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Course Outline

DOMAIN 1: CYBERSECURITY CONCEPTS

  • 1.1 Understanding information assurance (IA) principles applied to managing risks associated with the use, processing, storage, and transmission of information or data.
  • 1.2 Proficiency in security management.
  • 1.3 Familiarity with risk management processes, including the steps and methods employed for risk assessment.
  • 1.4 Awareness of the organization’s enterprise information technology (IT) goals and objectives.
  • 1.5 Insight into various operational threat environments, such as first-generation [script kiddies], second-generation [non-nation state sponsored], and third-generation [nation state sponsored] actors.
  • 1.6 Knowledge of information assurance (IA) principles and organizational requirements pertinent to confidentiality, integrity, availability, authentication, and non-repudiation.
  • 1.7 Familiarity with common adversary tactics, techniques, and procedures (TTPs) within the assigned area of responsibility, including historical country-specific TTPs and emerging capabilities.
  • 1.8 Understanding of different classes of attacks, such as passive, active, insider, close-in, and distribution attacks.
  • 1.9 Knowledge of applicable laws, policies, procedures, and governance requirements.
  • 1.10 Awareness of laws, policies, procedures, or governance standards related to work that may impact critical infrastructure.

DOMAIN 2: CYBERSECURITY ARCHITECTURE PRINCIPLES

  • 2.1 Understanding network design processes, including security objectives, operational goals, and necessary tradeoffs.
  • 2.2 Familiarity with security system design methods, tools, and techniques.
  • 2.3 Knowledge of network access, identity, and access management concepts, such as public key infrastructure [PKI].
  • 2.4 Insight into information technology (IT) security principles and methods, including firewalls, demilitarized zones, and encryption.
  • 2.5 Awareness of current industry standards for evaluating, implementing, and deploying IT security assessment, monitoring, detection, and remediation tools and procedures.
  • 2.6 Understanding of network security architecture concepts, including topology, protocols, components, and principles, such as the application of defence in depth.
  • 2.7 Knowledge of malware analysis concepts and methodologies.
  • 2.8 Familiarity with intrusion detection methodologies and techniques for identifying host-and network-based intrusions using intrusion detection technologies.
  • 2.9 Insight into defence in depth principles and network security architecture.
  • 2.10 Knowledge of encryption algorithms, including internet Protocol Security [IPSEC], Advanced Encryption Standard [AES], and Generic Routing Encapsulation [GRE].
  • 2.11 Understanding of cryptology.
  • 2.12 Familiarity with encryption methodologies.
  • 2.13 Knowledge of traffic flow across networks, including Transmission Control Protocol and Internet Protocol [ITCP/IP] and the Open System Interconnection model [OSI].
  • 2.14 Insight into network protocols, such as Transmission Control Protocol and Internet Protocol.

DOMAIN 3: SECURITY OF NETWORK, SYSTEM, APPLICATION AND DATA

  • 3.1 Familiarity with computer network defence (CND) and vulnerability assessment tools, including open-source options, and their respective capabilities.
  • 3.2 Knowledge of basic system administration, along with network and operating system hardening techniques.
  • 3.3 Awareness of risks associated with virtualization.
  • 3.4 Understanding of penetration testing principles, tools, and techniques, such as metasploit and neosploit.
  • 3.5 Knowledge of network systems management principles, models, methods (e.g., end-to-end systems performance monitoring), and tools.
  • 3.6 Familiarity with remote access technology concepts.
  • 3.7 Insight into systems administration concepts.
  • 3.8 Proficiency in the Unix command line.
  • 3.9 Awareness of system and application security threats and vulnerabilities.
  • 3.10 Understanding of system lifecycle management principles, including software security and usability.
  • 3.11 Knowledge of local specialized system requirements for safety, performance, and reliability, such as critical infrastructure systems that may not use standard information technology [IT].
  • 3.12 Familiarity with system and application security threats and vulnerabilities, including buffer overflow, mobile code, cross-site scripting, Procedural Language/Structured Query Language [PL/SQL] and injections, race conditions, covert channel, replay, return-oriented attacks, and malicious code.
  • 3.13 Insight into the social dynamics of computer attackers in a global context.
  • 3.14 Knowledge of secure configuration management techniques.
  • 3.15 Understanding of the capabilities and applications of network equipment, including hubs, routers, switches, bridges, servers, transmission media, and related hardware.
  • 3.16 Familiarity with communication methods, principles, and concepts that support network infrastructure.
  • 3.17 Knowledge of common networking protocols (e.g., Transmission Control Protocol and Internet Protocol [TCP/IP]) and services (e.g., web, mail, Domain Name System [DNS]) and their interaction in facilitating network communications.
  • 3.18 Awareness of different types of network communication, such as Local Area Network [LAN], Wide Area Network [WAN], Metropolitan Area Network [MAN], Wireless Local Area Network [WLAN], and Wireless Wide Area Network [WWAN].
  • 3.19 Knowledge of virtualization technologies, as well as virtual machine development and maintenance.
  • 3.20 Familiarity with application vulnerabilities.
  • 3.21 Understanding of information assurance (IA) principles and methods applicable to software development.
  • 3.22 Knowledge of risk threat assessment.

DOMAIN 4: INCIDENT RESPONSE

  • 4.1 Familiarity with incident categories, response protocols, and response timelines.
  • 4.2 Knowledge of disaster recovery and continuity of operations plans.
  • 4.3 Understanding of data backup strategies, backup types (e.g., full, incremental), and recovery concepts and tools.
  • 4.4 Insight into incident response and handling methodologies.
  • 4.5 Familiarity with security event correlation tools.
  • 4.6 Awareness of investigative implications related to hardware, operating systems, and network technologies.
  • 4.7 Knowledge of processes for seizing and preserving digital evidence, including chain of custody protocols.
  • 4.8 Familiarity with types of digital forensics data and methods for recognizing them.
  • 4.9 Understanding of basic concepts and practices for processing digital forensic data.
  • 4.10 Knowledge of anti-forensics tactics, techniques, and procedures (TTPS).
  • 4.11 Familiarity with common forensic tool configuration and support applications, such as VMWare and Wireshark.
  • 4.12 Understanding of network traffic analysis methods.
  • 4.13 Knowledge of which system files (e.g., log files, registry files, configuration files) contain relevant information and their locations.

DOMAIN 5: SECURITY OF EVOLVING TECHNOLOGY

  • 5.1 Awareness of new and emerging information technology (IT) and information security technologies.
  • 5.2 Familiarity with emerging security issues, risks, and vulnerabilities.
  • 5.3 Knowledge of risks associated with mobile computing.
  • 5.4 Understanding of cloud concepts related to data and collaboration.
  • 5.5 Awareness of risks involved in migrating applications and infrastructure to the cloud.
  • 5.6 Knowledge of risks associated with outsourcing.
  • 5.7 Familiarity with supply chain risk management processes and practices.

Requirements

No specific prerequisites are required for participation in this course

 28 Hours

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