

B-TECH in Name Mechanical Engineering Seats 60 at Federal Institute of Science And Technology (FISAT)


Ernakulam, Kerala
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About the Specialization
What is {"name": "Mechanical Engineering", "seats": 60} at Federal Institute of Science And Technology (FISAT) Ernakulam?
This Mechanical Engineering program at Federal Institute of Science And Technology, Ernakulam, focuses on foundational principles in design, manufacturing, thermal sciences, and fluid mechanics. It meticulously prepares students for diverse roles within India''''s dynamic industrial landscape, spanning sectors from automotive to aerospace. The curriculum emphasizes both theoretical knowledge and practical skills, aligning with the complex challenges faced by modern engineering industries.
Who Should Apply?
This program is ideal for fresh graduates aspiring to enter core engineering domains such as manufacturing, energy, and product design. It also caters to individuals with a strong aptitude for problem-solving, a passion for innovation, and a keen interest in developing efficient mechanical systems and processes relevant to various Indian industries. Candidates seeking to contribute to industrial advancements will find this program highly beneficial.
Why Choose This Course?
Graduates of this program can anticipate flourishing careers as design engineers, production managers, R&D specialists, or thermal engineers across India. Entry-level salaries typically range from INR 3.5 to 6 LPA, with significant growth potential with experience. Opportunities are abundant in Public Sector Undertakings (PSUs), multinational corporations (MNCs) operating in India, and burgeoning startups, offering clear growth trajectories and alignment with professional certifications.

Student Success Practices
Foundation Stage
Build Strong Mathematical and Scientific Fundamentals- (Semester 1-2)
Dedicate focused effort to mastering core concepts in Calculus, Differential Equations, Engineering Physics, and Chemistry. These subjects are the bedrock for all advanced engineering topics. Leverage online platforms for extensive practice problems and concept clarification beyond classroom lectures.
Tools & Resources
NPTEL courses, Khan Academy, BYJU''''S, College study groups, Remedial classes
Career Connection
A solid foundation is crucial for easily grasping complex engineering subjects, which is indispensable for competitive exams like GATE and UPSC ESE, and for analytical roles in R&D.
Master Engineering Graphics and Workshop Skills- (Semester 1-2)
Pay close attention in Engineering Graphics to develop visualization skills for 3D objects and interpret complex engineering drawings. Actively participate in all workshop sessions, gaining hands-on experience in carpentry, fitting, welding, and basic machining operations.
Tools & Resources
AutoCAD/SolidWorks tutorials, YouTube workshop guides, College workshop facilities, Senior student mentorship
Career Connection
These skills are fundamental for design, manufacturing, and production engineering roles. Practical proficiency is highly valued by Indian manufacturing industries for entry-level engineering positions.
Develop Basic Programming and Problem-Solving Skills- (Semester 1-2)
Acquire a foundational understanding of programming languages such as C or Python. Apply logical thinking and computational concepts to solve simple engineering problems, fostering computational thinking which is increasingly vital in modern mechanical engineering.
Tools & Resources
GeeksforGeeks, HackerRank, CodeChef, NPTEL''''s ''''Problem Solving through Programming''''
Career Connection
Essential for roles in automation, mechatronics, data analysis, and using simulation software, all of which are rapidly expanding areas within Indian mechanical engineering firms.
Intermediate Stage
Hands-on Application of Core ME Concepts- (Semester 3-5)
Focus on practically applying theoretical knowledge from subjects like Mechanics of Solids, Fluid Mechanics, and Thermodynamics through rigorous lab experiments. Actively engage in project-based learning and utilize simulation software for conceptual understanding and problem analysis.
Tools & Resources
College laboratories, Ansys simulation software, SolidWorks Simulation, MATLAB, Online tutorials for FEA/CFD basics
Career Connection
Directly prepares students for design, analysis, and research and development roles. A strong practical understanding of these core areas serves as a key differentiator during placement interviews.
