
Computer Networking Course
Master every layer of modern computer networking, from physical cabling to cloud connectivity and automation. This course gives you the technical depth to design, secure, and troubleshoot real-world networks with confidence. Whether you're starting out or leveling up, you'll build skills that employers and certifications demand.
What you will learn:
You will gain a thorough understanding of how networks are built and operated, starting with the OSI and TCP/IP models and moving through IP addressing, subnetting, and routing protocols including OSPF, EIGRP, and BGP. You will learn how Ethernet switching, VLANs, and Spanning Tree Protocol keep LANs stable and efficient. The course covers network security fundamentals including firewalls, access control lists, and VPN technologies. You will also explore wireless networking, QoS, WAN technologies, and cloud networking concepts. Practical troubleshooting methodologies and diagnostic tools prepare you to resolve real network issues quickly and systematically.
How you study in practice Computer Networking Course
How you practice Computer Networking Course
For companies that want to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 41 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Computer Networking
Foundations of Computer Networking
Lesson 1 • What Is a Computer Network
Defines networks, their purpose, and real-world use cases. Grounds all subsequent technical content in practical context.
Lesson 2 • The OSI Reference Model
Introduces the seven-layer OSI model as a framework for understanding protocol responsibilities. Each layer's function is mapped to real network operations.
Lesson 3 • Data Transmission Basics
Covers how bits travel across media as signals. Establishes bandwidth, latency, and throughput as measurable network performance indicators.
Lesson 4 • Network Types and Topologies
Classifies networks by scale and physical layout. Connects topology choice to performance and fault-tolerance trade-offs.
Lesson 5 • The TCP/IP Model
Contrasts the TCP/IP four-layer model with OSI and explains its dominance in modern networks. Students map familiar protocols to each TCP/IP layer.
Chapter 2HideHide detailsSee detailsPhysical Layer and Network Media
Physical Layer and Network Media
Lesson 1 • Physical Layer Encoding and Signaling
Covers line coding schemes and modulation techniques that convert bits to signals. Links encoding choices to error rates and channel efficiency.
Lesson 2 • Copper Cabling Standards
Details twisted-pair and coaxial cable types, categories, and performance limits. Connects cable selection to speed and distance requirements.
Lesson 3 • Fiber Optic Cabling
Explains light-based transmission through single-mode and multimode fiber. Positions fiber as the solution for high-speed, long-distance, and EMI-resistant links.
Lesson 4 • Wireless Transmission Media
Surveys radio, microwave, and infrared transmission. Introduces frequency bands and regulatory constraints that govern wireless deployments.
Lesson 5 • Network Hardware Devices
Identifies hubs, switches, routers, and access points and their roles at specific OSI layers. Builds the hardware vocabulary needed for network design chapters.
Chapter 3HideHide detailsSee detailsData Link Layer and Ethernet
Data Link Layer and Ethernet
Lesson 1 • Switching and MAC Address Tables
Explains how switches learn, store, and use MAC address tables to forward frames. Introduces flooding, forwarding, and filtering decisions.
Lesson 2 • Ethernet Standards and Frames
Covers Ethernet II and IEEE 802.3 frame formats and speed standards from 10 Mbps to 100 Gbps. Ties standard selection to cabling and switch capabilities.
Lesson 3 • Data Link Layer Functions
Defines framing, flow control, and error detection as core data link responsibilities. Establishes how this layer shields the network layer from physical imperfections.
Lesson 4 • MAC Addressing
Explains the structure and assignment of 48-bit MAC addresses. Connects MAC addressing to frame delivery within a single broadcast domain.
Lesson 5 • VLANs and Trunking
Introduces virtual LANs as a method to segment broadcast domains logically. Covers 802.1Q tagging and trunk link configuration between switches.
Lesson 6 • Spanning Tree Protocol
Addresses broadcast storms caused by redundant switch links and explains how STP eliminates loops. Covers port states and the election of a root bridge.
Chapter 4HideHide detailsSee detailsNetwork Layer and IP Addressing
Network Layer and IP Addressing
Lesson 1 • Network Layer Responsibilities
Defines routing, logical addressing, and path determination as network layer functions. Distinguishes routed from routing protocols.
Lesson 2 • IPv6 Addressing
Introduces 128-bit IPv6 address types, notation rules, and header improvements over IPv4. Covers stateless address autoconfiguration and dual-stack coexistence.
Lesson 3 • IP Packet Structure and Forwarding
Analyzes IPv4 and IPv6 header fields and explains how routers use routing tables to forward packets. Connects TTL and hop limits to loop prevention.
