

B-E-BACHELOR-OF-ENGINEERING in Automobile Engineering at Chitkara University


Patiala, Punjab
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About the Specialization
What is Automobile Engineering at Chitkara University Patiala?
This B.E. Automobile Engineering program at Chitkara University focuses on equipping students with a comprehensive understanding of vehicle design, manufacturing, dynamics, and systems. It addresses the evolving Indian automotive landscape, encompassing traditional vehicles alongside emerging electric and hybrid technologies. The curriculum emphasizes practical application and industry relevance, preparing graduates for the dynamic demands of the automotive sector in India.
Who Should Apply?
This program is ideal for high school graduates with a strong aptitude for Physics, Chemistry, and Mathematics, eager to pursue a career in the automotive industry. It suits those passionate about vehicle mechanics, design, and innovation. Fresh graduates seeking entry into automotive manufacturing, R&D, and service sectors, as well as those aiming for roles in sustainable mobility solutions, will find this specialization beneficial.
Why Choose This Course?
Graduates of this program can expect diverse career paths in India, including roles as design engineers, production engineers, testing engineers, and automotive consultants. Entry-level salaries typically range from INR 3-6 LPA, with experienced professionals earning significantly more (INR 8-15+ LPA). Growth trajectories are promising in Indian companies like Tata Motors, Mahindra & Mahindra, Ashok Leyland, and various MNCs operating in India, aligning with industry demand for skilled automotive professionals.

Student Success Practices
Foundation Stage
Master Engineering Fundamentals- (Semester 1-2)
Focus intensely on core subjects like Engineering Mathematics, Applied Physics/Chemistry, and Programming for Problem Solving. These form the bedrock for advanced automotive concepts. Utilize university-provided study materials, attend all doubt-clearing sessions, and engage in peer study groups to solidify understanding.
Tools & Resources
Textbooks, University study guides, Online tutorials (Khan Academy, NPTEL for conceptual clarity)
Career Connection
A strong foundation ensures easier grasp of specialized subjects later, crucial for technical interviews and problem-solving roles in the automotive industry.
Develop Practical Workshop Skills- (Semester 1-2)
Actively participate in workshop practices and engineering graphics labs. Pay close attention to safety protocols, tool handling, and precision. Seek opportunities for extra practice or assist lab technicians to gain deeper hands-on experience, which is vital for an automobile engineer.
Tools & Resources
Workshop manuals, CAD software like AutoCAD/SolidWorks (if introduced early), Lab equipment
Career Connection
Hands-on skills differentiate candidates for roles in manufacturing, vehicle assembly, and maintenance, making you industry-ready.
Cultivate Effective Communication & Ethics- (Semester 1-2)
Engage in courses like Human Values & Professional Ethics and English to improve communication skills and ethical awareness. Participate in college clubs, debates, and presentations to enhance soft skills, which are highly valued in team-oriented engineering environments.
Tools & Resources
Toastmasters clubs, Public speaking workshops, Professional communication textbooks
Career Connection
Strong communication and ethical conduct are essential for leadership roles, client interaction, and successful project management in any engineering firm.
Intermediate Stage
Build Specialization-Specific Skills with Labs- (Semester 3-5)
Deeply engage with core Automobile Engineering subjects like Thermodynamics, Material Science, Manufacturing Processes, and their respective labs. Understand the experimental setups, analyze data, and correlate theoretical knowledge with practical outcomes. Look for opportunities to go beyond prescribed lab work.
Tools & Resources
Lab equipment, MATLAB/Simulink for simulations, Specific manufacturing machinery
Career Connection
Proficiency in these core automotive areas is directly applicable to design, R&D, and production roles in the automotive sector, enhancing your technical profile.
Seek Early Industry Exposure & Projects- (Semester 3-5)
Actively pursue industrial training or minor project opportunities. Even short-term internships or workshops during breaks can provide invaluable exposure to real-world automotive engineering challenges. Network with faculty and seniors for guidance on industry connections.
