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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Agriculture

    PDM University Haryana
    Duration
    4 Years
    Agriculture UG OFFLINE

    Duration

    4 Years

    Agriculture

    PDM University Haryana
    Duration
    Apply

    Fees

    ₹3,50,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Agriculture
    UG
    OFFLINE

    Fees

    ₹3,50,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    Seats

    250

    Students

    250

    ApplyCollege

    Seats

    250

    Students

    250

    Curriculum

    Comprehensive Course Structure Overview

    The Agriculture program at Pdm University Haryana is structured over 8 semesters, with a balanced mix of foundational science courses, core engineering subjects, departmental electives, and practical laboratory sessions. The curriculum is designed to provide students with both theoretical knowledge and real-world application skills essential for a successful career in modern agriculture.

    SemesterCourse CodeCourse TitleCredit (L-T-P-C)Prerequisites
    1AG-101Introduction to Agricultural Science3-0-0-3-
    1AG-102Basic Biology and Chemistry4-0-0-4-
    1AG-103Physics for Agriculture3-0-0-3-
    1AG-104Mathematics for Agricultural Sciences3-0-0-3-
    1AG-105Environmental Science3-0-0-3-
    1AG-106Laboratory Skills in Agriculture0-0-4-2-
    2AG-201Soil Science and Management3-0-0-3AG-102
    2AG-202Plant Physiology3-0-0-3AG-102
    2AG-203Agro-Ecology and Ecosystems3-0-0-3-
    2AG-204Agricultural Economics3-0-0-3-
    2AG-205Introduction to Farm Machinery3-0-0-3-
    2AG-206Field Crop Production Techniques0-0-4-2AG-105
    3AG-301Irrigation and Water Resources Management3-0-0-3AG-201
    3AG-302Crop Protection and Pests Management3-0-0-3AG-202
    3AG-303Agricultural Engineering Principles3-0-0-3AG-103
    3AG-304Data Analytics in Agriculture3-0-0-3AG-104
    3AG-305Agricultural Policy and Extension3-0-0-3-
    3AG-306Laboratory in Crop Management0-0-4-2AG-205
    4AG-401Remote Sensing and GIS in Agriculture3-0-0-3AG-304
    4AG-402Biotechnology in Crop Improvement3-0-0-3AG-202
    4AG-403Agricultural Economics and Market Analysis3-0-0-3AG-204
    4AG-404Climate-Smart Agriculture3-0-0-3-
    4AG-405Food Processing and Preservation3-0-0-3AG-202
    4AG-406Laboratory in Biotechnology0-0-4-2AG-202
    5AG-501Agricultural Marketing and Supply Chain3-0-0-3AG-204
    5AG-502Agri-Tech Innovation and Entrepreneurship3-0-0-3-
    5AG-503Advanced Crop Physiology3-0-0-3AG-202
    5AG-504Digital Agriculture and IoT Applications3-0-0-3AG-304
    5AG-505Agricultural Risk Management3-0-0-3-
    5AG-506Laboratory in Digital Agriculture0-0-4-2AG-404
    6AG-601Agri-Business Strategy and Innovation3-0-0-3AG-501
    6AG-602Agricultural Data Science3-0-0-3AG-304
    6AG-603Sustainable Agriculture Practices3-0-0-3-
    6AG-604Research Methodology and Project Design3-0-0-3-
    6AG-605Laboratory in Sustainable Agriculture0-0-4-2-
    7AG-701Advanced Research Project0-0-8-6AG-604
    7AG-702Internship in Agriculture Sector0-0-8-6-
    8AG-801Final Year Thesis/Capstone Project0-0-12-10AG-701

    Detailed Departmental Elective Courses

    The following departmental elective courses are offered in the final years of the program:

    • Smart Irrigation Systems: This course explores modern irrigation techniques including drip, sprinkler, and micro-sprinkler systems, focusing on water efficiency and automation. Students learn to design and implement smart irrigation solutions using sensors, controllers, and data analytics tools.
    • Bioinformatics for Crop Improvement: Combines computational biology with plant genetics to analyze genomic data for crop breeding. Topics include genome sequencing, gene expression analysis, and marker-assisted selection techniques.
    • Agronomic Modeling and Simulation: Utilizes mathematical models to predict crop growth, yield potential, and environmental impacts. Students work with simulation software like DSSAT and APSIM to understand field-level dynamics.
    • Precision Agriculture Technologies: Covers GPS-guided farming equipment, UAV-based crop monitoring, and remote sensing applications in agriculture. The course emphasizes data interpretation and decision-making frameworks for farm management.
    • Post-Harvest Handling and Storage: Focuses on reducing food loss through proper storage techniques, packaging innovations, and cold chain logistics. Students explore technologies like modified atmosphere packaging and controlled environment storage.
    • Organic Farming Systems: Explores organic production methods, certification processes, and market trends in organic agriculture. Includes hands-on sessions on composting, natural pest control, and sustainable soil management.
    • Crop Insurance and Risk Mitigation: Teaches the principles of agricultural risk management, including crop insurance products, weather-based derivatives, and government support schemes for farmers.
    • Water Conservation in Agriculture: Addresses water scarcity issues through rainwater harvesting, watershed management, and efficient irrigation practices. Students gain experience with field experiments and policy analysis.
    • Agricultural Economics and Policy Analysis: Analyzes market structures, trade policies, and rural development initiatives affecting agricultural productivity. Uses econometric models to evaluate policy impact and recommend improvements.
    • Agri-Tech Startup Ecosystem: Introduces students to entrepreneurship in agriculture by analyzing startup success stories, funding sources, and innovation hubs globally. Includes guest lectures from successful agri-tech founders.

    Project-Based Learning Framework

    Project-based learning is central to the Agriculture program at Pdm University Haryana. Students engage in a structured progression of mini-projects followed by a comprehensive final-year thesis or capstone project.

    Mini-projects begin in the second year, where students are assigned tasks such as designing a small-scale irrigation system, analyzing soil nutrient levels, or conducting a field survey on crop diseases. These projects help build foundational skills in data collection, analysis, and reporting.

    The third-year capstone project involves a more substantial research endeavor under faculty supervision. Students select topics related to sustainable agriculture, climate adaptation, or innovation in agri-tech. Projects may include developing a prototype for smart farming equipment, conducting an economic viability study of a new crop variety, or implementing a precision agriculture solution on a local farm.

    Final-year thesis projects are typically more independent and research-intensive. Students choose their own topic within the scope of agricultural science or engineering, working closely with a faculty advisor to design experiments, gather data, and present findings. The final submission includes a written report, presentation, and demonstration of practical applications.