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Basic Network Course
More than 2 million students worldwide

Basic Network Course

Get a complete, practical foundation in computer networking — from IP addressing and routing to security and troubleshooting. This course covers every core concept and hands-on skill you need to build, manage, and secure real networks. Whether you're starting your IT career or filling critical knowledge gaps, this is where serious networking begins.

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What you will learn:

You will master the OSI and TCP/IP models, IPv4 and IPv6 addressing, subnetting, and VLSM. You will configure Ethernet switches, VLANs, spanning tree, and multiple routing protocols including OSPF. You will set up essential network services such as DNS, DHCP, NAT, and HTTP. You will apply firewalls, access control lists, and VPN technologies to defend network infrastructure. You will use professional diagnostic tools to monitor performance and resolve faults systematically. The course also introduces wireless networking, cloud concepts, and network automation to prepare you for modern environments.

How you study in practice Basic Network Course

How you practice Basic Network Course

For companies looking to train their teams

With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.

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Course Content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Networking Fundamentals and Core Concepts

  • Lesson 1 • Core Network Components

    Identifies routers, switches, hubs, access points, and cables. Students map each component to its role in data delivery.

  • Lesson 2 • Network Types and Topologies

    Covers LAN, WAN, MAN, and PAN distinctions alongside physical and logical topologies. Connects network scope to design decisions.

  • Lesson 3 • Network Standards and Organizations

    Introduces the bodies that define networking standards and why compliance matters. Grounds students in the regulatory and technical landscape.

  • Lesson 4 • What Is a Computer Network

    Defines networks, their purpose, and real-world applications. Establishes the vocabulary used throughout the entire course.

  • Lesson 5 • Data Transmission Basics

    Explains how data moves across a network as bits, packets, and frames. Provides the conceptual basis for understanding protocols.

Chapter 2See details

The OSI and TCP/IP Models

  • Lesson 1 • Encapsulation and Data Flow

    Traces a data packet from sender to receiver through each model layer. Reinforces how headers are added and removed at each stage.

  • Lesson 2 • TCP/IP Model in Depth

    Covers the four-layer TCP/IP model used in modern networks. Compares it directly to the OSI model for clarity.

  • Lesson 3 • Purpose of Layered Network Models

    Explains why abstraction layers simplify network design and troubleshooting. Sets the stage for deep dives into each layer.

  • Lesson 4 • OSI Model Layer by Layer

    Walks through all seven OSI layers with functions and examples. Students associate real protocols and devices with each layer.

  • Lesson 5 • Using Models for Troubleshooting

    Applies the OSI model as a diagnostic framework for isolating faults. Students practice a top-down and bottom-up troubleshooting approach.

Chapter 3See details

IP Addressing and Subnetting

  • Lesson 1 • Variable Length Subnet Masking

    Introduces VLSM for efficient address allocation across multiple subnets. Students design VLSM schemes that minimize address waste.

  • Lesson 2 • Subnet Masks and CIDR

    Explains subnet masks, prefix lengths, and Classless Inter-Domain Routing. Students calculate network and host ranges from CIDR notation.

  • Lesson 3 • IPv6 Addressing Fundamentals

    Covers the 128-bit IPv6 format, address types, and notation rules. Prepares students for dual-stack and IPv6-only environments.

  • Lesson 4 • Address Assignment Methods

    Compares static assignment, DHCP, and IPv6 autoconfiguration. Students select the appropriate method for different network scenarios.

  • Lesson 5 • IPv4 Address Structure

    Breaks down the 32-bit IPv4 address format, classes, and notation. Provides the arithmetic foundation needed for subnetting.

Chapter 4See details

Ethernet and Switching Fundamentals

  • Lesson 1 • VLANs and Network Segmentation

    Introduces VLANs as a tool for logical segmentation and broadcast control. Students configure access and trunk ports on a switch.

  • Lesson 2 • How Switches Forward Frames

    Explains MAC address table learning, flooding, and forwarding decisions. Students trace how a switch handles known and unknown destinations.

  • Lesson 3 • Ethernet Standards and Frame Structure

    Details Ethernet evolution, frame fields, and MAC addressing. Connects physical media standards to frame delivery.

  • Lesson 4 • Switch Security Basics

    Introduces port security, MAC filtering, and DHCP snooping. Ties Layer 2 security controls to broader network protection goals.