Tools & Resources
University career services, LinkedIn for professional networking, Industry reports
Career Connection
Early industry exposure builds a practical resume, provides context for theoretical learning, and often leads to pre-placement offers or crucial industry contacts.
Participate in Technical Competitions & Clubs- (Semester 3-5)
Join automotive-focused student clubs or participate in technical competitions like Baja SAE, Formula Bharat, or other vehicle design challenges. These platforms offer practical experience in vehicle design, fabrication, and teamwork, fostering innovation and problem-solving skills.
Tools & Resources
Student club resources, Competition guidelines, Faculty mentors
Career Connection
Such participations demonstrate initiative, teamwork, and practical engineering skills, highly valued by recruiters for R&D and design roles.
Advanced Stage
Undertake Impactful Major Projects- (Semester 7-8)
Dedicate significant effort to your Major Project, focusing on a real-world automotive problem or an innovative solution (e.g., electric vehicle component, advanced vehicle safety system). Aim for publishable quality work or solutions with commercial viability. Seek guidance from multiple faculty mentors.
Tools & Resources
Advanced simulation software (ANSYS, CATIA), Prototyping tools, Research papers
Career Connection
A strong major project showcases your advanced problem-solving, research, and technical abilities, forming a cornerstone for placements, higher studies, or entrepreneurship.
Strategize for Placements & Career Launch- (Semester 7-8)
Begin placement preparation early by understanding company requirements, practicing aptitude tests, and mock interviews. Tailor your resume and portfolio to highlight your specialization, projects, and skills relevant to the automotive sector. Actively engage with the university''''s placement cell.
Tools & Resources
Placement cell workshops, Online aptitude platforms, Interview preparation guides
Career Connection
Proactive and strategic placement preparation maximizes your chances of securing a desirable job role in top automotive companies or related industries.
Explore Advanced Electives & Emerging Technologies- (Semester 6-8)
Choose department and open electives strategically to specialize further in areas like Electric and Hybrid Vehicles, Vehicle Safety, Mechatronics, or Automotive Sensors. Stay updated on emerging automotive technologies like autonomous driving, AI in vehicles, and sustainable mobility solutions through seminars and online courses.
Tools & Resources
MOOCs (Coursera, edX), Industry conferences, Technical journals
Career Connection
Specializing in emerging areas makes you a valuable asset to companies looking for future-ready engineers and opens doors to R&D and innovation-focused roles.
Program Structure and Curriculum
Eligibility:
- As per Chitkara University Norms for B.E. programs, generally requiring 10+2 with Physics, Chemistry, and Mathematics.
Duration: 8 semesters / 4 years
Credits: 177 Credits
Assessment: Internal: 40%, External: 60%
Semester-wise Curriculum Table
Semester 1
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UHS101 | Human Values & Professional Ethics | Core | 2 | |
| UAP102 | Applied Physics | Core | 4 | |
| UMA103 | Engineering Mathematics-I | Core | 4 | |
| UCO104 | Programming for Problem Solving | Core | 3 | |
| UWS105 | Workshop Practices | Lab | 1.5 | |
| UAP106 | Applied Physics Lab | Lab | 1 | |
| UCO107 | Programming for Problem Solving Lab | Lab | 1 | |
| UWS108 | Workshop Practices Lab | Lab | 1 | |
| UAM109 | Engineering Graphics | Core | 2 | |
| UNS110 | NSS/NCC/NSO | Activity | 1 |
