
Beginner Computer Network Course
Build a rock-solid foundation in computer networking from the ground up. This course takes you from basic concepts like network topologies and the OSI model all the way to routing, wireless security, and cloud networking. Whether you're aiming for your first IT role or a certification, you'll gain the hands-on knowledge employers actually want.
What your team will master:
You'll start with core networking concepts, including how data moves across devices, what the OSI and TCP/IP models do, and how different network types are structured. From there, you'll master IP addressing, subnetting, and the protocols that keep networks running, such as DNS, DHCP, TCP, and UDP. You'll learn how Ethernet switches operate, how routers make forwarding decisions, and how to secure a network with firewalls and access control lists. The course also covers wireless networking standards, network troubleshooting tools, and an introduction to cloud and virtualized environments.
How your team learns in practice Beginner Computer Network Course
How your team practices Beginner Computer Network Course
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Course Content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Computer Networking
Foundations of Computer Networking
Lesson 1 • The TCP/IP Model
Maps TCP/IP's four layers to OSI equivalents and explains why it dominates modern networking. Students connect theory to practical protocol stacks.
Lesson 2 • Network Topologies Explained
Covers bus, star, ring, mesh, and hybrid layouts. Students evaluate trade-offs in fault tolerance and cost for each topology.
Lesson 3 • What Is a Computer Network
Defines networks, their purpose, and real-world examples. Anchors the chapter by giving students a concrete mental model before technical detail.
Lesson 4 • Types of Networks by Scale
Distinguishes LAN, MAN, WAN, and PAN by geographic scope and ownership. Students map network types to real environments they will encounter.
Lesson 5 • The OSI Reference Model
Introduces all seven OSI layers and their responsibilities. Provides the conceptual framework used throughout the entire course.
Chapter 2HideHide detailsSee detailsNetwork Hardware and Physical Media
Network Hardware and Physical Media
Lesson 1 • Network Interface Cards and Ports
Explains how NICs connect devices to a network at the hardware level. Students identify NIC types and port standards used in modern equipment.
Lesson 2 • Routers and Gateways
Introduces Layer 3 routing and the role of default gateways. Students trace a packet's path from source to destination across networks.
Lesson 3 • Wireless Access Points and Modems
Covers APs, modems, and their roles in extending network reach. Students distinguish modem functions from router functions in home setups.
Lesson 4 • Cables and Connectors
Covers twisted-pair, coaxial, and fiber-optic cables along with their connectors. Students match cable categories to bandwidth and distance requirements.
Lesson 5 • Hubs, Switches, and Bridges
Distinguishes Layer 1 hubs from Layer 2 switches and bridges by forwarding behavior. Students explain why switches replaced hubs in modern LANs.
Chapter 3HideHide detailsSee detailsIP Addressing and Subnetting
IP Addressing and Subnetting
Lesson 1 • Public, Private, and Special Addresses
Identifies RFC-defined private ranges, loopback, and APIPA addresses. Students recognize which addresses are routable on the public internet.
Lesson 2 • Introduction to IPv6
Presents IPv6 address format, types, and the motivation for the transition from IPv4. Students write and abbreviate valid IPv6 addresses.
Lesson 3 • Subnetting a Network
Applies subnetting math to divide a single network into multiple subnets. Students design address plans that meet host-count requirements.
Lesson 4 • Subnet Masks and CIDR Notation
Explains how subnet masks divide address space and introduces CIDR slash notation. Students determine network and broadcast addresses from a given prefix.
Lesson 5 • IPv4 Address Structure
Breaks down the 32-bit IPv4 address into octets and explains dotted-decimal notation. Students convert between binary and decimal representations.
Chapter 4HideHide detailsSee detailsCore Networking Protocols
Core Networking Protocols
Lesson 1 • HTTP, FTP, and Email Protocols
Surveys application-layer protocols used for web, file transfer, and email. Students map each protocol to its port number and transport layer dependency.
Lesson 2 • TCP vs. UDP
Contrasts connection-oriented TCP with connectionless UDP using real application examples. Students select the appropriate transport protocol for a given use case.
Lesson 3 • DNS: Domain Name System
Traces a DNS query from client to authoritative server and back. Students explain record types and troubleshoot name resolution failures.
Lesson 4 • IP and ICMP Operations
Explains IP packet structure and ICMP's role in diagnostics and error reporting. Students interpret ping and traceroute output using ICMP knowledge.
Lesson 5 • DHCP: Automatic Address Assignment
Details the DORA process by which clients obtain IP configuration automatically. Students configure a basic DHCP scope and identify lease issues.
