The B. Tech. in Computer Science and Engineering (CSE) program is designed to meet the dynamic demands of industry. Spanning core and advanced topics, it equips students with skills in programming, algorithms, and system design, aligning with industry needs for innovative, problem-solving professionals. Curriculum emphasizes practical skills through Design Projects, Capstone Projects, Industry Internships and hackathons ensuring graduates are job ready. Emerging technologies like machine learning, IoT and Embedded Systems, and cyber security are integrated via electives, catering to roles in industries, startups, and research. Graduates pursue careers as software engineers, data scientists, or system architects, with attractive packages meeting the industry’s need for versatile, skilled engineers.
| Course | Category |
|---|---|
| Calculus and Linear Algebra | PC-BS |
| Chemistry / Physics - I | PC-BS |
| Innovations and Inventions in Engineering | PC |
| Applied Physics / Business Communication and Logical Reasoning | PC-BS/AEC |
| Logic Building using JAVA | PC-ES |
| Biology / Universal Human Values | PC-BS/UC |
| Sustainable Development Goals | UC |
| Learning How to Learn | AEC |
| Prompt Engineering | AEC |
| Advising Seminar | AEC |
| Activity Points 1 | LBC |
| Course | Category |
|---|---|
| Advanced Calculus and Differential Equations | PC-BS |
| Chemistry / Physics - I | PC-BS |
| Design Thinking and Innovation | PC-ES |
| Applied Physics / Business Communication and Logical Reasoning | PC-BS/AEC |
| Programming in Python | PC-ES |
| 2D/3D Modelling and Prototyping | PC-ES |
| Biology / Universal Human Values | PC-BS/UC |
| Excel and Powerpoint | AEC |
| Industry 4.0 Specialization | AEC |
| Activity Points 2 | LBC |
| Course | Category |
|---|---|
| Discrete Mathematics | PC-BS |
| Data Structures | PC |
| Programming in JAVA | PC |
| Digital Principles and Computer Organization | PC |
| Open Elective L I | OEL |
| Analytical Skills | AEC |
| Verbal Ability | AEC |
| Product Design and Realization | PC-ES |
| Social Internship | UC |
| Data Analytics in Power BI | AEC |
| Influencing People | AEC |
| Activity Points 3 | SEC |
| Course | Category |
|---|---|
| Probability Theory & Statistical Inference | PC-BS |
| Design and Analysis of Algorithms | PC |
| Data Communication and Computer Networks | PC |
| Database Management System | PC |
| Minor – I | ME |
| Open Elective L II | OEL |
| Solving for Bharath | PC-BS |
| Critical Thinking | AEC |
| Successful Negotiation | AEC |
| Story Telling & Influencing | AEC |
| Activity Points 4 | SEC |
| Course | Category |
|---|---|
| Numerical Methods and Statistical Techniques | PC-BS |
| Operating Systems | PC |
| Theory of Computation | PC |
| Cryptography and Network Security | PC |
| Minor Elective – II | ME |
| Design Project – I | SEC |
| Soft Skills | AEC |
| Decision-Making: Blending Art & Science | AEC |
| Build Personal Resilience | AEC |
| Activity Points 5 | SEC |
| Course | Category |
|---|---|
| Compiler Design | PC |
| Software Engineering and Agile Development | PC |
| Object Oriented Analysis and Design | PC |
| Minor Elective – III | ME |
| Minor Elective – IV | ME |
| Industry Certification | SEC |
| Design Project – II | SEC |
| Soft Skills | AEC |
| Aptitude | AEC |
| Verbal Ability | AEC |
| Activity Points 6 | SEC |
| Course | Category |
|---|---|
| Software Testing | PC |
| Minor Elective – V | ME |
| Minor Elective – VI | ME |
| Open Elective I | OE |
| Professional Ethics | PC |
| Capstone Project – I | CP |
| Industry Internship Programme | SEC |
| Course | Category |
|---|---|
| Disaster Management | UC |
| Indian Knowledge System | UC |
| Environmental Science | UC |
| Open Elective II | OE |
| Legal Awareness and IPR | UC |
| Capstone Project – II | CP |
Course Categories:
UC : University Core || PC : Program Core || PC-BS : Program Core - Basic Sciences || PC-ES : Program Core - Engineering Sciences || OE : Open Elective || OEL : Open Elective Languages || AEC : Ability Enhancement Courses || SEC : Skill Enhancement Courses || LBC : Learning Beyond Classroom
The Minor Pathways in the B.Tech Computer Science and Engineering curriculum are designed to provide students with focused specialization beyond their core discipline, enabling them to build domain depth in emerging and high-demand technology areas. Introduced as a structured academic pathway from the second year onwards, minors allow learners to align their academic journey with career aspirations, industry trends, and interdisciplinary interests .
