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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Bachelor of Technology in Engineering

    Isbm University Gariyaband
    Duration
    4 Years
    Engineering UG OFFLINE

    Duration

    4 Years

    Bachelor of Technology in Engineering

    Isbm University Gariyaband
    Duration
    Apply

    Fees

    ₹12,00,000

    Placement

    93.5%

    Avg Package

    ₹5,20,000

    Highest Package

    ₹9,50,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Engineering
    UG
    OFFLINE

    Fees

    ₹12,00,000

    Placement

    93.5%

    Avg Package

    ₹5,20,000

    Highest Package

    ₹9,50,000

    Seats

    350

    Students

    350

    ApplyCollege

    Seats

    350

    Students

    350

    Curriculum

    Curriculum Overview

    The Engineering program at Isbm University Gariyaband is meticulously structured to provide a comprehensive foundation in core sciences, followed by progressive specialization and real-world application. The curriculum spans four years and includes a combination of core courses, departmental electives, science electives, and practical laboratory sessions designed to cultivate both theoretical understanding and hands-on expertise.

    Year-wise Course Structure
    SemesterCourse CodeCourse TitleCredit (L-T-P-C)Prerequisites
    1ENG101Engineering Mathematics I3-1-0-4-
    1ENG102Engineering Physics I3-1-0-4-
    1ENG103Basic Electrical Engineering3-1-0-4-
    1ENG104Introduction to Programming2-0-2-3-
    1ENG105Engineering Graphics & Design2-0-2-3-
    1ENG106Chemistry for Engineers3-1-0-4-
    2ENG201Engineering Mathematics II3-1-0-4ENG101
    2ENG202Engineering Physics II3-1-0-4ENG102
    2ENG203Digital Logic & Computer Organization3-1-0-4ENG103
    2ENG204Data Structures and Algorithms3-1-0-4ENG104
    2ENG205Engineering Mechanics3-1-0-4-
    2ENG206Environmental Science3-1-0-4-
    3ENG301Statistics and Probability3-1-0-4ENG201
    3ENG302Signals and Systems3-1-0-4ENG202
    3ENG303Object-Oriented Programming3-1-0-4ENG204
    3ENG304Thermodynamics3-1-0-4ENG205
    3ENG305Control Systems3-1-0-4-
    3ENG306Materials Science3-1-0-4ENG106
    4ENG401Advanced Mathematics3-1-0-4ENG301
    4ENG402Digital Signal Processing3-1-0-4ENG302
    4ENG403Software Engineering3-1-0-4ENG303
    4ENG404Electrical Machines3-1-0-4ENG203
    4ENG405Operations Research3-1-0-4ENG301
    4ENG406Advanced Control Theory3-1-0-4ENG305
    5ENG501Industrial Engineering3-1-0-4-
    5ENG502Machine Learning3-1-0-4ENG303
    5ENG503Power Electronics3-1-0-4ENG404
    5ENG504Renewable Energy Systems3-1-0-4-
    5ENG505Quality Control & Management3-1-0-4-
    5ENG506Advanced Materials3-1-0-4ENG306
    6ENG601Embedded Systems3-1-0-4ENG502
    6ENG602Cybersecurity Fundamentals3-1-0-4-
    6ENG603Automation & Robotics3-1-0-4-
    6ENG604Advanced Power Systems3-1-0-4ENG503
    6ENG605Project Management3-1-0-4-
    6ENG606Sustainable Engineering Practices3-1-0-4-
    7ENG701Research Methodology3-1-0-4-
    7ENG702Capstone Project I2-0-2-3-
    7ENG703Special Topics in Engineering3-1-0-4-
    7ENG704Advanced Data Analytics3-1-0-4ENG502
    7ENG705Human Factors in Engineering3-1-0-4-
    7ENG706Professional Ethics & Governance2-1-0-3-
    8ENG801Capstone Project II4-0-0-4ENG702
    8ENG802Internship & Industry Exposure2-0-0-2-
    8ENG803Final Research Paper4-0-0-4-
    8ENG804Ethics in Engineering Practice2-1-0-3-
    8ENG805Entrepreneurship & Innovation2-1-0-3-
    8ENG806Final Review Session2-0-0-2-

    Advanced Departmental Elective Courses

    Departmental electives are designed to allow students to explore specialized areas within their engineering discipline. Each course is tailored to meet the growing demand for advanced skills and knowledge in specific fields.

