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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Biotechnology

    Om Sterling Global University Hisar
    Duration
    4 Years
    Biotechnology UG OFFLINE

    Duration

    4 Years

    Biotechnology

    Om Sterling Global University Hisar
    Duration
    Apply

    Fees

    ₹1,80,000

    Placement

    92.0%

    Avg Package

    ₹5,50,000

    Highest Package

    ₹8,50,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Biotechnology
    UG
    OFFLINE

    Fees

    ₹1,80,000

    Placement

    92.0%

    Avg Package

    ₹5,50,000

    Highest Package

    ₹8,50,000

    Seats

    300

    Students

    300

    ApplyCollege

    Seats

    300

    Students

    300

    Curriculum

    Biotechnology Curriculum Overview

    The Biotechnology curriculum at Om Sterling Global University Hisar is designed to provide a comprehensive foundation in biological sciences while integrating advanced technological applications. The program spans eight semesters, offering students a progressive learning experience that culminates in a capstone project.

    SemesterCourse CodeCourse TitleCredits (L-T-P-C)Prerequisites
    IBIO101Introduction to Biology3-0-0-3-
    ICHE101Chemistry I3-0-0-3-
    IMAT101Mathematics I4-0-0-4-
    IPHY101Physics I3-0-0-3-
    IBIO102Cell Biology3-0-0-3BIO101
    ICHE102Chemistry II3-0-0-3CHE101
    IMAT102Mathematics II4-0-0-4MAT101
    IPHY102Physics II3-0-0-3PHY101
    IBIO103Molecular Biology3-0-0-3BIO102
    ICHE103Organic Chemistry3-0-0-3CHE102
    IMAT103Statistics and Probability3-0-0-3MAT102
    IENG101English Communication2-0-0-2-
    IBIO104Genetics3-0-0-3BIO103
    ICHE104Physical Chemistry3-0-0-3CHE103
    IMAT104Calculus and Differential Equations4-0-0-4MAT103
    IPHY103Thermodynamics3-0-0-3PHY102
    IBIO105Microbiology3-0-0-3BIO104
    ICHE105Inorganic Chemistry3-0-0-3CHE104
    IMAT105Linear Algebra3-0-0-3MAT104
    IPHY104Optics and Waves3-0-0-3PHY103
    IIBIO201Biochemistry3-0-0-3BIO105
    IICHE201Chemical Engineering Principles3-0-0-3CHE105
    IIMAT201Discrete Mathematics3-0-0-3MAT105
    IIPHY201Electromagnetic Fields3-0-0-3PHY104
    IIBIO202Molecular Genetics3-0-0-3BIO105
    IICHE202Physical Chemistry II3-0-0-3CHE201
    IIMAT202Probability and Statistics3-0-0-3MAT201
    IIPHY202Modern Physics3-0-0-3PHY201
    IIBIO203Biotechnology Fundamentals3-0-0-3BIO201
    IICHE203Chemical Kinetics3-0-0-3CHE202
    IIMAT203Calculus and Vector Analysis4-0-0-4MAT202
    IIPHY203Quantum Mechanics3-0-0-3PHY202
    IIBIO204Cellular Biology3-0-0-3BIO201
    IICHE204Instrumental Analysis3-0-0-3CHE203
    IIMAT204Fourier Series and Transform3-0-0-3MAT203
    IIPHY204Nuclear Physics3-0-0-3PHY203
    IIIBIO301Recombinant DNA Technology3-0-0-3BIO203
    IIICHE301Bioprocess Engineering3-0-0-3CHE204
    IIIMAT301Numerical Methods3-0-0-3MAT204
    IIIPHY301Electronics and Instrumentation3-0-0-3PHY204
    IIIBIO302Protein Engineering3-0-0-3BIO301
    IIICHE302Bioreactors and Fermentation3-0-0-3CHE301
    IIIMAT302Partial Differential Equations3-0-0-3MAT301
    IIIPHY302Optical Fiber Communication3-0-0-3PHY301
    IIIBIO303Genetic Engineering3-0-0-3BIO302
    IIICHE303Pharmaceutical Analysis3-0-0-3CHE302
    IIIMAT303Complex Variables and Transform3-0-0-3MAT302
    IIIPHY303Lasers and Applications3-0-0-3PHY302
    IIIBIO304Biotechnology in Agriculture3-0-0-3BIO303
    IIICHE304Quality Control and Assurance3-0-0-3CHE303
    IIIMAT304Matrix Algebra and Numerical Solutions3-0-0-3MAT303
    IIIPHY304Electromagnetic Waves3-0-0-3PHY303
    IVBIO401Bioinformatics and Computational Biology3-0-0-3BIO304
    IVCHE401Bioprocessing Technology3-0-0-3CHE304
    IVMAT401Advanced Calculus3-0-0-3MAT304
    IVPHY401Medical Physics3-0-0-3PHY304
    IVBIO402Biotechnology in Industry3-0-0-3BIO401
    IVCHE402Industrial Biotechnology3-0-0-3CHE401
    IVMAT402Mathematical Modeling3-0-0-3MAT401
    IVPHY402Biomedical Instrumentation3-0-0-3PHY401
