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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Biotechnology

    PES University, Bangalore
    Duration
    4 Years
    Biotechnology UG OFFLINE

    Duration

    4 Years

    Biotechnology

    PES University, Bangalore
    Duration
    Apply

    Fees

    ₹1,45,500

    Placement

    97.0%

    Avg Package

    ₹4,70,000

    Highest Package

    ₹9,50,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Biotechnology
    UG
    OFFLINE

    Fees

    ₹1,45,500

    Placement

    97.0%

    Avg Package

    ₹4,70,000

    Highest Package

    ₹9,50,000

    Seats

    200

    Students

    200

    ApplyCollege

    Seats

    200

    Students

    200

    Curriculum

    Curriculum

    The Biotechnology curriculum at Pes University Bangalore is structured over eight semesters, offering a comprehensive and progressive educational experience. The program integrates foundational sciences with advanced biotechnological principles, ensuring students develop both theoretical knowledge and practical skills essential for success in the field.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1BIO101Introduction to Biology3-0-2-4-
    1CHE101Chemistry for Life Sciences3-0-2-4-
    1MAT101Calculus and Linear Algebra3-0-2-4-
    1PHY101Physics for Biotechnology3-0-2-4-
    1BIO102Biology Lab0-0-6-3-
    1CHE102Chemistry Lab0-0-6-3-
    1MAT102Mathematics Lab0-0-4-2-
    2BIO201Molecular Biology3-0-2-4BIO101, CHE101
    2BIO202Cell Biology3-0-2-4BIO101
    2CHE201Organic Chemistry3-0-2-4CHE101
    2BIO203Genetics3-0-2-4BIO101
    2BIO204Microbiology3-0-2-4BIO101
    2BIO205Biology Lab II0-0-6-3BIO102
    3BIO301Bioprocess Engineering3-0-2-4BIO201, BIO202
    3BIO302Immunology3-0-2-4BIO201
    3BIO303Biophysics3-0-2-4MAT101, PHY101
    3BIO304Enzyme Technology3-0-2-4CHE201
    3BIO305Genomics and Proteomics3-0-2-4BIO201, BIO203
    3BIO306Biotechnology Lab III0-0-6-3BIO205, BIO305
    4BIO401Drug Discovery and Development3-0-2-4BIO301, BIO302
    4BIO402Synthetic Biology3-0-2-4BIO201, BIO305
    4BIO403Environmental Biotechnology3-0-2-4BIO204, BIO301
    4BIO404Plant Biotechnology3-0-2-4BIO201, BIO301
    4BIO405Clinical Applications in Biotechnology3-0-2-4BIO202, BIO302
    4BIO406Biotechnology Lab IV0-0-6-3BIO306
    5BIO501Nanobiotechnology3-0-2-4BIO303, BIO305
    5BIO502Computational Biology3-0-2-4MAT101
    5BIO503Food Biotechnology3-0-2-4BIO204, BIO301
    5BIO504Marine Biotechnology3-0-2-4BIO204, BIO301
    5BIO505Bioinformatics3-0-2-4BIO305, MAT101
    5BIO506Biotechnology Lab V0-0-6-3BIO406
    6BIO601Advanced Topics in Biotechnology3-0-2-4BIO505, BIO501
    6BIO602Research Methodology3-0-2-4-
    6BIO603Capstone Project I0-0-12-6BIO506
    7BIO701Capstone Project II0-0-12-6BIO603
    7BIO702Internship0-0-12-6-
    8BIO801Advanced Research Project0-0-12-6BIO701
    8BIO802Industry Interaction Workshop0-0-4-2-

    Advanced departmental elective courses are offered to deepen students' expertise in specialized areas. These include:

    • Drug Discovery and Development: This course explores the entire drug development pipeline, from target identification to regulatory approval. Students learn about lead optimization, clinical trial design, and market analysis.
    • Synthetic Biology: Designed to introduce students to engineering principles applied to biological systems, this course covers genetic circuits, metabolic engineering, and synthetic gene networks.
    • Environmental Biotechnology: Focuses on using biotechnological approaches to address environmental challenges such as pollution control, waste management, and sustainable resource utilization.
    • Plant Biotechnology: Covers the application of molecular techniques in crop improvement, including genetic modification, tissue culture, and agronomic practices.
    • Clinical Applications in Biotechnology: Provides insights into diagnostics, therapeutics, and personalized medicine through case studies and real-world applications.
    • Nanobiotechnology: Integrates nanoscience with biology to develop novel tools for drug delivery, biosensors, and tissue engineering.
    • Computational Biology: Emphasizes the use of computational methods in analyzing biological data, including bioinformatics, machine learning, and systems biology.
    • Food Biotechnology: Explores the application of biotechnology in food processing, safety, nutrition, and quality control.
    • Marine Biotechnology: Investigates marine organisms and their potential applications in pharmaceuticals, cosmetics, and environmental remediation.
    • Bioinformatics: Combines biology with computer science to analyze large datasets and understand complex biological processes.

    The department's philosophy on project-based learning emphasizes hands-on experience, critical thinking, and innovation. Mini-projects are undertaken during the second and third years, allowing students to apply theoretical concepts in practical scenarios. The final-year thesis/capstone project is a comprehensive endeavor that integrates knowledge from all previous semesters.

    Students select projects based on their interests and career goals, with faculty mentors providing guidance throughout the process. Evaluation criteria include research methodology, data analysis, presentation skills, and innovation. This approach ensures that students develop both technical expertise and professional competencies necessary for success in academia or industry.