

B-TECH-M-TECH-DUAL-DEGREE in Mechanical Engineering Production And Industrial Engineering at Indian Institute of Technology Indore


Indore, Madhya Pradesh
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About the Specialization
What is Mechanical Engineering (Production and Industrial Engineering) at Indian Institute of Technology Indore Indore?
This Mechanical Engineering Production and Industrial Engineering dual degree program at IIT Indore focuses on optimizing complex industrial systems and manufacturing processes. It integrates core mechanical principles with advanced production techniques and management sciences. Given India''''s burgeoning manufacturing sector, this program is highly relevant, preparing graduates to drive efficiency, innovation, and sustainable practices in various industries.
Who Should Apply?
This program is ideal for aspiring engineers who possess strong analytical skills and a keen interest in streamlining operations and enhancing productivity. It suits fresh graduates seeking entry into manufacturing, supply chain management, or operations roles. Mid-career professionals aiming to specialize in industrial engineering, quality management, or advanced production methodologies will also find this curriculum beneficial.
Why Choose This Course?
Graduates of this program can expect diverse India-specific career paths in manufacturing, automotive, aerospace, defense, and consulting sectors. Roles include Production Engineer, Industrial Engineer, Supply Chain Analyst, Quality Manager, and Operations Consultant. Entry-level salaries typically range from INR 6-12 LPA, with experienced professionals earning significantly more, reflecting the high demand for specialized talent in India.

Student Success Practices
Foundation Stage
Master Core Engineering Fundamentals- (Semester 1-2)
Dedicate significant time to understanding core concepts in Mathematics, Physics, Chemistry, and basic Electrical and Computer Science. Actively solve problems from textbooks, previous year''''s papers, and online platforms. Form study groups to discuss challenging topics and clarify doubts.
Tools & Resources
NPTEL lectures, Khan Academy, IIT Indore departmental resources, Peer study groups
Career Connection
A strong foundation is crucial for advanced courses and helps crack technical interviews for core engineering roles later.
Cultivate Problem Solving and Programming Acumen- (Semester 1-2)
Actively participate in programming labs and go beyond assignments. Practice coding challenges on competitive programming platforms regularly to enhance logical thinking and algorithmic problem-solving, which are vital for engineering applications.
Tools & Resources
HackerRank, CodeChef, LeetCode, GeeksforGeeks, Python/C++ programming resources
Career Connection
Essential for modern engineering roles, data analysis, automation, and provides a significant edge in technical placements.
Initiate Early Hands-on Projects- (Semester 1-2)
Seek out opportunities to work on small-scale projects, even non-credit ones, in college labs or with seniors. This could involve building simple mechanical models, basic circuits, or programming mini-applications. Such practical exposure clarifies theoretical concepts and builds confidence.
Tools & Resources
Departmental labs, Student clubs e.g., robotics, automobile, Open-source hardware Arduino, Raspberry Pi
Career Connection
Develops practical skills, showcases initiative, and helps build a portfolio for internships and future job applications.
Intermediate Stage
Excel in Core Mechanical Engineering Courses- (Semester 3-5)
Focus intensely on specialized ME subjects like Solid Mechanics, Fluid Mechanics, Thermodynamics, Kinematics and Dynamics of Machines. Engage in conceptual clarity, rigorous problem-solving, and participate in practical lab sessions to relate theory to real-world applications.
Tools & Resources
Standard mechanical engineering textbooks, Simulation software e.g., ANSYS, SolidWorks, MATLAB, NPTEL advanced courses
Career Connection
These subjects form the backbone of the Production and Industrial Engineering specialization, crucial for internships and core job roles.
Pursue Meaningful Industrial Internships- (Summer after Semester 4 or 5)
Actively apply for summer internships in manufacturing, automotive, or industrial sectors. Focus on gaining hands-on experience in production lines, quality control, or supply chain departments. Network with industry professionals during these internships.
Tools & Resources
IIT Indore''''s Training and Placement Cell, LinkedIn, Company career portals, Industry contacts
Career Connection
Provides crucial industry insights, practical experience, networking opportunities, and often leads to Pre-Placement Offers PPOs.