Engage in Departmental Projects and Mini-Projects- (Semester 4-5)
Initiate a mini-project early, ideally one addressing an industrial problem or a specific research area. Collaborate effectively with peers and faculty, developing essential skills in project management, engineering design, and fabrication or simulation techniques.
Tools & Resources
Departmental labs and facilities, Faculty mentors, Industry partners for real-world problem statements, College project exhibitions
Career Connection
Builds a robust project portfolio, demonstrates practical problem-solving capabilities, and offers valuable networking opportunities with potential employers at college technical fests and competitions.
Explore Electives and Specializations- (Semester 5-6)
Carefully select departmental and open electives based on personal interest and emerging industry trends. This strategic choice facilitates early specialization in high-demand fields such as CAD/CAM, advanced thermal engineering, or robotics and automation.
Tools & Resources
Faculty advisors for guidance, Industry webinars and workshops, Career counseling sessions, Market research reports on future skills
Career Connection
Helps tailor your skill set to meet specific industry demands, significantly enhancing employability in niche areas and making you a more attractive candidate for specialized engineering roles.
Advanced Stage
Pursue Industrial Internships and Training- (Semester 6 (during summer break))
Secure at least one substantive industrial internship (4-6 weeks) in a manufacturing unit, design firm, or R&D center. This provides invaluable real-world exposure to industrial processes, professional work environments, and corporate culture.
Tools & Resources
College placement cell, LinkedIn, Internshala, Direct industry contacts, On-campus recruitment drives
Career Connection
Internships frequently lead to pre-placement offers, significantly strengthen your resume, provide critical networking opportunities, and aid in informed career decision-making. Essential for securing any engineering role.
Master Advanced Software and Tools- (Semester 6-8)
Achieve high proficiency in industry-standard mechanical engineering software such as SolidWorks, CATIA, Ansys (for FEA/CFD), MATLAB/Simulink, and potentially relevant ERP/MES systems used in manufacturing. Seek certifications where possible.
Tools & Resources
Certified training courses (internal or external), Online advanced tutorials, Participation in design and simulation competitions, Professional workshops
Career Connection
There is a high demand for engineers proficient in these tools across design, manufacturing, and simulation roles in Indian and global firms, directly enhancing your placement opportunities and starting salary.
Focus on Final Year Project and Placement Preparation- (Semester 7-8)
Undertake a comprehensive final year project with clear real-world relevance, showcasing an integration of all acquired engineering skills. Concurrently, prepare rigorously for campus placements through extensive mock interviews, aptitude tests, and professional resume building workshops.
Tools & Resources
Faculty project guides, Alumni network mentorship, Placement cell resources, Online aptitude test platforms, Company-specific preparation materials
Career Connection
The final year project is a crucial discussion point in interviews. Exceptional placement preparation is critical for securing desired job offers from reputable Indian companies and top-tier MNCs.
Program Structure and Curriculum
Eligibility:
- As per APJ Abdul Kalam Technological University (KTU) norms, typically requires a pass in 10+2 (or equivalent) with Physics, Chemistry, and Mathematics as compulsory subjects, with a minimum aggregate percentage, and a valid score in the Kerala Engineering Architecture Medical (KEAM) entrance examination.
