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ISC2 CISSP Exam Syllabus Topics:

TopicDetails

Security and Risk Management - 15%

Understand, adhere to, and promote professional ethics- (ISC)2 Code of Professional Ethics
- Organizational code of ethics
Understand and apply security concepts- Confidentiality, integrity, and availability, authenticity and nonrepudiation
Evaluate and apply security governance principles- Alignment of the security function to business strategy, goals, mission, and objectives
- Organizational processes (e.g., acquisitions, divestitures, governance committees)
- Organizational roles and responsibilities
- Security control frameworks
- Due care/due diligence
Determine compliance and other requirements- Contractual, legal, industry standards, and regulatory requirements
- Privacy requirements
Understand legal and regulatory issues that pertain to information security in a holistic context- Cybercrimes and data breaches
- Licensing and Intellectual Property (IP) requirements
- Import/export controls
- Transborder data flow
- Privacy
Understand requirements for investigation types (i.e., administrative, criminal, civil, regulatory, industry standards)
Develop, document, and implement security policy, standards, procedures, and guidelines
Identify, analyze, and prioritize Business Continuity (BC) requirements- Business Impact Analysis (BIA)
- Develop and document the scope and the plan
Contribute to and enforce personnel security policies and procedures- Candidate screening and hiring
- Employment agreements and policies
- Onboarding, transfers, and termination processes
- Vendor, consultant, and contractor agreements and controls
- Compliance policy requirements
- Privacy policy requirements
Understand and apply risk management concepts- Identify threats and vulnerabilities
- Risk assessment/analysis
- Risk response
- Countermeasure selection and implementation
- Applicable types of controls (e.g., preventive, detective,
corrective)
- Control assessments (security and privacy)
- Monitoring and measurement
- Reporting
- Continuous improvement (e.g., Risk maturity modeling)
- Risk frameworks
Understand and apply threat modeling concepts and methodologies
Apply Supply Chain Risk Management (SCRM) concepts- Risks associated with hardware, software, and services
- Third-party assessment and monitoring
- Minimum security requirements
- Service level requirements
Establish and maintain a security awareness, education, and training program- Methods and techniques to present awareness and training (e.g., social engineering, phishing, security champions, gamification)
- Periodic content reviews
- Program effectiveness evaluation

Asset Security - 10%

Identify and classify information and assets- Data classification
- Asset Classification
Establish information and asset handling requirements
Provision resources securely- Information and asset ownership
- Asset inventory (e.g., tangible, intangible)
- Asset management
Manage data lifecycle- Data roles (i.e., owners, controllers, custodians, processors, users/subjects)
- Data collection
- Data location
- Data maintenance
- Data retention
- Data remanence
- Data destruction
Ensure appropriate asset retention (e.g., End-of-Life (EOL), End-of-Support (EOS))
Determine data security controls and compliance requirements- Data states (e.g., in use, in transit, at rest)
- Scoping and tailoring
- Standards selection
- Data protection methods (e.g., Digital Rights Management (DRM), Data Loss Prevention (DLP), Cloud Access Security Broker (CASB))

Security Architecture and Engineering - 13%

Research, implement and manage engineering processes using secure design principles- Threat modeling
- Least privilege
- Defense in depth
- Secure defaults
- Fail securely
- Separation of Duties (SoD)
- Keep it simple
- Zero Trust
- Privacy by design
- Trust but verify
- Shared responsibility
Understand the fundamental concepts of security models (e.g., Biba, Star Model, Bell-LaPadula)
Select controls based upon systems security requirements
Understand security capabilities of information systems (IS) (e.g., memory protection, Trusted Platform Module (TPM), encryption/decryption)
Assess and mitigate the vulnerabilities of security architectures, designs, and solution elements- Client-based systems
- Server-based systems
- Database systems
- Cryptographic systems
- Industrial Control Systems (ICS)
- Cloud-based systems (e.g., Software as a Service (SaaS), Infrastructure as a Service (IaaS), Platform as a Service (PaaS))
- Distributed systems
- Internet of Things (IoT)
- Microservices
- Containerization
- Serverless
- Embedded systems
- High-Performance Computing (HPC) systems
- Edge computing systems
- Virtualized systems
Select and determine cryptographic solutions- Cryptographic life cycle (e.g., keys, algorithm selection)
- Cryptographic methods (e.g., symmetric, asymmetric, elliptic curves, quantum)
- Public Key Infrastructure (PKI)
- Key management practices
- Digital signatures and digital certificates
- Non-repudiation
- Integrity (e.g., hashing)
Understand methods of cryptanalytic attacks- Brute force
- Ciphertext only
- Known plaintext
- Frequency analysis
- Chosen ciphertext
- Implementation attacks
- Side-channel
- Fault injection
- Timing
- Man-in-the-Middle (MITM)
- Pass the hash
- Kerberos exploitation
- Ransomware
Apply security principles to site and facility design
Design site and facility security controls- Wiring closets/intermediate distribution facilities
- Server rooms/data centers
- Media storage facilities
- Evidence storage
- Restricted and work area security
- Utilities and Heating, Ventilation, and Air Conditioning (HVAC)
- Environmental issues
- Fire prevention, detection, and suppression
- Power (e.g., redundant, backup)

