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Computing and Emerging Technology

Cyber Security Skills Required

Network security, secure coding, cryptography, operating systems, incident response, forensics, governance and risk.

Diploma, B.E./B.Tech specialisations, B.Sc./BCA, M.E./M.Tech, MCA, certificates and doctoral study

Build biology, engineering analysis, instrumentation, computation, laboratory, design, data, documentation, quality and safety skills.

Skills Required for Cyber Security

Protocol understanding

Students should understand what each protocol does, what information it carries and how it interacts with other layers. This is more durable than memorising device commands.

Subnetting and addressing

Address planning is a basic network skill. Learners should be able to calculate subnet sizes, identify network boundaries and document allocations. IPv6 knowledge is increasingly important.

Routing and switching

Practical ability includes building local segmentation, configuring paths, recognising loops and checking route selection. Changes should be tested in a laboratory before production use.

Linux and systems

Linux skills help with servers, tools, network services and automation. Students should understand processes, permissions, services, logs and shell basics.

Programming and automation

Python, APIs, structured data and version control support modern network operations. Automation must include validation and rollback, not merely fast configuration.

Packet analysis

Packet captures reveal real protocol behaviour. Students should learn filters, handshakes, timing and errors while protecting credentials and private information.

Wireless knowledge

Engineers need awareness of radio channels, interference, coverage, capacity and secure authentication. A wireless problem cannot always be solved by adding another access point.

Security thinking

Important habits include least privilege, segmentation, secure management, patching, logging and careful handling of credentials. Students should never test networks without permission.

Troubleshooting

A good troubleshooter defines the problem, determines its scope, gathers evidence, tests a hypothesis and records the result. Random changes can hide the cause and create new failures.

Documentation

Network diagrams, address plans, device inventories, change records and recovery procedures are professional necessities. Documentation should be current, access-controlled and understandable.

Communication and teamwork

Networking teams coordinate with application, security, cloud, telecom and business groups. Engineers must explain impact clearly, especially during outages and planned changes.

Building a portfolio

A student portfolio can include a labelled topology, addressing table, configuration extracts without secrets, test plan, failure cases, monitoring views and a short reflection. Use simulated or personally owned authorised environments.

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Course at a Glance

  • Course AreaComputing and Emerging Technology
  • Study PathwaysDiploma, B.E./B.Tech specialisations, B.Sc./BCA, M.E./M.Tech, MCA, certificates and doctoral study
  • Primary FocusNetwork security, secure coding, cryptography, operating systems, incident response, forensics, governance and risk.

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