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

    Duration

    4 Years

    Bachelor of Technology in Engineering

    Shri Krishna University Chhatarpur
    Duration
    4 Years
    Engineering UG OFFLINE

    Duration

    4 Years

    Bachelor of Technology in Engineering

    Shri Krishna University Chhatarpur
    Duration
    Apply

    Fees

    ₹4,50,000

    Placement

    92.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Engineering
    UG
    OFFLINE

    Fees

    ₹4,50,000

    Placement

    92.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    Seats

    150

    Students

    1,200

    ApplyCollege

    Seats

    150

    Students

    1,200

    Curriculum

    Comprehensive Course Structure

    The curriculum for the Engineering program at Shri Krishna University Chhatarpur is designed to provide students with a strong foundation in engineering principles, followed by specialized knowledge in their chosen field. The program is structured over 8 semesters, with each semester consisting of core courses, departmental electives, science electives, and laboratory sessions.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1ENG101Engineering Mathematics I3-1-0-4None
    1ENG102Physics for Engineers3-1-0-4None
    1ENG103Chemistry for Engineers3-1-0-4None
    1ENG104Introduction to Engineering2-0-0-2None
    1ENG105Programming and Problem Solving3-1-0-4None
    1ENG106Engineering Drawing and Design2-0-0-2None
    1ENG107Workshop Practice0-0-3-1None
    2ENG201Engineering Mathematics II3-1-0-4ENG101
    2ENG202Electrical Circuits and Machines3-1-0-4ENG102
    2ENG203Materials Science and Metallurgy3-1-0-4ENG103
    2ENG204Thermodynamics and Heat Transfer3-1-0-4ENG102
    2ENG205Engineering Mechanics3-1-0-4ENG101
    2ENG206Computer Programming3-1-0-4ENG105
    2ENG207Lab Session - Engineering Workshop0-0-3-1ENG107
    3ENG301Engineering Mathematics III3-1-0-4ENG201
    3ENG302Signals and Systems3-1-0-4ENG201
    3ENG303Control Systems3-1-0-4ENG202
    3ENG304Design and Analysis of Algorithms3-1-0-4ENG206
    3ENG305Electromagnetic Fields and Waves3-1-0-4ENG202
    3ENG306Strength of Materials3-1-0-4ENG205
    3ENG307Lab Session - Electronics and Communication0-0-3-1ENG205
    4ENG401Probability and Statistics3-1-0-4ENG301
    4ENG402Microprocessors and Microcontrollers3-1-0-4ENG302
    4ENG403Power Electronics and Drives3-1-0-4ENG202
    4ENG404Computer Architecture3-1-0-4ENG206
    4ENG405Fluid Mechanics3-1-0-4ENG204
    4ENG406Structural Analysis3-1-0-4ENG306
    4ENG407Lab Session - Power Systems0-0-3-1ENG303
    5ENG501Advanced Mathematics3-1-0-4ENG401
    5ENG502Artificial Intelligence3-1-0-4ENG404
    5ENG503Machine Learning3-1-0-4ENG401
    5ENG504Advanced Control Systems3-1-0-4ENG303
    5ENG505Advanced Thermodynamics3-1-0-4ENG204
    5ENG506Advanced Structural Design3-1-0-4ENG306
    5ENG507Lab Session - Advanced Projects0-0-3-1ENG407
    6ENG601Research Methodology3-1-0-4ENG501
    6ENG602Advanced Data Structures3-1-0-4ENG404
    6ENG603Embedded Systems3-1-0-4ENG402
    6ENG604Advanced Power Systems3-1-0-4ENG403
    6ENG605Advanced Fluid Dynamics3-1-0-4ENG405
    6ENG606Advanced Materials3-1-0-4ENG303
    6ENG607Lab Session - Industry Projects0-0-3-1ENG507
    7ENG701Capstone Project I3-1-0-4ENG601
    7ENG702Advanced Topics in AI3-1-0-4ENG502
    7ENG703Advanced Cybersecurity3-1-0-4ENG404
    7ENG704Advanced Renewable Energy3-1-0-4ENG505
    7ENG705Advanced Biotechnology3-1-0-4ENG506
    7ENG706Advanced Materials Science3-1-0-4ENG606
    7ENG707Lab Session - Capstone Projects0-0-3-1ENG607
    8ENG801Capstone Project II3-1-0-4ENG701
    8ENG802Entrepreneurship and Innovation3-1-0-4ENG701
    8ENG803Industrial Internship0-0-3-1ENG701
    8ENG804Final Project Presentation0-0-3-1ENG801
    8ENG805Professional Ethics and Communication3-1-0-4ENG701
    8ENG806Research Thesis0-0-3-1ENG701
    8ENG807Lab Session - Thesis Work0-0-3-1ENG806

    Advanced Departmental Elective Courses

    The department offers a range of advanced elective courses that allow students to explore specialized areas of interest and develop expertise in their chosen fields. These courses are designed to provide students with in-depth knowledge and practical skills that are essential for success in the industry.

