Module designationSEDC6081 Solids And Surface Chemistry
Semester(s) in which the module is taught5th Semester and  7th Semester
Person responsible for the moduleDrs. Rusman, M. Si.
LanguageIndonesian
Relation to curriculumElective Course
Teaching methodsLecture, Collaborative Learning, Case Study Method
Workload (incl. contact hours, self-study hours)2 x 45 hours per semester, comprising:
100 minutes lecture and discussion per week120 minutes structured tasks per week120 minutes learn to be independent per week
Credit points2 SKS = 3.34 ECTS
Required and recommended prerequisites for joining the module-. 
Module objectives/intended learning outcomesUnderstand the scope of the Surface and Solid Chemistry course.Be able to determine crystal planes and crystal forms.Be able to analyze the differences between solid surfaces and liquid surfaces.Be able to understand the principles of adsorption isotherms on the surface of a catalyst or adsorbent.Be able to calculate the lattice energy of a crystal.
ContentThe Surface and Solid Chemistry course is designed to provide students with an advanced understanding of the properties of liquids and solids, crystal forms, crystal lattices, and surface adsorption of chemical substances. Understanding the structure of solids through existing models enables one to predict the properties of a particular solid and, by modifying the components that make up a solid substance as desired, produce materials that can be utilized in various fields, including ceramics, alloys, and semiconductors. In the section on surface tension, students are expected to understand the surface tension of liquids, Kelvin’s law, Gibbs adsorption, and isotherms, which can be applied in heterogeneous catalyst adsorption in chemical synthesis.
Exams and assessment formatsCase Method and Team-Based Project
Study and examination requirements Task 20%Quiz 20%Midterm 30%Final Exam 30%
Recommended literatureR. Ropp, 2003, Solid State Chemistry, ElsivierPaul C. Hiemenz, Raj Rajagopalan, 1997, Principles of colloid and surface chemistry, 3rd ed. Marcel Dekker
Date of last amendmentAugust 12, 2024