Duration: 8 semesters / 4 years
Credits: 180 Credits
Assessment: Internal: 40%, External: 60%
Semester-wise Curriculum Table
Semester 1
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA101 | Calculus | Core | 4 | Functions of a Single Variable, Limits and Continuity, Differentiation and Applications, Integration and Techniques, Applications of Definite Integrals, Partial Differentiation |
| PH100 | Engineering Physics | Core | 4 | Wave Optics, Quantum Mechanics, Statistical Mechanics, Solid State Physics, Lasers and Holography, Fiber Optics and Nanotechnology |
| BE101-05 | Introduction to Mechanical Engineering | Core | 3 | Basic Concepts of Mechanical Engineering, Energy Conversion Devices, Manufacturing Processes, Engineering Materials, Mechanical Design Principles, Automobile Engineering Fundamentals |
| BE103 | Introduction to Sustainable Engineering | Core | 2 | Environmental Pollution and Management, Sustainable Development Goals, Renewable Energy Sources, Waste Management Strategies, Life Cycle Assessment, Green Engineering Principles |
| EE100 | Basics of Electrical Engineering | Core | 4 | DC Circuits and Network Theorems, AC Fundamentals, Transformers, DC Machines, AC Machines (Induction and Synchronous), Electrical Safety and Protection |
| HS101 | Life Skills | Core | 2 | Self-Awareness and Goal Setting, Time Management and Stress Management, Interpersonal Skills and Teamwork, Leadership and Decision Making, Professional Ethics and Values, Communication and Presentation Skills |
| PHL100 | Engineering Physics Lab | Lab | 1 | Spectrometer Experiments, Laser Diode Characteristics, Ultrasonic Interferometer, LED and Solar Cell Characteristics, Transistor Characteristics, Resistivity of a semiconductor |
| MEL100 | Mechanical Engineering Workshop | Lab | 1 | Carpentry and Joinery, Fitting and Assembly, Sheet Metal Work, Welding Techniques (Arc, Gas), Foundry Practice, Basic Machining Operations |
| MCL101 | Physical Education | Audit Course | 0 | Physical Fitness and Wellness, Team Sports and Individual Games, Yoga and Meditation, First Aid Basics, Healthy Lifestyle Choices, Stress Reduction Techniques |
Semester 2
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA102 | Differential Equations | Core | 4 | First Order Ordinary Differential Equations, Second Order Linear ODEs, Cauchy''''s and Legendre''''s Equations, Laplace Transforms, Fourier Series, Partial Differential Equations |
| CY100 | Engineering Chemistry | Core | 4 | Water Technology, Electrochemistry and Corrosion, Polymers and Composites, Spectroscopic Techniques, Nanomaterials, Phase Rule and Energy |
| BE100 | Engineering Graphics | Core | 3 | Orthographic Projections, Projections of Solids, Sectional Views, Development of Surfaces, Isometric Projections, Introduction to CAD |
| EC100 | Basics of Electronics Engineering | Core | 4 | PN Junction Diodes and Applications, Bipolar Junction Transistors, Field Effect Transistors, Rectifiers and Power Supplies, Operational Amplifiers, Digital Logic Gates |
| CS100 | Basics of Computer Science & Engineering | Core | 4 | Problem Solving Methodology, Algorithms and Flowcharts, Data Representation, Programming in C (Variables, Operators), Control Structures (Conditional, Looping), Functions, Arrays, and Strings |
| HS102 | Professional Communication | Core | 2 | Technical Writing Skills, Presentation Techniques, Group Discussion Strategies, Interview Skills, Resume and Cover Letter Writing, Report Writing |
| CYL100 | Engineering Chemistry Lab | Lab | 1 | Volumetric Analysis (Acidimetry, Permanganometry), pH Metry and Potentiometry, Conductometric Titration, Viscosity Measurement, Water Hardness Determination, Cement Analysis |
| CSL100 | Computer Programming Lab | Lab | 1 | C Programming Basics, Conditional Statements and Loops, Arrays and Pointers, Functions and Recursion, Structures and Unions, File Handling |
