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    Scholarships & exams

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

    Duration

    4 Years

    Bachelor of Technology in Engineering

    Shri Dharmasthala Manjunatheshwara University
    Duration
    4 Years
    Engineering UG OFFLINE

    Duration

    4 Years

    Bachelor of Technology in Engineering

    Shri Dharmasthala Manjunatheshwara University
    Duration
    Apply

    Fees

    ₹8,00,000

    Placement

    92.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Engineering
    UG
    OFFLINE

    Fees

    ₹8,00,000

    Placement

    92.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    1,200

    ApplyCollege

    Seats

    120

    Students

    1,200

    Curriculum

    Curriculum Overview

    The curriculum at Shri Dharmasthala Manjunatheshwara University Dharwad is designed to provide students with a comprehensive understanding of engineering principles while also fostering innovation and practical application. The program is structured over 8 semesters, with a balanced mix of core engineering subjects, departmental electives, science electives, and laboratory courses. The curriculum emphasizes project-based learning, allowing students to apply theoretical knowledge to real-world problems.

    Course Structure

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1ENG101Engineering Mathematics I3-1-0-4None
    1ENG102Engineering Physics3-1-0-4None
    1ENG103Engineering Chemistry3-1-0-4None
    1ENG104Engineering Graphics2-0-2-3None
    1ENG105Basic Electrical Engineering3-1-0-4None
    1ENG106Engineering Mechanics3-1-0-4None
    1ENG107Programming for Engineers2-0-2-3None
    2ENG201Engineering Mathematics II3-1-0-4ENG101
    2ENG202Thermodynamics3-1-0-4ENG102
    2ENG203Materials Science3-1-0-4ENG103
    2ENG204Electrical Circuits3-1-0-4ENG105
    2ENG205Engineering Economy3-1-0-4None
    2ENG206Control Systems3-1-0-4ENG204
    2ENG207Signals and Systems3-1-0-4ENG201
    3ENG301Engineering Mathematics III3-1-0-4ENG201
    3ENG302Heat Transfer3-1-0-4ENG202
    3ENG303Fluid Mechanics3-1-0-4ENG201
    3ENG304Computer Architecture3-1-0-4ENG107
    3ENG305Design and Analysis of Algorithms3-1-0-4ENG107
    3ENG306Database Management Systems3-1-0-4ENG107
    3ENG307Microprocessors3-1-0-4ENG204
    4ENG401Engineering Mathematics IV3-1-0-4ENG301
    4ENG402Manufacturing Processes3-1-0-4ENG303
    4ENG403Power Systems3-1-0-4ENG204
    4ENG404Signal Processing3-1-0-4ENG207
    4ENG405Software Engineering3-1-0-4ENG305
    4ENG406Operating Systems3-1-0-4ENG305
    4ENG407Embedded Systems3-1-0-4ENG307
    5ENG501Advanced Mathematics3-1-0-4ENG401
    5ENG502Advanced Thermodynamics3-1-0-4ENG202
    5ENG503Advanced Fluid Mechanics3-1-0-4ENG303
    5ENG504Artificial Intelligence3-1-0-4ENG305
    5ENG505Cybersecurity3-1-0-4ENG305
    5ENG506Network Security3-1-0-4ENG305
    5ENG507Machine Learning3-1-0-4ENG504
    6ENG601Advanced Control Systems3-1-0-4ENG206
    6ENG602Renewable Energy3-1-0-4ENG202
    6ENG603Structural Analysis3-1-0-4ENG106
    6ENG604Biomedical Engineering3-1-0-4ENG201
    6ENG605Robotics3-1-0-4ENG307
    6ENG606Advanced Computer Networks3-1-0-4ENG305
    6ENG607Computational Fluid Dynamics3-1-0-4ENG303
    7ENG701Capstone Project I2-0-4-4ENG504
    7ENG702Capstone Project II2-0-4-4ENG701
    7ENG703Advanced Electives I3-1-0-4ENG504
    7ENG704Advanced Electives II3-1-0-4ENG504
    7ENG705Advanced Electives III3-1-0-4ENG504
    7ENG706Advanced Electives IV3-1-0-4ENG504
    7ENG707Advanced Electives V3-1-0-4ENG504
    8ENG801Final Year Project2-0-4-4ENG702
    8ENG802Internship0-0-0-6None
    8ENG803Elective I3-1-0-4ENG504
    8ENG804Elective II3-1-0-4ENG504
    8ENG805Elective III3-1-0-4ENG504
    8ENG806Elective IV3-1-0-4ENG504
    8ENG807Elective V3-1-0-4ENG504

