CET CODE :E172 - COMED K CODE :E097

Computer Science and Technology

About Department of Computer Science and Technology

Computer Science and Technology.

The B.E. degree in Computer Science and Technology (CST) program prepares undergraduates to learn more about the latest technologies in computing and develop problem-solving techniques, efficient software solutions, and applications. It helps students develop competencies in a broad spectrum of core topics, including computer programming, data structure, and algorithms, database management system. Specializations in artificial intelligence, machine learning, the internet of things, and security offer students opportunities to deepen their knowledge in their chosen areas of interest. A degree in B.E. CST will open the world of professional opportunities in different industries, including software houses, data warehouses, communications companies, management consultancy firms, financial organizations, or research and government.

VISION
  • To acquire and achieve global excellence in the field of Computer Science and Technology, nurturing in professionals, technical competence, innovative skills, professional ethics and social commitment.
MISSION
  • To equip students with a strong foundation in the area of Computer Science and Technology using effective teaching-learning practices.
  • To provide state-of-the-art infrastructure to suit academic, industry and research needs at the global level.
  • To incorporate skill enhancement programmes for students and faculty to cope with the contemporary developments in technology.
  • To inculcate effective communication skills, professional ethics and social commitment among professionals through value added programs.
HOD MESSAGE
Dr. Niranjan R Chougala

B.E., M.Tech., Ph.D,

Mail ID: cst@rrit.ac.in

The Department of Computer Science and Technology, since its inception in AY 2024-25, imparts quality education in the field of B.E. Computer Science and Technology, keeping in mind, the requirements of the dynamic, innovative and highly global environment of the present trends Computer Technologies. This program would enable learners to be adept in a wide array of skills such as Mathematical Modeling, Machine Learning, Artificial Intelligence, and Data Analytics...
The Department has excellent infrastructure facilities with well-equipped computer labs, classrooms, and libraries. We offer a progressive teaching-learning environment through a team of competent and committed faculty members, experienced in both teaching and industry. Many of them are pursuing doctoral programs with their specializations in the areas of data and computer security, computer networks, image processing, data mining, etc.

about


Our Department works closely with various organizations, which help to impart industry standard trainings for our students. We effectively share the facilities and expertise to improve the capabilities for advanced education, skill development and research work. Bridge courses are conducted for necessary courses to strengthen the prerequisites for learning. Conferences, technical sessions and seminars are conducted on a regular basis to provide an insight into current technological developments. Short term trainings, workshops and hands on courses are offered, to make the students competent enough to equip themselves with the highly dynamic needs of the Computer and IT industry. We also strive to instill innovative thinking practices and empathy in the students to create best-in-class computer professionals, providing solutions to the current societal needs. Our students have repeatedly proven their potential by excelling in various national and international level competitions organized by premier organizations and have secured certificates and recognizations.
The students are encouraged to take part in research activities, participate in project competitions and to publish their work in the national and international conferences, journals etc.

FACULTY PROFILE
Sl. No. Name of the Faculty Designation Qualification
1 DR. MANJUNATH R PROFESSOR Ph.D.
2 DR. NIRANJAN R CHOUGALA PROFESSOR Ph.D.
3 DR. SHIVAKUMARSWAMY N PROFESSOR Ph.D.
4 DR. SWETHA G ASSOCIATE PROFESSOR Ph.D.
5 VINUTHA B T ASST PROFESSOR M.TECH
6 NETHRA M V O ASST PROFESSOR M.TECH
7 MALA P ASST PROFESSOR M.TECH
8 VEENA V ASST PROFESSOR M.TECH
9 ASHA V ASST PROFESSOR M.TECH
10 VEENA M S ASST PROFESSOR M.TECH
11 LAKSHMIDEVI H M ASST PROFESSOR M.TECH
12 RASHMI R H ASST PROFESSOR M.TECH
13 SHRIDHAR VENKATANARASIMHAN ASST PROFESSOR M.TECH
14 SURENDARABU M S ASST PROFESSOR M.TECH
15 KRUTHI T C ASST PROFESSOR M.TECH
16 TEJASWINI KRISHNAMURTHY ASST PROFESSOR M.TECH
17 SHRUTHI H K ASST PROFESSOR M.TECH
18 M NAVEEN ASST PROFESSOR M.TECH
19 S SUHAS ASST PROFESSOR M.TECH
20 R HARISH ASST PROFESSOR M.TECH
21 GEETHA B K ASST PROFESSOR M.TECH
22 SINDHUROJA V V Y ASST PROFESSOR M.TECH
PROGRAM DETAILS
UG-Program