| MCL102 | NSS/NCC/Nature Club/Yoga | Audit Course | 0 | Community Service Initiatives, Environmental Awareness Programs, Leadership and Discipline, Yoga and Wellness Practices, Disaster Management Training, Cultural and Social Engagement |
Semester 3
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA201 | Linear Algebra & Complex Analysis | Core | 4 | Vector Spaces and Subspaces, Linear Transformations, Eigenvalues and Eigenvectors, Complex Numbers and Functions, Analytic Functions and Cauchy-Riemann Equations, Conformal Mapping and Residue Theorem |
| ME201 | Mechanics of Solids | Core | 4 | Stress and Strain Analysis, Mechanical Properties of Materials, Axial Loads and Torsion, Bending Moments and Shear Forces, Deflection of Beams, Columns and Struts |
| ME203 | Mechanics of Fluids | Core | 4 | Fluid Properties and Statics, Fluid Kinematics, Fluid Dynamics and Bernoulli''''s Equation, Flow through Pipes, Boundary Layer Theory, Dimensional Analysis and Model Studies |
| ME205 | Thermodynamics | Core | 4 | Basic Concepts and Zeroth Law, First Law of Thermodynamics, Second Law of Thermodynamics, Entropy and Reversibility, Properties of Pure Substances, Thermodynamic Cycles |
| ME210 | Metallurgy and Materials Science | Core | 3 | Crystal Structure and Imperfections, Mechanical Properties of Materials, Heat Treatment of Steels, Phase Diagrams (Fe-C Diagram), Non-Ferrous Alloys, Non-Metallic Materials and Composites |
| HS200 | Business Economics | Core | 3 | Microeconomics and Macroeconomics, Demand and Supply Analysis, Production and Cost Analysis, Market Structures, National Income and Monetary Policy, Financial Management Basics |
| ME231 | Computer Aided Machine Drawing Lab | Lab | 1 | Orthographic and Sectional Views, Assembly and Disassembly Drawings, Production Drawings, Geometric Dimensioning and Tolerancing (GD&T), CAD Software Proficiency, Part Modeling and Detailing |
| ME233 | Fluid Mechanics & Machines Lab | Lab | 1 | Flow Measurement (Venturimeter, Orifice), Reynolds Experiment, Impact of Jet, Performance of Pumps (Centrifugal, Reciprocating), Performance of Turbines (Pelton, Francis), Major and Minor Losses in Pipes |
| MCN201 | Sustainable Engineering | Audit Course | 0 | Green Building Concepts, Renewable Energy Technologies, Waste to Energy Systems, Environmental Impact Assessment, Sustainable Manufacturing Practices, Pollution Control Technologies |
Semester 4
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| MA202 | Prob. Distributions, Transforms and Numerical Methods | Core | 4 | Probability and Random Variables, Probability Distributions (Binomial, Poisson, Normal), Fourier Transforms and Applications, Z-Transforms, Numerical Solution of Equations, Numerical Integration and Differentiation |
| ME202 | Advanced Mechanics of Solids | Core | 4 | Theories of Failure, Combined Stresses, Thick and Thin Cylinders, Bending of Curved Beams, Springs (Helical, Leaf), Unsymmetrical Bending |
| ME204 | Thermal Engineering | Core | 4 | Steam Boilers and Accessories, Steam Turbines and Condensers, Nozzles and Diffusers, Vapour Power Cycles (Rankine Cycle), Gas Power Cycles (Otto, Diesel, Brayton), Refrigeration and Air Conditioning Principles |
| ME206 | Fluid Machinery | Core | 4 | Impulse and Reaction Turbines, Centrifugal Pumps, Reciprocating Pumps, Hydraulic Systems and Components, Compressors (Reciprocating, Rotary), Performance Characteristics of Fluid Machines |
| ME220 | Theory of Machines | Core | 4 | Kinematics of Machines, Cams and Followers, Gears and Gear Trains, Flywheel, Governors, Balancing of Rotating and Reciprocating Masses |
| HSM200 | Principles of Management | Core | 3 | Introduction to Management, Planning and Decision Making, Organizing and Staffing, Directing and Leading, Controlling and Coordination, Marketing and Financial Management Basics |
| ME232 | Thermal Engineering Lab | Lab | 1 | Performance of IC Engines (Petrol, Diesel), Boiler Trial, Heat Pump/Refrigeration Test Rig, Heat Exchanger Performance, Air Compressor Test, Steam Nozzle Test |