    IVBIO403Environmental Biotechnology3-0-0-3BIO402
    IVCHE403Sustainable Development3-0-0-3CHE402
    IVMAT403Operations Research3-0-0-3MAT402
    IVPHY403Nanostructures and Nanomaterials3-0-0-3PHY402
    IVBIO404Synthetic Biology3-0-0-3BIO403
    IVCHE404Biophysics3-0-0-3CHE403
    IVMAT404Control Systems3-0-0-3MAT403
    IVPHY404Biophysics and Biomedical Applications3-0-0-3PHY403
    VBIO501Advanced Molecular Biology3-0-0-3BIO404
    VCHE501Advanced Bioprocessing3-0-0-3CHE404
    VMAT501Stochastic Processes3-0-0-3MAT404
    VPHY501Biomedical Imaging3-0-0-3PHY404
    VBIO502Drug Discovery and Development3-0-0-3BIO501
    VCHE502Biotechnology in Pharmaceuticals3-0-0-3CHE501
    VMAT502Data Analytics and Machine Learning3-0-0-3MAT501
    VPHY502Medical Diagnostics3-0-0-3PHY501
    VBIO503Regenerative Medicine3-0-0-3BIO502
    VCHE503Biotechnology in Agriculture3-0-0-3CHE502
    VMAT503Statistical Inference3-0-0-3MAT502
    VPHY503Biomedical Engineering3-0-0-3PHY502
    VBIO504Genome Editing and Gene Therapy3-0-0-3BIO503
    VCHE504Biotechnology in Food Industry3-0-0-3CHE503
    VMAT504Signal Processing3-0-0-3MAT503
    VPHY504Biophysics and Molecular Interactions3-0-0-3PHY503
    VIBIO601Advanced Biotechnology Projects2-0-4-4BIO504
    VICHE601Industrial Biotechnology3-0-0-3CHE504
    VIMAT601Advanced Mathematical Methods3-0-0-3MAT504
    VIPHY601Biomedical Electronics3-0-0-3PHY504
    VIBIO602Research Methodology2-0-0-2BIO601
    VICHE602Biotechnology Entrepreneurship3-0-0-3CHE601
    VIMAT602Optimization Techniques3-0-0-3MAT601
    VIPHY602Medical Instrumentation3-0-0-3PHY601
    VIBIO603Biotechnology in Emerging Technologies3-0-0-3BIO602
    VICHE603Environmental Impact Assessment3-0-0-3CHE602
    VIMAT603Mathematical Biology3-0-0-3MAT602
    VIPHY603Biotechnology in Nanomedicine3-0-0-3PHY602
    VIBIO604Capstone Project2-0-6-6BIO603
    VICHE604Biotechnology in Waste Management3-0-0-3CHE603
    VIMAT604Applied Mathematics for Engineers3-0-0-3MAT603
    VIPHY604Biotechnology and Ethics2-0-0-2PHY603
    VIIBIO701Research Internship2-0-4-4BIO604
    VIICHE701Biotechnology in Clinical Trials3-0-0-3CHE604
    VIIMAT701Advanced Probability and Statistics3-0-0-3MAT604
    VIIPHY701Biotechnology in Drug Delivery Systems3-0-0-3PHY604
    VIIBIO702Advanced Bioinformatics3-0-0-3BIO701
    VIICHE702Biotechnology in Food and Nutrition3-0-0-3CHE701
    VIIMAT702Computational Modeling3-0-0-3MAT701
    VIIPHY702Biotechnology in Diagnostic Imaging3-0-0-3PHY701
    VIIBIO703Regenerative Medicine Technologies3-0-0-3BIO702
    VIICHE703Biotechnology in Environmental Remediation3-0-0-3CHE702
    VIIMAT703Machine Learning for Biologists3-0-0-3MAT702
    VIIPHY703Biotechnology in Personalized Medicine3-0-0-3PHY702
    VIIBIO704Advanced Gene Therapy3-0-0-3BIO703
    VIICHE704Biotechnology in Sustainable Agriculture3-0-0-3CHE703
    VIIMAT704Advanced Signal Processing3-0-0-3MAT703
    VIIPHY704Biotechnology in Nanoscience3-0-0-3PHY703
    VIIIBIO801Final Year Thesis Project2-0-6-6BIO704
    VIIICHE801Biotechnology Innovation and Entrepreneurship3-0-0-3CHE704
    VIIIMAT801Advanced Mathematical Optimization3-0-0-3MAT704
    VIIIPHY801Biotechnology in Healthcare Systems3-0-0-3PHY704
    VIIIBIO802Global Trends in Biotechnology2-0-0-2BIO801
    VIIICHE802Biotechnology Policy and Ethics3-0-0-3CHE801
    VIIIMAT802Advanced Computational Biology3-0-0-3MAT801
    VIIIPHY802Biotechnology in Future Technologies3-0-0-3PHY801
    VIIIBIO803Biotechnology in Public Health3-0-0-3BIO802
    VIIICHE803Biotechnology and Climate Change3-0-0-3CHE802
    VIIIMAT803Biostatistics and Data Mining3-0-0-3MAT802
    VIIIPHY803Biotechnology in Robotics3-0-0-3PHY802
    VIIIBIO804Biotechnology and Industry 4.03-0-0-3BIO803
    VIIICHE804Biotechnology in Smart Cities3-0-0-3CHE803
    VIIIMAT804Mathematical Modeling in Biotechnology3-0-0-3MAT803
    VIIIPHY804Biotechnology and Artificial Intelligence3-0-0-3PHY803

