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

    Duration

    4 Years

    Information Technology

    Babu Sunder Singh Institute of Technology and Management
    Duration
    4 Years
    Information Technology UG OFFLINE

    Duration

    4 Years

    Information Technology

    Babu Sunder Singh Institute of Technology and Management
    Duration
    Apply

    Fees

    ₹18,40,000

    Placement

    97.0%

    Avg Package

    ₹24

    Highest Package

    ₹58

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Information Technology
    UG
    OFFLINE

    Fees

    ₹18,40,000

    Placement

    97.0%

    Avg Package

    ₹24

    Highest Package

    ₹58

    Seats

    120

    Students

    1,200

    ApplyCollege

    Seats

    120

    Students

    1,200

    Curriculum

    Curriculum

    The Information Technology program at Babu Sunder Singh Institute of Technology and Management is designed to provide students with a comprehensive understanding of the field, combining theoretical knowledge with practical skills. The curriculum spans eight semesters and includes core courses, departmental electives, science electives, and laboratory sessions.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1IT101Mathematics for Information Technology3-0-0-3None
    1IT102Engineering Physics3-0-0-3None
    1IT103Computer Programming Fundamentals2-0-2-3None
    1IT104Basic Electrical Engineering3-0-0-3None
    1IT105Engineering Mechanics3-0-0-3None
    1IT106English for Communication2-0-0-2None
    2IT201Discrete Mathematics3-0-0-3IT101
    2IT202Signals and Systems3-0-0-3IT102
    2IT203Data Structures and Algorithms3-0-0-3IT103
    2IT204Digital Logic Design2-0-2-3IT104
    2IT205Computer Organization and Architecture3-0-0-3IT204
    2IT206Engineering Drawing1-0-0-1None
    3IT301Database Management Systems3-0-0-3IT203
    3IT302Operating Systems3-0-0-3IT205
    3IT303Software Engineering3-0-0-3IT203
    3IT304Object Oriented Programming2-0-2-3IT103
    3IT305Probability and Statistics3-0-0-3IT101
    3IT306Communication Skills2-0-0-2None
    4IT401Computer Networks3-0-0-3IT205
    4IT402Web Technologies3-0-0-3IT304
    4IT403Artificial Intelligence3-0-0-3IT305
    4IT404Mobile Application Development2-0-2-3IT304
    4IT405Data Structures and Algorithms II3-0-0-3IT203
    4IT406Human Computer Interaction2-0-0-2IT303
    5IT501Machine Learning3-0-0-3IT305
    5IT502Cybersecurity3-0-0-3IT401
    5IT503Big Data Analytics3-0-0-3IT301
    5IT504Cloud Computing3-0-0-3IT401
    5IT505Internet of Things2-0-2-3IT205
    5IT506Database Design and Implementation2-0-2-3IT301
    6IT601Advanced Software Engineering3-0-0-3IT303
    6IT602DevOps and Continuous Integration3-0-0-3IT402
    6IT603Research Methodology2-0-0-2IT305
    6IT604Entrepreneurship in IT2-0-0-2None
    6IT605Capstone Project3-0-0-3IT501
    6IT606Professional Ethics and Legal Issues in IT2-0-0-2None
    7IT701Advanced Cybersecurity3-0-0-3IT502
    7IT702Neural Networks and Deep Learning3-0-0-3IT501
    7IT703Advanced Cloud Computing3-0-0-3IT504
    7IT704Mobile App Development2-0-2-3IT404
    7IT705Advanced Data Analytics3-0-0-3IT503
    7IT706Special Topics in IT2-0-0-2IT501
    8IT801Final Year Project4-0-0-4IT605
    8IT802Industry Internship0-0-0-3IT701
    8IT803Capstone Project Defense0-0-0-2IT801

    Advanced departmental elective courses include:

    • Machine Learning and Deep Learning: This course covers advanced topics in supervised and unsupervised learning, neural network architectures, convolutional networks, recurrent networks, and reinforcement learning. Students develop models for classification, regression, clustering, and sequence prediction tasks using frameworks like TensorFlow and PyTorch.
    • Cybersecurity and Network Defense: Designed to prepare students for roles in network security management, this course explores advanced topics such as penetration testing, incident response, vulnerability assessment, encryption protocols, and secure system design principles. Practical exercises include simulating attacks on networks and implementing defensive strategies.
    • Data Science and Big Data Analytics: Students learn to analyze large datasets using statistical methods, machine learning algorithms, and data visualization tools. The course emphasizes practical applications in domains such as finance, healthcare, marketing, and social media analytics.
    • Cloud Computing and DevOps: This course provides hands-on experience with cloud platforms (AWS, Azure, GCP), containerization technologies (Docker, Kubernetes), and CI/CD pipelines. Students deploy scalable applications in cloud environments and manage software delivery processes efficiently.
    • Internet of Things and Embedded Systems: Focuses on sensor networks, embedded programming, wireless communication protocols, and smart device development. Students build IoT solutions using microcontrollers, sensors, and cloud services.
    • Human-Computer Interaction and Usability Engineering: Emphasizes user experience design principles, usability testing, accessibility standards, and interaction design methodologies. Students learn to create intuitive interfaces that enhance user satisfaction and engagement.
    • Software Architecture and Design Patterns: Covers software architecture principles, design patterns, scalability considerations, and system integration techniques. Students develop large-scale applications using modular and reusable components.
    • Mobile Application Development: Teaches cross-platform development using frameworks like React Native and Flutter. Students build apps for iOS, Android, and web platforms, gaining experience with modern development tools and methodologies.
    • Artificial Intelligence Applications: Explores AI applications in robotics, natural language processing, computer vision, and game development. Students implement AI algorithms to solve real-world problems and enhance decision-making capabilities.
    • Database Systems and NoSQL Technologies: Covers advanced database concepts including transaction management, indexing strategies, normalization, and distributed systems. Students work with both relational and non-relational databases to store and retrieve data efficiently.

    The department's philosophy on project-based learning emphasizes hands-on experience and collaborative problem-solving. Students engage in mandatory mini-projects throughout their academic journey, starting from the first semester. These projects involve team collaboration, technical documentation, and presentations to faculty mentors.

    Mini-projects are designed to reinforce concepts learned in core courses while encouraging creativity and innovation. Each project is evaluated based on technical implementation, originality, teamwork, and presentation quality. Students receive feedback from both faculty and peers to improve their skills and understanding.

    The final-year thesis/capstone project represents the culmination of students' learning experience. Projects are selected based on student interests, faculty expertise, and industry relevance. Faculty mentors guide students through the research or development process, ensuring that projects meet academic standards and industry expectations.