Registration & Academic Plan
Academic Information > Registration & Academic Plan
Courses Matrix and Program Learning Outcomes
The University of Lampung's Master of Chemistry Study Program is designed to produce graduates with high competency in chemistry, both in theory and research.
The curriculum includes compulsory and elective courses that support mastery of scientific knowledge, laboratory skills, research methodology, and scientific publications.
The 2025 Curriculum Structure of the Master of Chemistry Study Program complies with the requirements of Minister of Education and Culture Regulation No. 53 of 2023, with a total study load of 56–70 credits. The curriculum structure accommodates 7 credits of Compulsory University Courses. In addition, there are 30 credits of Compulsory Study Program Courses, which consist of core courses to strengthen basic competencies and research methodology.
In addition, the curriculum also includes 90 credits of compulsory courses and specializations, divided into five main areas:
- Organic Chemistry: 18 credits (elective courses/compulsory specializations),
- Inorganic Chemistry: 18 credits (elective courses/compulsory specializations),
- Biochemistry: 18 credits (elective courses/compulsory specializations),
- Analytical Chemistry: 18 credits (elective courses/compulsory specializations),
- Physical Chemistry: 18 credits (elective courses/compulsory specializations).
Therefore, the minimum graduation requirement for the Master of Chemistry Study Program is 56 credits. This curriculum is designed to provide flexibility in specializations according to the student's chosen field of study, while ensuring mastery of core competencies as academics, researchers, and practitioners in the field of chemistry.
Mapping Courses to CPL, Study Materials, and Learning Materials
| No. | Course Title | Course Learning Outcomes (CLO) | Core Study Materials | Detailed Learning Materials |
|---|---|---|---|---|
| 1 | Philosophy of Science | CPL2 | Philosophy of science; foundations of scientific development; scientific logic | Understanding philosophy of science; research ethics; scientific reasoning |
| 2 | Structure Determination | CPL5, CPL7 | Molecular structure; structure determination techniques | NMR, MS, IR, UV-Vis, X-ray diffraction; spectral interpretation |
| 3 | Chemical Instrumentation | CPL5, CPL8 | Analytical instruments; operation and maintenance | Principles and applications of GC, HPLC, AAS, ICP, spectroscopy; method validation |
| 4 | Inorganic Materials Chemistry | CPL5, CPL7 | Inorganic materials; synthesis and advanced material properties | Synthesis of inorganic materials; physicochemical characterization; applications |
| 5 | Complex Reaction Kinetics | CPL6, CPL7 | Advanced kinetics; reaction mechanisms | Experimental kinetic methods; mathematical modeling; data analysis |
| 6 | Enzymology | CPL6, CPL7 | Biocatalysts; enzyme mechanisms; applications | Enzyme kinetics; assay methods; enzyme modification and engineering |
| 7 | Research Methodology | CPL2, CPL8 | Research design; quantitative and qualitative methods | Problem formulation; experimental design; sampling; statistical analysis |
| 8 | Professional English | CPL2, CPL3 | Scientific communication; academic writing | Article writing; scientific presentation; literature review |
| 9 | Final Project I | CPL3, CPL4, CPL5, CPL6 | Research planning and preparation | Proposal writing; literature study; methodology development |
| 10 | International Seminar | CPL2, CPL3, CPL4 | Research communication; international scientific discussion | Scientific presentation; peer feedback; proceedings publication |
| 11 | Scientific Publication | CPL3, CPL4 | Scientific writing and publication process | Manuscript writing; submission; revision; publication ethics |
| 12 | Final Project II | CPL3, CPL4, CPL6 | Research implementation; analysis and reporting | Data analysis; thesis writing; dissemination |
| 13 | Thesis Examination | CPL3, CPL4 | Final research evaluation | Thesis defense; oral examination; publication |
| 14 | Statistics and Chemometrics | CPL2, CPL6 | Chemical statistics; chemometrics | Hypothesis testing, ANOVA, regression, multivariate analysis |
| 15 | Separation Chemistry | CPL5, CPL6 | Separation methods | Chromatography, electrophoresis, membrane techniques |