| ME234 | Manufacturing Technology Lab | Lab | 1 | Machining Operations (Turning, Milling, Drilling), Grinding and Finishing Operations, Welding Process Demonstrations, Foundry Sand Testing, Sheet Metal Operations, CNC Programming Basics |
| MCN202 | Design and Engineering | Audit Course | 0 | Design Thinking Process, Product Design and Development, Ergonomics in Design, Reverse Engineering, Intellectual Property Rights (IPR), Ethics in Engineering Design |
Semester 5
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME301 | Machine Design I | Core | 4 | Design Process and Theories of Failure, Stress Concentration and Endurance Limit, Design of Riveted Joints, Design of Welded Joints, Design of Threaded Fasteners, Design of Keys and Couplings |
| ME303 | Manufacturing Technology | Core | 4 | Foundry Processes and Casting, Welding and Brazing, Forming Processes (Rolling, Forging, Extrusion), Machining Processes (Turning, Milling, Grinding), Jigs and Fixtures, Powder Metallurgy |
| ME305 | Computer Aided Design & Manufacturing | Core | 4 | CAD Hardware and Software, Geometric Modeling (Wireframe, Surface, Solid), NC/CNC Machine Tools, CAM Software and Tool Path Generation, Flexible Manufacturing Systems (FMS), Computer Integrated Manufacturing (CIM) |
| ME307 | Heat & Mass Transfer | Core | 4 | Conduction Heat Transfer, Convection Heat Transfer, Radiation Heat Transfer, Heat Exchangers, Heat Transfer with Phase Change, Mass Transfer Principles |
| ME309 | Internal Combustion Engines & Gas Turbines | Core | 4 | IC Engine Cycles and Components, Fuels and Combustion in SI/CI Engines, Engine Performance and Emissions, Engine Cooling and Lubrication, Gas Turbine Cycles and Components, Jet Propulsion |
| ME36X | Department Elective I | Elective | 3 | Topics depend on chosen elective, e.g., Advanced Fluid Mechanics, Operation Research, Mechatronics, etc. |
| ME341 | Machine Design & Advanced CAD Lab | Lab | 1 | Solid Modeling and Assembly Design, Advanced Part Modeling Techniques, Introduction to FEA Software, Kinematic Simulation, Design Projects using CAD Tools, GD&T Applications |
| ME343 | Thermal Engineering Lab II | Lab | 1 | Heat Exchanger Analysis, Refrigeration and Air Conditioning System Performance, Conduction Heat Transfer Experiments, Convection Heat Transfer Experiments, Radiation Heat Transfer Experiments, Combustion Analysis |
| ME351 | Mini Project | Project | 2 | Problem Identification and Literature Review, Design and Planning, Fabrication/Simulation and Analysis, Testing and Validation, Technical Report Writing, Presentation Skills |
| ME353 | Comprehensive Viva Voce | Core | 1 | Overall Mechanical Engineering Concepts, Problem-Solving Aptitude, Subject Application and Integration, Communication and Presentation, Industry Trends and General Knowledge, Interview Skills |
Semester 6
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME302 | Machine Design II | Core | 4 | Design of Shafts and Axles, Design of Bearings (Sliding and Rolling Contact), Design of Springs, Design of Gears (Spur, Helical, Bevel), Design of Clutches and Brakes, Design of Flywheels |
| ME304 | Dynamics of Machinery | Core | 4 | Balancing of Rotating Masses, Balancing of Reciprocating Masses, Vibrations (Free, Forced), Torsional Vibrations, Critical Speeds of Shafts, Gyroscopic Effects |
| ME306 | Advanced Manufacturing Technology | Core | 4 | Non-Traditional Machining Processes (EDM, ECM, LBM), Additive Manufacturing (3D Printing), Rapid Prototyping Techniques, Micro and Nano Manufacturing, Advanced Welding Processes, Automation in Manufacturing |
| ME308 | Metrology & Instrumentation | Core | 4 | Limits, Fits and Tolerances, Linear and Angular Measurement, Measurement of Surface Roughness, Comparators and Gauges, Transducers and Sensors, Data Acquisition Systems |
| ME37X | Department Elective II | Elective | 3 | Topics depend on chosen elective, e.g., Tool Design, Operations Management, Robotics, etc. |