    Artificial Intelligence

    This course provides students with a comprehensive understanding of artificial intelligence concepts and techniques. It covers topics such as machine learning, deep learning, natural language processing, and computer vision. Students will learn to develop AI models and apply them to real-world problems. The course emphasizes both theoretical concepts and practical implementation, with hands-on projects and lab sessions.

    Machine Learning

    This course focuses on the principles and applications of machine learning. Students will learn about supervised and unsupervised learning algorithms, neural networks, and deep learning techniques. The course includes practical projects that allow students to implement and evaluate machine learning models on real datasets. It also covers advanced topics such as reinforcement learning and transfer learning.

    Embedded Systems

    This course introduces students to the design and implementation of embedded systems. It covers topics such as microcontrollers, real-time operating systems, and hardware-software integration. Students will gain hands-on experience in developing embedded applications for various platforms. The course emphasizes practical implementation through lab sessions and project work.

    Advanced Cybersecurity

    This course provides students with advanced knowledge of cybersecurity principles and practices. It covers topics such as network security, cryptography, ethical hacking, and risk management. Students will learn to identify and mitigate security threats, and develop secure applications. The course includes hands-on labs and simulations to reinforce theoretical concepts.

    Advanced Renewable Energy

    This course focuses on the principles and applications of renewable energy technologies. It covers topics such as solar energy, wind power, and energy storage systems. Students will learn to design and analyze renewable energy systems, and evaluate their performance. The course includes practical projects that involve real-world applications and case studies.

    Advanced Biotechnology

    This course explores the applications of biotechnology in various industries. It covers topics such as bioinformatics, synthetic biology, and bioprocess engineering. Students will learn to develop and apply biotechnology solutions to real-world problems. The course includes laboratory sessions and research projects to provide hands-on experience.

    Advanced Materials Science

    This course provides students with an in-depth understanding of advanced materials and their applications. It covers topics such as nanomaterials, composite materials, and smart materials. Students will learn to characterize and design materials for specific applications. The course includes laboratory sessions and projects that involve real-world materials and applications.

    Advanced Power Systems

    This course focuses on the principles and applications of power systems. It covers topics such as power generation, transmission, and distribution. Students will learn to analyze and design power systems, and evaluate their performance. The course includes practical projects and simulations to reinforce theoretical concepts.

    Advanced Fluid Dynamics

    This course provides students with a comprehensive understanding of fluid dynamics and its applications. It covers topics such as fluid flow, turbulence, and heat transfer. Students will learn to analyze and model fluid systems, and apply this knowledge to real-world problems. The course includes laboratory sessions and computational projects to provide hands-on experience.

    Advanced Thermodynamics

    This course focuses on advanced thermodynamic principles and their applications. It covers topics such as thermodynamic cycles, phase equilibrium, and thermodynamic properties. Students will learn to analyze and optimize thermodynamic systems, and apply this knowledge to real-world problems. The course includes practical projects and simulations to reinforce theoretical concepts.

    Project-Based Learning Philosophy

    The department's philosophy on project-based learning is rooted in the belief that hands-on experience is essential for developing practical skills and deepening understanding. Projects are designed to simulate real-world engineering challenges, encouraging students to think critically, collaborate effectively, and apply their knowledge in meaningful ways.

    Mini-Projects

    Mini-projects are assigned in the second and third years of the program. These projects are designed to be manageable yet challenging, allowing students to apply concepts learned in class to practical problems. Each mini-project is guided by a faculty member and includes milestones and deliverables that help students track their progress. The projects are evaluated based on technical content, presentation, and teamwork.

    Final-Year Thesis/Capstone Project

    The final-year thesis or capstone project is a significant component of the program, designed to provide students with an opportunity to conduct independent research or develop a comprehensive solution to a complex engineering problem. Students work closely with a faculty mentor to define their project scope, conduct research, and develop a final deliverable. The project is evaluated based on originality, technical depth, and presentation.

    Project Selection and Mentorship

    Students are encouraged to select projects that align with their interests and career goals. The department provides a list of potential project topics, and students can also propose their own ideas. Faculty mentors are assigned based on the project topic and the mentor's expertise. The mentorship process includes regular meetings, feedback, and guidance throughout the project duration.