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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Agriculture

    Dayananda Sagar University, Bangalore
    Duration
    4 Years
    Agriculture UG OFFLINE

    Duration

    4 Years

    Agriculture

    Dayananda Sagar University, Bangalore
    Duration
    Apply

    Fees

    ₹3,50,000

    Placement

    93.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Agriculture
    UG
    OFFLINE

    Fees

    ₹3,50,000

    Placement

    93.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    120

    ApplyCollege

    Seats

    120

    Students

    120

    Curriculum

    Comprehensive Course Breakdown

    The Agriculture program at Dayananda Sagar University Bangalore is structured over 8 semesters, with a balanced mix of core subjects, departmental electives, science electives, and laboratory sessions designed to provide holistic learning experiences. Each semester carries a specific credit structure that includes lectures (L), tutorials (T), practicals (P), and credits (C). Pre-requisites are clearly indicated for each course to ensure smooth progression.

    SEMESTERCOURSE CODECOURSE TITLEL-T-P-CPREREQUISITES
    IAG101Introduction to Agriculture3-0-0-3-
    IAG102Biology for Agriculture3-0-0-3-
    IAG103Chemistry in Agriculture3-0-0-3-
    IAG104Physics for Agricultural Sciences3-0-0-3-
    IAG105Mathematics for Agriculture3-0-0-3-
    IAG106Introduction to Soil Science2-0-2-4-
    IAG107Basics of Crop Science2-0-2-4-
    IAG108Introduction to Farming Systems2-0-2-4-
    IAG109Computer Applications in Agriculture2-0-2-4-
    IAG110Workshop on Basic Farming Tools0-0-6-3-
    IIAG201Plant Physiology3-0-0-3AG102
    IIAG202Soil Fertility Management3-0-0-3AG106
    IIAG203Crop Protection and Pest Management3-0-0-3AG107
    IIAG204Agricultural Economics3-0-0-3-
    IIAG205Introduction to Biotechnology in Agriculture3-0-0-3-
    IIAG206Hydroponics and Controlled Environment Agriculture2-0-2-4-
    IIAG207Water Resources in Agriculture3-0-0-3-
    IIAG208Farm Machinery and Equipment2-0-2-4-
    IIAG209Environmental Science for Agriculture3-0-0-3-
    IIAG210Introduction to GIS and Remote Sensing2-0-2-4-
    IIIAG301Plant Breeding Techniques3-0-0-3AG201
    IIIAG302Soil Chemistry and Mineralogy3-0-0-3AG103
    IIIAG303Crop Physiology and Development3-0-0-3AG201
    IIIAG304Agricultural Biotechnology3-0-0-3AG205
    IIIAG305Irrigation Engineering3-0-0-3AG207
    IIIAG306Precision Agriculture3-0-0-3AG210
    IIIAG307Agricultural Policy and Governance3-0-0-3AG204
    IIIAG308Sustainable Farming Systems2-0-2-4-
    IIIAG309Data Analytics in Agriculture2-0-2-4AG105
    IIIAG310Agricultural Entrepreneurship2-0-2-4-
    IVAG401Advanced Plant Pathology3-0-0-3AG203
    IVAG402Nutrient Management in Crops3-0-0-3AG302
    IVAG403Climate Resilient Crop Varieties3-0-0-3AG301
    IVAG404Advanced Biotechnology Applications3-0-0-3AG304
    IVAG405Smart Farming Technologies3-0-0-3AG306
    IVAG406Soil Conservation and Land Use Planning3-0-0-3AG202
    IVAG407Agricultural Marketing and Supply Chain3-0-0-3AG204
    IVAG408Agri-Enterprise Development2-0-2-4AG310
    IVAG409Research Methodology in Agriculture2-0-2-4-
    IVAG410Field Project Planning0-0-6-3-
    VAG501Special Topics in Crop Science3-0-0-3AG301
    VAG502Bioinformatics in Agriculture3-0-0-3AG404
    VAG503Advanced Soil Science3-0-0-3AG302
    VAG504Pest Management Strategies3-0-0-3AG203
    VAG505Agri-Economics and Market Trends3-0-0-3AG407
    VAG506Advanced Irrigation Techniques3-0-0-3AG305
    VAG507Agro-Technology Innovation Lab2-0-2-4-
    VAG508Climate Change and Agriculture3-0-0-3-
    VAG509Agri-Finance and Risk Management2-0-2-4-
    VAG510Agro-Entrepreneurship Internship0-0-6-3-
    VIAG601Genetic Engineering in Crops3-0-0-3AG502
    VIAG602Soil Microbiology and Biochemistry3-0-0-3AG302
    VIAG603Advanced Crop Production Systems3-0-0-3AG501
    VIAG604Agro-Environmental Impact Assessment3-0-0-3AG508
    VIAG605Remote Sensing for Crop Monitoring3-0-0-3AG506
    VIAG606Data Mining in Agriculture2-0-2-4AG309
    VIAG607Agricultural Sustainability and Certification3-0-0-3-
    VIAG608Advanced Farm Management2-0-2-4-
    VIAG609Agri-Startups and Innovation2-0-2-4AG507
    VIAG610Industry Research Project0-0-6-3-
    VIIAG701Advanced Biotechnology Projects3-0-0-3AG601
    VIIAG702Research Paper Writing and Presentation2-0-2-4-
    VIIAG703Mini Research Project0-0-6-3-
    VIIAG704Thesis Proposal Development2-0-2-4-
    VIIAG705Agro-Consulting Practice2-0-2-4-
    VIIIAG801Final Year Capstone Project0-0-12-6-
    VIIIAG802Thesis Writing and Defense0-0-6-3-