| 16 | Analytical Laboratory Techniques | CPL5, CPL8 | Laboratory analytical methods | SOP, sample preparation, quality control |
| 17 | Analytical Electrochemistry | CPL5, CPL8 | Electrochemical methods | Voltammetry, potentiometry, coulometry |
| 18 | Cyclic Voltammetry | CPL5, CPL8 | Voltammetric analysis | Principles of cyclic voltammetry; material applications |
| 19 | Air and Water Chemical Analysis | CPL5, CPL6 | Environmental analysis | Analytical methods for air and water pollutants |
| 20 | Selected Topics in Analytical Chemistry | CPL2, CPL5 | Current issues in analytical chemistry | Literature review; thematic presentations |
| 21 | Clinical and Forensic Chemistry Analysis | CPL5, CPL6 | Clinical and forensic analysis | Analytical methods for biological and forensic samples |
| 22 | Advanced Inorganic Reaction Mechanisms | CPL5, CPL7 | Inorganic reactions | Kinetics and mechanisms of inorganic reactions |
| 23 | Physical Inorganic Chemistry | CPL5, CPL7 | Physical principles of inorganic chemistry | Inorganic spectroscopy; electronic structure |
| 24 | Advanced Organometallic Chemistry | CPL5, CPL7 | Organometallic chemistry | Synthesis and reactivity of organometallic compounds |
| 25 | Advanced Bioinorganic Chemistry | CPL5, CPL6 | Bioinorganic chemistry | Metal-biological interactions; metalloenzymes |
| 26 | Coordination Chemistry | CPL5, CPL7 | Metal complexes | Synthesis, structure, catalytic applications |
| 27 | Crystal Growth | CPL5, CPL7 | Crystallography | Crystal growth mechanisms; XRD |
| 28 | Selected Topics in Inorganic Chemistry | CPL2, CPL5 | Current issues in inorganic chemistry | Literature review; thematic presentations |
| 29 | Computational Inorganic Chemistry | CPL6, CPL7 | Inorganic computation | DFT; molecular simulations |
| 30 | Equilibrium Thermodynamics | CPL5, CPL7 | Thermodynamics | Chemical equilibrium; advanced thermodynamics |
| 31 | Sol-Gel Chemistry | CPL5, CPL7 | Sol-gel materials | Synthesis and characterization of sol-gel materials |
| 32 | Bioenergy | CPL5, CPL6 | Renewable energy | Biomass; biofuels; fuel cells |
| 33 | Catalyst Design | CPL5, CPL6 | Catalysis | Design of homogeneous and heterogeneous catalysts |
| 34 | Corrosion Management | CPL5, CPL6 | Material corrosion | Corrosion mechanisms; cathodic protection |
| 35 | Polymer Functionalization | CPL5, CPL7 | Polymer chemistry | Functional polymer synthesis; applications |
| 36 | Molecular Spectroscopy | CPL5, CPL7 | Molecular spectroscopy | Rotational, vibrational, electronic spectroscopy |
| 37 | Selected Topics in Organic Chemistry | CPL2, CPL5 | Current issues in organic chemistry | Literature review; thematic presentations |
| 38 | Organic Analytical Chemistry | CPL5, CPL6 | Organic compound analysis | Structural identification; analytical methods |
| 39 | Natural Products Chemistry | CPL5, CPL6 | Natural products | Isolation; identification; derivative synthesis |
| 40 | Bioorganic Chemistry | CPL5, CPL6 | Bioorganic chemistry | Organic-biological interactions; chemical probes |
| 41 | Medicinal Chemistry | CPL5, CPL6 | Pharmaceuticals | Drug design; SAR; QSAR |
| 42 | Organic Synthesis | CPL5, CPL7 | Organic synthesis | Retrosynthetic strategy; stereoselective synthesis |
| 43 | Physical Organic Chemistry | CPL5, CPL7 | Physical organic chemistry | Kinetics; reaction mechanisms |
| 44 | Advanced Organic Chemistry | CPL5, CPL7 | Advanced organic chemistry | Complex reactions; modern methods |
| 45 | Ionic Liquids | CPL5, CPL6 | Ionic liquids | Synthesis; characterization; applications |
| 46 | Biomolecular Metabolism | CPL5, CPL6 | Metabolism | Metabolic pathways; energy regulation |
| 47 | Biochemistry Research | CPL3, CPL5 | Biochemistry research | Research methods; case studies |
| 48 | Biodegradation and Bioremediation | CPL5, CPL6 | Bioremediation | Mechanisms; environmental applications |
| 49 | Industrial Enzymes | CPL5, CPL6 | Enzyme applications | Enzyme production; industrial optimization |
| 50 | Biochemical Engineering | CPL5, CPL6 | Enzyme and metabolic engineering | Metabolic engineering; protein engineering |
| 51 | Biotechnology and Fermentation Technology | CPL5, CPL6 | Fermentation | Industrial fermentation; metabolite production |
| 52 | Physical Biochemistry | CPL5, CPL7 | Physical biochemistry | Biomolecular spectroscopy; protein dynamics |