This program combines the traditional, new, and emerging fields of mechanical engineering such as mechanics, thermofluid sciences, power systems, mechatronics, robotics, nanotechnology, and renewable energy systems. It also allows students to learn how to design and implement mechatronic and robotic systems. In the final year of their study, the students undertake a research project and undergo an on-the-job training based on their chosen tracking, which could either be in mechatronics engineering, automotive engineering, or refrigeration and air-conditioning engineering.

Graduates of this program have a good preparation for professional practice in the areas of manufacturing, operation, maintenance, design, research and management, and for graduate studies as well.

Mission

To attain its vision, the school commits to:

  • Develop excellent academic programs that respond to the rapidly changing needs of both the local and global communities.
  • Conduct relevant and cutting-edge research and development projects in various fields of mechanical engineering that have an immediate impact on society.
  • Undertake community extension projects that uplift the living conditions of the marginalized and preserve the environment.
  • Produce graduates who are technically competent and imbued with Mapúa core values of discipline, excellence, commitment, integrity and relevance.

PROGRAM EDUCATION OBJECTIVES

Within the five years after graduation, the graduates of Mechanical Engineering program shall have:

  • Undertaken, singly or in teams, projects that show ability to solve complex engineering problems.
  • Had substantial involvement in projects that take into consideration safety, health, environmental concerns and the public welfare, partly through adherence to required codes and laws.
  • Demonstrated professional success via promotions and/or positions of increasing responsibility.
  • Demonstrated life-long learning via progress toward completion of an advanced degree, professional development/continuing education courses, or industrial training courses.
  • Exhibited professional behavior and attitude in engineering practice.
  • Initiated and implemented actions toward the improvement of engineering practice.

PROGRAM OUTCOMES

  • Ability to apply knowledge of mathematics, science and engineering.
  • Ability to design and conduct experiments, as well as to analyze and interpret data.
  • Ability to design a system, component, or process to meet desired needs within realistic constraints such as economic, environmental, social, political, ethical, health and safety, manufacturability, and sustainability.
  • Ability to function on multi-disciplinary teams.
  • Ability to identify, formulate and solve engineering problems.
  • Understanding of professional and ethical responsibility.
  • Ability to communicate effectively.
  • Broad education necessary to understand the impact of engineering solutions in the global and societal context.
  • Recognition of the need for, and an ability to engage in life-long learning.
  • Knowledge of contemporary issues.
  • Ability to use the techniques, skills, and modern engineering tools necessary for engineering practice.
  • Knowledge and understanding of engineering and management principles, as a member and leader in a team, to manage projects in multidisciplinary environments.

Careers

Graduates of this program have a good preparation for professional practice in the areas of manufacturing, operation, maintenance, design, research and management, and for graduate studies as well.

Program taught in:
English

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This course is Campus based
Start Date
Nov. 2019
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