A key highlight of this framework is the flexibility offered to students to choose any minor track based on their interests and career goals, empowering them to personalize their learning journey and explore interdisciplinary domains without constraints.
The Minors framework emphasizes:
a) Specialized skill development in cutting-edge domains
b) Hands-on learning through labs, projects, and industry-aligned tools
c) Integration of certifications and real-world applications
d) Enhanced employability through domain-focused expertise
By complementing the Program Core with targeted specialization, the Minor Pathways empower students to graduate with multi-dimensional competencies, making them adaptable, future-ready professionals capable of thriving in dynamic and technology-driven environments.
Minors List:
Specializations help to concentrate on the applications of a vertical skill set in a specific ecosystem. These specializations are structured to cultivate applied competencies and domain-specific expertise through an integration of experiential and outcome-based learning.
Specializations List:
Smart Manufacturing Technology
Digital Manufacturing and Rapid Prototyping
Smart Materials and Structures
Big Data Analytics in Manufacturing
Product Design, Development and Life Cycle Management
Industrial Automation and Control
Digital Twin and Biomimicry in manufacturing
Robotics & Automation
Kinematics and Dynamics of Robotics
Robot Operating System
Mobile Robots
Application of AI in Robotics and Automation
Robotic Drives and Actuators
Soft Robots
Alliance University offers a flexible and forward-looking Open Elective framework that enables students to broaden their academic horizons beyond their core and minor disciplines. Designed to promote interdisciplinary learning, global exposure, and holistic skill development, this framework empowers students to explore diverse domains aligned with their personal interests and career aspirations.
The Open Electives are structured into two distinct categories, providing students with the flexibility to choose courses across disciplines or develop language and cultural proficiency.
Interdisciplinary Open Electives (Across Schools):
Students have the opportunity to enroll in Open Elective courses offered by various Schools within Alliance University, including Business, Law, Liberal Arts, and Performing Arts.
These courses expose learners to diverse perspectives and enable the development of complementary competencies such as:
a) Managerial and entrepreneurial thinking
b) Legal and ethical awareness
c) Creative and critical expression
d) Effective communication and collaboration skills
This interdisciplinary exposure fosters well-rounded graduates capable of addressing complex, real-world challenges.
OE List:
PEO 1:
To equip graduates with a strong foundation in computing principles and emerging technologies, enabling them to design, develop, and innovate scalable and intelligent solutions
PEO 2:
To develop graduates with leadership, problem-solving, and entrepreneurial skills to drive technological advancements and contribute to industry, research, and startup ecosystems
PEO 3:
To instill ethical responsibility, sustainability, and a commitment to using technology for addressing global and societal challenges.
PSO 1:
To design, implement, and optimize intelligent, secure, and scalable computing solutions by integrating emerging technologies.
PSO 2:
To apply computational thinking and interdisciplinary knowledge to develop innovative, ethical, and sustainable technology solutions that address real-world societal and industrial challenges.
