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>> NSE6_OTS_AR-7.6 Valid Test Notes <<
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NEW QUESTION # 114
How are rogue devices evaluated in FortiNAC? (Choose one answer)
Answer: A
Explanation:
The correct answer is A. Through device profiling rules . The study guide states: "When a rogue device record is created, the device is evaluated against the enabled device profiling rules." It further explains that "FortiNAC evaluates a device against each rule until a failed, passed, or cannot evaluate result is reached." That is the direct evaluation mechanism used for rogue devices in FortiNAC.
The guide also adds that "Device profiling rules are used to evaluate and classify rogue devices" and that FortiNAC applies rule methods and classification settings to determine whether the device matches a known type. This is why the other options are incorrect: FortiGuard server queries and the local device database (CIDB) relate to FortiGate device detection workflows, not FortiNAC rogue-device evaluation, and importing a devices list is not the evaluation method described for rogue devices.
NEW QUESTION # 115
What are two advantages provided by industrial Ethernet? (Choose two answers)
Answer: A,B
Explanation:
The correct answers are B. Real-time control and D. Determinism. The study guide defines industrial Ethernet as the "use of Ethernet and TCP/IP as transport mechanisms for industrial protocols" and states that it provides "real-time control," "low latency," and "determinism (meaning reliable and predictable data delivery)" in harsh environments. It further explains that industrial Ethernet "provides deterministic communication between machine controllers, actuators, sensors, and other units." These statements directly confirm that the two key advantages are real-time control and determinism.
The other options are not supported by the study guide as core advantages of industrial Ethernet. Encryption is not listed as one of the benefits in this section, and remote access is discussed elsewhere in the OT architecture but not as a defining advantage of industrial Ethernet itself. The guide is explicit that the main benefits here are predictable delivery and real-time communication, which are essential in industrial control environments where timing and reliability matter.
NEW QUESTION # 116
Refer to the exhibit. From your analysis of the output, which statement about the output is true?
Answer: C
Explanation:
ph_dev_mon is a PAM event. Hostname is WIN2K8DC (a win server) not Fortigate.
NEW QUESTION # 117
Refer to the exhibit.
A partial Application Sensor profile is shown. When you apply this profile in a firewall policy, which two statements are correct? (Choose two answers)
Answer: C,D
Explanation:
The correct answers are A and C .
Option C is correct because the profile clearly contains the Operational Technology category and specific OT application signatures such as Modbus and IEC.60870.5.104 . The study guide says "You can use application control signatures to detect OT protocols" and "You can filter to a specific OT protocol." That means OT application signatures are active in this sensor profile.
Option A is correct because the guide explains that application control works at different levels: "Detection of protocol (one detection per session)" and "Message level (one detection per protocol message)." It also says you can use application signatures for "granular message type identification." In the exhibit, IEC.
60870.5.104.Control.Functions is explicitly configured, which is a granular IEC message/control-level signature rather than only a protocol-level match. That means logging and control can occur at the IEC command level.
Option B is not correct because the profile shows Modbus configured at the parent protocol level as Monitor
, while the guide states that the "parent signature takes precedence over the child signature." Since protocol-level detection is one detection per session , that does not mean FortiGate will necessarily log each Modbus command individually.
Option D is incorrect because even though the broader Operational Technology category is set to block, the profile includes specific application and filter overrides for Modbus and IEC 104 behavior. So the resulting effect is not simply that all OT protocols are blocked .
NEW QUESTION # 118
For the installation of your first FortiGate device, you want to minimize the impact in your OT network. Therefore, you deploy it initially as an offline IDS. Which two statements about this deployment are correct? (Choose two answers)
Answer: B,D
Explanation:
Deploying a FortiGate in offline IDS (also known as one-arm sniffer mode) is a common strategy in OT environments for several reasons found in the study guide:
Priority of Availability: In OT, availability and safety are critically important and prioritized higher than in IT. An offline IDS minimizes impact because it does not sit in the direct path of production traffic.
Network Sensor Role: In this mode, the FortiGate is connected to a mirror/SPAN port on a switch. It acts as a network sensor, receiving a copy of the traffic rather than having the traffic flow through it. This confirms Statement A is correct and Statement D is incorrect.
Passive vs. Active: The guide explicitly states that in OT environments, passive methods are preferred over active methods to avoid negatively impacting performance or causing process interruptions.
Depth of Visibility: Even though the device is offline, you apply security profiles (such as IPS, Application Control, and Antivirus) to the sniffer interface. This allows the FortiGate to analyze the copied traffic and provide deep visibility into the OT assets and their behaviors. This confirms Statement B is correct.
Detection vs. Prevention: An IDS (Intrusion Detection System) is passive; it can detect threats but cannot reset connections or drop packets to block attacks. Therefore, it cannot block zero-day attacks, making Statement C incorrect.
NEW QUESTION # 119
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