Engage in Technical Competitions and Workshops- (Semester 3-5)
Join student technical clubs e.g., ASME, SAE chapter and participate in design challenges, hackathons, or fabrication competitions related to mechanical and industrial engineering. Attend workshops on CAD/CAM, simulation, or advanced manufacturing.
Tools & Resources
Student technical clubs, Institutional workshop facilities, Industry-led seminars, Online certification courses
Career Connection
Enhances practical skills, teamwork, problem-solving, and makes your resume stand out to recruiters looking for proactive candidates.
Advanced Stage
Strategic Elective Selection and Advanced Project Work- (Semester 6-10)
Carefully choose program and M.Tech electives that align with your career interests within Production and Industrial Engineering. Engage deeply in your B.Tech and M.Tech projects, aiming for innovative solutions to real-world industrial problems, potentially leading to publications or patents.
Tools & Resources
Department faculty mentors, Research labs, Advanced simulation tools, Academic databases Scopus, Web of Science
Career Connection
Builds expertise in a niche area, demonstrates research capability, and is highly valued for higher studies or R&D roles.
Rigorous Placement and Interview Readiness- (Semester 7-8 for B.Tech, Semester 9-10 for M.Tech)
Start preparing for placements early. Focus on aptitude tests, group discussions, and technical interview questions related to Mechanical and Industrial Engineering. Develop strong communication and presentation skills, and prepare a professional resume and portfolio.
Tools & Resources
IIT Indore''''s Placement Cell, Online aptitude platforms, Mock interview sessions, Resume workshops, Company-specific preparation guides
Career Connection
Directly impacts placement success, securing desirable job roles in top-tier companies.
Build Professional Network and Seek Mentorship- (Semester 6-10)
Attend industry conferences, workshops, and alumni meet-ups. Connect with professionals on platforms like LinkedIn. Seek mentorship from faculty, alumni, or industry experts to gain career guidance, explore opportunities, and build long-term professional relationships.
Tools & Resources
LinkedIn, Alumni network, Professional associations e.g., IEI, CII, Industry seminars
Career Connection
Opens doors to unadvertised opportunities, provides insights into industry trends, and facilitates career growth beyond initial placements.
Program Structure and Curriculum
Eligibility:
- Candidates must have passed 10+2 examination or equivalent with Physics, Chemistry, and Mathematics. Admission is through Joint Entrance Examination Advanced JEE Advanced and Joint Seat Allocation Authority JoSAA.
Duration: 10 semesters / 5 years
Credits: 200 Credits
Assessment: Assessment pattern not specified
Semester-wise Curriculum Table
Semester 1
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA103 | Calculus | Core | 4 | Calculus Fundamentals, Differentiation, Integration, Sequences and Series, Multivariable Calculus |
| PH103 | Physics | Core | 4 | Classical Mechanics, Electromagnetism, Waves and Optics, Quantum Mechanics, Thermodynamics |
| ME103 | Engineering Graphics | Core | 2 | Orthographic Projections, Isometric Projections, Sectional Views, Development of Surfaces, CAD Introduction |
| EE103 | Basic Electrical Engineering | Core | 4 | DC Circuits, AC Circuits, Electrical Machines, Power Systems, Basic Electronics |
| CS103 | Introduction to Programming | Core | 4 | Programming Constructs, Data Types and Variables, Control Structures, Functions and Modules, Basic Algorithms in C/C++ |
| HS101 | English Communication | Core | 2 | Grammar and Vocabulary, Written Communication, Verbal Communication, Presentation Skills, Reading Comprehension |
| ME104 | Manufacturing Practices | Lab | 2 | Workshop Safety, Basic Machining Operations, Welding Techniques, Carpentry Skills, Foundry Processes |
Semester 2
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA104 | Differential Equations | Core | 4 | First-Order ODEs, Higher-Order ODEs, Laplace Transforms, Series Solutions, Partial Differential Equations |
| CY101 | Chemistry | Core | 4 | Atomic Structure and Bonding, Chemical Thermodynamics, Electrochemistry, Organic Chemistry Basics, Materials Chemistry |
