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NEW QUESTION: 1
Which conceptual approach to intrusion detection system is the MOST common?
A. Host-based intrusion detection
B. Statistical anomaly-based intrusion detection
C. Behavior-based intrusion detection
D. Knowledge-based intrusion detection
Answer: D
Explanation:
Explanation/Reference:
Explanation:
An IDS can detect malicious behavior using two common methods. One way is to use knowledge-based detection which is more frequently used. The second detection type is behavior-based detection.
Incorrect Answers:
A: behavior-based detection is less common compared to knowledge-based detection.
C: A Statistical anomaly-based IDS is a behavioral-based system.
D: Host-based intrusion detection is not a conceptual iDS approach. The two conventional approaches are knowledge-based detection and behavior-based detection.
References:
Stewart, James M., Ed Tittel, and Mike Chapple, CISSP: Certified Information Systems Security Professional Study Guide, 5th Edition, Sybex, Indianapolis, 2011, p. 56

NEW QUESTION: 2
You are using TCPdumps on the server-side SteelHead to troubleshoot an application connectivity issue. The following filter is used on the TCPdump:
(host <client IP> and host <server IP>) or (host <server IP> and host <steelheadinpath IP>) or (proto gre and ((ip[40:4] = <hex server IP> and ip[44:4] = <hex client IP>) or (ip[40:4] = <hex client IP> and ip[44:4] = <hex server IP>)) or (port 7850) What part of the filter captures the traffic which the Interceptor has applied NAT to?
A. (host <client IP> and host <server IP>)
B. (proto gre and ((ip[40:4] = <hex server IP> and ip[44:4] = <hex client IP>)
C. (ip[40:4] = <hex client IP> and ip[44:4] = <hex server IP>)
D. (host <server IP> and host <steelhead inpath IP>)
Answer: C

NEW QUESTION: 3

A. Requisition Line Aging Count
B. Requisition Lines Volume Count
C. Requisition Aging Count
D. Requisition Lines Cycle Time
E. Requisition Lines in ProcessCount
Answer: E

NEW QUESTION: 4
Which factor is a measurement of system reliability?
A. Mean time between failures
B. Mean time to repair
C. Recovery time objective
D. Recovery point objective
Answer: A
Explanation:
Measuring Information Availability Information availability relies on the availability of both physical and virtual components of a data center. Failure of these components might disrupt information availability. A failure is the termination of a component's ability to perform a required function. The component's ability can be restored by performing an external corrective actions, such as a manual reboot, a repair, or replacement of the failed component(s). Proactive risk analysis, performed as part of the BC planning process, considers the component failure rate and average repair time, which are measured by MTBF and MTTR:

Mean Time Between Failure (MTBF): It is the average time available for a system or component to perform its normal operations between failures. It is the measure of system or component reliability and is usually expressed in hours.
Mean Time To Repair (MTTR): It is the average time required to repair a failed component.
MTTR includes the total time required to do the following activities: detect the fault,
mobilize the maintenance team, diagnose the fault, obtain the spare parts, repair, test, and
restore the data. MTTR is calculated as: Total downtime/Number of failures IA can be
expressed in terms of system uptime and downtime and measured as the amount or
percentage of system uptime:
IA = system uptime / (system uptime + system downtime)
Where system uptime is the period of time during which the system is in an accessible
state; when it is not accessible, it is termed as system downtime.
In terms of MTBF and MTTR, IA could also be expressed as: IA = MTBF / (MTBF + MTTR)
Topic 3, Volume C