Chapter 5HideHide detailsSee detailsEthernet and LAN Technologies
Ethernet and LAN Technologies
Lesson 1 • VLANs and Trunking
Introduces VLANs as logical network segments and 802.1Q trunking for inter-switch VLAN transport. Students assign ports to VLANs and configure trunk links.
Lesson 2 • Spanning Tree Protocol Basics
Explains how STP prevents Layer 2 loops by electing a root bridge and blocking redundant paths. Students identify STP port states and their transitions.
Lesson 3 • MAC Addresses and Frames
Explains Ethernet frame structure and how MAC addresses direct local delivery. Students decode a frame header and identify source and destination fields.
Lesson 4 • Switch Operation and MAC Tables
Details how switches learn, age, and use MAC address tables to forward frames. Students predict switch behavior for known and unknown destinations.
Lesson 5 • Ethernet Standards and Speeds
Reviews IEEE 802.3 variants from Fast Ethernet to 10 Gigabit. Students match cable categories and distances to the correct Ethernet standard.
Chapter 6HideHide detailsSee detailsRouting Concepts and Protocols
Routing Concepts and Protocols
Lesson 1 • RIP and OSPF Fundamentals
Introduces RIP's hop-count metric and OSPF's cost-based SPF algorithm. Students compare their scalability and convergence characteristics.
Lesson 2 • Static Routing Configuration
Covers manual route entry syntax and use cases for static routes. Students add static routes and a default route to a simple multi-router topology.
Lesson 3 • How Routers Forward Packets
Explains routing table lookup, longest-prefix matching, and next-hop selection. Students trace a packet through multiple routers using a routing table.
Lesson 4 • Dynamic Routing Protocol Overview
Compares distance-vector and link-state routing approaches at a conceptual level. Students explain why dynamic protocols scale better than static routing.
Lesson 5 • Network Address Translation
Explains how NAT maps private addresses to public IPs and conserves address space. Students distinguish static NAT, dynamic NAT, and PAT.
Chapter 7HideHide detailsSee detailsWireless Networking Fundamentals
Wireless Networking Fundamentals
Lesson 1 • Radio Frequency and Signal Basics
Introduces frequency bands, wavelength, and signal propagation factors. Students predict how walls, interference, and distance affect wireless performance.
Lesson 2 • Wi-Fi Standards and Speeds
Surveys IEEE 802.11 generations from 802.11b through Wi-Fi 6. Students match standards to throughput, frequency, and deployment scenarios.
Lesson 3 • Wireless Troubleshooting Techniques
Applies a structured approach to diagnosing connectivity, speed, and interference issues. Students use site survey tools and channel analysis to resolve problems.
Lesson 4 • Wireless Network Architecture
Distinguishes infrastructure mode from ad-hoc and mesh topologies. Students design a small office wireless layout with appropriate AP placement.
Lesson 5 • Wireless Security Protocols
Compares WEP, WPA, WPA2, and WPA3 encryption and authentication methods. Students configure WPA2-Personal and explain why WEP is deprecated.
Chapter 8HideHide detailsSee detailsNetwork Security Essentials
Network Security Essentials
Lesson 1 • Network Monitoring and Logging
Introduces SNMP, syslog, and NetFlow for visibility into network behavior. Students configure basic logging and interpret alert output for anomaly detection.
Lesson 2 • Common Network Threats
Catalogs attacks including DoS, man-in-the-middle, spoofing, and phishing. Students classify threats by attack vector and targeted OSI layer.
Lesson 3 • Firewalls and Packet Filtering
Explains stateless and stateful firewall operation and rule evaluation order. Students write basic firewall rules to permit or deny specific traffic.
Lesson 4 • Access Control Lists
Introduces standard and extended ACLs for filtering traffic on routers. Students apply ACLs to interfaces and verify their effect on packet flow.
Lesson 5 • Encryption and VPNs
Covers symmetric and asymmetric encryption basics and VPN tunnel types. Students explain how a site-to-site VPN secures traffic over public networks.
Your valid completion certificate
This course is for you:
Career changers: seeking a practical entry point into the IT industry.
Help desk technicians: wanting to expand skills beyond basic desktop support.
Small business owners: needing to understand and manage their own office networks.
Computer science students: looking to reinforce classroom theory with applied networking concepts.
Hobbyists and tinkerers: eager to understand the infrastructure behind their home setups.
Military veterans: transitioning into civilian technology roles and building new credentials.
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