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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Biotechnology

    Rungta International Skills University Durg
    Duration
    4 Years
    Biotechnology UG OFFLINE

    Duration

    4 Years

    Biotechnology

    Rungta International Skills University Durg
    Duration
    Apply

    Fees

    ₹3,50,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Biotechnology
    UG
    OFFLINE

    Fees

    ₹3,50,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    Seats

    100

    Students

    250

    ApplyCollege

    Seats

    100

    Students

    250

    Curriculum

    Comprehensive Course Structure

    SemesterCourse CodeCourse TitleCredit (L-T-P-C)Prerequisites
    1BIO101Introduction to Biology3-0-0-3-
    1BIO102Chemistry for Biotechnology3-0-0-3-
    1BIO103Physics for Biotechnology3-0-0-3-
    1BIO104Mathematics for Biotechnology3-0-0-3-
    1BIO105Basic Laboratory Techniques0-0-3-1-
    2BIO201Cell Biology3-0-0-3BIO101
    2BIO202Genetics3-0-0-3BIO101
    2BIO203Microbiology3-0-0-3BIO101
    2BIO204Organic Chemistry3-0-0-3BIO102
    2BIO205Biostatistics3-0-0-3BIO104
    2BIO206Lab: Cell Biology & Genetics0-0-3-1BIO101, BIO102
    3BIO301Molecular Biology3-0-0-3BIO201, BIO202
    3BIO302Bioprocess Engineering3-0-0-3BIO201, BIO204
    3BIO303Immunology3-0-0-3BIO201
    3BIO304Protein Chemistry3-0-0-3BIO204
    3BIO305Advanced Biochemistry3-0-0-3BIO204
    3BIO306Lab: Molecular Biology & Biochemistry0-0-3-1BIO301, BIO304
    4BIO401Genetic Engineering3-0-0-3BIO301
    4BIO402Biopharmaceuticals3-0-0-3BIO302
    4BIO403Environmental Biotechnology3-0-0-3BIO203
    4BIO404Synthetic Biology3-0-0-3BIO301
    4BIO405Research Methodology3-0-0-3BIO205
    4BIO406Lab: Advanced Biotechnology0-0-3-1BIO301, BIO302
    5BIO501Biotechnology Applications3-0-0-3BIO401, BIO402
    5BIO502Biotechnology in Agriculture3-0-0-3BIO301, BIO203
    5BIO503Industrial Biotechnology3-0-0-3BIO302
    5BIO504Biotechnology Entrepreneurship3-0-0-3BIO401, BIO402
    5BIO505Biotechnology Ethics3-0-0-3BIO401
    5BIO506Lab: Biotechnology Applications0-0-3-1BIO501, BIO502
    6BIO601Capstone Project I0-0-6-3BIO501, BIO502
    6BIO602Capstone Project II0-0-6-3BIO601
    6BIO603Advanced Research Seminar3-0-0-3BIO505
    6BIO604Internship0-0-0-6BIO501, BIO502
    6BIO605Project Management3-0-0-3BIO501
    6BIO606Lab: Capstone & Internship0-0-3-1BIO601, BIO602
    7BIO701Advanced Biotechnology3-0-0-3BIO601
    7BIO702Biotechnology in Medicine3-0-0-3BIO301, BIO302
    7BIO703Biotechnology in Food Industry3-0-0-3BIO203
    7BIO704Biotechnology in Environment3-0-0-3BIO303
    7BIO705Biotechnology in Agriculture3-0-0-3BIO203
    7BIO706Lab: Advanced Applications0-0-3-1BIO701, BIO702
    8BIO801Final Year Thesis0-0-6-6BIO701, BIO702
    8BIO802Thesis Defense0-0-0-3BIO801
    8BIO803Professional Development3-0-0-3BIO701
    8BIO804Final Project Presentation0-0-3-3BIO801
    8BIO805Internship Report0-0-0-3BIO604
    8BIO806Lab: Final Thesis0-0-3-1BIO801

    Advanced Departmental Elective Courses

    Advanced departmental elective courses in the Biotechnology program at Rungta International Skills University Durg are designed to provide students with specialized knowledge and skills in specific areas of biotechnology. These courses are offered in the later semesters and are intended to deepen students' understanding of advanced concepts and practical applications.