PO1 Engineering Knowledge:
Apply knowledge of mathematics, natural science, computing, engineering fundamentals and an engineering specialization as specified in WK1 to WK4 respectively to develop to the solution of complex engineering problems.
PO2 Problem Analysis:
Identify, formulate, review research literature and analyze complex engineering problems reaching substantiated conclusions with consideration for sustainable development. (WK1 to WK4)
PO3 Design/Development of Solutions:
Design creative solutions for complex engineering problems and design/develop systems/components/processes to meet identified needs with consideration for the public health and safety, whole-life cost, net zero carbon, culture, society and environment as required. (WK5)
PO4 Conduct Investigations of Complex Problems:
Conduct investigations of complex engineering problems using research-based knowledge including design of experiments, modelling, analysis & interpretation of data to provide valid conclusions. (WK8).
PO5 Engineering Tool Usage:
Create, select and apply appropriate techniques, resources and modern engineering & IT tools, including prediction and modelling recognizing their limitations to solve complex engineering problems. (WK2 and WK6)
PO6 The Engineer and The World:
Analyze and evaluate societal and environmental aspects while solving complex engineering problems for its impact on sustainability with reference to economy, health, safety, legal framework, culture and environment. (WK1, WK5, and WK7)
PO7 Ethics:
Apply ethical principles and commit to professional ethics, human values, diversity and inclusion; adhere to national & international laws. (WK9)
PO8 Individual and Collaborative Team work:
Function effectively as an individual, and as a member or leader in diverse/multi-disciplinary teams.
PO9 Communication:
Communicate effectively and inclusively within the engineering community and society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations considering cultural, language, and learning differences
PO10 Project Management and Finance:
Apply knowledge and understanding of engineering management principles and economic decision-making and apply these to one’s own work, as a member and leader in a team, and to manage projects and in multidisciplinary environments.
PO11 Life-Long Learning:
Recognize the need for, and have the preparation and ability for i) independent and life-long learning ii) adaptability to new and emerging technologies and iii) critical thinking in the broadest context of technological change. (WK8)
Activity Points
The Activity Points Program is designed to encourage student involvement in co-curricular, extracurricular, and community activities beyond academics. It helps students develop valuable life skills, explore their interests, and make the most of their time at the institute. Students are required to earn a minimum of 100 Activity Points per semester from Semester 1 to Semester 6 by participating in approved activities such as clubs, cultural events, sports, and community service. Maintaining a qualifying grade in Activity Points is mandatory for the successful completion of the academic program, with a total requirement of 600 Activity Points.
The Program Core forms the backbone of the B.Tech Computer Science and Engineering curriculum, focusing on building strong foundational knowledge and advanced technical expertise in core computing domains. It is carefully structured to ensure that students develop the ability to analyze, design, and implement efficient computing solutions aligned with industry requirements.
The Program Core emphasizes:
a) Problem-solving and computational thinking
b) System design and software development skills
c) Performance optimization and scalability
d) Use of modern tools and technologies
With a strong focus on theoretical rigor combined with practical implementation, the Program Core prepares students for diverse technical roles in the IT industry, research, and innovation-driven environments.
The Language Open Electives (OEL) are designed to develop global communication skills and cultural literacy, essential for success in international and multicultural environments. These courses are offered in two progressive levels, enabling students to build both foundational and intermediate proficiency. These courses enhance linguistic abilities, cultural awareness, and global employability, preparing students to engage effectively in diverse professional environments.
OEL List:
The Ability Enhancement Courses (AEC) are designed to equip students with essential professional, cognitive, and life skills that complement their technical education. This component focuses on developing competencies that are critical for academic success, career readiness, and personal growth in a dynamic and competitive global environment.
AECs encompass a wide range of skill-oriented modules such as communication and verbal ability, analytical and critical thinking, data interpretation, digital proficiency, industry-relevant tools, and emerging areas like prompt engineering and Industry 4.0. These courses are delivered through interactive, application-oriented learning approaches, ensuring practical skill development.
