Masdar Institute of Science and Technology

Master in Mechanical Engineering - Ingeniería Mecánica

Masdar Institute of Science and Technology
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  • Imparte:
  • Modalidad:
    Presencial en Masdar City
  • Precio:
    There are five scholarships available to applicants of Masdar Institute – the Masdar Institute Scholarship, BP Innovation Scholarship, IRENA Scholarship, Toyota Scholarship and ICT Fund Scholarship.
  • Comienzo:
    Septiembre 2016
  • Lugar:
    Masdar City (Abu Dhabi)
    Emiratos Árabes Unidos
  • Idioma:
    El Master se imparte en Inglés
  • Titulación:
    Máster MSc in Mechanical Engineering - Ingeniería Mecánica

Presentación

Mechanical Engineering is a broad engineering discipline with a range of activities and functions that touch almost every aspect of technology.

Mechanical Engineering covers subjects related to energy, fluid mechanics and dynamics, solid mechanics, heat transfer, and design and manufacturing. This diverse background uniquely positions mechanical engineers to help define the future of technology and play a critical role in solving global energy and sustainability challenges.

The Mechanical Engineering Program at Masdar Institute aspires to become renowned for outstanding graduate education and research that is at the forefront of engineering advancements. The mission of the Mechanical Engineering Program is to provide students with the fundamental knowledge, skills, and professional experience necessary for successful careers in industrial or academic roles that involve alternative energy and sustainable technologies.

Requisitos

A relevant undergraduate degree in the fields of science, engineering or information technology
A minimum CGPA of 3.0 (on a scale of 4.0) or equivalent (2nd class upper in the British system)
A minimum GRE Quantitative score of 155 (700 on the old scale).
A minimum TOEFL score of 91 (Internet based) or equivalent paper/computer based TOEFL, or a minimum academic IELTS score of 6.5.

Academically strong applicants who do not have the GRE test may be evaluated for admission. If admitted, they will then be required to take placement exams and/or additional 400-level courses.

Objetivos

The MSc in Mechanical Engineering Program goals are to produce post-graduate students with the disciplinary preparation that meets the following goals:
•An ability to identify and address current and future mechanical engineering problems related to energy sources, production, conversion, efficiency, and control within a broader framework of sustainable development;
•An ability to apply a multi-disciplinary approach to conceive, plan, design, and implement solutions to mechanical engineering problems in the field of energy and sustainability;
•An understanding of the impact of solutions to energy problems in a global, economic, environmental, and societal context; and
•An understanding of the value of technical and scientific scholarship, service to society, leadership and lifelong learning required to further their career aspirations.

Programa

MEG501 – Advanced Fluid Mechanics – 3 credits
MEG504 – Advanced Energy Conversion – 3 credits
MEG505 – Nano-to-Macro Transport Processes – 3 credits
MEG506 – Applications of Combustion – 3 credits
MEG507 – Advanced Heat Transfer – 3 credits
MEG509 - Nuclear Power Systems – 3 credits
MEG510 - Advanced Thermodynamics – 3 credits
MEG511 - Advanced Engineering Mathematics – 3 credits
MEG513 – Solar Thermal Analysis, Design and Testing – 3 credits
MEG515 – Fuel Cell Systems – 3 credits
MEG516 Energy Process Modeling, Analysis and Control – 3 credits
MEG517 – Continuum Mechanics – 3 credits
MEG600 – Master Thesis in Mechanical Engineering – Total 24 credits
MEG601 – Turbulent Flows and Turbulence Modeling – 3credits
MEG602 – Multiphase Flow in Sub-surface Porous Media – 3 credits
MEG603 – Computational Fluid Mechanics – 3 credits
MEG611 – Multiphase Thermal Fluids in Power and Energy Technologies – 3 credits
MEG612 – Advanced Convection and Two-Phase Heat Transfer – 3 credits
MEG613 – Advanced Radiative Heat Transfer – 3 credits
MEG614 – Advanced Process Dynamics and Control – 3 credits
MEG622 - Non-Linear Finite Element Model – 3 credits
MEG623 – Estimation and Inference from Data and Models – 3 credits

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