    Advanced Departmental Elective Courses

    The advanced departmental electives in the Biotechnology program are designed to provide students with specialized knowledge and skills relevant to cutting-edge research and industry applications.

    Recombinant DNA Technology

    This course explores the principles and techniques involved in creating recombinant DNA molecules. Students learn about gene cloning, vector construction, transformation methods, and expression systems. The course emphasizes both theoretical concepts and practical laboratory skills required for modern biotechnology applications.

    Protein Engineering

    The course focuses on understanding protein structure-function relationships and techniques used to modify proteins for desired properties. Students gain hands-on experience in site-directed mutagenesis, protein purification, and characterization methods.

    Bioinformatics and Computational Biology

    This course introduces students to computational tools and databases used in analyzing biological data. Topics include sequence alignment, phylogenetic analysis, structural bioinformatics, and genome annotation using various software packages.

    Genetic Engineering

    The course covers the fundamental principles of genetic engineering including gene isolation, modification, and transfer into host organisms. Emphasis is placed on understanding the mechanisms behind genetic modifications and their applications in biotechnology.

    Biotechnology in Agriculture

    This elective explores how biotechnology is applied to improve crop yield, disease resistance, and nutritional value. Students study transgenic crops, marker-assisted selection, and sustainable agricultural practices using biotechnological tools.

    Environmental Biotechnology

    The course addresses the use of biological processes to solve environmental problems such as pollution control, waste management, and ecosystem restoration. Students examine bioremediation techniques, biofuel production, and environmental monitoring methods.

    Synthetic Biology

    This course introduces students to the design and construction of biological systems using engineering principles. Topics include genetic circuits, metabolic pathway engineering, and synthetic biology applications in medicine and industry.

    Bioprocessing Technology

    The course covers large-scale production techniques used in the biotechnology industry. Students learn about fermentation processes, downstream processing, purification methods, and quality control measures.

    Drug Discovery and Development

    This course provides an overview of the drug discovery pipeline from target identification to clinical trials. Students explore medicinal chemistry, lead optimization, and regulatory requirements for pharmaceutical development.

    Regenerative Medicine

    The course focuses on stem cell biology, tissue engineering, and regenerative therapies. Students study therapeutic applications of stem cells and the latest advances in regenerative medicine technologies.

    Advanced Molecular Biology

    This advanced course delves deeper into molecular mechanisms involved in gene expression regulation, DNA repair, and cellular signaling pathways. Students gain insight into current research trends in molecular biology.

    Biotechnology Entrepreneurship

    The course teaches students about starting and managing biotech ventures. Topics include intellectual property management, venture capital funding, regulatory compliance, and business planning for biotechnology companies.

    Biotechnology in Food Industry

    This elective examines how biotechnology is used to enhance food safety, nutritional value, and shelf life. Students study genetically modified foods, probiotics, and food processing innovations.

    Biotechnology in Pharmaceuticals

    The course explores the application of biotechnology in pharmaceutical manufacturing. Students learn about drug development processes, quality assurance, and regulatory affairs in the pharmaceutical industry.

    Biotechnology and Ethics

    This course discusses ethical issues surrounding biotechnology research and applications. Topics include genetic modification, cloning, human experimentation, and responsible innovation practices.

    Project-Based Learning Philosophy

    The department places a strong emphasis on project-based learning as a core component of the educational experience. This approach encourages students to apply theoretical knowledge to real-world problems through collaborative research projects and capstone initiatives.

    The mandatory mini-projects begin in the second year, allowing students to explore their interests while developing technical skills and teamwork capabilities. These projects typically last 6-8 weeks and require students to work in small groups under faculty supervision.

    Final-year thesis/capstone projects are comprehensive endeavors that span 12-16 weeks. Students select a research topic aligned with their specialization area, identify a faculty mentor, and conduct original research or applied development work. The projects often lead to publications, patents, or industry collaborations.

    The evaluation criteria for these projects include:

    • Technical competency and execution
    • Research methodology and scientific rigor
    • Clarity of presentation and communication skills
    • Originality and innovation in approach
    • Impact on the field or industry application

    Students are encouraged to propose their own project ideas, but faculty mentors provide guidance throughout the process to ensure that projects meet academic standards and align with current research trends.