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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    3 Years

    Civil

    Bishamber Sahai Diploma Engineering College
    Duration
    3 Years
    Civil DIPLOMA OFFLINE

    Duration

    3 Years

    Civil

    Bishamber Sahai Diploma Engineering College
    Duration
    Apply

    Fees

    ₹1,20,000

    Placement

    92.0%

    Avg Package

    ₹4,00,000

    Highest Package

    ₹8,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    3 Years
    Civil
    DIPLOMA
    OFFLINE

    Fees

    ₹1,20,000

    Placement

    92.0%

    Avg Package

    ₹4,00,000

    Highest Package

    ₹8,00,000

    Seats

    60

    Students

    600

    ApplyCollege

    Seats

    60

    Students

    600

    Curriculum

    Comprehensive Course Structure

    The Civil Engineering program at Bishamber Sahai Diploma Engineering College is structured over 6 semesters, ensuring a balanced progression from foundational science to core engineering principles and finally to advanced specializations.

    Semester-wise Breakdown

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1CIV101Engineering Mathematics I3-1-0-4-
    1CIV102Physics for Engineering3-1-0-4-
    1CIV103Chemistry for Engineering3-1-0-4-
    1CIV104Engineering Drawing & Graphics2-0-2-3-
    1CIV105Computer Applications in Engineering2-0-2-3-
    1CIV106Engineering Mechanics3-1-0-4-
    1CIV107Workshop Practice0-0-2-1-
    2CIV201Engineering Mathematics II3-1-0-4CIV101
    2CIV202Strength of Materials3-1-0-4-
    2CIV203Fluid Mechanics3-1-0-4-
    2CIV204Surveying3-1-0-4-
    2CIV205Construction Materials3-1-0-4-
    2CIV206Environmental Science & Engineering3-1-0-4-
    3CIV301Structural Analysis I3-1-0-4CIV202
    3CIV302Geotechnical Engineering3-1-0-4-
    3CIV303Transportation Engineering I3-1-0-4-
    3CIV304Hydraulic Engineering3-1-0-4-
    3CIV305Water Resources Engineering3-1-0-4-
    3CIV306Construction Technology3-1-0-4-
    4CIV401Structural Analysis II3-1-0-4CIV301
    4CIV402Design of Steel Structures3-1-0-4-
    4CIV403Transportation Engineering II3-1-0-4CIV303
    4CIV404Environmental Engineering3-1-0-4-
    4CIV405Project Management3-1-0-4-
    4CIV406Building Construction3-1-0-4-
    5CIV501Foundation Engineering3-1-0-4CIV302
    5CIV502Design of Concrete Structures3-1-0-4-
    5CIV503Urban Planning & Development3-1-0-4-
    5CIV504Smart Infrastructure3-1-0-4-
    5CIV505Advanced Geotechnical Engineering3-1-0-4CIV501
    5CIV506Research Methodology3-1-0-4-
    6CIV601Final Year Project / Thesis0-0-8-12-
    6CIV602Industrial Training0-0-4-3-

    Detailed Departmental Elective Courses

    The department offers a range of advanced elective courses designed to provide specialized knowledge and practical skills in various domains of civil engineering.

    Advanced Structural Analysis

    This course delves into complex structural behavior under dynamic loads, focusing on seismic analysis, finite element methods, and computer modeling. Students gain proficiency in using industry-standard software for structural design and evaluation.

    Smart Transportation Systems

    Students explore the integration of information technology in transportation infrastructure, including intelligent traffic control systems, vehicle-to-infrastructure communication, and data analytics for optimizing mobility solutions.

    Sustainable Construction Materials

    This course focuses on eco-friendly alternatives to conventional materials, examining recycled aggregates, bio-based composites, and carbon-neutral construction techniques. Students learn about life cycle assessment and green building certifications.

    Urban Water Management

    Designed for students interested in urban development, this course covers integrated water resource management, stormwater harvesting, wastewater treatment technologies, and resilient urban drainage systems.

    Bridge Engineering

    Focusing on bridge design and maintenance, this elective explores structural behavior of different bridge types, load analysis, fatigue considerations, and construction techniques for long-span structures.

    Construction Equipment & Management

    This course introduces students to various construction machinery, equipment selection criteria, project scheduling, and resource optimization strategies in large-scale construction projects.

    Earthquake Engineering

    Students study seismic behavior of structures, earthquake-resistant design principles, retrofitting techniques, and risk assessment methodologies for regions prone to seismic activity.

    Geospatial Technologies in Civil Engineering

    This elective covers GIS applications, remote sensing, and GPS technologies in civil engineering projects, emphasizing land use planning, infrastructure mapping, and environmental monitoring.

    Advanced Environmental Impact Assessment

    Focusing on regulatory frameworks and mitigation strategies, this course prepares students to conduct comprehensive environmental assessments for large-scale development projects and propose sustainable alternatives.

    Resilient Infrastructure Design

    This course addresses infrastructure resilience against natural disasters and climate change, incorporating adaptive design principles, risk modeling, and disaster recovery planning methodologies.

    Project-Based Learning Philosophy

    The department strongly advocates for project-based learning to ensure students develop practical skills and real-world problem-solving capabilities. This approach integrates classroom learning with hands-on experience through mandatory mini-projects and a comprehensive final-year thesis or capstone project.

    Mini-Projects Structure

    Mini-projects are introduced in the third semester and involve small-scale engineering problems that allow students to apply theoretical knowledge. These projects typically last 2-3 months and are evaluated based on design methodology, implementation, documentation, and presentation skills.

    Final-Year Thesis/Capstone Project

    The final-year project is a significant component of the program, requiring students to identify a relevant engineering challenge, propose innovative solutions, and present their findings in a formal report and oral defense. Projects are supervised by faculty members and often involve collaboration with industry partners.

    Project Selection and Mentorship

    Students select projects based on their interests and career goals, with guidance from faculty mentors who provide technical support and supervision throughout the process. The department maintains a database of project ideas and encourages interdisciplinary collaboration between students.