Student Outcomes, Graduate Attributes and Program Learning Outcomes

Student Outcomes
  1. an ability to identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics
  2. an ability to apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors
  3. an ability to communicate effectively with a range of audiences
  4. an ability to recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts
  5. an ability to function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives
  6. an ability to develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions
  7. an ability to acquire and apply new knowledge as needed, using appropriate learning strategies
Graduate Attributes

The program has graduate attributes (GA) which are mentioned below:

GA-1: Scholarship of Knowledge

GA-2: Problem Solving

GA-3: Critical Thinking

GA-4: Usage of Modern Tools

GA-5: Communication

GA-6: Ethical Practices and Social Responsibility

GA-7: Independent and Reflective Learning

GA-8: Research/Investigation Skill

GA-9: Life-long Learning

Program Learning Outcomes

Knowledge and understanding

PLO1.1

Identify integrated knowledge of engineering, mathematics, and natural sciences to solve complex problems.

PLO1.2

Describe solutions for complex engineering problems using specialized, up-to-date knowledge, while addressing public welfare, sustainability, economic factors, and real-world constraints in compliance with standards and codes.

PLO1.3

State complex engineering problems through experiments and data analysis, applying deep knowledge of materials, techniques, and practices to reach valid conclusions.

PLO1.4

Define sustainability, economic, environmental, political, health, safety, and societal factors in solving complex engineering problems.

K...

Skills

PLO 2.1

Apply engineering, mathematical, and scientific principles to solve complex mechanical engineering problems and validate solutions across diverse professional contexts.

PLO 2.2

Develop creative, standards-compliant solutions to complex problems by applying critical thinking across diverse professional contexts with real-world constraints.

PLO 2.3

Investigate complex problems by executing experiments, analyzing data, interpret results, and applying engineering judgment, while effectively using advanced tools, techniques, and materials in practical contexts.

PLO 2.4

Apply and adapt modern engineering, IT, and digital tools to solve complex problems, analyze data, and support research and projects by knowing their limitations.

PLO 2.5

Execute sustainability, economic, environmental, political, health, safety, and societal factors to solve complex problems across diverse disciplines and mechanical engineering professional contexts.

PLO 2.6

Apply project management, economic, and decision-making techniques while conducting research and investigations into complex problems.

PLO 2.7

Communicate engineering concepts, knowledge, and skills effectively to diverse audiences across theoretical and practical contexts.

S

Values, Autonomy, and Responsibility

PLO 3.1

Uphold ethical, professional, and academic standards in engineering practice, making informed judgments while demonstrating responsible citizenship and respectful collaboration.

PLO 3.2

Lead and collaborate in multidisciplinary teams by applying project management, economic, and decision-making strategies, while responsibly conducting research and guiding team planning and evaluation.

PLO 3.3

Pursue lifelong learning through effective strategies to acquire and apply knowledge, while actively contributing to the advancement of the mechanical engineering discipline and society.