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Basic Computer Networking Course
More than 20 lakh learners worldwide

Basic Computer Networking Course

Master the skills that power every modern network — from IP addressing and routing protocols to security and automation. Networking Fundamentals gives you the hands-on knowledge to design, configure, and troubleshoot real-world network infrastructure. Whether you're launching a career in IT or leveling up your technical expertise, this course delivers the practical foundation employers demand.

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What you will learn:

  • Configure and verify OSPF, EIGRP, and static routing protocols in enterprise network topologies.

  • Design IPv4 and IPv6 address schemes using subnetting, CIDR, and VLSM techniques.

  • Implement VLANs, trunking, Spanning Tree Protocol, and EtherChannel in switched LAN environments.

  • Apply access control lists, firewall placement, and device hardening to secure network infrastructure.

  • Troubleshoot connectivity failures across physical, data link, and network layers using diagnostic tools.

  • Understand cloud networking, SDN fundamentals, and network automation using Python and Ansible.

How you study in a practical way Basic Computer Networking Course

How you practise Basic Computer Networking Course

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Course content

8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Introduction to Computer Networks

  • Lesson 1 • Key Networking Terminology

    Introduces essential vocabulary used throughout the course. Precise terminology enables accurate communication in professional settings.

  • Lesson 2 • Network Topologies

    Covers physical and logical arrangements of devices in a network. Students identify topology trade-offs relevant to real deployments.

  • Lesson 3 • What Is a Computer Network

    Defines networks, their purpose, and real-world applications. Establishes the conceptual baseline for all subsequent networking topics.

  • Lesson 4 • Types of Networks by Scale

    Distinguishes LAN, WAN, MAN, and PAN by geographic scope and use. Connects scale to design decisions covered in later chapters.

Chapter 2See details

The OSI and TCP/IP Models

  • Lesson 1 • The Seven OSI Layers

    Details each OSI layer's function, protocols, and devices. Students can classify any networking component by its OSI layer.

  • Lesson 2 • The TCP/IP Model

    Maps the four-layer TCP/IP model to OSI equivalents and real protocols. Bridges theoretical OSI knowledge to practical internet communication.

  • Lesson 3 • Purpose of Layered Models

    Explains why abstraction layers simplify network design and troubleshooting. Frames the OSI model as a universal reference tool.

  • Lesson 4 • Data Encapsulation and Decapsulation

    Traces how data is wrapped with headers at each layer during transmission. Students follow a packet's journey from sender to receiver.

Chapter 3See details

IP Addressing and Subnetting

  • Lesson 1 • Subnet Masks and CIDR

    Explains how subnet masks divide networks and introduces CIDR notation. Students calculate network and host portions of any address.

  • Lesson 2 • Address Resolution Protocols

    Covers ARP for IPv4 and NDP for IPv6 address-to-MAC resolution. Links Layer 3 addressing to Layer 2 delivery mechanisms.

  • Lesson 3 • Subnetting Techniques

    Teaches manual subnetting using binary math and shortcut methods. Students design efficient address plans for given host requirements.

  • Lesson 4 • IPv4 Addressing Fundamentals

    Covers binary and dotted-decimal notation, address classes, and ranges. Provides the arithmetic foundation needed for subnetting.

  • Lesson 5 • IPv6 Addressing

    Introduces 128-bit addressing, notation rules, and IPv6 address types. Prepares students for dual-stack and IPv6-only environments.

Chapter 4See details

Network Devices and Their Roles

  • Lesson 1 • Wireless Access Points and Controllers

    Covers AP operation modes, SSID configuration, and controller-based management. Students distinguish standalone from enterprise wireless deployments.

  • Lesson 2 • Network Device Selection Criteria

    Guides device selection based on scale, performance, and budget constraints. Students apply decision frameworks to realistic design problems.

  • Lesson 3 • Hubs, Switches, and Bridges

    Compares Layer 1 and Layer 2 devices by function, collision domains, and performance. Students explain why switches replaced hubs.

  • Lesson 4 • Firewalls and Security Appliances

    Introduces stateful firewalls, DMZ design, and next-generation firewall features. Establishes the security device role in network architecture.