B.E. Computer Science and Technology

  • Course Duration: 4 Years after PUC (8 Semesters)
  • 3 Years after Diploma (Lateral entry-6 Semesters).
Course Outcomes

The course outcomes are designed to equip students with a strong foundation in engineering principles, technical knowledge, and practical skills. Graduates are expected to demonstrate the ability to apply mathematical, scientific, and engineering concepts to solve complex problems. They will also be proficient in using modern tools and technologies relevant to their discipline. Effective communication, teamwork, ethical responsibility, and commitment to lifelong learning are key attributes fostered throughout the program. Ultimately, these outcomes prepare students to contribute effectively to professional engineering roles or pursue higher studies and research.

Program Educational Objectives ( PEO’s )

The Program Educational Objectives (PEOs) describe the long-term achievements that graduates are expected to attain within a few years of completing the program. These objectives focus on preparing graduates to establish successful careers in engineering and related fields by applying their technical knowledge, problem-solving abilities, and professional skills. Graduates are expected to demonstrate leadership, adaptability, and a commitment to ethical practices while contributing effectively to multidisciplinary teams. The PEOs also emphasize the importance of lifelong learning, encouraging graduates to pursue advanced studies, research, or professional development to stay current with evolving technologies and global challenges.

Sl. No. Program Educational Objectives ( PEO’s )
PEO 01. Evolve as globally competent computer professionals, researchers and entrepreneurs possessing collaborative and leadership skills, for developing innovative solutions in multidisciplinary domains.
PEO 02. Excel as socially committed computer engineers having mutual respect, effective communication skills, high ethical values and empathy for the needs of society.
PEO 03. Involve in lifelong learning to foster the sustainable development in the emerging areas of technology.
Program Outcomes (PO’s)

The program outcomes reflect the competencies that graduates are expected to attain by the time they complete the degree. These outcomes include the ability to apply knowledge of mathematics, science, and engineering to identify, formulate, and solve real-world problems. Graduates are trained to design and conduct experiments, analyze and interpret data, and develop engineering solutions that are socially responsible and environmentally sustainable. They are also expected to demonstrate strong communication and teamwork skills, understand professional and ethical responsibilities, and recognize the need for continuous learning in a rapidly evolving technological landscape. These outcomes ensure that engineering graduates are well-prepared for successful careers in industry, academia, or entrepreneurship.

Sl. No. Program Outcomes (PO’s)
PO 01. Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems..
PO 02. 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 03. 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.
PO 04. Conduct investigations of complex problems: Use research-based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of the information to provide valid conclusions
PO 05. Modern tool usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modeling to complex engineering activities with an understanding of the limitations.
PO 06. The engineer and society: Apply reasoning informed by the contextual knowledge to assess societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to the professional engineering practice.
PO 07. Environment and sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development.
PO 08. Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice..
PO 09. Individual and team work: Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.
PO 10. Communication: Communicate effectively on complex engineering activities with the engineering community and with society at large, such as, being able to comprehend and write effective reports and design documentation, make effective presentations, and give and receive clear instructions.
PO 11. Project management and finance: Demonstrate knowledge and understanding of the engineering and management principles and apply these to one’s own work, as a member and leader in a team, to manage projects and in multidisciplinary environments.
PO 12. Recognize the need for, and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological change.
Program Specific Outcomes (PSO’s)

Program Specific Outcomes (PSOs) are the statements that define the specialized knowledge and skills that graduates of a particular engineering branch are expected to acquire by the end of the program. These outcomes are tailored to each discipline and highlight the core competencies and technical expertise relevant to that field. For example, in Computer Science Engineering, PSOs may include the ability to design and develop software applications, apply algorithms and data structures effectively, and utilize modern computing tools. In Mechanical Engineering, PSOs might focus on the design and analysis of mechanical systems, thermal engineering, and manufacturing processes. Overall, PSOs ensure that graduates are well-equipped to meet the specific demands of their chosen engineering domain and contribute effectively in their professional careers.

Students of the Computer Science and Engineering program will:

Sl. No. Program Specific Outcomes (PSO’s)
PSO 01. Professional Skills: Attain the ability to design and develop hardware and software-based systems, evaluate and recognize potential risks and provide creative solutions.
PSO 02. Successful Career and Entrepreneurship: Gain knowledge in diverse areas of Computer Science and experience an environment conducive in cultivating skills for successful career, entrepreneurship and higher studies.



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