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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Operations

    Prayaga Institute of Management Studies
    Duration
    4 Years
    Operations UG OFFLINE

    Duration

    4 Years

    Operations

    Prayaga Institute of Management Studies
    Duration
    Apply

    Fees

    N/A

    Placement

    94.0%

    Avg Package

    ₹5,80,000

    Highest Package

    ₹8,50,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Operations
    UG
    OFFLINE

    Fees

    N/A

    Placement

    94.0%

    Avg Package

    ₹5,80,000

    Highest Package

    ₹8,50,000

    Seats

    150

    Students

    300

    ApplyCollege

    Seats

    150

    Students

    300

    Curriculum

    Course Structure Overview

    The Operations program at Prayaga Institute of Management Studies is structured over 8 semesters, with a balance of core courses, departmental electives, science electives, and practical labs. Each semester spans approximately 16 weeks, allowing for in-depth exploration of topics and meaningful engagement with faculty and peers.

    Semester Course Code Course Title Credit Structure (L-T-P-C) Pre-requisites
    1 ENG101 English Communication Skills 2-0-0-2 -
    1 MAT101 Calculus and Differential Equations 3-0-0-3 -
    1 MAT102 Linear Algebra and Vector Calculus 3-0-0-3 -
    1 PHY101 Physics for Engineers 3-0-0-3 -
    1 CHE101 Chemistry for Engineers 3-0-0-3 -
    1 CS101 Introduction to Programming 2-0-2-3 -
    1 ENG102 Engineering Graphics 2-0-2-3 -
    2 MAT201 Probability and Statistics 3-0-0-3 MAT101
    2 PHY201 Electromagnetic Waves and Optics 3-0-0-3 PHY101
    2 CHE201 Physical Chemistry 3-0-0-3 CHE101
    2 CS201 Data Structures and Algorithms 2-0-2-3 CS101
    2 ENG201 Engineering Mechanics 3-0-0-3 -
    2 MAT202 Transform Calculus and Partial Differential Equations 3-0-0-3 MAT101
    3 ME301 Thermodynamics and Heat Transfer 3-0-0-3 MAT202
    3 CSE301 Database Management Systems 2-0-2-3 CS201
    3 MAT301 Numerical Methods and Optimization Techniques 3-0-0-3 MAT201
    3 ENG301 Mechanics of Materials 3-0-0-3 ENG201
    3 ECE301 Electrical Circuits and Electronics 3-0-0-3 -
    3 ENG302 Introduction to Operations Management 3-0-0-3 -
    4 CSE401 Software Engineering and Project Management 2-0-2-3 CSE301
    4 MAT401 Operations Research 3-0-0-3 MAT301
    4 ENG401 Industrial Engineering Principles 3-0-0-3 ENG302
    4 ECE401 Control Systems 3-0-0-3 ECE301
    4 CSE402 Artificial Intelligence and Machine Learning 2-0-2-3 CS201
    5 ENG501 Supply Chain Management 3-0-0-3 ENG401
    5 MAT501 Advanced Statistics and Data Analysis 3-0-0-3 MAT201
    5 CSE501 Big Data Analytics 2-0-2-3 CSE401
    5 ENG502 Quality Control and Assurance 3-0-0-3 -
    5 CSE502 Database Design and Optimization 2-0-2-3 CSE301
    6 ENG601 Lean Manufacturing and Process Improvement 3-0-0-3 ENG501
    6 CSE601 Cloud Computing and DevOps 2-0-2-3 CSE401
    6 MAT601 Decision Making Under Uncertainty 3-0-0-3 MAT501
    6 ENG602 Operations in Healthcare 3-0-0-3 ENG502
    6 CSE602 Internet of Things (IoT) and Smart Systems 2-0-2-3 CSE402
    7 ENG701 Sustainable Operations and Green Logistics 3-0-0-3 ENG601
    7 MAT701 Stochastic Processes and Simulation 3-0-0-3 MAT601
    7 CSE701 Blockchain Technologies for Business 2-0-2-3 CSE601
    7 ENG702 Risk Management in Operations 3-0-0-3 -
    7 CSE702 Mobile Application Development 2-0-2-3 CSE402
    8 ENG801 Final Year Project / Thesis 0-0-6-6 -
    8 CSE801 Advanced Topics in Data Science 2-0-2-3 CSE701
    8 MAT801 Capstone Research Project 0-0-6-6 MAT701

    Advanced Departmental Electives Overview

    Departmental electives play a crucial role in allowing students to specialize and explore advanced topics within operations management. These courses are designed to complement core subjects and offer deeper insights into specific areas of interest.