Lesson 4 • IPv4 Addressing and Classes
Explains 32-bit IPv4 address structure, classful ranges, and private address blocks. Provides the foundation for subnetting calculations.
Lesson 5 • Subnetting and CIDR
Teaches subnet mask manipulation and CIDR notation to divide address space efficiently. Students calculate network, host, and broadcast addresses for any prefix.
Chapter 5HideHide detailsSee detailsRouting Protocols and Path Selection
Routing Protocols and Path Selection
Lesson 1 • Border Gateway Protocol
Presents BGP as the inter-domain routing protocol of the internet. Covers AS numbers, path attributes, and policy-based route selection.
Lesson 2 • Distance-Vector Routing Protocols
Explains Bellman-Ford-based protocols including RIP and EIGRP fundamentals. Covers split horizon, route poisoning, and convergence behavior.
Lesson 3 • Link-State Routing Protocols
Introduces OSPF and IS-IS as link-state protocols that build complete topology maps. Covers LSA flooding, SPF calculation, and area design.
Lesson 4 • Route Redistribution and Optimization
Addresses sharing routes between different routing protocols and tuning metrics. Connects redistribution to real multi-vendor enterprise environments.
Lesson 5 • Static and Default Routing
Covers manual route configuration and the use of default routes for stub networks. Establishes baseline routing knowledge before dynamic protocols are introduced.
Chapter 6HideHide detailsSee detailsTransport Layer and Application Protocols
Transport Layer and Application Protocols
Lesson 1 • TCP Operation and Reliability
Explains the three-way handshake, sequence numbers, acknowledgments, and flow control. Covers congestion control algorithms that prevent network saturation.
Lesson 2 • HTTP, FTP, and Email Protocols
Surveys web, file transfer, and email protocols at the application layer. Connects protocol behavior to port numbers and security upgrade paths.
Lesson 3 • UDP and Real-Time Applications
Covers UDP's low-overhead, connectionless model and its suitability for latency-sensitive traffic. Connects UDP to DNS, VoIP, and streaming use cases.
Lesson 4 • Transport Layer Functions
Defines segmentation, port addressing, and end-to-end delivery as transport responsibilities. Distinguishes connection-oriented from connectionless communication.
Lesson 5 • DNS and DHCP
Explains name resolution through DNS hierarchy and dynamic address assignment via DHCP. Both services are foundational to automated network operation.
Chapter 7HideHide detailsSee detailsNetwork Security Fundamentals
Network Security Fundamentals
Lesson 1 • Encryption and VPNs
Covers symmetric and asymmetric encryption, PKI basics, and VPN tunnel types. Connects encryption to confidentiality and integrity goals.
Lesson 2 • Common Network Threats
Catalogs attack types including DoS, man-in-the-middle, spoofing, and reconnaissance. Establishes a threat model that motivates all subsequent security controls.
Lesson 3 • Firewalls and Intrusion Detection
Compares packet-filter, stateful, and next-generation firewalls. Introduces IDS and IPS as complementary detection and prevention mechanisms.
Lesson 4 • Network Hardening Practices
Applies defense-in-depth principles to device configuration and management plane security. Covers AAA, port security, and secure management protocols.
Lesson 5 • Access Control Lists
Teaches standard and extended ACL syntax for filtering traffic by address and protocol. Covers ACL placement strategy to minimize unwanted traffic.
Chapter 8HideHide detailsSee detailsNetwork Management and Troubleshooting
Network Management and Troubleshooting
Lesson 1 • Performance Metrics and Baselining
Defines key performance indicators including utilization, jitter, and packet loss. Baselining normal behavior enables rapid anomaly detection.
Lesson 2 • Diagnostic Tools and Commands
Covers ping, traceroute, nslookup, netstat, and packet capture tools. Each tool is mapped to specific OSI layers and failure scenarios.
Lesson 3 • Configuration Management and Documentation
Covers change control processes, configuration backups, and network diagram standards. Proper documentation reduces recovery time during outages.
Lesson 4 • Troubleshooting Methodologies
Introduces top-down, bottom-up, and divide-and-conquer diagnostic approaches. Selecting the right method reduces mean time to resolution.
Lesson 5 • Network Monitoring and SNMP
Explains SNMP architecture, MIBs, and trap-based alerting for proactive monitoring. Connects monitoring data to capacity planning and SLA compliance.
Your valid completion certificate
This course is for you:
IT support technicians ready to move into dedicated networking roles.
College students pursuing degrees in computer science or information technology.
Career changers from unrelated fields drawn to infrastructure and systems work.
System administrators who manage servers but lack formal networking knowledge.
Hobbyists who build home labs and want structured, professional-grade instruction.
Junior help desk staff aiming to qualify for network engineer job openings.
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