Exam Code: Life-Producer
Exam Name: Maryland Life Producer Exam (Series 20-27)
Version: V13.25
Q & A: 72 Questions and Answers
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NEW QUESTION: 1
In the Bell-LaPadula model, the Star-property is also called:
A. The simple security property
B. The confidentiality property
C. The tranquility property
D. The confinement property
Answer: B
Explanation:
Explanation/Reference:
The Bell-LaPadula model focuses on data confidentiality and 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 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 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 an access control matrix to specify the discretionary access control.
The transfer of information from a high-sensitivity document to a lower-sensitivity document may happen in the Bell-LaPadula model via the concept of trusted subjects. Trusted Subjects are not restricted by the property. Untrusted subjects are.
Trusted Subjects must be shown to be trustworthy with regard to the security policy. This security model is directed toward access control and is characterized by the phrase: "no read up, no write down." Compare the Biba model, the Clark-Wilson model and the Chinese Wall.
With Bell-LaPadula, users can create content only at or above their own security level (i.e. secret researchers can create secret or top-secret files but may not create public files; no write-down).
Conversely, users can view content only at or below their own security level (i.e. secret researchers can view public or secret files, but may not view top-secret files; no read-up).
Strong Property
The Strong Property is an alternative to the Property in which subjects may write to objects with only a matching security level. Thus, the write-up operation permitted in the usual Property is not present, only a write-to-same level operation. The Strong Property is usually discussed in the context of multilevel database management systems and is motivated by integrity concerns.
Tranquility principle
The tranquility principle of the Bell-LaPadula model states that the classification of a subject or object does not change while it is being referenced. There are two forms to the tranquility principle: the "principle of strong tranquility" states that security levels do not change during the normal operation of the system and the "principle of weak tranquility" states that security levels do not change in a way that violates the rules of a given security policy.
Another interpretation of the tranquility principles is that they both apply only to the period of time during which an operation involving an object or subject is occurring. That is, the strong tranquility principle means that an object's security level/label will not change during an operation (such as read or write); the weak tranquility principle means that an object's security level/label may change in a way that does not violate the security policy during an operation.
Reference(s) used for this question:
http://en.wikipedia.org/wiki/Biba_Model
http://en.wikipedia.org/wiki/Mandatory_access_control
http://en.wikipedia.org/wiki/Discretionary_access_control
http://en.wikipedia.org/wiki/Clark-Wilson_model
http://en.wikipedia.org/wiki/Brewer_and_Nash_model
NEW QUESTION: 2
Which of the following is an example of the simplest fixed-price contract?
A. Verbal agreement
B. Purchase order
C. Request for quote
D. Purchase requisition
Answer: B
NEW QUESTION: 3
次の表に示すユーザーを含むMicrosoft 365サブスクリプションがあります。
次の表に示す名前付きの場所があります。
次の構成を持つ条件付きアクセスポリシーを作成します。
ユーザーとグループ:
*含める:Group1
*除外:グループ2
クラウドアプリ:すべてのクラウドアプリを含める
条件:
*含める:任意の場所
*除外:モントリオール
アクセス制御:アクセスを許可し、多要素認証を要求する
User1は、多要素認証(MFA)ブロックされたユーザーリストにあります。
以下の各ステートメントについて、ステートメントが真である場合は「はい」を選択します。それ以外の場合は、「いいえ」を選択します。
注:それぞれの正しい選択には1ポイントの価値があります。
Answer:
Explanation:
説明
NEW QUESTION: 4
Refer to the exhibit.
What is a possible reason for the IPSec tunnel not establishing?
A. The access lists do not match.
B. The proxy IDs are invalid.
C. The peer is unreachable.
D. The transform sets do not match.
Answer: A
Explanation:
Proxy Identities Not Supported This message appears in debugs if the access list for IPsec traffic does not match. 1d00h: IPSec(validate_transform_proposal): proxy identities not supported 1d00h: ISAKMP: IPSec policy invalidated proposal 1d00h: ISAKMP (0:2): SA not acceptable!
The access lists on each peer needs to mirror each other (all entries need to be reversible). This example illustrates this point. Peer A access-list 150 permit ip 172.21.113.0 0.0.0.255 172.21.114.0 0.0.0.255 access-list 150 permit ip host 15.15.15.1 host 172.21.114.123 Peer B access-list 150 permit ip 172.21.114.0 0.0.0.255 172.21.113.0 0.0.0.255 access-list 150 permit ip host 172.21.114.123 host 15.15.15.1
Reference: http://www.cisco.com/c/en/us/support/docs/security-vpn/ipsec-negotiation-ikeprotocols/5409-ipsec-debug-00.html#proxy
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