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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Civil Engineering

    Duke International University Namchi
    Duration
    4 Years
    Civil Engineering UG OFFLINE

    Duration

    4 Years

    Civil Engineering

    Duke International University Namchi
    Duration
    Apply

    Fees

    ₹12,00,000

    Placement

    93.5%

    Avg Package

    ₹4,20,000

    Highest Package

    ₹7,50,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Civil Engineering
    UG
    OFFLINE

    Fees

    ₹12,00,000

    Placement

    93.5%

    Avg Package

    ₹4,20,000

    Highest Package

    ₹7,50,000

    Seats

    120

    Students

    350

    ApplyCollege

    Seats

    120

    Students

    350

    Curriculum

    Curriculum Overview

    The Civil Engineering program at Duke International University Namchi is structured over eight semesters, offering a comprehensive academic journey that blends fundamental science with advanced engineering principles. The curriculum emphasizes hands-on learning, critical thinking, and innovation to prepare students for successful careers in civil engineering.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    ICE101Engineering Mathematics I3-1-0-4-
    ICE102Physics for Engineers3-1-0-4-
    ICE103Chemistry for Engineers3-1-0-4-
    ICE104Introduction to Civil Engineering2-0-0-2-
    ICE105Computer Programming3-0-2-4-
    ICE106Engineering Drawing & Graphics2-0-2-3-
    IICE201Engineering Mathematics II3-1-0-4CE101
    IICE202Strength of Materials3-1-0-4CE102, CE106
    IICE203Fluid Mechanics3-1-0-4CE102
    IICE204Surveying2-1-0-3CE106
    IICE205Basic Structural Analysis3-1-0-4CE201, CE202
    IIICE301Geotechnical Engineering I3-1-0-4CE202, CE203
    IIICE302Mechanics of Materials II3-1-0-4CE202
    IIICE303Hydrology & Hydraulics3-1-0-4CE203
    IIICE304Transportation Engineering I3-1-0-4CE204
    IIICE305Environmental Engineering I3-1-0-4CE203
    IVCE401Structural Analysis II3-1-0-4CE205
    IVCE402Geotechnical Engineering II3-1-0-4CE301
    IVCE403Water Resources Engineering3-1-0-4CE303
    IVCE404Transportation Engineering II3-1-0-4CE304
    IVCE405Environmental Engineering II3-1-0-4CE305
    VCE501Construction Materials3-1-0-4CE301
    VCE502Building Design & Planning3-1-0-4CE401
    VCE503Project Management3-1-0-4CE401, CE402
    VCE504Advanced Structural Design3-1-0-4CE401
    VCE505Sustainable Engineering Practices3-1-0-4CE305
    VICE601Smart Infrastructure Systems3-1-0-4CE502
    VICE602Urban Planning & Development3-1-0-4CE404
    VICE603Research Methodology3-1-0-4CE501
    VICE604Advanced Geotechnical Analysis3-1-0-4CE402
    VICE605Climate Resilience Planning3-1-0-4CE505
    VIICE701Independent Study Project2-0-6-8CE603
    VIICE702Capstone Design Project2-0-12-10All previous courses
    VIIICE801Final Year Thesis0-0-18-15CE701, CE702
    VIIICE802Industrial Internship0-0-12-6All previous courses

    Advanced Departmental Electives

    The department offers a range of advanced elective courses that allow students to explore specialized areas within civil engineering:

    • Seismic Design and Earthquake Engineering: This course delves into the principles of seismic analysis, design codes, and retrofitting strategies for structures in seismically active zones. Students learn to apply advanced modeling techniques using software like SAP2000 and ETABS.
    • Advanced Geotechnical Engineering: Focuses on complex soil mechanics problems, deep foundation systems, and ground improvement techniques. Emphasis is placed on field investigations, laboratory testing, and numerical modeling.
    • Smart Infrastructure Systems: Explores the integration of IoT sensors, data analytics, and AI in infrastructure management. Students work with real-world datasets to simulate smart city applications.
    • Urban Mobility & Transportation Planning: Covers traffic flow theory, demand modeling, public transit systems, and sustainable transportation solutions. Includes field visits to major cities for planning exercises.
    • Renewable Energy Integration in Civil Projects: Examines how solar, wind, and hydroelectric systems can be integrated into civil infrastructure to reduce carbon footprints and enhance energy efficiency.
    • Climate Adaptation Strategies: Analyzes the impact of climate change on infrastructure and develops adaptation strategies for resilient design. Topics include flood mitigation, drought management, and heat stress reduction.
    • Construction Project Management: Focuses on project planning, scheduling, budgeting, risk assessment, and quality control. Students gain experience with industry-standard tools like Primavera P6 and MS Project.
    • Sustainable Building Materials: Explores innovative materials such as bio-composites, recycled aggregates, and carbon-negative concretes. Includes lab experiments to evaluate material properties and performance under various conditions.
    • Environmental Impact Assessment: Teaches students how to conduct comprehensive environmental assessments for infrastructure projects. Covers regulatory compliance, stakeholder engagement, and mitigation strategies.
    • Advanced Structural Analysis Using Finite Element Methods: Provides in-depth training in finite element modeling using ANSYS, ABAQUS, and other commercial software. Students solve complex structural problems involving non-linear behavior and dynamic loads.

    Project-Based Learning Philosophy

    The Civil Engineering program at Duke International University Namchi places significant emphasis on project-based learning to ensure that students gain practical experience alongside theoretical knowledge. Projects are designed to mirror real-world engineering challenges and encourage teamwork, innovation, and problem-solving skills.

    Mini-projects are introduced in the second year, where students work in teams to design small-scale structures or analyze real-world scenarios. These projects are evaluated based on creativity, technical accuracy, report quality, and presentation skills. Faculty mentors provide continuous guidance throughout the process.

    The final-year capstone project is a comprehensive endeavor that spans multiple semesters. Students select a relevant topic related to their specialization, collaborate with industry partners, and deliver a professionally documented solution. The project is supervised by a faculty advisor and reviewed by an external panel of experts.

    Capstone Project Structure

    The final-year capstone project begins in the seventh semester, where students identify a problem or opportunity within civil engineering. They submit a proposal outlining their approach, methodology, and expected outcomes. After approval, they proceed with research, design, prototyping, and testing phases.

    Throughout the process, students must submit regular progress reports, attend milestone meetings, and participate in workshops conducted by faculty and industry experts. The final deliverable includes a detailed technical report, oral presentation, and demonstration of their solution.

    The evaluation criteria for the capstone project include innovation, technical depth, teamwork, communication skills, and alignment with industry standards. Successful projects often result in patents, publications, or opportunities for further research or entrepreneurship.