| CE103 | Engineering Mechanics | Core | 4 | Statics of Particles and Rigid Bodies, Equilibrium Equations, Dynamics of Particles, Work-Energy Principle, Impulse-Momentum Principle |
| BE101 | Biology for Engineers | Core | 2 | Cell Biology, Genetics, Biological Systems, Biotechnology Applications, Biomechanics |
| ES101 | Environmental Science | Core | 2 | Ecosystems and Biodiversity, Environmental Pollution, Renewable Energy Sources, Environmental Impact Assessment, Sustainable Development |
| CY102 | Chemistry Lab | Lab | 1 | Volumetric Analysis, Gravimetric Analysis, Synthesis of Compounds, Instrumental Methods, Water Quality Analysis |
| PH104 | Physics Lab | Lab | 1 | Experiments in Mechanics, Optics Experiments, Electricity and Magnetism, Heat and Thermodynamics, Modern Physics Experiments |
Semester 3
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA203 | Linear Algebra and Complex Analysis | Core | 4 | Vector Spaces, Linear Transformations, Eigenvalues and Eigenvectors, Complex Numbers, Analytic Functions, Contour Integration |
| ME203 | Engineering Thermodynamics | Core | 4 | Laws of Thermodynamics, Properties of Pure Substances, Entropy and Exergy, Vapor Power Cycles, Gas Power Cycles, Refrigeration Cycles |
| ME204 | Solid Mechanics | Core | 4 | Stress and Strain, Axial Loading, Torsion, Bending of Beams, Deflection of Beams, Combined Stresses |
| EE203 | Basic Electronics Engineering | Core | 4 | Semiconductor Diodes, Bipolar Junction Transistors, Field Effect Transistors, Operational Amplifiers, Digital Logic Gates |
| HS201 | Introduction to Social Science | Core | 2 | Sociology Basics, Economic Principles, Psychological Concepts, Political Systems, Ethics and Values |
| ME251 | Solid Mechanics Lab | Lab | 1 | Tensile Testing, Compression Testing, Torsion Testing, Hardness Measurement, Impact Testing |
Semester 4
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA204 | Probability, Statistics & Random Processes | Core | 4 | Probability Theory, Random Variables and Distributions, Statistical Inference, Hypothesis Testing, Regression Analysis, Stochastic Processes |
| ME205 | Kinematics and Dynamics of Machines | Core | 4 | Mechanisms and Linkages, Kinematic Analysis, Cams and Followers, Gears and Gear Trains, Flywheel Analysis, Balancing of Rotating Masses |
| ME206 | Fluid Mechanics | Core | 4 | Fluid Properties, Fluid Statics, Fluid Kinematics, Fluid Dynamics, Flow Through Pipes, Boundary Layer Theory |
| ME207 | Material Science & Engineering | Core | 4 | Crystal Structures, Mechanical Properties of Materials, Phase Diagrams, Heat Treatment, Ceramics and Polymers, Composite Materials |
| ME252 | Fluid Mechanics Lab | Lab | 1 | Reynolds Experiment, Bernoulli''''s Theorem Verification, Flow Measurement Devices, Pipe Friction Experiments, Centrifugal Pump Performance |
| ME253 | Thermodynamics Lab | Lab | 1 | Vapor Compression Refrigeration Cycle, Air Conditioning Systems, Heat Engine Performance, Calorimetry Experiments, Heat Pump Coefficient of Performance |
| ME254 | Machining & Machine Tools Lab | Lab | 1 | Lathe Operations, Milling Operations, Drilling and Boring, Grinding Processes, Introduction to CNC Machining |
Semester 5
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME303 | Manufacturing Processes | Core | 4 | Metal Casting Processes, Forming Processes, Welding and Joining Techniques, Powder Metallurgy, Surface Treatment Processes |
| ME304 | Heat and Mass Transfer | Core | 4 | Conduction Heat Transfer, Convection Heat Transfer, Radiation Heat Transfer, Heat Exchangers, Mass Diffusion, Evaporation and Condensation |
| ME305 | Control Engineering | Core | 4 | System Modeling, Transfer Functions, Stability Analysis, PID Controllers, Root Locus Technique, Frequency Response Analysis |
| ME306 | Machine Design | Core | 4 | Design Against Static Loads, Design Against Fatigue, Bearing Design, Gear Design, Shaft Design, Spring Design |
| OE1 | Open Elective 1 | Elective | 3 | Subject content depends on the chosen elective from other departments |
| ME351 | Heat and Mass Transfer Lab | Lab | 1 | Thermal Conductivity Measurement, Convection Heat Transfer Coefficients, Radiation Heat Transfer Experiments, Heat Exchanger Performance Analysis |
