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Specialisation

Why Choose IILM University?

This Cyber Security programme, developed in partnership with Microsoft, is designed to equip students with cutting-edge skills and knowledge to address evolving cybersecurity challenges in a technology-driven world. The curriculum provides an in-depth focus on critical areas such as digital forensics, ethical hacking, and cloud security, enabling students to analyse, detect, and mitigate advanced cyber threats. With exclusive Microsoft-aligned training, students gain hands-on experience using industry-leading tools and platforms, including Microsoft Defender and Azure Security Center, ensuring proficiency in securing modern cloud and hybrid environments. The programme emphasises practical learning through real-world scenarios, simulations, and case studies, preparing students to implement proactive security strategies and safeguard critical data and infrastructure. Graduates emerge as highly skilled professionals, ready to pursue global opportunities in roles such as cybersecurity analysts, ethical hackers, cloud security specialists, and digital forensics experts, driving innovation and resilience in the security landscape.

The Cyber Security programme, developed in partnership with Microsoft, equips students with advanced skills and knowledge to tackle the rapidly evolving challenges of cybersecurity in today’s technology-driven world. The curriculum delves deeply into critical areas, including digital forensics, ethical hacking, and cloud security, enabling students to analyse, detect, and mitigate sophisticated cyber threats. Through exclusive Microsoft-aligned training, students gain hands-on experience with industry-leading tools and platforms such as Microsoft Defender and Azure Security Center, ensuring they are proficient in securing modern cloud and hybrid environments. The programme prioritises practical learning through real-world scenarios, simulations, and case studies, preparing students to implement proactive security strategies to protect critical data and infrastructure. Graduates emerge as highly skilled professionals, ready to explore global opportunities in roles such as cybersecurity analysts, ethical hackers, cloud security specialists, and digital forensics experts, driving innovation and resilience within the security landscape..
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What Makes This Programme Different?

This programme focuses on cutting-edge advancements in robotics and artificial intelligence, providing students with the tools to design, program, and manage intelligent robotic systems. By integrating AI with automation, students gain expertise in robotics applications across industries, preparing for a future shaped by innovation.

Focus on Robotics and AI

Combines robotics engineering with AI to create systems capable of autonomous decision-making.

Hands-On Learning

Real-world projects and practical sessions ensure in-depth understanding and application of concepts.

Future-Ready Curriculum

NEP-aligned courses provide a holistic approach to robotics and intelligent systems.

Why Choose IILM University?

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Over 30 years of Academic

Excellence Delivering quality education with a legacy of three decades.

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Global Network of over 16,000 Alumni

A strong, supportive alumni community spread across the globe.

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International Collaborations

Partnering with renowned global institutions for a holistic education experience.

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Job Opportunities with over 400 Companies

Connecting students with leading employers for rewarding careers.

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Centrally Located Green Campuses

Eco-friendly campuses situated in prime, accessible locations.

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Merit-based Scholarships

Recognising and rewarding academic excellence with financial support.

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Renowned Faculty from Academia and Industry

Learn from experts with rich academic and industry experience.

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Vibrant Campus Life

Experience an engaging and dynamic environment both inside and outside the classroom.

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Internationally Benchmarked Curriculum

A curriculum designed to meet global standards of education and practice.

Programme Outcomes

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Engineering knowledge

Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialisation to solve complex engineering problems.

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Problem analysis

Identify, formulate, review research literature, and analyse complex engineering problems, reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.

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Design/development of solutions

Design solutions for complex engineering problems and system components or processes that meet specified needs, with appropriate consideration for public health and safety, and cultural, societal, and environmental factors.

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Conduct investigations of complex problems:

Use research-based knowledge and research methods, including the design of experiments, analysis and interpretation of data, and synthesis of information, to provide valid conclusions.

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Modern tool usage

Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools, including prediction and modelling, to complex engineering activities, with an understanding of their limitations.

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The engineer and society

Apply reasoning informed by contextual knowledge to assess societal, health, safety, legal, and cultural issues, and the consequent responsibilities relevant to professional engineering practice.

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Environment and sustainability

Understand the impact of professional engineering solutions in societal and environmental contexts, and demonstrate knowledge of, and the need for, sustainable development.

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Ethics

Apply ethical principles and commit to professional ethics, responsibilities, and norms of engineering practice.

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Individual and team work

Function effectively as an individual, and as a member or leader in diverse teams and multidisciplinary settings

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Communication

Communicate effectively on complex engineering activities with the engineering community and with society at large, including comprehending and writing effective reports and design documentation, delivering presentations, and giving and receiving clear instructions.

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Project management and finance

Demonstrate knowledge and understanding of engineering and management principles and apply these to one’s own work, as a member or leader in a team, to manage projects in multidisciplinary environments.

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Life-long learning

Recognise the need for, and have the preparation and ability to engage in, independent and life-long learning in the broadest context of technological change.

Programme Educational Objectives

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  • PEO1

    Develop the ability to formulate, analyse, and resolve computational challenges by leveraging a strong grasp of mathematical, scientific, and engineering principles, alongside contemporary computing methodologies.

  • PEO2

    Acquire expertise in utilising problem-solving techniques, algorithm design, and emerging technologies such as cloud computing, artificial intelligence, data science, and security for evaluating requirements, formulating technical specifications, and crafting solutions for diverse computing challenges.

  • PEO3

    Demonstrate technical proficiency in computer science, foster collaborative learning, and cultivate teamwork through interdisciplinary projects and professional engagements.

  • PEO4

    Equip graduates with a robust understanding, technical competence, and soft skills necessary to ethically address societal needs and drive sustainable progress in emerging computing domains through continuous learning and adaptation.

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Academic Qualifications

  • Successful completion of 10+2 or an equivalent examination from a recognised board with a minimum aggregate of 55% marks.
  • Specific subject requirements may vary depending on the programme (e.g., Mathematics or Science for technical courses).
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