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    support@collegese.com
    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Biotechnology

    Nmv University Virudhunagar
    Duration
    4 Years
    Biotechnology UG OFFLINE

    Duration

    4 Years

    Biotechnology

    Nmv University Virudhunagar
    Duration
    Apply

    Fees

    ₹3,50,000

    Placement

    95.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹15,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Biotechnology
    UG
    OFFLINE

    Fees

    ₹3,50,000

    Placement

    95.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹15,00,000

    Seats

    150

    Students

    250

    ApplyCollege

    Seats

    150

    Students

    250

    Curriculum

    Course Structure Across All 8 Semesters

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    IBIO101Introduction to Biology3-0-2-4-
    ICHEM101Chemistry Fundamentals3-0-2-4-
    IMATH101Mathematics I3-0-2-4-
    IPHYS101Physics Fundamentals3-0-2-4-
    IBIO102Cell Biology3-0-2-4BIO101
    ICHEM102Organic Chemistry3-0-2-4CHEM101
    IMATH102Calculus I3-0-2-4MATH101
    IPHYS102Thermodynamics3-0-2-4PHYS101
    IBIO103Genetics3-0-2-4BIO102
    ICHEM103Physical Chemistry3-0-2-4CHEM102
    IMATH103Statistics I3-0-2-4MATH102
    IPHYS103Optics and Waves3-0-2-4PHYS102
    IIBIO201Molecular Biology3-0-2-4BIO103
    IICHEM201Chemical Engineering Principles3-0-2-4CHEM103
    IIMATH201Linear Algebra3-0-2-4MATH103
    IIPHYS201Electromagnetism3-0-2-4PHYS103
    IIBIO202Microbiology3-0-2-4BIO103
    IICHEM202Biophysical Chemistry3-0-2-4CHEM201
    IIMATH202Probability and Distributions3-0-2-4MATH201
    IIPHYS202Nuclear Physics3-0-2-4PHYS201
    IIIBIO301Genomics and Proteomics3-0-2-4BIO201
    IIICHEM301Biochemical Engineering3-0-2-4CHEM202
    IIIMATH301Differential Equations3-0-2-4MATH202
    IIIPHYS301Quantum Mechanics3-0-2-4PHYS202
    IIIBIO302Immunology3-0-2-4BIO202
    IIICHEM302Instrumental Analysis3-0-2-4CHEM301
    IIIMATH302Mathematical Modeling3-0-2-4MATH301
    IIIPHYS302Advanced Optics3-0-2-4PHYS301
    IVBIO401Bioprocess Technology3-0-2-4BIO301
    IVCHEM401Environmental Chemistry3-0-2-4CHEM302
    IVMATH401Numerical Methods3-0-2-4MATH302
    IVPHYS401Advanced Physics Lab3-0-2-4PHYS302
    IVBIO402Pharmacology3-0-2-4BIO302
    IVCHEM402Chemistry of Natural Products3-0-2-4CHEM401
    IVMATH402Operations Research3-0-2-4MATH401
    VBIO501Biotechnology Applications3-0-2-4BIO401
    VCHEM501Advanced Biochemistry3-0-2-4CHEM402
    VMATH501Stochastic Processes3-0-2-4MATH402
    VBIO502Genetic Engineering3-0-2-4BIO402
    VCHEM502Pharmaceutical Chemistry3-0-2-4CHEM501
    VMATH502Data Analysis Techniques3-0-2-4MATH501
    VIBIO601Biotechnology in Agriculture3-0-2-4BIO501
    VICHEM601Bioorganic Chemistry3-0-2-4CHEM502
    VIMATH601Machine Learning in Biology3-0-2-4MATH502
    VIBIO602Drug Discovery and Development3-0-2-4BIO502
    VICHEM602Biophysics3-0-2-4CHEM601
    VIMATH602Statistical Inference3-0-2-4MATH601
    VIIBIO701Advanced Bioprocessing3-0-2-4BIO601
    VIICHEM701Computational Biology3-0-2-4CHEM602
    VIIBIO702Biomedical Devices3-0-2-4BIO602
    VIIIBIO801Capstone Project3-0-2-4BIO701, BIO702
    VIIICHEM801Research Methods3-0-2-4CHEM701

    Advanced Departmental Elective Courses:

    • Bioinformatics and Computational Biology: This course introduces students to the computational tools used in analyzing biological data, including sequence alignment algorithms, genome assembly techniques, and protein structure prediction methods.
    • Synthetic Biology: Students explore the design and construction of new biological parts, devices, and systems, focusing on engineering principles applied to living organisms.
    • Neurobiotechnology: This course examines how biotechnology can be used to understand and treat neurological disorders, including drug delivery mechanisms and brain stimulation techniques.
    • Regenerative Medicine: Focused on stem cell therapy and tissue engineering, this course explores applications in treating diseases and injuries through cellular regeneration.
    • Biochemical Engineering: Covers the principles of designing and operating bioreactors and fermentation systems for industrial production of biochemicals and pharmaceuticals.
    • Plant Biotechnology: Students learn about genetic modification techniques, plant breeding, and sustainable agriculture practices in modern biotechnology.
    • Microbial Biotechnology: This course focuses on the use of microorganisms in various industrial applications, including food production, pharmaceutical manufacturing, and environmental remediation.
    • Pharmaceutical Biotechnology: Introduces students to drug development processes, regulatory frameworks, and the role of biotechnology in creating novel therapeutics.
    • Environmental Biotechnology: Explores how biotechnology can address environmental challenges such as pollution control, waste management, and climate change mitigation.
    • Industrial Biotechnology: Focuses on applying biotechnological principles to industries like food processing, textiles, and biofuels.

    Project-Based Learning Philosophy:

    At Nmv University Virudhunagar, we emphasize project-based learning as a cornerstone of our educational approach. Projects are designed to bridge the gap between theory and practice, encouraging students to solve real-world problems using scientific methods and innovative thinking.

    The mandatory mini-projects in the second and third years allow students to explore specific areas of interest while developing essential research skills. These projects involve literature review, experimental design, data analysis, and presentation preparation. Students are encouraged to collaborate with peers from different disciplines, fostering interdisciplinary teamwork.

    For the final-year thesis or capstone project, students select a topic aligned with their specialization and work closely with faculty mentors. The scope of these projects is typically broad enough to require significant research but narrow enough to be manageable within the timeframe. Projects often result in publications, patents, or prototypes that can be showcased during career fairs and industry meetups.

    The evaluation criteria for these projects include technical proficiency, creativity, clarity of communication, adherence to ethical guidelines, and overall contribution to scientific knowledge. Regular feedback sessions with mentors ensure continuous improvement throughout the project lifecycle.