MSc/M.Engg. in Mechanical Engineering 24 months Postgraduate Programme By Military Institute of Science and Technology |TopUniversities

MSc/M.Engg. in Mechanical Engineering

Programme Duration

24 monthsProgramme duration

Application Deadline

30 Jan, 2026Application Deadline

Starting Month

Apr, OctStarting Month

Programme overview

Main Subject

Engineering - Mechanical

Degree

MSc

Study Level

Masters

Study Mode

On Campus

The Master of Science in Mechanical Engineering (M.Sc. Engg. ME) at the Military Institute of Science and Technology (MIST) is an advanced research-oriented program designed to deepen technical proficiency and foster innovation in traditional and emerging mechanical systems. Established to meet the growing national demand for high-level technical leadership, the program offers specialized tracks in Fluid Mechanics, Thermal Engineering, Applied Mechanics, and Automotive Engineering. The curriculum requires a total of 36 credits, typically balanced between 18 credits of advanced coursework and an 18-credit intensive research thesis, allowing students to engage in cutting-edge projects such as subsonic wind tunnel development, smart materials, and high-horsepower engine testing. Benefiting from a unique academic environment that blends military discipline with industrial collaboration, students utilize world-class facilities including the Fatigue Testing Lab, the Hydraulic Pump Test Bench, and high-precision Material Testing furnaces. This program is tailored for individuals aiming for careers in high-impact R&D, academia, or specialized industrial roles, ensuring they emerge as technically sound intellectuals ready to solve complex global engineering challenges.

Programme overview

Main Subject

Engineering - Mechanical

Degree

MSc

Study Level

Masters

Study Mode

On Campus

The Master of Science in Mechanical Engineering (M.Sc. Engg. ME) at the Military Institute of Science and Technology (MIST) is an advanced research-oriented program designed to deepen technical proficiency and foster innovation in traditional and emerging mechanical systems. Established to meet the growing national demand for high-level technical leadership, the program offers specialized tracks in Fluid Mechanics, Thermal Engineering, Applied Mechanics, and Automotive Engineering. The curriculum requires a total of 36 credits, typically balanced between 18 credits of advanced coursework and an 18-credit intensive research thesis, allowing students to engage in cutting-edge projects such as subsonic wind tunnel development, smart materials, and high-horsepower engine testing. Benefiting from a unique academic environment that blends military discipline with industrial collaboration, students utilize world-class facilities including the Fatigue Testing Lab, the Hydraulic Pump Test Bench, and high-precision Material Testing furnaces. This program is tailored for individuals aiming for careers in high-impact R&D, academia, or specialized industrial roles, ensuring they emerge as technically sound intellectuals ready to solve complex global engineering challenges.

Admission Requirements

32+

1) A candidate must have a minimum GPA of 4.00 out of 5.00 or a first division or equivalent in S.S.C. and H.S.C. or in equivalent examinations.

2) A candidate must have at least 55% marks or a minimum GPA of 2.75 out of 4.00 or its equivalent in B.Sc.Engg.

30 Jan 2026
2 Years
Apr
Oct

Scholarships

Selecting the right scholarship can be a daunting process. With countless options available, students often find themselves overwhelmed and confused. The decision can be especially stressful for those facing financial constraints or pursuing specific academic or career goals.

To help students navigate this challenging process, we recommend the following articles:

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Frequently Asked Questions

The M.Sc. (Master of Science) is research-centric, requiring 18 credits of coursework and an 18-credit thesis, making it ideal for those pursuing PhDs or R&D roles. The M.Engg. (Master of Engineering) is practice-oriented, requiring 30 credits of coursework and a 6-credit project, tailored for professionals seeking to enhance their industrial management and technical skills.
The program is structured into four core divisions: Fluid Mechanics (computational fluid dynamics, turbo-machinery), Thermal Engineering (heat transfer, renewable energy), Applied Mechanics (vibrations, smart materials, elasticity), and Automotive Engineering (engine performance, emission control).
The department houses specialized laboratories such as the Fatigue Testing Lab for motorcycle and industrial parts, a Hydraulic Pump Test Bench capable of testing deep submersible pumps, a Dynamometer for high-horsepower engine testing, and an Automotive Lab equipped for advanced emission and brake testing.
The OBE model at MIST shifts the focus from what is taught to what the student achieves. Each course is mapped to specific Program Learning Outcomes (PLOs), such as "Complex Problem Investigation" and "Modern Tool Usage." For example, in the Advanced Heat Transfer course, your success isn't just measured by an exam, but by your ability to simulate heat distribution in a micro-electronic cooling system using industry-standard software like ANSYS or MATLAB. This ensures that every credit you earn directly translates into a skill used in the global engineering market.
MIST provides a "dual-environment" research setup. For computational research, students utilize the CAD/CAM Lab, which is equipped with Core-i7 workstations running high-end licensed software such as ANSYS (for CFD and Structural analysis), SolidWorks, and MATLAB. For experimental validation, students have access to rare industrial-grade hardware including: Aero-Fluid Mechanics & Machinery Lab: Featuring a Subsonic Wind Tunnel for aerodynamic profile testing and a Hydraulic Pump Test Bench (utilized for national-level testing of WASA pumps). Material Characterization Lab: Equipped with Handheld X-ray Fluorescence (XRF) for chemical composition analysis and Atomic Absorption Spectrometers. Thermodynamics Lab: Houses an Industrial Model Boiler, Steam Turbines, and Gas Turbine trainers for analyzing Rankine and Brayton cycles in real-time.
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