Module designationSEDC3032 Instrumental Chemical Analysis
Semester(s) in which the module is taught6th Semester
Person responsible for the moduleDr. Ibnu Khaldun, M.Si
LanguageIndonesian, English (for lecture material)
Relation to curriculumMandatory modules for 6th semester students.
Teaching methodsLecture, small group discussion, case methods,
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 modulepassed basic chemistry courses 1st and 2nd
Module objectives/intended learning outcomesTo provide an in-depth understanding of the working principles and applications of instrumental analytical techniques in modern chemistry.To equip students with the skills to operate instruments and analyze data obtained from spectroscopic and spectrometric methods.To prepare students to interpret spectra and instrumental data for the purpose of identifying compounds and determining their concentrations.To develop critical and analytical thinking skills in selecting appropriate instrumental methods based on specific analytical needs.
ContentThis course explores the principles, instrumentation, and applications of modern analytical techniques in chemistry, focusing on various spectroscopic and spectrometric methods. Topics include UV/Visible spectrophotometry for quantitative and qualitative analysis based on electronic transitions; Fourier Transform Infrared (FTIR) spectroscopy for identifying functional groups through vibrational modes; Nuclear Magnetic Resonance (NMR) spectroscopy for elucidating molecular structures based on nuclear spin behavior; and Mass Spectrometry (MS) for determining molecular masses and fragmentation patterns. The course also covers Atomic Absorption Spectroscopy (AAS) and Atomic Emission Spectroscopy (AES) as essential techniques for the detection and quantification of metal elements. Emphasis is placed on understanding the theoretical background, operational procedures, data interpretation, and the selection of appropriate methods for specific chemical analysis tasks.
Exams and assessment formatswritten examinations, case studies, student presentations, and guided class discussions
Study and examination requirementsCase methods: 50,3%Quiz: 8,5%Midterm: 8,25%Participatory Activities (Attitude, Discussion, and Presentation): 16,5%Final exam: 16,5%
Recommended literatureIbnu Khaldun, 2018, Kimia Analisa Instrumen, Syiah Kuala University Press.Creswell, C.F., Runquist, O.A., dan Campbell, M.M., 1982.  Analisis Spektrum Senyawa Organik, Diterjemahkan oleh  Kosasih Padmawinata. 1985. Bandung: ITBDay, J.R. dan Underwood, A.I. 2002. Analisis Kimia Kuantitatif. Edisi keenam.  Diterjemahkan oleh Iis Sopyan. 2001. Jakarta: ErlanggaHarvey, D. 2000. Modern Analytical Chemistry. New York: Mc Graw HillSkoog, D. A., Holler, F. J., & Crouch, S. R. (2017). Principles of instrumental analysis (7th ed.). Cengage Learning.Harris, D. C. (2020). Quantitative chemical analysis (10th ed.). W. H. Freeman and Company.Pavia, D. L., Lampman, G. M., Kriz, G. S., & Vyvyan, J. R. (2015). Introduction to spectroscopy (5th ed.). Cengage Learning.Settle, F. A. (Ed.). (1997). Handbook of instrumental techniques for analytical chemistry. Prentice Hall.Christian, G. D., Dasgupta, P. K., & Schug, K. A. (2014). Analytical chemistry (7th ed.). Wiley.
Date of last amendmentJanuary 13, 2025