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Latest NSE7_ZTA-7.2 exam dumps with real Fortinet questions and answers [Q17-Q33]

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  2. Latest NSE7_ZTA-7.2 exam dumps with real Fortinet questions and answers [Q17-Q33]

Latest NSE7_ZTA-7.2 exam dumps with real Fortinet questions and answers [Q17-Q33]

May 14, 2024 adminNSE7_ZTA-7.2, FortinetNSE7_ZTA-7.2 Dumps PDF, NSE7_ZTA-7.2 new testcollection, NSE7_ZTA-7.2 Pass-guaranteed dumps, NSE7_ZTA-7.2 reliable test dumps file, NSE7_ZTA-7.2 valid dumps pdf
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Latest NSE7_ZTA-7.2 exam dumps with real Fortinet questions and answers

NSE7_ZTA-7.2 Exam in First Attempt Guaranteed

Q17. Which three core products are mandatory in the Fortinet ZTNA solution” {Choose three.)

 
 
 
 
 

Q18. Which configuration is required for FortiNAC to perform an automated incident response based on the FortiGate traffic?

 
 
 
 
For FortiNAC to perform automated incident response based on FortiGate traffic, the required configuration is:
A: FortiNAC should be added as a participant in the Security Fabric: By integrating FortiNAC into the Fortinet Security Fabric, it can respond to incidents based on traffic analysis performed by FortiGate.
This allows for coordinated and automated responses to security events.
The other options are not specifically required for automated incident response in this context:
B: FortiNAC requires read-write SNMP access to FortiGate: While SNMP access is important for certain functions, it is not the key requirement for this specific use case.
C: FortiNAC should be configured as a syslog server on FortiGate: Configuring FortiNAC as a syslog server is useful for log collection but not specifically for automated incident response based on traffic.
D: FortiNAC requires HTTPS access to FortiGate for API calls: HTTPS access for API calls is important for integration, but it is not the primary requirement for automated incident response based on FortiGate traffic analysis.
References:
FortiNAC Integration with FortiGate for Incident Response.
Fortinet Security Fabric Documentation.

Q19. Which three statements are true about a persistent agent? (Choose three.)

 
 
 
 
 
A persistent agent is an application that works on Windows, macOS, or Linux hosts to identify them to FortiNAC Manager and scan them for compliance with an endpoint compliance policy. A persistent agent can support advanced custom scans and software inventory, apply supplicant configuration to a host, and be used for automatic registration and authentication. References := Persistent Agent Persistent Agent on Windows Using the Persistent Agent

Q20. Which three core products are mandatory in the Fortinet ZTNA solution” {Choose three.)

 
 
 
 
 
Fortinet ZTNA solution is a zero-trust network access approach that provides secure and granular access to applications hosted anywhere, for users working from anywhere. The three core products that are mandatory in the Fortinet ZTNA solution are:
FortiClient EMS: This is the central management console that orchestrates the ZTNA policies and provides visibility and control over the endpoints and devices. It also integrates with FortiAuthenticator for identity verification and FortiAnalyzer for reporting and analytics.
FortiClient: This is the endpoint agent that supports ZTNA, VPN, endpoint protection, and vulnerability scanning. It establishes encrypted tunnels with the ZTNA proxy on the FortiGate and provides device posture and single sign-on (SSO) capabilities.
FortiGate: This is the next-generation firewall that acts as the ZTNA proxy and enforces the ZTNA policies based on user identity, device posture, and application context. It also provides security inspection and threat prevention for the ZTNA traffic.
References := Zero Trust Network Access (ZTNA) – Fortinet, Zero-Trust Network Access Solution | Fortinet, and Fortinet ZTNA | Fortinet Case Study.

Q21. An administrator wants to prevent direct host-to-host communication at layer 2 and use only FortiGate to inspect all the VLAN traffic What three things must the administrator configure on FortiGate to allow traffic between the hosts? (Choose three.)