    Detailed Course Descriptions

    Advanced Biotechnology Applications: This course explores the latest developments in biotechnology applied to agriculture, including genetic engineering, biofortification, and transgenic crops. Students will examine real-world case studies from leading institutions and understand the regulatory frameworks governing biotech products.

    Data Analytics in Agriculture: Focused on leveraging data-driven insights for agricultural decision-making, this course introduces students to statistical tools, machine learning algorithms, and big data platforms used in modern farming practices. Practical assignments involve analyzing yield data, weather patterns, and market trends.

    Agricultural Biotechnology: This foundational course covers the principles of biotechnology as applied to agriculture, including plant transformation techniques, marker-assisted selection, and molecular breeding methods. Emphasis is placed on ethical considerations and safety protocols in biotech applications.

    Climate Resilient Crop Varieties: Designed to equip students with knowledge about developing crop varieties that can withstand climate stressors such as drought, flooding, and heatwaves. The course includes hands-on lab work in controlled environments and field trials.

    Agro-Technology Innovation Lab: A specialized lab course where students design and implement innovative solutions for common agricultural challenges. Through collaborative projects, students learn to apply engineering principles to real-world problems.

    Precision Agriculture: This advanced course delves into the use of GPS, sensors, drones, and other technologies to optimize farming practices. Students gain experience with precision agriculture software and hardware tools used in commercial operations.

    Agro-Economics and Market Trends: An interdisciplinary approach combining economics and agricultural science, this course analyzes market dynamics, price volatility, supply chain management, and economic policies affecting agriculture globally.

    Bioinformatics in Agriculture: Students are introduced to computational tools used for analyzing genetic sequences, protein structures, and genomic data in crop improvement. This course bridges the gap between biology and computer science.

    Advanced Soil Science: A comprehensive study of soil composition, structure, and function, with focus on soil degradation, remediation techniques, and sustainable land use practices.

    Agro-Environmental Impact Assessment: This course evaluates environmental impacts associated with agricultural practices and explores mitigation strategies for reducing ecological footprints. Students engage in field assessments and policy analysis.

    Project-Based Learning Philosophy

    The Department of Agriculture at Dayananda Sagar University Bangalore places a strong emphasis on project-based learning as an integral part of the educational experience. This pedagogical approach ensures that students not only understand theoretical concepts but also apply them in practical scenarios, thereby enhancing their analytical and problem-solving abilities.

    Mini-projects are assigned throughout the program to reinforce classroom learning. These projects are typically completed in groups of 3-5 students and involve designing experiments, collecting data, analyzing results, and presenting findings. The evaluation criteria include project design, methodology, execution, and presentation quality.

    The final-year thesis or capstone project is a significant milestone that allows students to conduct independent research under the guidance of a faculty mentor. Students choose their topics based on personal interests, industry trends, or current research needs. The process involves literature review, experimental planning, data collection, analysis, and final documentation.

    Faculty mentors are selected based on expertise in the student's chosen area of interest. The department maintains an open-door policy for mentorship, allowing students to receive continuous support throughout their project journey. Regular progress meetings ensure timely completion and quality outcomes.