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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Biotechnology

    Maharishi Markandeshwar University, Ambala
    Duration
    4 Years
    Biotechnology UG OFFLINE

    Duration

    4 Years

    Biotechnology

    Maharishi Markandeshwar University, Ambala
    Duration
    Apply

    Fees

    ₹2,50,000

    Placement

    93.0%

    Avg Package

    ₹4,20,000

    Highest Package

    ₹8,50,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Biotechnology
    UG
    OFFLINE

    Fees

    ₹2,50,000

    Placement

    93.0%

    Avg Package

    ₹4,20,000

    Highest Package

    ₹8,50,000

    Seats

    120

    Students

    120

    ApplyCollege

    Seats

    120

    Students

    120

    Curriculum

    Comprehensive Course Structure

    The Biotechnology program at Maharishi Markandeshwar University Ambala is structured to provide a progressive learning experience that builds upon foundational knowledge and gradually introduces advanced concepts. The curriculum spans eight semesters, with each semester carefully designed to ensure comprehensive coverage of core biotechnology principles and specialized applications.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1BIO-101Basic Biology3-1-0-4-
    1BIO-102Chemistry for Biotechnology3-1-0-4-
    1MAT-101Mathematics I3-0-0-3-
    1PHY-101Physics for Biotechnology3-1-0-4-
    1BIO-103Introduction to Bioinformatics2-0-2-3BIO-101, BIO-102
    1BIO-104Biotechnology Laboratory I0-0-4-2-
    2BIO-201Molecular Biology3-1-0-4BIO-101, BIO-102
    2BIO-202Cell Biology3-1-0-4BIO-101
    2BIO-203Genetics and Genomics3-1-0-4BIO-101, BIO-102
    2MAT-201Mathematics II3-0-0-3MAT-101
    2BIO-204Biotechnology Laboratory II0-0-4-2BIO-104
    3BIO-301Microbiology3-1-0-4BIO-101, BIO-102
    3BIO-302Immunology3-1-0-4BIO-201, BIO-202
    3BIO-303Bioprocessing3-1-0-4BIO-201, BIO-202
    3BIO-304Pharmacology3-1-0-4BIO-201, BIO-202
    3BIO-305Biotechnology Laboratory III0-0-4-2BIO-204
    4BIO-401Genetic Engineering3-1-0-4BIO-201, BIO-301
    4BIO-402Proteomics and Bioinformatics3-1-0-4BIO-301, BIO-302
    4BIO-403Environmental Biotechnology3-1-0-4BIO-301, BIO-302
    4BIO-404Industrial Biotechnology3-1-0-4BIO-301, BIO-303
    4BIO-405Biotechnology Laboratory IV0-0-4-2BIO-305
    5BIO-501Medical Biotechnology3-1-0-4BIO-401, BIO-402
    5BIO-502Regenerative Medicine3-1-0-4BIO-401, BIO-402
    5BIO-503Pharmaceutical Biotechnology3-1-0-4BIO-401, BIO-402
    5BIO-504Marine Biotechnology3-1-0-4BIO-401, BIO-403
    5BIO-505Biotechnology Laboratory V0-0-4-2BIO-405
    6BIO-601Computational Biotechnology3-1-0-4BIO-501, BIO-502
    6BIO-602Agri-Biotechnology3-1-0-4BIO-501, BIO-503
    6BIO-603Biotech Ethics and Regulations2-1-0-3BIO-501, BIO-502
    6BIO-604Research Methodology2-1-0-3-
    6BIO-605Biotechnology Laboratory VI0-0-4-2BIO-505
    7BIO-701Advanced Topics in Biotechnology3-1-0-4BIO-601, BIO-602
    7BIO-702Mini Project I0-0-6-3BIO-605
    7BIO-703Mini Project II0-0-6-3BIO-702
    8BIO-801Final Year Thesis/Capstone Project0-0-12-6BIO-703
    8BIO-802Industrial Training0-0-8-4-

    Detailed Course Descriptions for Departmental Electives

    1. Genetic Engineering: This course provides an in-depth understanding of gene cloning, recombinant DNA technology, and gene expression systems. Students will learn about plasmid vectors, restriction enzymes, PCR techniques, and CRISPR-Cas9 genome editing tools.

    2. Proteomics and Bioinformatics: This advanced elective explores the analysis of protein structures, functions, and interactions using computational methods. Topics include database mining, sequence alignment, structural prediction, and functional annotation.

    3. Environmental Biotechnology: Students will study bioremediation techniques, biofuel production, wastewater treatment, and sustainable resource utilization. The course emphasizes practical applications in addressing environmental challenges.

    4. Industrial Biotechnology: This course covers fermentation processes, bioprocessing equipment, quality control, and regulatory compliance in industrial settings. It includes hands-on training in pilot-scale bioreactors and downstream processing.

    5. Medical Biotechnology: Focused on pharmaceutical applications, this elective delves into drug discovery, clinical trials, and therapeutic development. Students will gain insights into personalized medicine and targeted therapies.

    6. Regenerative Medicine: This specialized course explores stem cell biology, tissue engineering, and regenerative therapy techniques. It covers both theoretical aspects and practical applications in treating chronic conditions.

    7. Pharmaceutical Biotechnology: This elective focuses on drug development pipelines, formulation strategies, and regulatory frameworks for biopharmaceutical products. Students will learn about clinical development phases and manufacturing standards.

    8. Marine Biotechnology: This course examines the potential of marine organisms in pharmaceuticals, cosmetics, and industrial applications. It includes fieldwork in coastal areas and laboratory analysis of marine bioactive compounds.

    9. Computational Biotechnology: Students will learn to apply computational tools to solve biological problems. The course covers molecular modeling, network analysis, machine learning, and data visualization techniques.

    10. Agri-Biotechnology: This elective focuses on genetic modification of crops, pest resistance, and nutritional enhancement in agriculture. It includes field visits to research stations and lab work on plant transformation techniques.

    Project-Based Learning Philosophy

    Our department places a strong emphasis on project-based learning as a core pedagogical approach. This method encourages students to engage deeply with complex problems, fostering creativity, critical thinking, and collaboration skills essential for success in the biotechnology industry.

    The program incorporates two types of projects: mini-projects and final-year capstone projects. Mini-projects are undertaken during the seventh semester and involve working on specific research questions under faculty supervision. Students select projects based on their interests and career aspirations, ensuring relevance and engagement.

    Final-year thesis/capstone projects are comprehensive endeavors that integrate all aspects of the student's learning experience. These projects often result in publications, patents, or real-world applications. Faculty mentors guide students through the entire process, from initial concept development to final presentation and documentation.

    Evaluation criteria for these projects include scientific rigor, innovation, feasibility, ethical considerations, and communication skills. Students must demonstrate their ability to independently conduct research, analyze data, and propose solutions to complex problems within the biotechnology domain.