Semester 2
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UHS111 | English | Core | 2 | |
| UAP112 | Applied Chemistry | Core | 4 | |
| UMA113 | Engineering Mathematics-II | Core | 4 | |
| UCO114 | Data Structures | Core | 3 | |
| UEC115 | Basic Electrical & Electronics Engineering | Core | 4 | |
| UAP116 | Applied Chemistry Lab | Lab | 1 | |
| UCO117 | Data Structures Lab | Lab | 1 | |
| UEC118 | Basic Electrical & Electronics Engineering Lab | Lab | 1 | |
| UCF119 | Computer Aided Design | Core | 2 | |
| UBA120 | Engineering Explorations | Core | 2 |
Semester 3
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UMA201 | Engineering Mathematics-III | Core | 4 | |
| UAS202 | Engineering Mechanics | Core | 4 | |
| UAS203 | Material Science | Core | 3 | |
| UAS204 | Thermodynamics | Core | 4 | |
| UAS205 | Manufacturing Processes | Core | 3 | |
| UAS206 | Computer Aided Engineering Graphics | Core | 2 | |
| UAS207 | Material Science Lab | Lab | 1 | |
| UAS208 | Thermodynamics Lab | Lab | 1 | |
| UAS209 | Manufacturing Processes Lab | Lab | 1 |
Semester 4
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UHS211 | Professional Communication | Core | 2 | |
| UAS212 | Strength of Materials | Core | 4 | |
| UAS213 | Theory of Machines | Core | 4 | |
| UAS214 | Fluid Mechanics and Machinery | Core | 4 | |
| UAS215 | Machine Design-I | Core | 4 | |
| UAS216 | Strength of Materials Lab | Lab | 1 | |
| UAS217 | Theory of Machines Lab | Lab | 1 | |
| UAS218 | Fluid Mechanics and Machinery Lab | Lab | 1 |
Semester 5
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UAS301 | Heat Transfer | Core | 4 | |
| UAS302 | Automobile Chassis and Body Engineering | Core | 4 | |
| UAS303 | Automobile Engines | Core | 4 | |
| UAS304 | Production and Operations Management | Core | 3 | |
| UAS305 | Automobile Electrical and Electronic Systems | Core | 4 | |
| UAS306 | Heat Transfer Lab | Lab | 1 | |
| UAS307 | Vehicle Dynamics Lab | Lab | 1 | |
| UAS308 | Automobile Engines Lab | Lab | 1 | |
| UAS309 | Industrial Training/Minor Project | Project | 3 |
Semester 6
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UAS311 | Vehicle Maintenance | Core | 3 | |
| UAS312 | Automotive Transmission | Core | 4 | |
| UAS313 | Automotive Pollution and Control | Core | 3 | |
| UED314 | Entrepreneurship and Startup | Core | 3 | |
| UAS315 | Vehicle Maintenance Lab | Lab | 1 | |
| UAS316 | Automotive Transmission Lab | Lab | 1 | |
| UAS317 | Automotive CAD Lab | Lab | 1 | |
| Department Elective-I | Elective from: Industrial Robotics, Vehicle Safety, Advanced Materials, Electric and Hybrid Vehicles | Elective | 3 | |
| Open Elective-I | Open Elective-I | Elective | 3 |
Semester 7
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UAS401 | Automotive Aerodynamics | Core | 3 | |
| UAS402 | Vehicle Design and Data Characteristics | Core | 4 | |
| UAS403 | Production Planning and Control | Core | 3 | |
| UAS404 | Automotive Electronics and Communication Systems | Core | 3 | |
| UAS405 | Vehicle Dynamics | Core | 3 | |
| Department Elective-II | Elective from: Vehicle Ergonomics, Advanced IC Engines, Mechatronics, Automotive Component Design | Elective | 3 | |
| Open Elective-II | Open Elective-II | Elective | 3 | |
| UAS406 | Automotive Design Project | Project | 2 | |
| UAS407 | Major Project Part-I | Project | 4 |
Semester 8
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| UHS411 | Constitution of India | Core | 2 | |
| Department Elective-III | Elective from: Automotive Sensors and Actuators, Robotics and Automation in Manufacturing, Finite Element Analysis, Tribology | Elective | 3 | |
| UAS412 | Major Project Part-II | Project | 8 |