  • Lesson 5 • Routers and Layer 3 Switching

    Explains routing decisions, routing tables, and inter-VLAN routing. Connects IP addressing knowledge to packet forwarding behaviour.

Chapter 5See details

Ethernet and Switching Concepts

  • Lesson 1 • Spanning Tree Protocol

    Covers STP, RSTP, and loop prevention in redundant switched networks. Students trace port states and understand convergence behaviour.

  • Lesson 2 • VLANs and Trunking

    Explains VLAN segmentation, trunk links, and 802.1Q tagging. Students design VLANs to separate traffic and improve security.

  • Lesson 3 • Ethernet Standards and Cabling

    Reviews IEEE Ethernet standards, cable categories, and connector types. Students match cabling to speed and distance requirements.

  • Lesson 4 • Switch Operation and MAC Tables

    Details how switches learn, store, and use MAC addresses for forwarding. Builds on Layer 2 device knowledge from the previous chapter.

  • Lesson 5 • EtherChannel and Link Aggregation

    Introduces bundling multiple links for bandwidth and redundancy. Students configure and verify EtherChannel using LACP.

Chapter 6See details

Routing Protocols and Path Selection

  • Lesson 1 • Dynamic Routing Fundamentals

    Introduces routing protocol categories, metrics, and administrative distance. Prepares students to evaluate and choose dynamic protocols.

  • Lesson 2 • Static Routing Configuration

    Covers manual route entry, default routes, and floating static routes. Students configure static routing for small, stable topologies.

  • Lesson 3 • EIGRP and Distance Vector Protocols

    Covers EIGRP's hybrid behaviour, DUAL algorithm, and RIP basics. Students compare protocol efficiency for different network sizes.

  • Lesson 4 • OSPF Configuration and Operation

    Details OSPF areas, LSA types, and neighbour relationships. Students configure single-area OSPF and verify adjacency formation.

  • Lesson 5 • BGP and Internet Routing Concepts

    Introduces BGP as the internet's path-vector protocol and its role in routing between autonomous systems. Students understand BGP attributes.

Chapter 7See details

Network Services and Protocols

  • Lesson 1 • NTP and Network Time Management

    Covers NTP hierarchy, stratum levels, and time synchronisation importance. Accurate time underpins logging, security, and protocol operation.

  • Lesson 2 • SNMP and Network Monitoring Basics

    Introduces SNMP versions, MIBs, and trap-based alerting. Students set up basic monitoring to detect device and link failures.

  • Lesson 3 • DHCP Operation and Configuration

    Explains the DORA process, scope configuration, and DHCP relay. Students deploy DHCP for automatic IP address assignment.

  • Lesson 4 • DNS Resolution and Hierarchy

    Covers DNS record types, recursive resolution, and zone management. Students configure DNS clients and interpret resolution failures.

  • Lesson 5 • Network Address Translation

    Explains static NAT, dynamic NAT, and PAT for address conservation. Students configure NAT to enable private networks to reach the internet.

Chapter 8See details

Network Security Fundamentals

  • Lesson 1 • Switch Security Techniques

    Addresses port security, DHCP snooping, and dynamic ARP inspection. Students harden Layer 2 infrastructure against common LAN attacks.

  • Lesson 2 • Access Control Lists

    Covers standard and extended ACLs for traffic filtering on routers. Students write, apply, and verify ACLs to enforce security policies.

  • Lesson 3 • Security Principles and Threat Landscape

    Introduces CIA triad, common attack types, and attacker motivations. Frames security as a continuous process rather than a one-time fix.

  • Lesson 4 • VPN and Encrypted Tunnels

    Explains site-to-site and remote-access VPN types using IPsec and SSL/TLS. Students understand how VPNs protect data in transit.

  • Lesson 5 • Device Hardening Best Practices

    Covers password policies, unused service disabling, and secure management protocols. Students apply a hardening checklist to routers and switches.

Certification

Your valid completion certificate

This course is for you:

  • IT support technicians ready to move into infrastructure and networking roles.

  • College students pursuing computer science or information technology degrees.

  • Career changers from non-technical fields drawn to the networking profession.

  • System administrators who manage servers but lack formal networking knowledge.

  • Hobbyists building home labs who want structured, professional-grade instruction.

  • Junior help desk staff aiming to qualify for network technician positions.

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