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ISC SSCP資格勉強: System Security Certified Practitioner (SSCP) &認証の成功を保証,簡単なトレーニング方法
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SSCP認定は、ネットワークおよびシステムセキュリティに特化したITプロフェッショナルにとって優れた選択肢です。このプログラムは、情報セキュリティの主要なコンセプトとベストプラクティスを包括的に理解することを目的としており、世界的に有価な資格として認知されています。この認定は、ネットワークセキュリティエンジニア、システム管理者、セキュリティアナリスト、セキュリティコンサルタントなどの役割で働くプロフェッショナルに最適です。
SSCP模擬解説集、SSCPトレーニング
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ISC SSCP(System Security Certified Practitioner)試験は、システムセキュリティの分野でキャリアを追求したい人々のための高度に尊敬される認定プログラムです。この認定は、組織のITシステムのセキュリティに責任を持つプロフェッショナルのスキルと知識を検証・強化するために設計されています。SSCP認定は、多様な業界で雇用主に高く評価される、グローバルに認められた資格です。
ISC System Security Certified Practitioner (SSCP) 認定 SSCP 試験問題 (Q1116-Q1121):
質問 # 1116
Which of the following would be the best criterion to consider in determining the classification of an information asset?
- A. Age
- B. Personal association
- C. Useful life
- D. Value
正解:D
解説:
Information classification should be based on the value of the information to the organization and its sensitivity (reflection of how much damage would accrue due to disclosure).
Age is incorrect. While age might be a consideration in some cases, the guiding principles should be value and sensitivity.
Useful life. While useful lifetime is relevant to how long data protections should be applied, the classification is based on information value and sensitivity.
Personal association is incorrect. Information classification decisions should be based on value of the information and its sensitiviry.
質問 # 1117
What term describes the amount of risk that remains after the countermeasures have been deployed and the vulnerabilities classified?
- A. Terminal risk
- B. Imminent risk
- C. Residual risk
- D. Infinite risk
正解:C
質問 # 1118
What is the main focus of the Bell-LaPadula security model?
- A. Accountability
- B. Availability
- C. Integrity
- D. Confidentiality
正解:D
解説:
Explanation/Reference:
The Bell-LaPadula model is a formal model dealing with confidentiality.
The Bell-LaPadula Model (abbreviated BLP) is a state machine model used for enforcing access control in government and military applications. It was developed by David Elliott Bell and Leonard J. LaPadula, subsequent to strong guidance from Roger R. Schell to formalize the U.S. Department of Defense (DoD) multilevel security (MLS) policy. The model is a formal state transition model of computer security policy that describes a set of access control rules which use security labels on objects and clearances for subjects. Security labels range from the most sensitive (e.g."Top Secret"), down to the least sensitive (e.g.,
"Unclassified" or "Public").
The Bell-LaPadula model focuses on data confidentiality and controlled access to classified information, in contrast to the Biba Integrity Model which describes rules for the protection of data integrity. In this formal model, the entities in an information system are divided into subjects and objects.
The notion of a "secure state" is defined, and it is proven that each state transition preserves security by moving from secure state to secure state, thereby inductively proving that the system satisfies the security objectives of the model. The Bell-LaPadula model is built on the concept of a state machine with a set of allowable states in a computer network system. The transition from one state to another state is defined by transition functions.
A system state is defined to be "secure" if the only permitted access modes of subjects to objects are in accordance with a security policy. To determine whether a specific access mode is allowed, the clearance of a subject is compared to the classification of the object (more precisely, to the combination of classification and set of compartments, making up the security level) to determine if the subject is authorized for the specific access mode.
The clearance/classification scheme is expressed in terms of a lattice. The model defines two mandatory access control (MAC) rules and one discretionary access control (DAC) rule with three security properties:
The Simple Security Property - a subject at a given security level may not read an object at a higher security level (no read-up).
The -property (read "star"-property) - a subject at a given security level must not write to any object at a lower security level (no write-down). The -property is also known as the Confinement property.
The Discretionary Security Property - use of an access matrix to specify the discretionary access control.
The following are incorrect answers:
Accountability is incorrect. Accountability requires that actions be traceable to the user that performed them and is not addressed by the Bell-LaPadula model.
Integrity is incorrect. Integrity is addressed in the Biba model rather than Bell-Lapadula.
Availability is incorrect. Availability is concerned with assuring that data/services are available to authorized users as specified in service level objectives and is not addressed by the Bell-Lapadula model.
References:
CBK, pp. 325-326
AIO3, pp. 279 - 284
AIOv4 Security Architecture and Design (pages 333 - 336)
AIOv5 Security Architecture and Design (pages 336 - 338)
Wikipedia at https://en.wikipedia.org/wiki/Bell-La_Padula_model
質問 # 1119
Passwords can be required to change monthly, quarterly, or at other intervals:
- A. depending on the password's frequency of use
- B. not depending on the criticality of the information needing protection but depending on the password's frequency of use
- C. depending on the criticality of the information needing protection and the password's frequency of use
- D. depending on the criticality of the information needing protection
正解:C
解説:
Section: Access Control
Explanation/Reference:
Passwords can be compromised and must be protected. In the ideal case, a password should only be used once. The changing of passwords can also fall between these two extremes. Passwords can be required to change monthly, quarterly, or at other intervals, depending on the criticality of the information needing protection and the password's frequency of use. Obviously, the more times a password is used, the more chance there is of it being compromised.
Source: KRUTZ, Ronald L. & VINES, Russel D., The CISSP Prep Guide: Mastering the Ten Domains of Computer Security, 2001, John Wiley & Sons, Page 36 & 37.
質問 # 1120
Which of the following questions is less likely to help in assessing physical and environmental protection?
- A. Are entry codes changed periodically?
- B. Are appropriate fire suppression and prevention devices installed and working?
- C. Are there processes to ensure that unauthorized individuals cannot read, copy, alter, or steal printed or electronic information?
- D. Is physical access to data transmission lines controlled?
正解:C
解説:
Section: Access Control
Explanation/Reference:
Physical security and environmental security are part of operational controls, and are measures taken to protect systems, buildings, and related supporting infrastructures against threats associated with their physical environment. All the questions above are useful in assessing physical and environmental protection except for the one regarding processes that ensuring that unauthorized individuals cannot access information, which is more a production control.
Source: SWANSON, Marianne, NIST Special Publication 800-26, Security Self-Assessment Guide for Information Technology Systems, November 2001 (Pages A-21 to A-24).
質問 # 1121
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