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Main Information about CS0-002
CS0-002 was launched in April 2020 as a sequel to CS0-001 test and has rapidly gained popularity in the cybersecurity space. Upon successful completion of this exam, you’ll be awarded the highly-reputed CompTIA Cybersecurity Analyst (CySA+) certification.
The ultimate goal of CS0-002 is to validate that you’re not only capable of responding to cybersecurity attacks and threats, but also proactively defending and continuously improving an organization’s security. The exam contains 85 questions and is 165 minutes long. It grades on a scale of 100-900, with 750 as the passing benchmark.
The registration fee is $370; no doubt a meager price to pay for a high-stakes certification of this caliber. The median annual salary of security analysts is an indication that this investment is sure to recoup itself many times over if you choose to pursue a career in cybersecurity.
Reference: https://www.comptia.org/certifications/cybersecurity-analyst
CompTIA CS0-002 Exam Syllabus Topics:
| Topic | Details |
|---|---|
Threat and Vulnerability Management - 22% | |
| Explain the importance of threat data and intelligence. | 1. Intelligence sources
2. Confidence levels
4. Threat classification
5. Threat actors
6. Intelligence cycle
7. Commodity malware
|
| Given a scenario, utilize threat intelligence to support organizational security. | 1. Attack frameworks
2. Threat research
3. Threat modeling methodologies
3. Threat intelligence sharing with supported functions
|
| Given a scenario, perform vulnerability management activities. | 1. Vulnerability identification
2. Validation
3. Remediation/mitigation
4. Scanning parameters and criteria
5. Inhibitors to remediation
|
| Given a scenario, analyze the output from common vulnerability assessment tools. | 1.Web application scanner
2.Infrastructure vulnerability scanner
3.Software assessment tools and techniques
4.Enumeration
5. Wireless assessment tools
6. Cloud infrastructure assessment tools
|
| Explain the threats and vulnerabilities associated with specialized technology. | 1. Mobile 2. Internet of Things (IoT) 3. Embedded 4. Real-time operating system (RTOS) 5. System-on-Chip (SoC) 6. Field programmable gate array (FPGA) 7. Physical access control 8. Building automation systems 9. Vehicles and drones
10. Workflow and process automation systems
|
| Explain the threats and vulnerabilities associated with operating in the cloud. | 1. Cloud service models
2. Cloud deployment models
3. Function as a Service (FaaS)/serverless architecture
|
| Given a scenario, implement controls to mitigate attacks and software vulnerabilities. | 1. Attack types
2. Vulnerabilities
|
Software and Systems Security - 18% | |
| Given a scenario, apply security solutions for infrastructure management. | 1. Cloud vs. on-premises 2. Asset management
3. Segmentation
4. Network architecture
5. Change management
7. Containerization
9. Cloud access security broker (CASB) |
| Explain software assurance best practices. | 1. Platforms Mobile Web application Client/server Embedded System-on-chip (SoC) Firmware 2. Software development life cycle (SDLC) integration 3. DevSecOps 4. Software assessment methods User acceptance testing Stress test application Security regression testing Code review 5. Secure coding best practices Input validation Output encoding Session management Authentication Data protection Parameterized queries 6. Static analysis tools 7. Dynamic analysis tools 8. Formal methods for verification of critical software 9. Service-oriented architecture
|
| Explain hardware assurance best practices. | 1. Hardware root of trust Trusted platform module (TPM) Hardware security module (HSM) 2. eFuse 3. Unified Extensible Firmware Interface (UEFI) 4. Trusted foundry 5. Secure processing
6. Anti-tamper |
Security Operations and Monitoring - 25% | |
| Given a scenario, analyze data as part of security monitoring activities. | 1. Heuristics 2. Trend analysis 3. Endpoint
4. Network
5. Log review
6. Impact analysis
7. Security information and event management (SIEM) review
8. Query writing
9. E-mail analysis
|
| Given a scenario, implement configuration changes to existing controls to improve security. | 1. Permissions 2. Whitelisting 3. Blacklisting 4. Firewall 5. Intrusion prevention system (IPS) rules 6. Data loss prevention (DLP) 7. Endpoint detection and response (EDR) 8. Network access control (NAC) 9. Sinkholing 10. Malware signatures
11. Sandboxing |
| Explain the importance of proactive threat hunting. | 1. Establishing a hypothesis 2. Profiling threat actors and activities 3. Threat hunting tactics
4. Reducing the attack surface area |
| Compare and contrast automation concepts and technologies. | 1. Workflow orchestration
2. Scripting
9. Continuous integration |
Incident Response - 22% | |
| Explain the importance of the incident response process. | 1. Communication plan
2. Response coordination with relevant entities
3. Factors contributing to data criticality
|
| Given a scenario, apply the appropriate incident response procedure. | 1. Preparation
2. Detection and analysis
3. Containment
4. Eradication and recovery
5. Post-incident activities
|
| Given an incident, analyze potential indicators of compromise. | 1. Network-related
2. Host-related
3. Application-related
|
| Given a scenario, utilize basic digital forensics techniques. | 1. Network
2. Endpoint
3. Mobile
9. Carving |
Compliance and Assessment - 13% | |
| Understand the importance of data privacy and protection. | 1. Privacy vs. security 2. Non-technical controls
3. Technical controls
|
| Given a scenario, apply security concepts in support of organizational risk mitigation. | 1. Business impact analysis 2. Risk identification process 3. Risk calculation
4. Communication of risk factors
6. Systems assessment
9. Supply chain assessment
|
| Explain the importance of frameworks, policies, procedures, and controls. | 1. Frameworks
2. Policies and procedures
3. Category
4. Control type
5. Audits and assessments
|
CompTIA CS0-002 covers five domains. The candidates must develop their skills and competence in the exam content before attempting the test to enhance their chances of success. The topics that will be evaluated during the delivery of the exam are highlighted below:
Threat & Vulnerability Management: 22%
- Explaining the significance of threat data & intelligence: this area covers your skills in intelligence sources; threat classification; threat actors; confidence levels; indicator management; intelligence cycle; commodity malware; information sharing & analysis communities.
- Describing threat and vulnerability related to Cloud operation: this objective requires competence in Cloud service models, Cloud deployment models, Infrastructure as Code, Insecure application programming interfaces, logging & monitoring, unprotected storage, and improper key management.
- Using threat intelligence for the support of organizational security: this domain requires one’s knowledge of attack frameworks; threat research; threat modeling methodologies; threat intelligence sharing.
- Analyzing outputs from basic vulnerability evaluation tools: the knowledge areas to be measured within this topic include web application scanner; infrastructure vulnerability scanner; enumeration; wireless assessment tools; Cloud infrastructure assessment tools; software assessment techniques and tools.
- Describing threats and vulnerabilities related to specialized technology: this section covers the individuals’ knowledge of mobile, IoT, embedded, real-time OS system, system-on-chip; field-programmable gate array, vehicles and drones, industrial control systems, building automation systems, and supervisory control & data acquisition.
- Implementing controls to mitigate software vulnerabilities and attacks: this subject area covers attack types and vulnerabilities.
Incident Response: 22%
- Applying the relevant incident response procedure: this subject area covers competence in preparation, detection and analysis, containment, eradication & recovery, and post-incident events.
- Analyzing possible indicators of compromise: this domain includes network-related, host-related, and application-related compromises.
- Using fundamental forensics methods: this objective covers network, Endpoint, mobile, Cloud, virtualization, legal hold, procedures, hashing, carving, and data acquisition.





