| Bahan Kajian | Hukum Termodinamika PertamaHukum Termodinamika KeduaGabungan Hukum Termodinamika Pertama dan KeduaSistem Fasa TunggalAnalisa Eksergi UmumSistem Multi-FasaSistem dengan Reaksi KimiaSistem Pembangkit DayaSistem Termal Energi SuryaSistem Pendingin (Refrigerasi dan Kriogenik)Perancangan Termodinamika Penukar Panas dan Penyimpan PanasTermodinamika Ireversibel
 | First Law of ThermodynamicsSecond Law of ThermodynamicsCombined First and Second Laws of ThermodynamicsSingle Phase SystemsGeneral Exergy AnalysisMulti-Phase SystemsSystems with Chemical ReactionsPower Generation SystemsSolar Thermal Energy  SystemsCooling Systems (Refrigeration and Cryogenics)Thermodynamic Design of Heat Exchangers and Heat StorageIrreversible Thermodynamics
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| Capaian Pembelajaran Mata Kuliah (CPMK) | Memahami berbagai formulasi Hukum Termo I untuk sistem tertutup maupun sistem terbukaMemahami Hukum Termo II untuk sistem tertutup dan terbukaMemahami dan mampu menerapkan persamaan eksergi sistem terbuka dan tertutup dalam analisa sistemMemahami transformasi Legendre dan mampu menerapkannya dalam perumusan persamaan hubungan sifat termodinamikaMemahami berbagai persamaan sifat termodinamika campuran gas ideal dan nyata serta mampu menerapkannya dalam analisa sistem campuran gas tak-bereaksiMemahami berbagai konsep stabilitas termodinamika (stabilitas termal, mekanika, atau kimia)Memahami berbagai persamaan tingkat keadaan dan hukum dasar yang terkait dengan tingkat keadaan jenuh, seperti persamaan van der Waals, aturan kesamaan luas Maxwell, persamaan Clayperon)Memahami dan mampu menggunakan persamaan dasar sifat termodinamika sistem kesetimbangan campuran reaktifMampu melakukan analisa termodinamika sistem pembangkit daya uap, gas, maupun hibrida uap-gas.Mampu menerapkan berbagai konsep termodinamika radiasi dalam melakukan analisa sistem pemanfaatan radiasi surya, utamanya sistem pengumpul energi suryaMemahami prinsip kerja sistem kriogenik untuk proses pencairan gas dan mampu melakukan analisa termodinamika sistem demikianMampu menganalisa penukar panas dengan perubahan fasaMemahami konsep konduktivitas termal media anisotropik dan persamaan-persamaan konduksi dalam media anisotropik
 | Understand various formulations of the First Law of Thermodynamics for closed and open systemsUnderstand the Second Law of Thermodynamics for closed and open systemsUnderstand and be able to apply open and closed system exergy equations in system analysisUnderstand the Legendre transformation and be able to apply it in the formulation of thermodynamic property relationship equationsUnderstand various equations of thermodynamic properties of ideal and real gas mixtures and be able to apply them in the analysis of non-reacting gas mixture systemsUnderstand various concepts of thermodynamic stability (thermal, mechanical, or chemical stability)Understand various state level equations and basic laws related to saturated state levels, such as the van der Waals equation, Maxwell's area similarity rule, Clayperon's equation)Understand and be able to use the basic equations of thermodynamic properties of reactive mixed equilibrium systemsAble to carry out thermodynamic analysis of steam, gas and steam-gas hybrid power generation systems.Able to apply various concepts of radiation thermodynamics in analyzing solar radiation utilization systems, especially solar energy collection systemsUnderstand the working principles of cryogenic systems for the gas liquefaction process and be able to carry out thermodynamic analysis of such systemsAble to analyze heat exchangers with phase changesUnderstand the concept of thermal conductivity of anisotropic media and conduction equations in anisotropic media
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