    Genetic Engineering

    This course explores the principles and techniques of genetic engineering, including gene cloning, recombinant DNA technology, and gene therapy. Students learn about gene editing tools such as CRISPR-Cas9 and their applications in agriculture, medicine, and biotechnology. The course emphasizes both theoretical understanding and practical laboratory techniques, preparing students for research and development roles in genetic engineering.

    Biopharmaceuticals

    This course covers the development, production, and regulation of pharmaceutical products using biotechnology. Students study drug discovery, biomanufacturing processes, quality control, and regulatory affairs. The course includes case studies of successful biopharmaceutical products and their development pipelines, providing students with insights into the industry's challenges and opportunities.

    Environmental Biotechnology

    This course focuses on the application of biotechnology in environmental sustainability and pollution control. Students explore bioremediation techniques, biofuel production, waste management, and sustainable agriculture. The course emphasizes the development of eco-friendly solutions to environmental challenges, preparing students for careers in environmental biotechnology.

    Synthetic Biology

    This course introduces students to the design and construction of new biological parts, devices, and systems. Students learn about bioinformatics, computational modeling, and the design of synthetic biological circuits. The course combines principles of biology, engineering, and computer science to create novel biological functions, preparing students for careers in synthetic biology.

    Bioinformatics

    This course integrates biology with computer science and statistics to analyze biological data. Students study sequence analysis, protein structure prediction, genomics, and systems biology. The course emphasizes the use of programming languages, database management, and data analysis tools to solve biological problems.

    Microbial Biotechnology

    This course focuses on the application of microorganisms in industrial processes and biotechnology. Students study fermentation technology, enzyme production, and the use of microbes in bioremediation and biofuel production. The course includes laboratory sessions on microbial cultivation and characterization, preparing students for careers in microbial biotechnology.

    Immunotechnology

    This course deals with the development of immunological therapies and diagnostics. Students study vaccine development, monoclonal antibodies, immunotherapy, and diagnostic techniques. The course includes laboratory sessions on immunoassays and immunological testing, preparing students for careers in immunotechnology.

    Tissue Engineering

    This course involves the development of artificial tissues and organs using biological and engineering principles. Students study stem cell therapy, biomaterials, and regenerative medicine. The course includes laboratory sessions on tissue culture and engineering, preparing students for careers in tissue engineering.

    Food Biotechnology

    This course explores the application of biotechnology in food production, safety, and quality improvement. Students study food fermentation, food preservation, and the development of functional foods. The course emphasizes the development of innovative food products using biotechnology, preparing students for careers in food biotechnology.

    Nanobiotechnology

    This course focuses on the application of nanotechnology in biological systems. Students study nanomaterials, drug delivery systems, biosensors, and nanomedicine. The course includes laboratory sessions on nanomaterial synthesis and characterization, preparing students for careers in nanobiotechnology.

    Project-Based Learning Philosophy

    The department's philosophy on project-based learning is centered around the principle that students learn best through hands-on experience and real-world problem-solving. This approach integrates theoretical knowledge with practical application, ensuring that students can apply their learning to actual challenges in the field of biotechnology. The program emphasizes the development of critical thinking, collaboration, and innovation through project-based learning.

    Mini-Projects

    Mini-projects are introduced in the third and fourth semesters, providing students with opportunities to work on small-scale research or development tasks. These projects are typically completed in groups and are supervised by faculty members. Students are encouraged to choose projects that align with their interests and career goals. The projects are evaluated based on the quality of research, technical execution, and presentation skills. Mini-projects help students develop essential skills such as research methodology, data analysis, and scientific writing.

    Final-Year Thesis/Capstone Project

    The final-year thesis or capstone project is a comprehensive research endeavor that students undertake in their final semester. This project allows students to demonstrate their mastery of the subject and contribute to the field of biotechnology. Students work under the guidance of faculty mentors to select a research topic, conduct experiments, analyze data, and write a detailed thesis. The project includes laboratory work, literature review, and presentation of findings. Students are expected to present their work to a panel of faculty members and industry experts, demonstrating their ability to conduct independent research and communicate their findings effectively.

    Project Selection and Mentorship

    Students are encouraged to select projects that align with their interests and career aspirations. The department provides a list of potential research topics and faculty mentors for each specialization. Students can also propose their own project ideas, subject to approval by the faculty mentor and department head. The mentorship process involves regular meetings, progress updates, and guidance on research methodology and technical skills. Faculty mentors play a crucial role in guiding students through the research process, ensuring that they develop the necessary skills and knowledge to succeed in their projects.