MS Chemistry

Programs Offered
Duration: 2 Years (4 Semesters)
Eligibility Criteria: BS(HONS)/MSc in relevant discipline with minimum CGPA 2.50/4.00 or equivalent (55%), UW Entry Test or GAT-General (Minimum 50% Marks) or GRE-General (Minimum 50 Percentile)
Total Credit Hours (CH): 32
The courses in MS Chemistry degree program are
categorized as:
Core Courses: 13 credit hours
Elective Courses: 13 credit hours
Thesis: 6 credit hours.
Semester 1 (MS Chemistry)
| Course Code | Course Title | Credit Hours |
| CHM-701 | Scientific Writing & Research Methods * | 3+0 |
| GE-164 | Understanding of Holy Quran-I | 0+1 |
| CHM-XXX | Elective – I | 3+0 |
| CHM-XXX | Elective – II | 3+0 |
| CHM-XXX | Elective – III | 3+0 |
| Total Credit Hours | 13 |
Semester 2 (MS Chemistry)
| Course Code | Course Title | Credit Hours |
| CHM-703 | Advanced Techniques in Chemistry * | 3+0 |
| GE-165 | Understanding of Holy Quran-II | 0+1 |
| CHM-XXX | Elective – IV | 3+0 |
| CHM-XXX | Elective – V | 3+0 |
| CHM-XXX | Elective – VI | 3+0 |
| Total Credit Hours | 13 |
Semester 3 and 4 (MS Chemistry)
| Course Code | Course Title | Credit Hours |
| CHM-799 | Thesis | 6 |
List of Elective Courses
| Course Code | Course Title | Credit Hours |
| CHM-731 | X-Ray Crystallography | 3+0 |
| CHM-732 | Bioinorganic Chemistry | 3+0 |
| CHM-733 | Inorganic Materials Chemistry | 3+0 |
| CHM-734 | Inorganic Electronic Spectroscopy | 3+0 |
| CHM-735 | Nanomaterials and Processing | 3+0 |
| CHM-736 | Physical Methods in Inorganic Chemistry | 3+0 |
| CHM-737 | Inorganic Materials for Biomedical Applications | 3+0 |
| CHM-738 | Advanced Inorganic Polymers | 3+0 |
| CHM-739 | Organo-Transition Metal Chemistry | 3+0 |
| CHM-741 | Computational Inorganic Chemistry | 3+0 |
| CHM-742 | Catalysis in Inorganic Chemistry | 3+0 |
| CHM-743 | Main Group Chemistry | 3+0 |
List of Elective Courses
| Course Code | Course Title | Credit Hours |
| CHM-744 | Lanthanide and Actinide Chemistry | 3+0 |
| CHM-751 | Advanced Heterocyclic Chemistry | 3+0 |
| CHM-752 | Advanced Mass Spectrometry | 3+0 |
| CHM-753 | Advanced Stereoselective Synthesis | 3+0 |
| CHM-754 | Chemistry of Isoprenoids and Steroids | 3+0 |
| CHM-755 | Chemistry of Organometallic Compounds | 3+0 |
| CHM-756 | Medicinal Chemistry | 3+0 |
| CHM-757 | Modern Name Reactions in Organic Synthesis | 3+0 |
| CHM-758 | Nuclear Magnetic Resonance in Organic Chemistry | 3+0 |
| CHM-759 | Special Topics in Organic Chemistry | 3+0 |
| CHM-761 | Special Organic Materials | 3+0 |
| CHM-762 | Pericyclic Reactions | 3+0 |
| CHM-763 | Cheminformatics | 3+0 |
| CHM-764 | Reactive Intermediates in Organic Chemistry | 3+0 |
| CHM-765 | Organic Synthesis – Retro Synthesis Approach | 3+0 |
| CHM-766 | Advanced Stereochemistry | 3+0 |
| CHM-771 | Advanced Chemical Kinetics | 3+0 |
| CHM-772 | Advanced Electrochemistry | 3+0 |
| CHM-773 | Advanced Molecular Spectroscopy | 3+0 |
| CHM-774 | Advanced Nuclear and Radiation Chemistry | 3+0 |
| CHM-775 | Advanced Photochemistry | 3+0 |
| CHM-776 | Advanced Quantum Chemistry | 3+0 |
| CHM-777 | Electroanalytical Methods and Techniques | 3+0 |
| CHM-778 | Physical Chemistry of Environment | 3+0 |
| CHM-779 | Surfactants and Colloidal Chemistry | 3+0 |
| CHM-781 | Advanced Solid State Chemistry | 3+0 |
| CHM-782 | Biophysical Chemistry | 3+0 |
| CHM-783 | Surface Chemistry | 3+0 |
| CHM-784 | Chemistry of Superconductors | 3+0 |
| CHM-785 | Advanced Composite Materials | 3+0 |
| CHM-786 | Physical Chemistry of High Polymers | 3+0 |
| CHM-787 | Computational Methods in Physical Chemistry | 3+0 |
| CHM-7XX | Advanced Artificial Intelligence in Chemistry | 3+0 |