Communication and Network Security - 13%

Assess and implement secure design principles in network architectures- Open System Interconnection (OSI) and Transmission Control Protocol/Internet Protocol (TCP/IP) models
- Internet Protocol (IP) networking (e.g., Internet Protocol Security (IPSec), Internet Protocol (IP) v4/6)
- Secure protocols
- Implications of multilayer protocols
- Converged protocols (e.g., Fiber Channel Over Ethernet (FCoE), Internet Small Computer Systems Interface (iSCSI), Voice over Internet Protocol (VoIP))
- Micro-segmentation (e.g., Software Defined Networks (SDN), Virtual eXtensible Local Area Network (VXLAN), Encapsulation, Software-Defined Wide Area Network (SD WAN))
- Wireless networks (e.g., Li-Fi, Wi-Fi, Zigbee, satellite)
- Cellular networks (e.g., 4G, 5G)
- Content Distribution Networks (CDN)
Secure network components- Operation of hardware (e.g., redundant power, warranty, support)
- Transmission media
- Network Access Control (NAC) devices
- Endpoint security
Implement secure communication channels according to design- Voice
- Multimedia collaboration
- Remote access
- Data communications
- Virtualized networks
- Third-party connectivity

Identity and Access Management (IAM) - 13%

Control physical and logical access to assets- Information
- Systems
- Devices
- Facilities
- Applications
Manage identification and authentication of people, devices, and services- Identity Management (IdM) implementation
- Single/multi-factor authentication (MFA)
- Accountability
- Session management
- Registration, proofing, and establishment of identity
- Federated Identity Management (FIM)
- Credential management systems
- Single Sign On (SSO)
- Just-In-Time (JIT)
Federated identity with a third-party service- On-premise
- Cloud
- Hybrid
Implement and manage authorization mechanisms- Role Based Access Control (RBAC)
- Rule based access control
- Mandatory Access Control (MAC)
- Discretionary Access Control (DAC)
- Attribute Based Access Control (ABAC)
- Risk based access control
Manage the identity and access provisioning lifecycle- Account access review (e.g., user, system, service)
- Provisioning and deprovisioning (e.g., on /off boarding and transfers)
- Role definition (e.g., people assigned to new roles)
- Privilege escalation (e.g., managed service accounts, use of sudo, minimizing its use)
Implement authentication systems- OpenID Connect (OIDC)/Open Authorization (Oauth)
- Security Assertion Markup Language (SAML)
- Kerberos
- Remote Authentication Dial-In User Service (RADIUS)/Terminal Access Controller Access Control System Plus (TACACS+)

Security Assessment and Testing - 12%

Design and validate assessment, test, and audit strategies- Internal
- External
- Third-party
Conduct security control testing- Vulnerability assessment
- Penetration testing
- Log reviews
- Synthetic transactions
- Code review and testing
- Misuse case testing
- Test coverage analysis
- Interface testing
- Breach attack simulations
- Compliance checks
Collect security process data (e.g., technical and administrative)- Account management
- Management review and approval
- Key performance and risk indicators
- Backup verification data
- Training and awareness
- Disaster Recovery (DR) and Business Continuity (BC)
Analyze test output and generate report- Remediation
- Exception handling
- Ethical disclosure
Conduct or facilitate security audits- Internal
- External
- Third-party

Security Operations - 13%

Understand and comply with investigations- Evidence collection and handling
- Reporting and documentation
- Investigative techniques
- Digital forensics tools, tactics, and procedures
- Artifacts (e.g., computer, network, mobile device)
Conduct logging and monitoring activities- Intrusion detection and prevention
- Security Information and Event Management (SIEM)
- Continuous monitoring
- Egress monitoring
- Log management
- Threat intelligence (e.g., threat feeds, threat hunting)
- User and Entity Behavior Analytics (UEBA)
Perform Configuration Management (CM) (e.g., provisioning, baselining, automation)
Apply foundational security operations concepts- Need-to-know/least privilege
- Separation of Duties (SoD) and responsibilities
- Privileged account management
- Job rotation
- Service Level Agreements (SLAs)
Apply resource protection- Media management
- Media protection techniques
Conduct incident management- Detection
- Response
- Mitigation
- Reporting
- Recovery
- Remediation
- Lessons learned

The CISSP Exam consists of 250 multiple-choice questions, and the exam duration is six hours. CISSP exam tests the candidate's knowledge in eight domains of information security, which include security and risk management, asset security, security architecture and engineering, communication and network security, identity and access management, security assessment and testing, security operations, and software development security.

