PEOs reflect the professional accomplishments expected of graduates 3 to 5 years after graduation:
PEO-1 (Core Technical Competency):
Graduates will establish successful professional careers in the IT
industry, software development firms, and tech-driven organizations by
applying foundational knowledge in computer science, software engineering,
and information technology.
PEO-2 (Problem Solving &
Innovation): Graduates will formulate, design, and implement efficient
software and hardware solutions to real-world engineering problems using
modern programming paradigms, algorithmic thinking, and modern IT tools.
PEO-3 (Professional Ethics &
Teamwork): Graduates will function effectively as individual
contributors, project leaders, or team members in multidisciplinary
environments while upholding high standards of professional ethics,
software compliance, and social responsibility.
PEO-4 (Lifelong Learning &
Higher Education): Graduates will pursue advanced research, higher
studies, or professional certifications and continuously adapt to rapidly
changing technological trends such as AI, Cloud Computing, Cybersecurity,
and Data Science.
PEO-5 (Entrepreneurship & Management): Graduates will demonstrate project management capabilities, communication skills, and entrepreneurial initiatives to drive technical innovation for socio-economic growth.
PO1: Engineering Knowledge: Apply
the knowledge of mathematics, science, engineering fundamentals, and computer
science specialization to the solution of complex engineering problems.
PO2: Problem Analysis: Identify,
formulate, review research literature, and analyze complex CS & IT
engineering problems reaching substantiated conclusions using first principles
of mathematics, natural sciences, and computer science.
PO3: Design/Development of
Solutions: Design solutions for complex IT systems, computational
processes, or software components that meet specified technical, safety,
societal, and environmental requirements.
PO4: Conduct Investigations of
Complex Problems: Use research-based methods, including the design of
computational experiments, data analysis, and synthesis of information to
provide valid conclusions.
PO5: Modern Tool Usage: Select
and apply appropriate techniques, resources, and modern engineering and IT
tools—including IDEs, framework environments, cloud platforms, and AI
models—with an understanding of their limitations.
PO6: The Engineer and Society: Apply
contextual reasoning to assess societal, health, safety, legal, cybersecurity,
and cultural issues relevant to professional IT engineering practice.
PO7: Environment and
Sustainability: Understand the impact of software and computing solutions
in societal and environmental contexts (e.g., Green Computing) and demonstrate
the knowledge of sustainable development.
PO8: Ethics: Apply ethical
principles, software license norms, digital security ethics, and commit to
professional responsibilities of computer science practice.
PO9: Individual and Team Work: Function
effectively as an individual, and as a member or leader in diverse and
multidisciplinary software engineering teams.
PO10: Communication:
Communicate effectively on complex computing activities through software
documentation, technical reports, system architecture diagrams, and effective
presentations.
PO11: Project Management and
Finance: Apply engineering and software project management principles (such
as Agile, Scrum, and resource budgeting) to handle IT projects in
multidisciplinary environments.
PO12: Life-Long Learning: Recognize
the need for, and have the capability to engage in independent and lifelong
learning in the context of technological advancements.
PSO-1 (Software Development & Algorithm Design): Demonstrate the ability to analyze, design, and develop scalable software applications using core computer science concepts—including Data Structures, Algorithms, Object-Oriented Design, Operating Systems, Database Systems, and Web Technologies.
PSO-2 (Networking, Security & Systems Engineering): Apply foundational principles of computer networks, distributed systems, information security, and cloud architectures to build secure, robust, and efficient network infrastructures.
PSO-3 (Emerging Technologies & Analytics): Utilize contemporary tools and frameworks in emerging domains—such as Artificial Intelligence, Machine Learning, Data Analytics, Internet of Things (IoT), and DevOp platforms—to solve complex real-world data and computing challenges.