The AEC framework emphasizes:
a) Effective communication and interpersonal skills
b) Analytical reasoning and problem-solving abilities
c) Digital literacy and tool-based competencies
d) Career readiness and professional development
By integrating these capabilities into the curriculum, AECs ensure that students graduate as well-rounded professionals with strong cognitive abilities, adaptability, and the confidence to excel in diverse professional environments.
Skill Enhancement Courses (SEC) are a critical component of the undergraduate curriculum, designed to bridge the gap between theoretical academic knowledge and the practical competencies required in the modern workforce. These courses focus on ""learning by doing"" and providing students with measurable, transferable skills.
Core Objectives of SEC:
The primary goal of SEC is to improve the employability of graduates by providing them with specialized training that may fall outside their main disciplinary focus. This ensures that students are not just subject-matter experts but are also digitally literate, professionally capable, and industry-ready.
Key Domains of SEC:
Undergraduate programs typically offer a diverse menu of SEC options, categorized into several high-impact areas:
The Capstone Project in the program is a two‑semester experiential learning initiative designed to transform engineering knowledge into real-world innovation. Through a structured and rigorous process, students identify problems, develop feasible proposals, implement solutions, and demonstrate their outcomes through prototypes, research outputs, or publications.
The process begins with orientation, team formation, and idea generation. In Phase I (Capstone Project I), students conduct literature reviews, define problem statements, assess feasibility, and prepare detailed project proposals. This ensures clarity of objectives and readiness for execution.
In Phase II (Capstone Project II), students implement their design or research model, perform systematic testing, validate performance, and refine solutions through iterative reviews. The project concludes with a final demonstration and viva voce evaluated by academic and external experts.
The Capstone framework integrates Program Outcomes (POs) and Program Specific Outcomes (PSOs), fostering engineering design skills, problem-solving, research aptitude, teamwork, ethical awareness, and societal impact. Students regularly publish their work in reputed international conferences (IEEE, Springer, Elsevier) and Scopus-indexed journals; several teams have also filed patents.
Overall, the Capstone Project delivers a transformative journey that equips students with technical competence, innovation mindset, and professional readiness for industry and higher studies.
The Course of Independent Study (CIS) is a distinctive 3-credit academic pathway that offers students a valuable opportunity to engage in research-oriented learning through a faculty-mentored project in place of one course within their curriculum. Designed to nurture intellectual curiosity, innovation, and critical thinking, the course enables students to immerse themselves in hands-on research through laboratories, field-based work, or Centres of Excellence. Under close faculty guidance, students identify research problems, pursue structured inquiry, and develop meaningful academic outcomes. Credits are earned through consistent progress, active participation in review milestones, successful completion of the project, and the preparation and submission of a research paper to a Scopus-indexed journal, conference, or other approved scholarly platform—positioning students for early exposure to high-quality research and scholarly contribution.
The Industry Internship Program is an integral component of the B.Tech CSE curriculum, designed to provide students with hands-on industry exposure and real-world experience in professional environments. Embedded within the academic framework, the internship enables students to apply their theoretical knowledge to practical, industry-relevant problems, thereby bridging the gap between classroom learning and workplace expectations .
Typically undertaken in the advanced stages of the program, the internship offers opportunities to work with leading organizations, startups, and research institutions across domains such as software development, data analytics, cybersecurity, cloud computing, and emerging technologies. Students engage in live projects, collaborative team environments, and problem-solving tasks, gaining insights into industry practices, tools, and workflows.
The program emphasizes:
a) Application of technical knowledge in real-world scenarios
b) Development of professional, communication, and teamwork skills
c) Exposure to industry standards, tools, and best practices
d) Enhanced employability through experiential learning
Guided by academic and industry mentors, students are evaluated based on their performance, project outcomes, and professional conduct, ensuring a structured and meaningful learning experience. The Industry Internship Programme plays a crucial role in preparing students to transition confidently into professional careers, entrepreneurship, and industry-driven innovation.
