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Basic Network Security Course
More than 2 million students worldwide

Basic Network Security Course

Master the skills that keep modern networks safe — from foundational protocols to advanced threat response. This course takes you through cryptography, firewalls, VPNs, segmentation, and incident forensics with clear, practical instruction. Whether you're building your first security skill set or formalising what you already know, this is where solid network defence begins.

Dedika for businesses

What you will learn:

  • Configure firewalls, ACLs, and DMZ architectures to enforce strong perimeter controls.

  • Apply cryptographic protocols including TLS, IPsec, and SSH to protect network communications.

  • Design segmented network architectures using VLANs and micro-segmentation to limit breach impact.

  • Deploy and tune IDS/IPS systems alongside SIEM platforms for continuous threat visibility.

  • Execute structured incident response procedures, including evidence collection and forensic analysis.

  • Evaluate remote access solutions such as VPNs and Zero Trust Network Access for enterprise use.

How you study in practice Basic Network Security Course

How you practise Basic Network Security Course

For companies looking to train their teams

With Dedika for businesses, the course includes exercises and examples tailored to your company and its specific needs.

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Course content

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

Chapter 1See details

Foundations of Networking Concepts

  • Lesson 1 • Network Models and Layered Architecture

    Introduces the OSI and TCP/IP models as frameworks for understanding protocol interaction. Establishes vocabulary used throughout the course.

  • Lesson 2 • Network Topologies and Media Types

    Surveys physical and logical topologies alongside wired and wireless media. Grounds students in infrastructure choices that affect security posture.

  • Lesson 3 • Core Network Protocols

    Examines DNS, DHCP, ARP, and ICMP as essential operational protocols. Connects protocol behaviour to real network troubleshooting scenarios.

  • Lesson 4 • IP Addressing and Subnetting Basics

    Covers IPv4 and IPv6 address structures, classes, and subnet masks. Enables students to design and interpret basic addressing schemes.

  • Lesson 5 • Network Devices and Their Roles

    Distinguishes routers, switches, hubs, and firewalls by function and placement. Prepares students to map devices to network topology diagrams.

Chapter 2See details

Core Security Principles and Threat Landscape

  • Lesson 1 • Security Policies and Governance Basics

    Covers acceptable use, password, and incident response policies as governance tools. Establishes the policy layer that underpins all technical controls.

  • Lesson 2 • Vulnerability and Risk Fundamentals

    Introduces vulnerability, threat, and risk as distinct but related concepts. Students use this framework to prioritise security investments throughout the course.

  • Lesson 3 • Authentication, Authorisation, and Accounting

    Explains AAA as the framework governing identity and access on networks. Connects AAA components to device login, VPN, and network access control.

  • Lesson 4 • The CIA Triad and Security Goals

    Defines confidentiality, integrity, and availability as the pillars of information security. Links each pillar to concrete network protection requirements.

  • Lesson 5 • Common Network Attack Categories

    Surveys reconnaissance, interception, denial-of-service, and injection attacks. Provides a threat taxonomy students apply in later defensive chapters.

Chapter 3See details

Cryptography Essentials for Network Security

  • Lesson 1 • Cryptographic Protocol Applications

    Maps cryptographic primitives to TLS, SSH, and IPsec protocol operations. Reinforces why algorithm selection directly affects network security strength.

  • Lesson 2 • Hashing and Data Integrity

    Introduces cryptographic hash functions and their role in verifying data integrity. Links hashing to digital signatures, certificates, and password storage.

  • Lesson 3 • Asymmetric Encryption and Key Exchange

    Covers public-private key pairs, RSA, and elliptic curve cryptography. Explains how asymmetric methods solve the key distribution problem.

  • Lesson 4 • Symmetric Encryption Algorithms

    Examines block and stream ciphers, key sizes, and modes of operation. Connects symmetric encryption to bulk data protection in network protocols.

  • Lesson 5 • Public Key Infrastructure and Certificates

    Explains certificate authorities, certificate chains, and the PKI trust model. Prepares students to manage TLS certificates in network environments.

Chapter 4See details

Firewalls, ACLs, and Perimeter Defence

  • Lesson 1 • Access Control List Design

    Teaches ACL syntax, rule ordering, and implicit deny principles on routers and switches. Connects ACL logic to traffic filtering decisions in real topologies.

  • Lesson 2 • Network Address Translation and Security

    Covers NAT types, PAT, and their role in hiding internal addressing from external networks. Explains NAT limitations as a security control.

  • Lesson 3 • Firewall Rule Auditing and Hardening

    Addresses rule bloat, shadow rules, and periodic review processes for firewall policies. Prepares students to maintain a clean, effective rule base over time.

  • Lesson 4 • DMZ Architecture and Network Zones

    Introduces the demilitarised zone as a buffer between untrusted and trusted networks. Students design multi-zone architectures that isolate public-facing services.

