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    Scholarships & exams

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

    Duration

    3 Years

    Diploma In Information Technology

    Satya Sree Parimala Polytechnic East Godavari
    Duration
    3 Years
    Diploma In Information Technology DIPLOMA OFFLINE

    Duration

    3 Years

    Diploma In Information Technology

    Satya Sree Parimala Polytechnic East Godavari
    Duration
    Apply

    Fees

    ₹80,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    3 Years
    Diploma In Information Technology
    DIPLOMA
    OFFLINE

    Fees

    ₹80,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    1,200

    ApplyCollege

    Seats

    120

    Students

    1,200

    Curriculum

    Course Structure Overview

    The curriculum for the Diploma In Information Technology program at Satya Sree Parimala Polytechnic East Godavari is designed to provide a comprehensive and progressive learning experience over three years. The program is divided into six semesters, with each semester containing a mix of core courses, departmental electives, science electives, and laboratory sessions. The curriculum emphasizes both theoretical knowledge and practical skills, ensuring that students are well-prepared for industry challenges.

    Course Table

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1IT101Introduction to Information Technology3-0-0-3None
    1IT102Mathematics for IT3-0-0-3None
    1IT103Computer Fundamentals3-0-0-3None
    1IT104Programming in C3-0-0-3None
    1IT105English for Communication3-0-0-3None
    1IT106Physics for IT3-0-0-3None
    1IT107Lab: C Programming0-0-3-0IT104
    1IT108Lab: Computer Fundamentals0-0-3-0IT103
    2IT201Data Structures and Algorithms3-0-0-3IT104
    2IT202Database Management Systems3-0-0-3IT104
    2IT203Operating Systems3-0-0-3IT103
    2IT204Object-Oriented Programming3-0-0-3IT104
    2IT205Mathematics for IT II3-0-0-3IT102
    2IT206Chemistry for IT3-0-0-3None
    2IT207Lab: Data Structures0-0-3-0IT201
    2IT208Lab: OOP0-0-3-0IT204
    3IT301Web Technologies3-0-0-3IT204
    3IT302Computer Networks3-0-0-3IT203
    3IT303Software Engineering3-0-0-3IT201
    3IT304Mobile Application Development3-0-0-3IT204
    3IT305Mathematics for IT III3-0-0-3IT205
    3IT306Statistics and Probability3-0-0-3IT102
    3IT307Lab: Web Development0-0-3-0IT301
    3IT308Lab: Mobile App Development0-0-3-0IT304
    4IT401Artificial Intelligence3-0-0-3IT201
    4IT402Cybersecurity3-0-0-3IT203
    4IT403Cloud Computing3-0-0-3IT302
    4IT404Data Analytics3-0-0-3IT202
    4IT405Human-Computer Interaction3-0-0-3IT301
    4IT406Project Management3-0-0-3IT303
    4IT407Lab: AI0-0-3-0IT401
    4IT408Lab: Cybersecurity0-0-3-0IT402
    5IT501Advanced Machine Learning3-0-0-3IT401
    5IT502Big Data Technologies3-0-0-3IT404
    5IT503DevOps and CI/CD3-0-0-3IT303
    5IT504Internet of Things3-0-0-3IT302
    5IT505Game Development3-0-0-3IT301
    5IT506Research Methodology3-0-0-3IT205
    5IT507Lab: Big Data0-0-3-0IT502
    5IT508Lab: IoT0-0-3-0IT504
    6IT601Final Year Project3-0-0-3IT506
    6IT602Internship0-0-0-3IT506
    6IT603Capstone Presentation0-0-0-3IT601
    6IT604Entrepreneurship3-0-0-3IT506

    Advanced Departmental Electives

    The program offers a wide range of advanced departmental electives that allow students to specialize in areas of interest. These courses are designed to provide in-depth knowledge and practical skills in emerging fields.

    Advanced Machine Learning: This course delves into advanced topics in machine learning, including deep learning, reinforcement learning, and natural language processing. Students learn to build and deploy complex AI models using frameworks like TensorFlow and PyTorch. The course emphasizes real-world applications and includes hands-on projects.

    Big Data Technologies: This course covers the principles and practices of big data processing and analytics. Students study technologies such as Hadoop, Spark, and Kafka, and learn to process and analyze large datasets. The course includes projects involving real-world data sources and applications.

    DevOps and CI/CD: This course introduces students to DevOps practices and continuous integration/continuous deployment (CI/CD) pipelines. Students learn to automate software development and deployment processes using tools like Jenkins, Docker, and Kubernetes. The course emphasizes practical implementation and includes hands-on labs.

    Internet of Things: This course explores the design and implementation of IoT systems. Students study sensors, actuators, communication protocols, and cloud integration. The course includes practical projects involving smart devices and embedded systems.

    Game Development: This course focuses on the principles and practices of game development. Students learn to design and develop games using game engines like Unity and Unreal Engine. The course includes hands-on projects involving 2D and 3D game development.

    Research Methodology: This course introduces students to research principles and methodologies. Students learn to design research projects, collect and analyze data, and present findings. The course emphasizes critical thinking and scientific inquiry.

    Project-Based Learning Approach

    The program emphasizes project-based learning as a core component of the curriculum. Students are required to complete mandatory mini-projects in the second and third years, and a final-year capstone project. These projects are designed to provide hands-on experience and allow students to apply theoretical knowledge in practical settings.

    Mini-Projects: In the second year, students work on a mini-project that focuses on a specific aspect of IT. Projects are typically industry-sponsored and provide students with real-world experience. Students are assigned to teams and work under the guidance of faculty mentors.

    Final-Year Thesis/Capstone Project: In the final year, students undertake a comprehensive project that integrates all the knowledge and skills they have acquired. The project is typically aligned with industry needs and is supervised by faculty members. Students are encouraged to collaborate with industry partners and present their work at conferences or competitions.

    The selection of projects and mentors is done through a structured process that involves student preferences, faculty expertise, and industry requirements. Students are matched with mentors based on their interests and the availability of resources.