| ME352 | Computer Aided Design Lab | Lab | 1 | 2D Drafting, 3D Solid Modeling, Assembly Design, Parametric Design, Introduction to Design Analysis |
Semester 6
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME307 | Design of Mechanical Systems | Core | 4 | System Approach to Design, Product Life Cycle Management, Design for Manufacturing and Assembly, Reliability in Design, Value Engineering |
| ME308 | Mechatronics | Core | 4 | Sensors and Actuators, Microcontrollers and Microprocessors, Programmable Logic Controllers PLC, Data Acquisition Systems, System Integration and Control |
| ME309 | Industrial Engineering | Core | 4 | Work Study and Method Study, Time Study and Work Measurement, Facility Layout Design, Inventory Control, Quality Management Systems |
| PE1 | Program Elective 1 | Elective | 3 | Advanced topics in Mechanical Engineering or Production and Industrial Engineering, chosen from approved list |
| OE2 | Open Elective 2 | Elective | 3 | Subject content depends on the chosen elective from other departments |
| ME353 | Mechatronics Lab | Lab | 1 | Sensor Interfacing, Actuator Control, PID Control Experiments, PLC Programming, Basic Robotic Applications |
| ME354 | Thermal Engineering Lab | Lab | 1 | Boiler Performance Analysis, Internal Combustion Engine Testing, Refrigeration Cycle Analysis, Air Conditioning System Performance |
Semester 7
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME403 | Operation Research | Core | 4 | Linear Programming, Simplex Method, Transportation Problem, Assignment Problem, Queuing Theory, Network Analysis |
| ME404 | Metrology and Instrumentation | Core | 4 | Principles of Measurement, Tolerances and Fits, Gauges and Comparators, Optical Metrology, Transducers and Sensors, Data Acquisition Systems |
| ME491 | Industrial Training / Summer Project | Training | 2 | Industrial Exposure, Application of Engineering Principles, Problem Identification and Solving, Report Writing, Professional Ethics |
| PE2 | Program Elective 2 | Elective | 3 | Advanced topics in Mechanical Engineering or Production and Industrial Engineering, chosen from approved list |
| PE3 | Program Elective 3 | Elective | 3 | Advanced topics in Mechanical Engineering or Production and Industrial Engineering, chosen from approved list |
| ME493 | B.Tech Project Part-I | Project | 2 | Problem Definition, Literature Review, Methodology Development, Preliminary Design, Data Collection Planning |
Semester 8
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME494 | B.Tech Project Part-II | Project | 4 | Experimental Work, Data Analysis and Interpretation, Results Discussion, Report Writing, Project Presentation |
| PE4 | Program Elective 4 | Elective | 3 | Advanced topics in Mechanical Engineering or Production and Industrial Engineering, chosen from approved list |
| PE5 | Program Elective 5 | Elective | 3 | Advanced topics in Mechanical Engineering or Production and Industrial Engineering, chosen from approved list |
| ME6XX | Advanced Manufacturing Processes | Core | 3 | Advanced Machining Techniques, Non-Traditional Machining, Additive Manufacturing, Micro- and Nano-Manufacturing, Process Automation |
Semester 9
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME6XX | Industrial Logistics and Supply Chain Management | Core | 3 | Logistics Planning and Strategy, Supply Chain Design, Inventory Management, Transportation and Warehousing, Global Supply Chain Management |
| ME6XX | M.Tech Elective 1 | Elective | 3 | Advanced specialization topics in Production and Industrial Engineering, chosen from approved list |
| ME6XX | M.Tech Elective 2 | Elective | 3 | Advanced specialization topics in Production and Industrial Engineering, chosen from approved list |
| ME6XX | M.Tech Project Part-I | Project | 6 | Research Problem Identification, Literature Survey, Hypothesis Formulation, Experimental Design, Preliminary Data Collection |
Semester 10
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME6XX | M.Tech Elective 3 | Elective | 3 | Advanced specialization topics in Production and Industrial Engineering, chosen from approved list |
| ME6XX | M.Tech Project Part-II | Project | 12 | Data Analysis, Results Interpretation, Thesis Writing, Oral Presentation, Contribution to Knowledge |