    Advanced Departmental Electives

    The department offers a wide range of advanced departmental electives that allow students to explore specialized areas of interest. These courses are designed to deepen students' understanding of specific engineering disciplines and prepare them for advanced research or industry roles.

    Artificial Intelligence – This course introduces students to the fundamental concepts of AI, including machine learning, neural networks, and natural language processing. Students learn how to develop intelligent systems that can learn and adapt to new data.

    Cybersecurity – This course covers the principles and practices of cybersecurity, including network security, cryptography, and ethical hacking. Students gain hands-on experience with security tools and techniques used to protect digital assets.

    Renewable Energy Systems – This course explores the design and implementation of renewable energy systems, including solar, wind, and hydroelectric power. Students learn about energy storage, grid integration, and environmental impact assessment.

    Biomedical Engineering – This course combines engineering principles with medical and biological sciences. Students study medical device design, bioinformatics, and healthcare systems, preparing them for roles in the healthcare industry.

    Robotics – This course focuses on the design and development of robotic systems. Students learn about robotics control, sensor integration, and automation technologies, preparing them for careers in robotics and automation.

    Advanced Control Systems – This course covers advanced topics in control systems, including state-space representation, optimal control, and robust control. Students learn how to design control systems for complex engineering applications.

    Computational Fluid Dynamics – This course explores the simulation and analysis of fluid flow using computational methods. Students learn about aerodynamics, heat transfer, and computational modeling, preparing them for careers in aerospace and automotive industries.

    Network Security – This course focuses on the principles and practices of network security. Students learn about network architecture, security protocols, and incident response, preparing them for roles in cybersecurity.

    Machine Learning – This course introduces students to the principles and techniques of machine learning. Students learn about supervised and unsupervised learning, deep learning, and reinforcement learning, preparing them for roles in AI and data science.

    Embedded Systems – This course covers the design and implementation of embedded systems. Students learn about microcontrollers, real-time operating systems, and system integration, preparing them for roles in embedded software development.

    Advanced Computer Networks – This course explores advanced topics in computer networking, including network security, quality of service, and network management. Students learn how to design and implement secure and efficient network systems.

    Structural Analysis – This course covers the analysis and design of structures under various loads. Students learn about structural mechanics, seismic design, and sustainable construction practices, preparing them for careers in structural engineering.

    Power Systems – This course focuses on the design and operation of power systems. Students learn about power generation, transmission, and distribution, preparing them for roles in the energy sector.

    Signal Processing – This course covers the principles and techniques of signal processing. Students learn about digital signal processing, filtering, and spectral analysis, preparing them for roles in communications and signal processing.

    Database Management Systems – This course explores the design and implementation of database systems. Students learn about database architecture, SQL, and data modeling, preparing them for roles in data management and software development.

    Project-Based Learning

    Project-based learning is a core component of the engineering program at Shri Dharmasthala Manjunatheshwara University Dharwad. Students are encouraged to apply their theoretical knowledge to real-world problems through a series of projects that span multiple semesters.

    The program includes mandatory mini-projects in the third and fourth semesters, where students work in teams to solve engineering problems. These projects are designed to develop critical thinking, teamwork, and problem-solving skills. Students are guided by faculty mentors who provide feedback and support throughout the project lifecycle.

    The final-year thesis/capstone project is a comprehensive, interdisciplinary project that integrates knowledge from various fields. Students work on a project of their choice, under the guidance of a faculty mentor. The project is evaluated based on its innovation, technical depth, and practical relevance. Students are also required to present their work to a panel of experts, which includes faculty members and industry professionals.

    Students select their projects and mentors based on their interests and career aspirations. The university provides a platform for students to explore various research areas and connect with faculty members who specialize in their field of interest. This ensures that students are exposed to cutting-edge research and development opportunities.