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Exam Code: PEGACPLSA23V1
Exam Name: Certified Pega Lead System Architecture (LSA) Exam 23
Vendor: Pegasystems

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NEW QUESTION: 1
According to PRINCE2, which of the following statements is FALSE regarding project closure?
A. A clear end to the project enables the organization to understand the work that needs to be done to deliver the project's products
B. A clear end to the project transfers ownership of the products to the customer
C. A clear end to the project gives recognition that the original objectives have been met
D. A clear end to the project provides an opportunity to ensure that all unachieved goals and objectives are identified
Answer: A

NEW QUESTION: 2
When installing additional RAM for a laptop, which of the following would MOST likely be used?
A. SODIMM
B. PC card
C. PCMCIA
D. DIMM
Answer: A
Explanation:
http://www.crucial.com/install/sodimm.aspx

NEW QUESTION: 3
What can be defined as an abstract machine that mediates all access to objects by subjects to ensure that subjects have the necessary access rights and to protect objects from unauthorized access?
A. The Trusted Computing Base
B. The Security Domain
C. The Reference Monitor
D. The Security Kernel
Answer: C
Explanation:
The reference monitor refers to abstract machine that mediates all access to objects by subjects.
This question is asking for the concept that governs access by subjects to objects, thus the reference monitor is the best answer. While the security kernel is similar in nature, it is what actually enforces the concepts outlined in the reference monitor.
In operating systems architecture a reference monitor concept defines a set of design requirements on a reference validation mechanism, which enforces an access control policy over subjects' (e.g., processes and users) ability to perform operations (e.g., read and write) on objects (e.g., files and sockets) on a system. The properties of a reference monitor are:
The reference validation mechanism must always be invoked (complete mediation). Without this property, it is possible for an attacker to bypass the mechanism and violate the security policy. The reference validation mechanism must be tamperproof (tamperproof). Without this property, an attacker can undermine the mechanism itself so that the security policy is not correctly enforced. The reference validation mechanism must be small enough to be subject to analysis and tests, the completeness of which can be assured (verifiable). Without this property, the mechanism might be flawed in such a way that the policy is not enforced.
For example, Windows 3.x and 9x operating systems were not built with a reference monitor, whereas the Windows NT line, which also includes Windows 2000 and Windows XP, was designed to contain a reference monitor, although it is not clear that its properties (tamperproof, etc.) have ever been independently verified, or what level of computer security it was intended to provide.
The claim is that a reference validation mechanism that satisfies the reference monitor concept will
correctly enforce a system's access control policy, as it must be invoked to mediate all security-
sensitive operations, must not be tampered, and has undergone complete analysis and testing to
verify correctness. The abstract model of a reference monitor has been widely applied to any type
of system that needs to enforce access control, and is considered to express the necessary and
sufficient properties for any system making this security claim.
According to Ross Anderson, the reference monitor concept was introduced by James Anderson
in an influential 1972 paper.
Systems evaluated at B3 and above by the Trusted Computer System Evaluation Criteria
(TCSEC) must enforce the reference monitor concept.
The reference monitor, as defined in AIO V5 (Harris) is: "an access control concept that refers to
an abstract machine that mediates all access to objects by subjects."
The security kernel, as defined in AIO V5 (Harris) is: "the hardware, firmware, and software
elements of a trusted computing based (TCB) that implement the reference monitor concept. The
kernel must mediate all access between subjects and objects, be protected from modification, and
be verifiable as correct."
The trusted computing based (TCB), as defined in AIO V5 (Harris) is: "all of the protection
mechanisms within a computer system (software, hardware, and firmware) that are responsible for
enforcing a security policy."
The security domain, "builds upon the definition of domain (a set of resources available to a
subject) by adding the fact that resources withing this logical structure (domain) are working under
the same security policy and managed by the same group."
The following answers are incorrect:
"The security kernel" is incorrect. One of the places a reference monitor could be implemented is
in the security kernel but this is not the best answer.
"The trusted computing base" is incorrect. The reference monitor is an important concept in the
TCB but this is not the best answer.
"The security domain is incorrect." The reference monitor is an important concept in the security
domain but this is not the best answer.
Reference(s) used for this question:
Official ISC2 Guide to the CBK, page 324
AIO Version 3, pp. 272 - 274
AIOv4 Security Architecture and Design (pages 327 - 328)
AIOv5 Security Architecture and Design (pages 330 - 331) Wikipedia article at https://en.wikipedia.org/wiki/Reference_monitor

NEW QUESTION: 4
What does this EEM applet event accomplish?
"event snmp oid 1.3.6.1.3.7.1.5.1.2.4.2.9 get-type next entry-op g entry-val 75 poll-interval 5"
A. It issues email when the value is greater than 75% for five polling cycles.
B. Upon the value reaching 75%, a SNMP event is generated and sent to the trap server.
C. It reads an SNMP variable, and when the value exceeds 75% for live polling cycles.
D. It presents a SNMP variable that can be interrogated.
Answer: C
Explanation:
Explanation
EEM offers the ability to monitor events and take informational or corrective action when the monitored events occur or reach a threshold. An EEM policy is an entity that defines an event and the actions to be taken when that event occurs. There are two types of EEM policies: an applet or a script. An applet is a simple form of policy that is defined within the CLI configuration.
To specify the event criteria for an Embedded Event Manager (EEM) applet that is run by sampling Simple Network Management Protocol (SNMP) object identifier values, use the event snmp command in applet configuration mode.
event snmp oid oid-value get-type {exact | next} entry-op operator entry-val entryvalue
[exit-comb {or | and}] [exit-op operator] [exit-val exit-value] [exit-time exit-timevalue] poll-interval poll-int-value
+ oid: Specifies the SNMP object identifier (object ID)
+ get-type: Specifies the type of SNMP get operation to be applied to the object ID specified by the oid-value argument.
- next - Retrieves the object ID that is the alphanumeric successor to the object ID specified by the oid-value argument.
+ entry-op: Compares the contents of the current object ID with the entry value using the specified operator. If there is a match, an event is triggered and event monitoring is disabled until the exit criteria are met.
+ entry-val: Specifies the value with which the contents of the current object ID are compared to decide if an SNMP event should be raised.
+ exit-op: Compares the contents of the current object ID with the exit value using the specified operator. If there is a match, an event is triggered and event monitoring is reenabled.
+ poll-interval: Specifies the time interval between consecutive polls (in seconds) Reference: https://www.cisco.com/en/US/docs/ios/12_3t/12_3t4/feature/guide/gtioseem.html Question 2 Cisco TrustSec uses tags to represent logical group privilege. This tag, called a Security Group Tag (SGT), is used in access policies. The SGT is understood and is used to enforce traffic by Cisco switches, routers and firewalls . Cisco TrustSec is defined in three phases: classification, propagation and enforcement.
When users and devices connect to a network, the network assigns a specific security group. This process is called classification. Classification can be based on the results of the authentication or by associating the SGT with an IP, VLAN, or port-profile (-> Answer 'security group tag ACL assigned to each port on a switch' and answer 'security group tag number assigned to each user on a switch' are not correct as they say "assigned ... on a switch" only. Answer 'security group tag ACL assigned to each router on a network' is not correct either as it says "assigned to each router").


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