  • Lesson 5 • Firewall Types and Architectures

    Compares packet-filtering, stateful, and next-generation firewalls by capability. Establishes which firewall type suits each network zone and threat model.

Chapter 5See details

Secure Network Segmentation and VLANs

  • Lesson 1 • Designing a Segmented Network Architecture

    Guides students through a structured process for mapping zones, trust levels, and inter-segment policies. Produces a complete segmentation design as a practical deliverable.

  • Lesson 2 • VLAN Security Attacks and Mitigations

    Examines VLAN hopping, double-tagging, and rogue trunk attacks with their countermeasures. Reinforces that VLANs require hardening beyond default switch settings.

  • Lesson 3 • Segmentation Principles and Benefits

    Explains why segmentation reduces attack surface and limits breach propagation. Frames segmentation as a foundational zero-trust building block.

  • Lesson 4 • Network Micro-Segmentation Techniques

    Introduces software-defined and host-based micro-segmentation for granular east-west control. Extends segmentation concepts to virtualised and cloud-adjacent environments.

  • Lesson 5 • VLAN Configuration and Trunking

    Covers VLAN creation, port assignment, and 802.1Q trunk configuration on managed switches. Connects VLAN design to logical network separation without physical rewiring.

Chapter 6See details

Intrusion Detection, Prevention, and Monitoring

  • Lesson 1 • Network Traffic Analysis Techniques

    Covers packet capture, flow analysis, and baseline profiling for anomaly identification. Builds the analytical skills needed to interpret monitoring data effectively.

  • Lesson 2 • Writing and Managing Detection Rules

    Teaches rule syntax, condition logic, and alert thresholds for common IDS/IPS platforms. Connects rule quality directly to detection accuracy and operational noise.

  • Lesson 3 • Continuous Monitoring and Alerting Strategy

    Establishes a monitoring programme with defined metrics, escalation paths, and review cycles. Prepares students to sustain detection capability beyond initial deployment.

  • Lesson 4 • IDS and IPS Fundamentals

    Distinguishes detection-only IDS from inline IPS and explains signature vs. anomaly detection. Establishes the role of each in a layered defence strategy.

  • Lesson 5 • Security Information and Event Management

    Introduces SIEM as the aggregation and correlation layer for network security events. Students configure log sources, correlation rules, and dashboards for visibility.

Chapter 7See details

Secure Remote Access and VPN Technologies

  • Lesson 1 • Zero Trust Network Access Principles

    Introduces ZTNA as an evolution beyond perimeter VPN, enforcing per-session verification. Contrasts ZTNA with traditional VPN to highlight architectural differences.

  • Lesson 2 • Remote Access Security Requirements

    Identifies the risks of remote connectivity and the controls needed to mitigate them. Frames endpoint trust, authentication strength, and channel encryption as core requirements.

  • Lesson 3 • IPsec VPN Architecture and Configuration

    Covers IKE phases, SA negotiation, and tunnel vs. transport mode for site-to-site VPNs. Connects IPsec parameters to the cryptographic concepts from Chapter 3.

  • Lesson 4 • SSL/TLS VPN Solutions

    Examines clientless and full-tunnel TLS VPN models and their use cases. Addresses split tunnelling, portal design, and certificate management for TLS VPNs.

  • Lesson 5 • Hardening and Auditing Remote Access

    Addresses VPN hardening, weak cipher removal, and access log review for remote access systems. Ensures students can maintain secure remote access over the system lifecycle.

Chapter 8See details

Incident Response and Network Forensics

  • Lesson 1 • Network Evidence Collection

    Covers packet capture, log preservation, and chain-of-custody requirements for network evidence. Connects evidence integrity to the legal and organisational validity of findings.

  • Lesson 2 • Traffic and Log Analysis for Investigations

    Applies packet and flow analysis to reconstruct attack timelines and identify compromised hosts. Builds on monitoring skills from Chapter 6 in an investigative context.

  • Lesson 3 • Incident Response Lifecycle

    Maps the preparation, detection, containment, eradication, recovery, and lessons-learned phases. Provides the procedural framework applied in all subsequent forensic sections.

  • Lesson 4 • Incident Reporting and Lessons Learned

    Guides students through writing technical incident reports and conducting structured post-mortems. Closes the response cycle with actionable improvements to prevent recurrence.

  • Lesson 5 • Containment and Isolation Techniques

    Teaches network-level isolation methods including ACL changes, VLAN reassignment, and port shutdown. Reinforces segmentation and firewall skills in an active incident context.

Certification

Your valid completion certificate

This course is for you:

  • IT support technicians: ready to move into a dedicated security-focused role.

  • Junior network administrators: needing formal structure around the security work they already do.

  • Career changers from non-technical fields: motivated to enter cybersecurity from the ground up.

  • Computer science students: looking to connect classroom theory to real defensive practice.

  • Small business owners: responsible for their own infrastructure and wanting to protect it properly.

  • Help desk professionals: building credentials to advance beyond tier-one support positions.

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