The ISC CISSP exam is conducted by the International Information Systems Security Certification Consortium (ISC)ยฒ, which is a non-profit organization committed to advancing the cybersecurity profession by promoting best practices and education. The CISSP exam is designed to measure a candidate's knowledge in various domains of information security, such as security and risk management, asset security, security engineering, communication and network security, identity and access management, security assessment and testing, security operations, and software development security.

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ISC Certified Information Systems Security Professional (CISSP) Sample Questions (Q1295-Q1300):

NEW QUESTION # 1295
An iterated block cipher encrypts by breaking the plaintext block into
two halves and, with a subkey, applying a round transformation to
one of the halves. Then, the output of this transformation is XORed with the remaining half. The round is completed by swapping the two halves. This type of cipher is known as:

Answer: B

Explanation:
The question stem describes one round of a Feistel cipher. This algorithm was developed by an IBM team led by Horst Feistel. (h. Feistel,
Cryptography and Computer Privacy, Scientific American, v.228, n.5,
May 1973) The algorithm was called Lucifer and was the basis for the
Data Encryption Standard (DES). In answer a, RC4 is a variable keysize
stream cipher developed by Ronald Rivest. In this type of cipher, a
sequence of bits that are the key is bit-wise XORed with the plaintext.
* Diffie-Hellman describes the first public key algorithm
and is based on the difficulty of calculating discrete logarithms in a
finite field. (W. Diffie and M.e. Hellman, New Directions in Cryptography,
IEEE Transactions on Information Theory, v. IT-22, n. 6, Nov
1976). It is used for exchanging keys. RC6, in answer c, is a fast block cipher designed by Rivest, Sidney and Yin. In RC6, the block size, the key size and the number of rounds are variable. The key size can be no
larger than 2040 bits. RC6 was one of the five finalists in the Advanced
Encryption Standard (AES) competition.


NEW QUESTION # 1296
An IT technician suspects a break in one of the uplinks that provides connectivity to the core switch. Which of the following command-line tools should the technician use to determine where the incident is occurring?

Answer: B

Explanation:
The "show interface" command is used to diagnose the status of an individual port or interface on a network device, such as a switch or router. It provides detailed information about the operational status, errors, and other relevant statistics that can help in identifying issues like a break in connectivity.


NEW QUESTION # 1297
A 'Pseudo flaw' is which of the following?

Answer: B


NEW QUESTION # 1298
Which protocol makes USE of an electronic wallet on a customer's PC and sends encrypted credit card information to merchant's Web server, which digitally signs it and sends it on to its processing bank?

Answer: D

Explanation:
As protocol was introduced by Visa and Mastercard to allow for more credit card transaction possibilities. It is comprised of three different pieces of software, running on the customer's PC (an electronic wallet), on the merchant's Web server and on the payment server of the merchant's bank. The credit card information is sent by the customer to the merchant's Web server, but it does not open it and instead digitally signs it and sends it to its bank's payment server for processing.
The following answers are incorrect because : SSH (Secure Shell) is incorrect as it functions as a type of tunneling mechanism that provides terminal like access to remote computers.
S/MIME is incorrect as it is a standard for encrypting and digitally signing electronic mail and for providing secure data transmissions.
SSL is incorrect as it uses public key encryption and provides data encryption, server authentication, message integrity, and optional client authentication. Reference : Shon Harris AIO v3 , Chapter-8: Cryptography , Page : 667-669


NEW QUESTION # 1299
What is NOT included in a data dictionary?

Answer: B

Explanation:
Explanation/Reference:
Explanation:
A data dictionary is a central collection of data element definitions, schema objects, and reference keys. It does not hold actual data and therefore does not use Structured Query Language (SQL) to access and manipulate data.
Incorrect Answers:
A, B, C: A data dictionary is a central collection of data element definitions, schema objects, and reference keys.
References:
Harris, Shon, All In One CISSP Exam Guide, 6th Edition, McGraw-Hill, New York, 2013, pp. 1178-1179
http://en.wikipedia.org/wiki/Data_dictionary


NEW QUESTION # 1300
......

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