All these topics are neatly organized into 5 domains:
-
Risk management
Under this domain, the candidates should be able to synthesize business and industry influences and understand the related security risks. This requires knowledge of risk management, business models, influencing factors, and more. The applicants also have to have an idea about security and privacy policies, the ability to contrast and compare them, and up-to-date knowledge on policy and process life cycle.
In addition, an understanding of strategies for risk mitigation, security controls, reverse engineering of existing solutions, common business documents, and general privacy principles is needed. The candidates should be able to analyze risk metric scenarios and use that to provide security.
- Enterprise security architecture
This domain will cover various security components, protocols, vulnerabilities, and more. The candidates ought to understand how to analyze a scenario and successfully integrate network and security concepts and architectures while meeting the presented requirements. The knowledge of various physical and virtual network and security devices, applications, and protocol, network designs, etc. is essential.
The applicants should also be able to perform the integration of security controls for the host device while meeting the security requirements. This involves knowledge of trusted OS, security software, host hardening, hardware vulnerabilities. Furthermore, one should have the skills to successfully integrate security controls on mobile devices. Knowledge of enterprise mobility management, rooting, tokenization, etc. is vital for this.
Finally, exam-takers need to be able to choose the appropriate security controls for given vulnerability scenarios. This requires knowledge of various application issues, application security designs, database activity monitoring, firmware vulnerabilities, and more.
- Enterprise security operations
When solving the tasks related to this domain, the candidates are given a scenario where they should successfully conduct an evaluation using various security methods such as malware sandboxing, fingerprinting, pivoting, and such. Knowledge of different network tools is required for analyzing those scenarios and choosing an appropriate tool. Furthermore, the knowledge of e-discovery, data breach, and the various aspects related to that should be used by candidates to implement incident response and execute proper recovery procedures.
- Technical integration of enterprise security
In the fourth domain, the applicants are given a scenario that will test their knowledge of the integration of networks, hosts, storage, and applications to secure enterprise architecture. This requires an understanding of diverse standards, adaption to data flow security, interoperability issues, data security considerations, network secure segmentation and delegation, and such. Moreover, the candidates should be able to integrate cloud and virtualization technologies into secure enterprise architecture using their knowledge of cloud augmented security services, data security, vulnerabilities, and more.
This domain also tests the candidates' ability to integrate and troubleshoot advanced authentication and authorization technologies. This also involves understanding various aspects of attestation, identity proofing, and more. The candidates are required to have an idea about cryptographic techniques as well as the ability to expertly select suitable control to secure communications and collaboration solutions.
- Research, development, and collaboration
To answer the questions under this section, the candidates should perform research whilst applying proper methods and determine industry trends to identify the impact on the enterprise. This requires knowledge of research practices, security implications of business tools, and such. Moreover, implementing security activities across the technology life cycle, which is included in this domain, will be benefited by one's knowledge of system development life cycle, software development life cycle, documentation, etc.
Finally, individuals need to know and explain the importance of interaction across business units to achieve security goals. This includes knowledge of implementation of security requirements, and aspects related to it, among others.
CompTIA CAS-003日本語 Exam Overview:
| Certification Vendor: | CompTIA |
|---|---|
| Exam Name: | CompTIA Advanced Security Practitioner (CASP+) |
| Exam Number: | CAS-003 |
| Exam Duration: | 165 minutes |
| Passing Score: | Pass/Fail (no scaled score) |
| Real Exam Qty: | Maximum of 90 |
| Exam Format: | Performance-based, Multiple-choice |
| Available Languages: | Japanese, English |
| Certificate Validity Period: | 3 years |
| Related Certifications: | CompTIA Network+ CompTIA Security+ CompTIA CySA+ |
| Exam Price: | USD ~466–494 (approximate official exam fee) |
| Sample Questions: | CompTIA CAS-003日本語 Sample Questions |
| Exam Way: | Onsite at Pearson VUE or Online proctored (Pearson VUE OnVUE). |
| Pre Condition: | Recommended: 10 years of IT administration experience with at least 5 years of hands-on security experience; recommended but not mandatory to hold Security+, Network+, or CySA+ (experience based). |
| Official Syllabus URL: | https://www.comptia.org/en-us/certifications/casp |
Career Opportunities
The job titles that the candidates who pass the CompTIA CAS-003 exam can take up include a Security Engineer, an Application Security Engineer, a Technical Lead Analyst, and a Security Architect, among others. The salary potential for these professionals is an average of $105,000 per annum. Depending on their level of experience, this figure may be even higher.
Reference: https://certification.comptia.org/certifications/comptia-advanced-security-practitioner
CompTIA CAS-003日本語 Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Enterprise Security Architecture | 25% | - Mobile & small device security controls - Application security & vulnerabilities - Host device security controls - Network & security components integration |
| Topic 2: Technical Integration of Enterprise Security | 23% | - Advanced authentication & authorization - Cloud & virtualization security - Host, storage, network, application integration - Cryptographic techniques implementation |
| Topic 3: Enterprise Security Operations | 20% | - Incident response & recovery procedures - Security assessment methods - Security tools selection |
| Topic 4: Research, Development and Collaboration | 13% | - Security activities across technology lifecycle - Research industry trends & impact - Interdisciplinary collaboration for security goals |
| Topic 5: Risk Management | 19% | - Risk metric analysis - Risk mitigation strategies & controls - Business and industry influences & security risks - Security, privacy policies & procedures |


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