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Fortinet NSEI_OTS_AR-7.6 Exam Syllabus Topics:

SectionObjectives
Monitoring and risk assessment- Perform risk assessment and management
- Analyze security reports from FortiAnalyzer
- Create FortiAnalyzer event handlers
Network security- Configure security inspections for industrial protocols
- Configure automation
- Configure virtual patching
Network access control- Explain OT Ethernet concepts
- Configure network segmentation schemas
- Configure network access authentication
Asset management- Fortinet Security Fabric for an OT network
- Implement device detection on FortiGate and FortiNAC
- Explain OT standard and Fortinet compliance

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Fortinet NSE I - OT Security 7.6 Architect Sample Questions (Q52-Q57):

NEW QUESTION # 52
Refer to the exhibit.

Which statement about this partial Asset Identity List page is correct? (Choose one answer)

Answer: A

Explanation:
The correct answer is B. A firewall policy has a Virtual Patching security profile applied to it .
The decisive clue in the exhibit is the Vulnerabilities column showing KEVs and device-specific vulnerability counts. The study guide explains the virtual patching workflow in this exact way: "FortiGate performs a lookup for device-specific vulnerabilities and mitigation rules in FortiGuard," then
"FortiGuard returns specific OT virtual patching signatures," and "FortiGate caches the signatures and mitigation rules that apply to each device." That is the same behavior reflected by the Asset Identity List showing vulnerability information per detected device.
The guide then states that "When traffic related to the vulnerable device reaches FortiGate, the firewall policy with the virtual patching profile applies." It also says "A virtual patching profile can be applied to firewall policies in any direction, protecting traffic from or to the vulnerable OT device." This directly links the per-device vulnerability visibility to a Virtual Patching profile enforced through firewall policy.
The other options do not match the exhibit. Antivirus is not described in the study guide as building a device- by-device vulnerability list, Application Control is used for OT protocol and message visibility, and IPS focuses on exploit detection and prevention. The Vulnerabilities/KEVs display is the indicator that FortiGate is using Virtual Patching logic for those OT devices.


NEW QUESTION # 53
Refer to the exhibit.

A basic event handler is shown. You have enabled Automation Stitch to automate the handling of an alert.
Which two steps must you take to use this automation stitch? (Choose two answers)

Answer: B,C

Explanation:
The correct answers are C and D .
Option D is correct because the study guide states that the configuration of an event handler can include
"Rules" and explains that "Rules are granular conditions" and "Event handlers can have one or more rules." It further states that "FortiAnalyzer uses event handlers to filter all incoming logs" and "If logs match the conditions configured in an event handler, FortiAnalyzer generates an event." Therefore, to use the automation stitch, you must define the rules on FortiAnalyzer so the event handler can actually generate the event that starts the automation flow.
Option C is also correct. The study guide explains that "When a handler generates an event with the automation stitch option enabled, FortiAnalyzer sends a notification" to the FortiGate side, and in the attack-detection example it says "FortiAnalyzer parses the logs and notifies the root FortiGate" and then
"The root FortiGate triggers the action." It also explicitly shows "Stitches configured on root FortiGate." This means the FortiGate must have the corresponding automation trigger configured for the FortiAnalyzer event handler notification.
Option A is incorrect because the study guide does not describe configuring an Action on FortiAnalyzer as the required step for this FortiAnalyzer-to-FortiGate automation-stitch flow. Option B is also incorrect because playbooks are a different FortiAnalyzer automation mechanism; the question specifically refers to using the Automation Stitch option in the event handler.


NEW QUESTION # 54
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: B,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 # 55
Refer to the exhibits.

A partial Basic Event Handler page on FortiAnalyzer and the creation of a trigger in a FortiGate device are shown. To improve the protection of your OT network, you want to automate the handling of compromised devices notified through FortiAnalyzer. You have configured an event handler named Alert_trigger as shown in the exhibit. When you create the trigger on the FortiGate device, the Event handler name field does not provide the Alert_trigger option. What two actions must you perform to make the Alert_trigger option available? (Choose two answers)

Answer: A,B

Explanation:
The correct answers are C and D .
Option C is correct because the study guide explains that when "a handler generates an event with the automation stitch option enabled, FortiAnalyzer sends a notification" and, in the Security Fabric workflow, "FortiAnalyzer parses the logs and notifies the root FortiGate." This means FortiGate must first have the FortiAnalyzer connection configured so it can consume FortiAnalyzer event handlers and use them in automation. The wizard message in the exhibit also points to this requirement by indicating that a FortiAnalyzer connection must be configured.
Option D is also correct because the study guide explicitly says that in this automation flow "the root FortiGate triggers the action" and shows "Stitches configured on root FortiGate." Therefore, if you want the FortiAnalyzer event handler to appear and be usable for automation, the trigger must be configured on the root FortiGate , not on an arbitrary downstream FortiGate.
Option A is incorrect because + Create is only a GUI control and does not solve the missing-event-handler visibility problem. Option B is not identified in the study guide as the requirement for making a FortiAnalyzer event handler available in the FortiGate automation trigger list.


NEW QUESTION # 56
Refer to the exhibit.

A partial OT network is shown. You want to configure an automated alert sent by FortiAnalyzer when an attack occurs on a FortiGate device. Which two configurations must you implement? (Choose two answers)

Answer: A,D

Explanation:
The correct answers are A and D . The study guide provides a direct use case called Attack Detection and Automated Alert . It states: "A downstream FortiGate detects an attack and sends logs to FortiAnalyzer. FortiAnalyzer parses the logs and notifies the root FortiGate. The root FortiGate triggers the action, which in this case, is a notification to the administrator." The same slide also explicitly shows "Stitches configured on root FortiGate." This confirms that to send the automated alert, you must configure the automation stitch on the root FortiGate .
The second required configuration is an event handler on FortiAnalyzer . The guide explains that "Event handlers generate events" and that "FortiAnalyzer uses event handlers to filter all incoming logs. If logs match the conditions configured in an event handler, FortiAnalyzer generates an event." Since FortiAnalyzer must detect the attack from the received logs before notifying the root FortiGate, an event handler is required on FortiAnalyzer.
Option B is incorrect because the study guide does not identify a LOCALHOST task as the required configuration for this attack-alert flow. Option C is also incorrect because the question asks what must be configured to enable the automated alert workflow . An IPS profile may detect some attacks, but the required automation path in the study guide is specifically event handler on FortiAnalyzer + stitch on the root FortiGate .


NEW QUESTION # 57
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