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    support@collegese.com
    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Civil Engineering

    Agrawan Heritage University, Agra
    Duration
    4 Years
    Civil Engineering UG OFFLINE

    Duration

    4 Years

    Civil Engineering

    Agrawan Heritage University, Agra
    Duration
    Apply

    Fees

    ₹3,50,000

    Placement

    94.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Civil Engineering
    UG
    OFFLINE

    Fees

    ₹3,50,000

    Placement

    94.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    1,200

    ApplyCollege

    Seats

    120

    Students

    1,200

    Curriculum

    Comprehensive Course Structure

    The Civil Engineering curriculum at Agrawan Heritage University Agra is meticulously structured to provide students with a robust foundation in core engineering principles, followed by specialization in advanced areas. The program spans eight semesters, with each semester comprising core courses, departmental electives, science electives, and laboratory sessions.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1CE 101Engineering Mathematics I3-1-0-4None
    1CE 102Basic Electrical Engineering3-1-0-4None
    1CE 103Engineering Physics3-1-0-4None
    1CE 104Introduction to Civil Engineering2-0-0-2None
    1CE 105Computer Programming3-0-2-4None
    1CE 106Workshop Practice0-0-3-1None
    1CE 107Engineering Graphics2-1-0-3None
    2CE 201Engineering Mathematics II3-1-0-4CE 101
    2CE 202Mechanics of Materials3-1-0-4CE 102
    2CE 203Strength of Materials3-1-0-4CE 102
    2CE 204Fluid Mechanics3-1-0-4CE 103
    2CE 205Surveying2-1-0-3CE 107
    2CE 206Engineering Materials3-1-0-4CE 103
    2CE 207Workshop Practice II0-0-3-1CE 106
    3CE 301Structural Analysis I3-1-0-4CE 202, CE 203
    3CE 302Soil Mechanics3-1-0-4CE 206
    3CE 303Hydraulics and Hydrology3-1-0-4CE 204
    3CE 304Transportation Engineering I3-1-0-4CE 204
    3CE 305Environmental Engineering I3-1-0-4CE 204
    3CE 306Construction Technology2-1-0-3CE 206
    3CE 307Geotechnical Engineering I3-1-0-4CE 206, CE 203
    4CE 401Structural Analysis II3-1-0-4CE 301
    4CE 402Design of Steel Structures3-1-0-4CE 301
    4CE 403Design of Concrete Structures3-1-0-4CE 301
    4CE 404Transportation Engineering II3-1-0-4CE 304
    4CE 405Environmental Engineering II3-1-0-4CE 305
    4CE 406Geotechnical Engineering II3-1-0-4CE 307
    4CE 407Water Resources Engineering3-1-0-4CE 303
    5CE 501Advanced Structural Design3-1-0-4CE 402, CE 403
    5CE 502Urban Planning and Development3-1-0-4CE 404
    5CE 503Sustainable Construction Materials3-1-0-4CE 206
    5CE 504Project Management3-1-0-4None
    5CE 505Research Methodology2-0-0-2None
    5CE 506Computer Applications in Civil Engineering3-1-0-4CE 105
    5CE 507Special Topics in Civil Engineering2-0-0-2None
    6CE 601Advanced Geotechnical Engineering3-1-0-4CE 506
    6CE 602Advanced Transportation Systems3-1-0-4CE 404
    6CE 603Smart Infrastructure and IoT Integration3-1-0-4CE 506
    6CE 604Construction Project Planning3-1-0-4CE 504
    6CE 605Environmental Impact Assessment3-1-0-4CE 505
    6CE 606Capstone Project I0-0-6-3None
    7CE 701Research and Innovation0-0-6-3CE 505
    7CE 702Capstone Project II0-0-6-3CE 606
    7CE 703Internship0-0-6-3None
    7CE 704Professional Ethics and Responsibility2-0-0-2None
    8CE 801Advanced Civil Engineering Projects0-0-6-3CE 702
    8CE 802Graduation Thesis0-0-6-3CE 701
    8CE 803Elective Courses (Departmental)3-0-0-3None
    8CE 804Elective Courses (Science)3-0-0-3None

    Advanced Departmental Elective Courses

    These courses are designed to deepen student understanding and provide specialized skills relevant to current industry needs:

    • Advanced Structural Dynamics: This course covers dynamic behavior of structures under seismic, wind, and other loads. Students learn advanced modeling techniques using software like SAP2000 and MATLAB.
    • Geospatial Technologies in Civil Engineering: Students explore GIS mapping, remote sensing, and GPS applications in infrastructure planning and monitoring.
    • Green Building Design: Focuses on sustainable construction practices, energy-efficient design, and LEED certification processes.
    • Digital Twin Technology: Introduces students to virtual replicas of physical assets used for real-time monitoring and predictive maintenance in civil engineering.
    • Smart Transportation Systems: Covers intelligent traffic management, vehicle-to-infrastructure communication, and autonomous vehicle integration.
    • Renewable Energy Integration in Infrastructure: Explores how solar, wind, and hydroelectric systems can be integrated into existing infrastructure networks.
    • Urban Resilience Planning: Examines strategies for making cities resilient to natural disasters and climate change impacts.
    • Construction Risk Management: Teaches risk identification, mitigation techniques, and insurance frameworks in large-scale construction projects.
    • BIM and Project Delivery: Introduces Building Information Modeling concepts and their role in modern project delivery models.
    • Advanced Concrete Technology: Covers advanced materials, admixtures, and performance optimization in concrete structures.

    Project-Based Learning Philosophy

    The Civil Engineering program at Agrawan Heritage University Agra embraces a project-based learning philosophy that encourages students to apply theoretical knowledge in real-world scenarios. The curriculum includes both mini-projects and capstone projects that span multiple semesters.

    Mini-projects are assigned during the third and fourth years, where students work in teams on specific engineering challenges under faculty supervision. These projects typically involve designing a small structure, conducting a feasibility study, or solving an environmental issue using civil engineering principles.

    The final-year capstone project is a comprehensive endeavor that integrates all aspects of the student's learning journey. Students select a topic related to their area of interest and work closely with faculty mentors to develop innovative solutions. The evaluation criteria include innovation, technical depth, presentation quality, and peer review outcomes.

    Project selection is based on student interests, availability of resources, and alignment with industry trends. Faculty members guide students through the process, helping them navigate research methodologies, data collection, analysis, and documentation.