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| Category | Eligibility Criteria |
|---|---|
| General | B. Tech. (Regular) – 10+2 with minimum 50% marks in Physics & Mathematics + one of Chemistry / Biotechnology / Biology / Technical Vocational Subject B. Tech. (Lateral) – Diploma (≥50%) in relevant branch or B.Sc. (≥50%) with Mathematics in 10+2 |
| Reserved Categories | 5% relaxation for SC / ST candidates |
| Entry Level | Program Duration |
|---|---|
| Regular Level | Four Years / Eight Semesters |
| Lateral Level | Three Years / Six Semesters |
| Particulars | Indian Nationals | Foreign Nationals |
|---|---|---|
| Registration Fee As per admission cycle | ₹25,000 | US$500 |
| 1st Installment As per provisional admission offer | ₹3,25,000 | US$4,300 |
| 2nd Installment | ₹3,50,000 | US$4,800 |
| 3rd Installment | ₹3,50,000 | US$4,800 |
| 4th Installment | ₹3,50,000 | US$4,800 |
| 5th Installment | ₹3,50,000 | US$4,800 |
| Total Program Fee Includes registration + all installments | ₹17,50,000 | US$24,000 |
| Category | Eligibility | Scholarship |
|---|---|---|
| Academic Excellence | Students with Class X & XII marks ≥ 95% | 50% Tuition Fee Waiver |
| AUSAT | AUSAT ≥ 90% + XII ≥ 80% | 25% Tuition Fee Waiver |
| AUSAT | AUSAT ≥ 80% + XII ≥ 75% | 15% Tuition Fee Waiver |
| AUSAT | AUSAT ≥ 70% + XII ≥ 70% | 10% Tuition Fee Waiver |
| AUSAT | AUSAT ≥ 90% + XII ≥ 60% | ₹50,000 Freeship |
| AUSAT | AUSAT 80–89.99% | ₹25,000 Freeship |
| CUET | CUET ≥ 90% | 30% Tuition Fee Scholarship |
| CUET | CUET 80–89.9% | 20% Tuition Fee Scholarship |
| CUET | CUET 70–79.9% | 15% Tuition Fee Scholarship |
| Program-Specific Merit | JEE (Main) > 95 percentile + Class X & XII ≥ 70% | 50% Tuition Fee Waiver |
| Program-Specific Merit | JEE (Main) 90–95 percentile + Class X & XII ≥ 70% | 25% Tuition Fee Waiver |
| Program-Specific Merit | SAT 1401–1600 + Class X & XII ≥ 70% | 50% Tuition Fee Waiver |
| Program-Specific Merit | SAT 1201–1400 + Class X & XII ≥ 70% | 20% Tuition Fee Waiver |
| Program-Specific Merit | SAT 1001–1200 + Class X & XII ≥ 70% | 10% Tuition Fee Waiver |
| Category-Based Scholarship | SC / ST students with ≥ 70% marks | 20% Tuition Fee Waiver |
| Category-Based Scholarship | Differently-Abled students with ≥ 50% marks | 50% Tuition Fee Waiver |
| Category-Based Scholarship | Defence / Paramilitary quota with ≥ 70% marks | 15% Tuition Fee Waiver |
| Category-Based Scholarship | International-level sportspersons with ≥ 50% marks | 100% Tuition Fee Waiver |
| Category-Based Scholarship | National-level sportspersons with ≥ 50% marks | 50% Tuition Fee Waiver |
| Category-Based Scholarship | Domicile students with ≥ 70% marks | 5% Tuition Fee Waiver |
| Policy | Conditions | All scholarships are subject to approval by the Scholarship Committee; freeships are limited and awarded on a first-come-first-served basis; eligibility must be fully documented with marksheets, certificates, and transcripts. |
| Steps | Description |
|---|---|
| Step 1 | Submit Online Application |
| Step 2 | Pay Application Fee — ₹1000 (US$50 for foreign nationals) |
| Step 3 | Appear for AUSAT – Alliance University Scholastic Aptitude Test |
| Step 4 | Personal Interview assessment |
| Step 5 | Selection based on overall profile & performance |
Comfort, safety, and community form the foundation of campus living. Our residential halls are thoughtfully designed to create a sense of belonging—offering a welcoming environment where students can study, unwind, and build lifelong friendships.
