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    Scholarships & exams

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

    Duration

    4 Years

    Bachelor of Technology in Engineering

    IIMT University Meerut
    Duration
    4 Years
    Engineering UG OFFLINE

    Duration

    4 Years

    Bachelor of Technology in Engineering

    IIMT University Meerut
    Duration
    Apply

    Fees

    ₹2,23,000

    Placement

    95.0%

    Avg Package

    ₹4,70,000

    Highest Package

    ₹9,80,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Engineering
    UG
    OFFLINE

    Fees

    ₹2,23,000

    Placement

    95.0%

    Avg Package

    ₹4,70,000

    Highest Package

    ₹9,80,000

    Seats

    180

    Students

    1,500

    ApplyCollege

    Seats

    180

    Students

    1,500

    Curriculum

    Curriculum

    The curriculum at Iimt University Meerut is meticulously designed to provide students with a comprehensive foundation in engineering sciences, followed by advanced knowledge in specialized domains. The program spans eight semesters, with each semester consisting of core courses, departmental electives, science electives, and laboratory sessions.

    Semester Course Code Course Title Credit (L-T-P-C) Pre-requisites
    1 ENG101 Engineering Mathematics I 3-0-0-3 None
    1 ENG102 Engineering Physics 3-0-0-3 None
    1 ENG103 Engineering Chemistry 3-0-0-3 None
    1 ENG104 Engineering Graphics & Design 2-0-0-2 None
    1 ENG105 Introduction to Engineering 2-0-0-2 None
    1 ENG106 Basic Programming & Problem Solving 3-0-0-3 None
    2 ENG201 Engineering Mathematics II 3-0-0-3 ENG101
    2 ENG202 Electrical & Electronic Engineering Fundamentals 3-0-0-3 ENG102
    2 ENG203 Mechanics of Solids 3-0-0-3 ENG101
    2 ENG204 Engineering Materials & Metallurgy 3-0-0-3 ENG103
    2 ENG205 Computer Programming Lab 0-0-3-1 ENG106
    2 ENG206 Basic Electronics Lab 0-0-3-1 ENG202
    3 ENG301 Engineering Mathematics III 3-0-0-3 ENG201
    3 ENG302 Thermodynamics & Heat Transfer 3-0-0-3 ENG203
    3 ENG303 Signals & Systems 3-0-0-3 ENG201
    3 ENG304 Control Systems 3-0-0-3 ENG303
    3 ENG305 Electromagnetic Field Theory 3-0-0-3 ENG202
    3 ENG306 Lab for Signals & Systems 0-0-3-1 ENG303
    4 ENG401 Probability & Statistics 3-0-0-3 ENG301
    4 ENG402 Microprocessor & Microcontroller 3-0-0-3 ENG202
    4 ENG403 Digital Logic & Design 3-0-0-3 ENG202
    4 ENG404 Data Structures & Algorithms 3-0-0-3 ENG106
    4 ENG405 Communication Engineering 3-0-0-3 ENG303
    4 ENG406 Lab for Digital Logic & Microprocessors 0-0-3-1 ENG403, ENG402
    5 ENG501 Advanced Mathematics 3-0-0-3 ENG401
    5 ENG502 Power Electronics & Drives 3-0-0-3 ENG202
    5 ENG503 Machine Design 3-0-0-3 ENG203
    5 ENG504 Structural Analysis 3-0-0-3 ENG203
    5 ENG505 Software Engineering 3-0-0-3 ENG404
    5 ENG506 Lab for Power Electronics & Drives 0-0-3-1 ENG502
    6 ENG601 Advanced Control Systems 3-0-0-3 ENG304
    6 ENG602 Renewable Energy Systems 3-0-0-3 ENG202, ENG302
    6 ENG603 Robotics & Automation 3-0-0-3 ENG402, ENG403
    6 ENG604 Advanced Data Structures & Algorithms 3-0-0-3 ENG404
    6 ENG605 Computer Networks 3-0-0-3 ENG405
    6 ENG606 Lab for Robotics & Automation 0-0-3-1 ENG603
    7 ENG701 Artificial Intelligence & Machine Learning 3-0-0-3 ENG505
    7 ENG702 Cybersecurity & Network Defense 3-0-0-3 ENG605
    7 ENG703 Advanced Structural Engineering 3-0-0-3 ENG504
    7 ENG704 Advanced Thermodynamics & Heat Transfer 3-0-0-3 ENG302
    7 ENG705 Industrial Management & Operations Research 3-0-0-3 ENG501
    7 ENG706 Lab for AI & Machine Learning 0-0-3-1 ENG701
    8 ENG801 Capstone Project 0-0-6-6 All previous semesters
    8 ENG802 Internship 0-0-0-6 All previous semesters

    Beyond the core curriculum, students can choose from a wide range of advanced departmental electives that provide deeper specialization and hands-on experience:

    • Deep Learning & Neural Networks: This course explores neural network architectures, backpropagation, convolutional networks, recurrent networks, and reinforcement learning algorithms.
    • Cryptography & Information Security: The course covers symmetric and asymmetric encryption, digital signatures, hash functions, and secure communication protocols.
    • Advanced Structural Analysis: Focuses on finite element methods, structural dynamics, and seismic design principles for complex structures.
    • Renewable Energy Technologies: Covers solar, wind, hydroelectric, and geothermal energy systems, including energy conversion efficiency and environmental impact assessments.
    • Advanced Control Systems: Examines modern control theory, state-space representation, optimal control, and robust control strategies.
    • Embedded Systems Design: Involves designing embedded software for microcontrollers, real-time systems, and IoT applications using C/C++ and assembly languages.
    • Robotics & Automation: Covers robotic kinematics, sensor integration, motion planning, and industrial automation techniques.
    • Data Mining & Big Data Analytics: Explores data preprocessing, clustering algorithms, classification models, and big data frameworks like Hadoop and Spark.
    • Advanced Materials Science: Focuses on nanomaterials, composite materials, smart materials, and their applications in engineering systems.
    • Environmental Impact Assessment: Teaches methods for assessing environmental effects of engineering projects and developing mitigation strategies.

    The department emphasizes project-based learning as a cornerstone of the educational experience. From the second year onwards, students engage in mini-projects that allow them to apply theoretical concepts to practical problems. These projects are typically team-based and involve collaboration with industry partners or research groups.

    Mini-projects span various domains such as renewable energy systems, smart city infrastructure, automation solutions, and healthcare technologies. Each project is guided by faculty mentors who provide supervision, feedback, and industry insights throughout the process.

    The final-year capstone project represents a culmination of all learned skills and knowledge. Students work on a significant engineering problem or innovation that addresses real-world challenges. Projects are often sponsored by industry partners, offering students the opportunity to contribute to meaningful solutions while gaining valuable professional experience.