 
 
 
 
 
To prevent direct host-to-host communication at layer 2 and use only FortiGate to inspect all the VLAN traffic, an administrator must configure:
B: Block intra-VLAN traffic in the VLAN interface settings: This setting prevents direct communication between hosts within the same VLAN, forcing traffic to be routed through FortiGate for inspection.
D: Configure static routes to allow subnets: By setting up static routes, the administrator ensures that traffic between different subnets is correctly routed through the FortiGate for inspection and policy enforcement.
E: Configure a firewall policy to allow the desired traffic between hosts: Firewall policies on the FortiGate will dictate what traffic is permitted between hosts, ensuring that only authorized traffic is allowed.
The other options are not typically required for this setup:
A: Configure proxy ARP to allow traffic: Proxy ARP is not necessary for this scenario as it involves answering ARP requests on behalf of another host, which is not relevant to blocking intra-VLAN traffic.
C: Add the VLAN interface to a software switch: This would create a switch-like environment on the FortiGate, which is counterproductive to the goal of preventing direct host-to-host communication at layer 2.
References:
FortiGate VLAN Configuration Guide.
Blocking Intra-VLAN Communication in FortiGate.

Q22. Which statement is true about FortiClient EMS in a ZTNA deployment?

 
 
 
 
In a ZTNA (Zero Trust Network Access) deployment, FortiClient EMS:
A: Uses endpoint information to grant or deny access to the network: FortiClient EMS plays a critical role in ZTNA by using information about the endpoint, such as its security posture and compliance status, to determine whether to grant or deny network access.
The other options do not accurately represent the role of FortiClient EMS in ZTNA:
B: Provides network and user identity authentication services: While it contributes to the overall ZTNA strategy, FortiClient EMS itself does not directly provide authentication services.
C; Generates and installs client certificates on managed endpoints: Certificate management is typically handled by other components in the ZTNA framework.
D: Acts as ZTNA access proxy for managed endpoints: FortiClient EMS does not function as an access proxy; its role is more aligned with endpoint management and policy enforcement.
References:
FortiClient EMS in Zero Trust Network Access Deployment.
Role of FortiClient EMS in ZTNA.

Q23. Exhibit.

Which statement is true about the FortiAnalyzer playbook configuration shown in the exhibit?

 
 
 
 
The FortiAnalyzer playbook configuration shown in the exhibit indicates that:
D: The playbook is manually started by an administrator: The “ON DEMAND” trigger in the playbook suggests that it is initiated manually, as opposed to being automated or scheduled. This typically means that an administrator decides when to run the playbook based on specific needs or incidents.

Q24. What happens when FortiClient EMS is configured as an MDM connector on FortiNAC?

 
 
 
 
When FortiClient EMS is configured as an MDM connector on FortiNAC, it allows FortiNAC to obtain host information from FortiClient EMS and use it for network access control. FortiNAC polls FortiClient EMS periodically (every 5 minutes by default) to update already registered hosts in FortiNAC. This ensures that FortiNAC has the latest host data from FortiClient EMS, such as device type, OS, IP address, MAC address, hostname, and FortiClient version. FortiNAC can also use FortiClient EMS as an authentication source for devices that have FortiClient installed. FortiNAC does not send any data to FortiClient EMS or check for device vulnerabilities and compliance with FortiClient123. References := 1: MDM Service Connectors | FortiClient EMS Integration 2: FortiClient EMS Device Integration|FortiNAC 9.4.0 – Fortinet Documentation 3: Technical Tip: Integration with FortiClient EMS

Q25. An administrator is trying to create a separate web tittering profile for off-fabric and on-fabric clients and push it to managed FortiClient devices Where can you enable this feature on FortiClient EMS?

