Syllabus for M.Tech (Mechanical) Entrance Test in MIT, - TopicsExpress



          

Syllabus for M.Tech (Mechanical) Entrance Test in MIT, Aurangabad Maharashtra Institute of Technology (MIT) offers admission to M.Tech degree either on the basis of GATE score or on the basis of entrance exam conducted at institute level. Topics like Metal Casting, Computer Integrated Manufacturing, Quality Control, Heat Transfer, Mechanical Measurements, and Strength of Materials are covered under the syllabus of institute level entrance exam. Syllabus for M.Tech (Mechanical) Entrance Test in MIT, Aurangabad Engineering Materials Alloys and binary phase diagrams Ceramics Composite materials Crystalline materials Defects in crystalline materials Heat treatment of steels Plastics Properties of common engineering materials Structure of solids Metal Casting Design of patterns, Moulds and cores Riser and gating design Solidification and cooling Metal Forming Fundamentals of hot and cold working processes Load estimation for bulk and sheet metal forming processes Plastic deformation and yield criteria Principles of powder metallurgy Joining and Welding Adhesive bonding Brazing and soldering Electric arc welding Gas welding and Thermit welding Solid State welding Machining and Machine Tool Operations Economics of machining Mechanics of machining Principles of nontraditional machining processes Single and multi-point cutting tools Tool geometry and materials Tool life and wear Metrology and Inspection Alignment and testing methods Comparators Fits and tolerances Form and finish measurement Interferometery Limits Linear and angular measurements Tolerance analysis Computer Integrated Manufacturing Basic concepts of manufacturing cell CAD/CAM and their integration tools FMS and CIM Methods Study and Work Measurements Flow process chart Left-hand-right-hand chart Man-machine chart Method time measurement systems Micro and memo motion studies Motion study Principles of motion economy String diagram Therbligs Time study Work sampling Production Planning and Control Aggregate production planning Forecasting models Materials requirement planning Product design and development Scheduling Supply chain management Inventory Control Deterministic and probabilistic models Safety stock inventory control systems Operations Research Assignment Problem CPM and PERT Linear programming Simple queuing models Simplex method Simulation Transportation Problem Quality Control Definition of quality OC curve Quality control charts Quality function deployment Sampling plans Total quality management Engineering Economy Breakeven analysis Demand and supply Methods of depreciation calculations Nominal and effective interest rates Ergonomics Design of displays and controls Human-computer-interaction Industrial ergonomics Thermodynamics Analysis of thermodynamics cycles related to energy conversion Behaviour of ideal and real gases Calculation of work and heat in ideal processes Entropy Irreversibility and Availability Laws of thermodynamics I.C. Engines Carburetion Engine performance Fuel injection Normal and abnormal combustion in SI and CI engines Energy Conversion Systems Basic cycles related to energy conversion system Binary Vapour cycle Bratton cycle Combined cycle Energy sources Regenerative cycles Fluid Mechanics Bernoulli’s equation Boundary layer theory Compressible flow Control-volume analysis of mass, momentum and energy Equations of continuity Fluid properties Laminar and Turbulent Flow Heat Transfer Basics of heat transfer in condensation and pool boiling Heat exchangers Modes of heat transfer Network analysis One dimensional steady and unsteady heat conduction Radiative heat transfer Two dimensional steady state conduction Refrigeration and air-conditioning Adiabatic mixing Basics of airconditioning equipment Cooling load calculation Dehumidification Humidification Properties of moist air Psychometric chart Psychrometric chart Refrigeration system Solar refrigeration system Vapour Absorption system Vapour compression system Steam and Gas Turbines Pressure Impulse Turbines Reaction turbines Work Turbo Machines Adiabatic and polytropic compression Centrifugal and axial flow compressors Centrifugal pumps Euler’s equation Inter-cooling and after cooling Minimum work requirement Pumps and compressors Tangential and reaction hydraulic turbines Volumetric efficiency Mechanical Measurements Displacement Fluid flow measurement Force Pressure Sound Speed Strain Temperature Torque Types of thermocouple and transducers Velocity Vibration Applied Mechanics Centre of gravity Equivalent force system and equilibrium Friction Kinematics Kinetics of rigid bodies Moment of inertia Structural mechanics Theory of Machines Automatic controls Balancing of rigid rotors and field balancing Balancing of single and multicylinder engines Critical speeds and whirling of shafts Kinematic and dynamic analysis of planer mechanisms Linear vibration analysis of mechanical systems Machine Design Design procedure Safety factor Theories of failure Strength of Materials Isotropy and anisotropy Linear elastic materials Mohr’s construction Principal stresses and strains Stress and strain in two and three dimensions Stress-strain relations Thermal stresses Uniaxial loading Beams Bending moment and shear force diagram Bending stresses Combined stresses Deflection of beams Helical springs Shear stress distribution Strain energy concepts Thick-and thin-walled pressure vessels Torsion of shafts The syllabus for the entrance exam is based on the topics prescribed under B.E/B.Tech (Mechanical Engineering). Exam preparations should be planned after understanding the exam syllabus clearly. Reference books and question papers of previous years can be used for study.
Posted on: Sat, 07 Sep 2013 02:27:42 +0000

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