| OE3XX | Open Elective I | Elective | 3 | Topics from other engineering disciplines, e.g., Renewable Energy Systems, Industrial Safety, Cyber Security, etc. |
| ME342 | Dynamics of Machinery Lab | Lab | 1 | Static and Dynamic Balancing, Moment of Inertia of Flywheel, Governor Characteristics, Vibration Analysis (Single Degree of Freedom), Gyroscopic Couple, Cam Profile Analysis |
| ME344 | Metrology & Instrumentation Lab | Lab | 1 | Precision Linear Measurements, Angular Measurements, Form Error Measurement, Surface Roughness Measurement, Calibration of Measuring Instruments, Transducer Characteristics |
| ME352 | Industrial Training | Internship | 2 | Exposure to Industrial Practices, Understanding Manufacturing Processes, Safety Protocols in Industry, Observation of Production and Quality Control, Project Implementation in an Industrial Setting, Report on Industrial Experience |
Semester 7
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME401 | Design of Machine Elements | Core | 4 | Design for Static and Dynamic Loading, Design of Shafts, Design of Bearings (Journal and Ball), Design of Springs, Design of Power Screws, Design of Clutches and Brakes |
| ME403 | Advanced Manufacturing Processes | Core | 4 | Electrochemical Machining (ECM), Electrical Discharge Machining (EDM), Laser Beam Machining (LBM), Electron Beam Machining (EBM), Water Jet Machining (WJM), Plasma Arc Machining (PAM) |
| ME405 | Finite Element Analysis | Core | 4 | Introduction to FEM, Direct Stiffness Method, One-Dimensional Elements, Two-Dimensional Elements, Isoparametric Formulation, Applications in Stress and Thermal Analysis |
| ME46X | Department Elective III | Elective | 3 | Topics depend on chosen elective, e.g., Power Plant Engineering, Robotics and Industrial Automation, Cryogenics, etc. |
| OE4XX | Open Elective II | Elective | 3 | Topics from other engineering disciplines, e.g., Industrial Safety Engineering, Total Quality Management, Professional Ethics, etc. |
| ME451 | Project Phase I | Project | 2 | Problem Definition and Literature Survey, Project Planning and Scheduling, Methodology and Design Concepts, Preliminary Analysis and Simulation, Resource Identification, Mid-Term Report and Presentation |
| ME453 | Mechanical Engineering Lab | Lab | 1 | Advanced IC Engine Testing, Refrigeration and AC System Troubleshooting, Fluid Flow Visualization, Vibration Analysis of Complex Systems, Material Testing (Fatigue, Creep), Measurement of Noise and Pollution |
| ME455 | Comprehensive Viva Voce | Core | 2 | Holistic Understanding of Mechanical Engineering, Integration of Core Subjects, Current Technological Advancements, Problem-Solving Scenarios, Industrial Relevance of Concepts, Career Preparedness and Aspirations |
Semester 8
| Subject Code | Subject Name | Subject Type | Credits | Key Topics |
|---|---|---|---|---|
| ME402 | Mechatronics | Core | 4 | Sensors and Actuators, Signal Conditioning, Microcontrollers and Microprocessors, Programmable Logic Controllers (PLC), Data Acquisition Systems, Mechatronic System Design |
| ME404 | Refrigeration & Air Conditioning | Core | 4 | Vapour Compression Refrigeration Systems, Vapour Absorption Refrigeration Systems, Refrigerants and Environmental Impact, Psychrometry and Air Conditioning Processes, Cooling Load Calculations, HVAC System Design |
| ME406 | Production & Operations Management | Core | 4 | Production Planning and Control, Inventory Management, Quality Control and Assurance, Supply Chain Management, Lean Manufacturing and Six Sigma, Project Management Techniques |
| ME47X | Department Elective IV | Elective | 3 | Topics depend on chosen elective, e.g., Automobile Engineering, Industrial Hydraulics and Pneumatics, Additive Manufacturing, etc. |
| ME492 | Project Phase II | Project | 6 | Project Implementation and Fabrication/Simulation, Data Collection and Analysis, Results and Discussion, Troubleshooting and Optimization, Final Technical Report, Project Presentation and Viva Voce |