    Supply Chain Management

    This course delves into the complexities of global supply chains, focusing on procurement strategies, supplier relationship management, logistics coordination, and demand forecasting techniques. Students gain exposure to industry tools such as SAP SCM and Oracle Supply Chain Planning, enabling them to design efficient and resilient supply chain architectures.

    Lean Manufacturing and Process Improvement

    Students learn the principles of lean manufacturing, including waste identification, value stream mapping, and continuous improvement methodologies. Through hands-on simulations and real-world case studies, they develop skills in process optimization and operational excellence.

    Data Analytics for Operations

    This elective introduces students to advanced data analysis techniques tailored for operational decision-making. Topics include predictive modeling, machine learning algorithms, data visualization tools (Tableau, Power BI), and statistical inference methods used in performance measurement and forecasting.

    Quality Control and Assurance

    The course explores quality assurance systems, Six Sigma methodologies, statistical process control, and total quality management principles. Students learn to implement quality improvement initiatives using tools such as control charts, process capability analysis, and design of experiments (DOE).

    Operations in Healthcare

    This specialized course addresses the unique operational challenges in healthcare environments. It covers topics such as patient flow optimization, resource allocation, service design, and performance metrics specific to hospitals and clinics. Real-world projects with healthcare partners provide practical experience.

    Sustainable Operations and Green Logistics

    Focused on environmental sustainability in operations, this course examines green supply chain practices, carbon footprint reduction, renewable energy integration, and circular economy models. Students engage in case studies of companies implementing sustainable practices and develop strategies for reducing operational impact.

    Risk Management in Operations

    Students are introduced to risk identification, assessment, and mitigation techniques in complex operational environments. The course covers topics such as scenario planning, business continuity management, cybersecurity risks, and regulatory compliance frameworks affecting modern operations.

    Project Management

    This elective provides a comprehensive overview of project management methodologies, including Agile, Scrum, Waterfall, and PRINCE2. Students learn to plan, execute, monitor, and close projects effectively, ensuring alignment with organizational objectives and stakeholder expectations.

    Artificial Intelligence in Operations

    Exploring the intersection of AI and operations, this course covers applications such as AI-driven forecasting, robotic process automation (RPA), chatbots for customer service, and intelligent scheduling systems. Students build models using Python libraries like scikit-learn and TensorFlow.

    Digital Transformation

    This advanced elective examines how digital technologies are reshaping operational landscapes. Topics include cloud computing, IoT integration, blockchain applications, and automation trends in manufacturing and services. Students work on real-world transformation projects with industry partners.

    Project-Based Learning Philosophy

    Project-based learning is a cornerstone of the Operations program at Prayaga Institute of Management Studies. The approach emphasizes active learning, collaboration, and problem-solving in realistic contexts.

    Mini-Projects (First to Third Year)

    Mini-projects are integrated into the curriculum from early semesters, allowing students to apply theoretical knowledge to practical situations. These projects typically last 4-6 weeks and involve small teams working on predefined challenges under faculty supervision. Examples include process mapping exercises, simulation modeling tasks, or simple data analysis assignments.

    Final-Year Thesis/Capstone Project

    The capstone project is a significant component of the final year, requiring students to undertake an independent research or applied project under the guidance of a faculty mentor. Projects can be theoretical (e.g., developing a new algorithm for scheduling problems) or practical (e.g., implementing an operational improvement in a local organization).

    Project Selection Process

    Students select their final-year projects based on personal interests, career goals, and faculty availability. The selection process involves submitting a proposal that outlines the problem statement, methodology, expected outcomes, and timeline. Faculty mentors are assigned based on expertise alignment and project relevance.

    Evaluation Criteria

    Projects are evaluated based on multiple criteria including conceptual depth, methodological rigor, technical execution, presentation quality, and impact potential. Peer reviews, faculty feedback, and industry input contribute to a holistic assessment.