    Machine Learning

    This course introduces students to machine learning concepts, algorithms, and applications. Topics include supervised and unsupervised learning, neural networks, deep learning frameworks, and reinforcement learning. Students learn to implement models using Python and TensorFlow while working on real-world datasets.

    Cybersecurity Fundamentals

    Students gain an understanding of cybersecurity principles, including encryption techniques, network security, risk assessment, and digital forensics. The course emphasizes hands-on experience through labs and simulations that mirror real-world threats and defense mechanisms.

    Advanced Power Systems

    This course covers modern power systems analysis, including stability studies, load flow analysis, and protection schemes. Students also explore renewable energy integration, smart grids, and microgrids, gaining insights into future trends in electrical power distribution.

    Embedded Systems

    The focus of this course is on designing and developing embedded systems for various applications. Students learn about microcontrollers, real-time operating systems, interfacing with sensors, and software development tools used in embedded environments.

    Automation & Robotics

    This elective explores automation technologies and robotics design principles. It covers topics such as motion control, sensor integration, robotic kinematics, and industrial applications of automation. Students work on projects involving robot design and programming using ROS (Robot Operating System).

    Renewable Energy Systems

    The course provides a comprehensive overview of renewable energy sources, including solar, wind, hydroelectric, and geothermal power. Students study system design, performance evaluation, and economic feasibility analysis, preparing them for careers in sustainable energy sectors.

    Quality Control & Management

    This course focuses on quality assurance and management systems in engineering environments. It covers Six Sigma methodologies, statistical process control, ISO standards, and continuous improvement techniques used in manufacturing and service industries.

    Sustainable Engineering Practices

    Students examine sustainable development practices and environmental impact assessments. The course emphasizes lifecycle analysis, green design principles, and regulatory compliance in engineering projects to promote long-term sustainability.

    Data Analytics

    This elective teaches students how to extract insights from large datasets using statistical methods and data visualization tools. It covers predictive modeling, machine learning applications in business analytics, and big data processing techniques used across industries.

    Human Factors in Engineering

    The course explores the interaction between humans and engineering systems, focusing on ergonomics, human behavior in design, and usability testing. Students learn to apply human factors principles to improve safety, efficiency, and user satisfaction in engineering contexts.

    Project-Based Learning Philosophy

    At Isbm University Gariyaband, project-based learning forms the cornerstone of our educational approach. This philosophy emphasizes active learning through meaningful projects that connect theory with practice. Students are encouraged to work collaboratively, think critically, and solve complex problems throughout their academic journey.

    Mini-Projects

    Throughout the program, students undertake several mini-projects aimed at reinforcing core concepts and developing practical skills. These projects are typically completed in teams of 3-5 members and are evaluated based on technical execution, innovation, presentation quality, and teamwork.

    Final-Year Thesis/Capstone Project

    The final-year capstone project represents the culmination of a student's engineering education. Students select a topic aligned with their specialization or interest, conduct independent research, and present findings to a panel of faculty members and industry experts. This project serves as a platform for students to demonstrate mastery in their chosen field while contributing to real-world solutions.

    Project Selection Process

    Students choose their projects based on interests, mentor availability, and industry relevance. Faculty mentors guide students through the planning phase, helping them refine objectives, develop timelines, and identify resources needed for successful completion. The selection process ensures that each student works on a project that challenges them while aligning with their career aspirations.