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H2 – Computer Science and Engineering

H3 – Computer Science and Engineering

H4- Computer Science and Engineering

Computer Science and Engineering stands as one of the most dynamic and rapidly evolving disciplines of the modern era. Within a relatively short span of time, it has emerged as a cornerstone of global innovation, driving technological.

  • Computer Science and Engineering
  • Computer Science and Engineering
  • Computer Science and Engineering

 

  1. Computer Science and Engineering
  2. Computer Science and Engineering
  3. Computer Science and Engineering

KGRCenterNext

KGRCenterNext

Vision

To become an institution that is internationally recognized for its holistic approach to engineering, innovative teaching and learning culture, research and entrepreneurial ecosystem, and sustainable social impact in the community.

Program Outcomes

PO I: Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems.

PO II: Problem analysis: Identify, formulate, review research literature, and analyze complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.

PO III: Design/development of solutions: Design solutions for complex engineering problems and design system components or processes that meet the specified needs with appropriate consideration for the public health and safety, and the cultural, societal, and environmental considerations.

Program Specific Outcomes

PSO1: The Computer Science and Engineering graduates are able to analyze, design, develop, test and apply management principles, mathematical foundations in the development of intelligent systems with computational solutions, make them to expert in designing the secure application and hardware prototype.

PSO2: The graduating student will be analyze the contemporary research issues in different areas of computer science & engineering and explore research gaps, analyze and carry out research in the specialized/emerging areas.

PSO3: Develop their skills to solve problems in the broad area of programming concepts and appraise environmental and social issues with ethics and manage different projects in multi-disciplinary field to conducive in cultivating skills for successful career, entrepreneurship and higher studies.

Program Educational Objectives

PEO 1: Graduates will provide solutions to difficult and challenging issues in their profession by applying computer science and engineering theory and principles.

PEO 2: Graduates have successful careers in computer science and engineering fields or will be able to successfully pursue advanced degrees.

PEO 3: Graduates will communicate effectively, work collaboratively and exhibit high levels of professionalism, moral and ethical responsibility.

PEO 4: Graduates will develop the ability to understand and analyse engineering issues in a broader perspective with ethical responsibility towards sustainable development.

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Strategic Advancement in Cloud Computing and DevOps Integration

Strategic Advancement in Cloud Computing and DevOps Integration

This technical workshop represents more than just a training session; it serves as a bridge between theoretical classroom concepts and the high-stakes reality of modern IT operations. By partnering with Teks Academy, the department provided students with a rare…

Recognition in Multi-Disciplinary Industry Problem-Solving

Recognition in Multi-Disciplinary Industry Problem-Solving

The recent success of “The Social Innovators” and “Mechanizers” at the Think2Impact workshop serves as a powerful testament to the department’s evolving pedagogical framework. By securing top honors in an arena defined by industry standards, these teams have validated…

Support for National Level Competitive Examinations

Support for National Level Competitive Examinations

The initiative by the Head of Department to facilitate the distribution of GATE (Graduate Aptitude Test in Engineering) preparation materials represents a strategic investment in the intellectual capital of the student body. This move is not merely a logistical…

Excellence in Competitive Programming and Algorithmic Logic

Excellence in Competitive Programming and Algorithmic Logic

That is an impressive accomplishment! Winning a competition like “Code Crime” isn’t just about knowing how to write syntax; it’s about the mental stamina to deconstruct a puzzle under the clock and the surgical precision required to fix “broken” logic that others…

Modern Methodologies in Software Engineering and Systems Design

Modern Methodologies in Software Engineering and Systems Design

The guest lecture organized by the Department of Computer Science and Engineering served as a pivotal bridge between classroom concepts and the high-stakes reality of the tech industry. For second-year students, who are often deep in the logic of data structures and…

Industrial Exposure to Sustainable Waste Management Systems

Industrial Exposure to Sustainable Waste Management Systems

The integration of automated systems into Construction and Demolition (C&D) waste management represents a pivotal shift in how modern municipalities approach the circular economy. At these facilities, the transformation of raw debris into reusable materials is not…

Memorandum of Understanding with University of Emerging Technology

Memorandum of Understanding with University of Emerging Technology

The formal establishment of a Memorandum of Understanding (MoU) with the University of Emerging Technology marks a significant milestone in institutional growth, designed to cultivate a robust ecosystem of academic and technical synergy. By aligning the core strengths…

Industry Problem-Solving and Experiential Learning Initiatives

Industry Problem-Solving and Experiential Learning Initiatives

The PALS Think2Impact workshop serves as a transformative bridge between foundational academic theory and the multifaceted demands of the modern engineering industry. By moving beyond traditional rote learning, this initiative creates an immersive environment where…

Hands-On Experiential Learning and Hardware Interfacing

Hands-On Experiential Learning and Hardware Interfacing

While the theoretical foundations of computer science and electrical engineering provide the “why,” practical laboratory sessions are where students discover the “how.” Transitioning from a sanitized, virtual IDE to a breadboard teeming with jumper wires and…

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