Separate hostels
for boys and girls
Student-friendly
common areas
Spacious rooms
(single, double, or triple occupancy)
Dedicated wardens
and support teams
Ongoing MoU with M/s. Total Environment, Bangalore, on Optimal Geotextile Layer, for 3 years






B. Tech. in Computer Science Engineering opens doors to diverse and high-growth career paths in software development, artificial intelligence, cybersecurity, cloud computing, and data science, with strong global demand.
Graduates can take up roles in IT, AI, data analytics, fintech, or cybersecurity, or pursue higher studies such as M. Tech., MS, or MBA.
No. Mathematics is a compulsory subject as it forms the foundation for programming, algorithms, and system design.
Yes. Admissions can be either through JEE, or state-level exams, or the university’s entrance test (AUEET).
The program is 4 years long, divided into 8 semesters with a mix of theory and practical learning.
Core subjects include Programming, Data Structures, Algorithms, DBMS, Operating Systems, AI, ML, Cybersecurity, and Cloud Computing.
Specialisations include Artificial Intelligence, Data Science, IoT, Cybersecurity, Software Engineering, and Cloud Technologies.
Year 1 covers fundamentals, Year 2 focuses on Data Structures and DBMS, Year 3 includes AI and networking, and Year 4 emphasizes projects and internships.
Yes. Students learn languages like C, C++, Java, Python, and R to adapt to diverse technologies.
Careers include Software Engineer, Data Analyst, AI Engineer, Cybersecurity Expert, Cloud Architect, and research roles.
IT, software, fintech, e-commerce, and tech industries hire extensively, including companies like Google, Microsoft, Infosys, TCS, Wipro, and Amazon.
Students participate in coding competitions, hackathons, internships, and live industry projects guided by experts.
Its multidisciplinary curriculum, high global demand, and focus on practical skills make it one of the most sought-after engineering degrees. Integrated CSE curriculum with hands-on training, industry exposure, cloud computing, IoT, cybersecurity, emerging technologies, and entrepreneurship support.
Yes. Hands-on projects, industry internships, hackathons, and capstone projects provide real-world experience.
Four years / Eight semesters (Regular); Three years / Six semesters (Lateral)
Candidates must have completed 10+2 with Physics, Mathematics, and either Chemistry or Computer Science, along with meeting university-specific criteria.
Software Engineer, System Architect, Data Scientist, DevOps Engineer, Cybersecurity Specialist, IoT Developer, Cloud Engineer
Yes. Merit-based and inclusion scholarships are offered.
Through TAP platform, alumni events, and CAN Office.
Faculty and corporate experts provide guidance on real-world projects, internships, and research initiatives.
Strong industry collaborations, global exposure, and a curriculum focused on emerging technologies make it highly preferred.
The Social Internship is a cornerstone of the undergraduate experience, designed to cultivate a deep sense of civic responsibility and empathetic leadership. By moving beyond the classroom, students engage directly with grassroots realities, bridging the gap between academic theory and the practical challenges faced by marginalized communities.
Core Objectives:
The program aims to transform students from passive learners into active contributors to society. Key objectives include:
a) Empathy & Value Creation: Developing a firsthand understanding of social disparities and building personal value systems rooted in service and respect.
b) Grassroots Exposure: Gaining insight into the complexities of rural and urban social issues, including inequality, environmental sustainability, and human rights.
c) Professional Skill Integration: Applying communication, problem-solving, and organizational skills in a non-corporate, mission-driven environment.