  • Lesson 5 • Spanning Tree Protocol

    Covers STP operation to prevent Layer 2 loops in redundant topologies. Students identify port states and root bridge election.

Chapter 5See details

Routing Concepts and Protocols

  • Lesson 1 • Static Routing Configuration

    Covers manual route entry, floating static routes, and use cases. Students configure and verify static routes in a lab environment.

  • Lesson 2 • Dynamic Routing Protocol Concepts

    Introduces distance-vector, link-state, and path-vector categories. Students compare protocol behavior and convergence characteristics.

  • Lesson 3 • OSPF Fundamentals

    Covers OSPF neighbor relationships, LSAs, and SPF calculation. Students configure single-area OSPF and verify adjacency formation.

  • Lesson 4 • Routing Between VLANs

    Explains router-on-a-stick and Layer 3 switch methods for inter-VLAN routing. Connects switching knowledge to routing configuration.

  • Lesson 5 • How Routers Forward Packets

    Explains routing table lookup, longest-prefix matching, and next-hop selection. Builds on IP addressing knowledge from the previous chapter.

Chapter 6See details

Network Services and Protocols

  • Lesson 1 • Network Address Translation

    Covers static NAT, dynamic NAT, and PAT to conserve public addresses. Students configure NAT and verify translation table entries.

  • Lesson 2 • File Transfer and Email Protocols

    Covers FTP, SFTP, SMTP, IMAP, and POP3 operation and security considerations. Students identify the correct protocol for each data transfer scenario.

  • Lesson 3 • DNS: Domain Name Resolution

    Explains the DNS hierarchy, resolution process, and record types. Students trace a query from client to authoritative server.

  • Lesson 4 • DHCP Service Operation

    Details the DORA process, scope configuration, and relay agents. Builds on IP addressing concepts to show automated address management.

  • Lesson 5 • HTTP, HTTPS, and Web Protocols

    Explains HTTP request-response cycles, status codes, and TLS encryption. Connects application-layer behavior to underlying transport protocols.

Chapter 7See details

Network Security Essentials

  • Lesson 1 • Wireless Security Protocols

    Covers WEP weaknesses, WPA2, and WPA3 improvements for wireless protection. Students configure secure wireless authentication and encryption settings.

  • Lesson 2 • VPN Technologies

    Introduces site-to-site and remote-access VPN types, IPsec, and SSL/TLS tunnels. Students compare VPN options for different connectivity needs.

  • Lesson 3 • Firewalls and Packet Filtering

    Explains stateless and stateful firewall operation and rule processing. Students write and order firewall rules to permit and deny traffic.

  • Lesson 4 • Access Control Lists

    Covers standard and extended ACL syntax, placement, and verification. Students apply ACLs to filter traffic on router interfaces.

  • Lesson 5 • Common Network Threats

    Surveys DoS, man-in-the-middle, spoofing, and malware threats. Establishes the threat landscape that security controls must address.

Chapter 8See details

Network Monitoring and Troubleshooting

  • Lesson 1 • Essential CLI Diagnostic Tools

    Covers ping, traceroute, nslookup, netstat, and ipconfig/ifconfig commands. Students use each tool to isolate connectivity and configuration faults.

  • Lesson 2 • SNMP and Network Monitoring Systems

    Explains SNMP versions, MIBs, traps, and polling for device monitoring. Students configure basic SNMP and interpret monitoring dashboard data.

  • Lesson 3 • Performance Baselining and Capacity Planning

    Teaches how to establish normal performance baselines and detect deviations. Students create a simple baseline report and identify capacity thresholds.

  • Lesson 4 • Packet Capture and Analysis

    Introduces packet capture concepts and basic Wireshark filter syntax. Students capture live traffic and identify anomalies in protocol exchanges.

  • Lesson 5 • Troubleshooting Methodology

    Presents a structured problem-solving process from symptom identification to resolution. Provides a repeatable framework applicable to any network fault.

Certification

Your valid completion certificate

This course is for you:

  • IT support technicians ready to move into dedicated networking roles.

  • College students pursuing a computer science or information technology degree.

  • Career changers from non-technical fields drawn to infrastructure and systems work.

  • Small business owners who manage their own office networks without formal training.

  • Developers who want to understand the network layer their applications run on.

  • Military veterans transitioning into civilian technology careers seeking structured fundamentals.

What our students say

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