacting and non-reacting mixtures, psychometrics, and combustion. 3 credit hours.
Prerequisites: MECH 3310 and MECH 3315.
Offering Frequency: Each year
Grades: 297
Median GPA: B+
Mean GPA: 2.990
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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
Applied Thermodynamics
MECH 3370
Erik Jonsson School of Engineering and Computer Science
Lecture course. This course extends the coverage of thermodynamics beyond that found in an introductory Thermodynamics. Applications are emphasized by examining the use of thermodynamic concepts to analyze various devices, systems, and processes. The course includes a more advanced treatment of fundamental thermodynamic concepts as well as an introduction to several advanced topics of relevance to mechanical engineering such as energy, reacting and non-reacting mixtures, psychometrics, and combustion. 3 credit hours.
Prerequisites: MECH 3310 and MECH 3315.
Offering Frequency: Each year
Grades: 297
Median GPA: B+
Mean GPA: 2.990
Click a checkbox to add something to compare.