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The Master of Engineering in Chemical Engineering is an applications or project-oriented degree that emphasizes the application of theories and methods to actual problems in industry and academe. It generally focuses on the design, enhancement, and implementation of chemical engineering systems and processes using modern engineering tools and techniques. Students will explore the complementary nature of chemical and biochemical processes in the industry, reactions and thermodynamics, the chemistry and design of pollution control. Students will develop solutions to problems across a variety of technology-based industries.

 

 

PROGRAM EDUCATIONAL OBJECTIVES

 

Three to five years of graduation, alumni of Master of Engineering in Chemical Engineering shall:

  • have advanced their practice or achievement in the field of Chemical Engineering and/or other endeavors or advocacies supported by their acquired engineering education;
  • strive to be globally competitive through
    - living by the T.I.P. mission values, engaging in lifelong learning, and practicing continuous quality improvement in their personal lives;
    - continuously scanning, adopting, and building on the best practices in their field;
    - contributing to the advancement of learning in the field of Chemical Engineering through research and professional practice.

 

 

STUDENT OUTCOMES

 

SO 1 Develop solutions to complex Chemical Engineering problems with full independence and/or in teams of multidisciplinary field
SO 2 Demonstrate proficiency in conducting research in the field of Chemical Engineering
SO 3 Communicate effectively in a variety of professional contexts.
SO 4 Demonstrate effective management skills in a Chemical Engineering project in a specialized or multidisciplinary field
SO 5 Apply ethical and professional principles in the practice of Chemical Engineering
SO 6 Demonstrate the ability to continuously improve skills and knowledge towards professional development.