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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Pharmacy

    NIMS University Jaipur
    Duration
    4 Years
    Pharmacy UG OFFLINE

    Duration

    4 Years

    Pharmacy

    NIMS University Jaipur
    Duration
    Apply

    Fees

    ₹12,00,000

    Placement

    92.0%

    Avg Package

    ₹7,50,000

    Highest Package

    ₹18,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Pharmacy
    UG
    OFFLINE

    Fees

    ₹12,00,000

    Placement

    92.0%

    Avg Package

    ₹7,50,000

    Highest Package

    ₹18,00,000

    Seats

    120

    Students

    120

    ApplyCollege

    Seats

    120

    Students

    120

    Curriculum

    Comprehensive Course Structure

    The Pharmacy curriculum at Nims University Jaipur is designed to provide a balanced mix of theoretical knowledge and practical skills. The program spans four years with a total of eight semesters, each carrying a specific set of core subjects, departmental electives, science electives, and laboratory sessions.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1P101Organic Chemistry I3-1-2-4None
    1P102Biochemistry3-1-2-4None
    1P103Mathematics I3-1-2-4None
    1P104Physics I3-1-2-4None
    1P105Pharmaceutical Chemistry I3-1-2-4P101, P102
    2P201Organic Chemistry II3-1-2-4P101
    2P202Pharmacognosy3-1-2-4P102, P105
    2P203Medicinal Chemistry I3-1-2-4P101, P105
    2P204Pharmaceutical Analysis I3-1-2-4P105
    2P205Pharmacy Practice I3-1-2-4P102, P105
    3P301Pharmacology I3-1-2-4P102, P203
    3P302Pharmacokinetics3-1-2-4P105, P203
    3P303Pharmaceutical Chemistry II3-1-2-4P203, P105
    3P304Pharmaceutical Technology I3-1-2-4P203, P205
    3P305Clinical Pharmacy I3-1-2-4P201, P203
    4P401Pharmacology II3-1-2-4P301
    4P402Pharmaceutical Technology II3-1-2-4P304
    4P403Regulatory Affairs3-1-2-4P301, P304
    4P404Pharmaceutical Marketing3-1-2-4P301, P304
    4P405Research Methodology3-1-2-4P202, P301
    5P501Drug Development and Formulation3-1-2-4P304, P402
    5P502Pharmaceutical Biotechnology3-1-2-4P203, P301
    5P503Advanced Pharmacology3-1-2-4P301, P302
    5P504Pharmacogenomics3-1-2-4P301, P304
    5P505Nanotechnology in Drug Delivery3-1-2-4P304, P402
    6P601Quality Assurance and Quality Control3-1-2-4P304, P402
    6P602Pharmaceutical Ethics3-1-2-4P301
    6P603Pharmacovigilance3-1-2-4P301, P304
    6P604Computational Drug Design3-1-2-4P203, P301
    6P605Industrial Training3-1-2-4All previous semesters
    7P701Mini Project I3-1-2-4P605
    7P702Mini Project II3-1-2-4P701
    8P801Final Year Thesis/Capstone Project3-1-2-4P702

    Detailed Departmental Elective Courses

    The department offers a wide range of advanced elective courses that allow students to specialize in areas of interest and gain deeper insights into the field of pharmacy. Here are some key offerings:

    • Computational Drug Design: This course introduces students to computational methods used in drug discovery, including molecular modeling, docking simulations, and virtual screening techniques. Students learn how to predict interactions between drugs and target proteins using software tools like AutoDock, Chimera, and MOE.
    • Pharmacogenomics: This elective explores the relationship between genetic variation and drug response. Students study how individual differences in genes affect metabolism, efficacy, and toxicity of pharmaceuticals. The course includes practical sessions on genotyping techniques and bioinformatics tools.
    • Nanotechnology in Drug Delivery: Focused on modern nanomedicine approaches, this course covers the design and application of nanoparticles for targeted drug delivery. Topics include liposomes, polymeric micelles, and dendrimers, with laboratory experiments demonstrating their formulation and characterization.
    • Pharmaceutical Biotechnology: This course integrates biotechnology principles with pharmaceutical applications, covering topics such as recombinant DNA technology, monoclonal antibodies, gene therapy, and biopharmaceuticals. Students engage in hands-on lab work involving protein purification and expression systems.
    • Regulatory Affairs in Pharmaceutical Industry: Designed to prepare students for careers in regulatory affairs, this course covers the structure of regulatory bodies like FDA, EMA, and CDSCO, along with guidelines for drug development, clinical trials, and post-market surveillance.
    • Pharmacovigilance: This elective teaches students about adverse event reporting systems, signal detection, risk management plans, and pharmacovigilance activities. Practical sessions involve case studies on drug safety monitoring and regulatory submissions.
    • Drug Development and Formulation: This course focuses on the entire process of bringing a new drug to market, from initial concept through preclinical testing, clinical trials, and commercialization. It includes discussions on formulation development, stability studies, and manufacturing scale-up.
    • Pharmaceutical Quality Assurance: Students learn about quality control processes, Good Manufacturing Practices (GMP), validation of analytical methods, and compliance with international standards. Laboratory sessions include testing for purity, potency, and stability of pharmaceutical products.
    • Personalized Medicine: This course explores how genomic data can be used to tailor treatments to individual patients. Topics include pharmacogenetics, precision oncology, and the role of biomarkers in therapy selection.
    • Green Chemistry in Pharmaceutical Synthesis: Emphasizing sustainability, this elective covers eco-friendly synthetic routes and green solvents used in pharmaceutical manufacturing. Students learn about reducing waste and energy consumption in drug synthesis processes.

    Project-Based Learning Philosophy

    The department at Nims University Jaipur places a strong emphasis on project-based learning as a means of fostering innovation, critical thinking, and practical skills. The curriculum includes both mini-projects and a final-year capstone project that allows students to apply their knowledge in real-world scenarios.

    Mini-projects begin in the seventh semester, where students are grouped into teams based on their interests and academic performance. Each team selects a research topic from a list provided by faculty mentors or proposes an original idea. Projects can range from developing a novel formulation to conducting a literature review on a specific therapeutic area.

    The final-year thesis/capstone project is the culmination of the student's academic journey. Students work under the supervision of a faculty mentor and are expected to conduct original research, write a comprehensive report, and present their findings at an internal symposium. The project must demonstrate critical thinking, scientific rigor, and practical relevance.

    Evaluation criteria for these projects include literature review quality, methodology soundness, data analysis accuracy, presentation clarity, and innovation level. Students are encouraged to publish their work in journals or present at conferences, further enhancing their academic profile and professional development.