 
 
 
 
To create a separate web filtering profile for off-fabric and on-fabric clients and push it to managed FortiClient devices in FortiClient EMS, the feature can be enabled in:
A: Endpoint Policy: This is where administrators can define and manage different policies for FortiClient endpoints. These policies can include settings for web filtering, which can be customized for on-fabric and off-fabric scenarios.
The other options do not directly relate to the creation and management of web filtering profiles:
B: ZTNA Connection Rules: These rules are more focused on access control and do not deal directly with web filtering profiles.
C: System Settings: This section typically includes overall system configurations rather than specific policy definitions.
D: On-fabric Rule Sets: While important for on-fabric configurations, they don’t directly deal with web filtering profiles.
References:
FortiClient EMS Administration Guide.
Managing Endpoint Policies in FortiClient EMS.

Q26. FortiNAC has alarm mappings configured for MDM compliance failure, and FortiClient EMS is added as a MDM connector When an endpoint is quarantined by FortiClient EMS, what action does FortiNAC perform?

 
 
 
 
In the scenario where FortiNAC has alarm mappings configured for MDM (Mobile Device Management) compliance failure and FortiClient EMS (Endpoint Management System) is integrated as an MDM connector, the typical response when an endpoint is quarantined by FortiClient EMS is to isolate the host in the registration VLAN. This action is consistent with FortiNAC’s approach to network access control, focusing on ensuring network security and compliance. By moving the non-compliant or quarantined host to a registration VLAN, FortiNAC effectively segregates it from the rest of the network, mitigating potential risks while allowing for further investigation or remediation steps.References:FortiNAC documentation, MDM Compliance and Response Actions.

Q27. What are two functions of NGFW in a ZTA deployment? (Choose two.)

 
 
 
 
NGFW stands for Next-Generation Firewall, which is a network security device that provides advanced features beyond the traditional firewall, such as application awareness, identity awareness, threat prevention, and integration with other security tools. ZTA stands for Zero Trust Architecture, which is a security model that requires strict verification of the identity and context of every request before granting access to network resources. ZTA assumes that no device or user can be trusted by default, even if they are connected to a corporate network or have been previously verified.
In a ZTA deployment, NGFW can perform two functions:
Acts as segmentation gateway: NGFW can act as a segmentation gateway, which is a device that separates different segments of the network based on security policies and rules. Segmentation can help isolate and protect sensitive data and applications from unauthorized or malicious access, as well as reduce the attack surface and contain the impact of a breach. NGFW can enforce granular segmentation policies based on the identity and context of the devices and users, as well as the applications and services they are accessing. NGFW can also integrate with other segmentation tools, such as software-defined networking (SDN) and microsegmentation, to provide a consistent and dynamic segmentation across the network.
Device discovery and profiling: NGFW can also perform device discovery and profiling, which are processes that identify and classify the devices that are connected to the network, as well as their attributes and behaviors. Device discovery and profiling can help NGFW to apply the appropriate security policies and rules based on the device type, role, location, health, and activity. Device discovery and profiling can also help NGFW to detect and respond to anomalous or malicious devices that may pose a threat to the network.
References: =
Some possible references for the answer and explanation are:
What is a Next-Generation Firewall (NGFW)? | Fortinet : What is Zero Trust Network Access (ZTNA)? | Fortinet : Zero Trust Architecture Explained: A Step-by-Step Approach : The Most Common NGFW Deployment Scenarios : Sample Configuration for Post vWAN Deployment

Q28. Which three statements are true about zero-trust telemetry compliance1? (Choose three.)

 
 
 
 
 
In the context of zero-trust telemetry compliance, the three true statements are:
A: FortiClient EMS creates dynamic policies using ZTNA tags: FortiClient EMS utilizes ZTNA (Zero Trust Network Access) tags to create dynamic policies based on the telemetry it receives from endpoints.
B: FortiClient checks the endpoint using the ZTNA tags provided by FortiClient EMS: FortiClient on the endpoint uses the ZTNA tags from FortiClient EMS to determine compliance with the specified security policies.
D: FortiOS provides network access to the endpoint based on the zero-trust tagging rules: FortiOS, the operating system running on FortiGate devices, uses the zero-trust tagging rules to make decisions on network access for endpoints.
The other options are not accurate in this context:
C: ZTNA tags are configured in FortiClient, based on criteria such as certificates and the logged-in domain: ZTNA tags are typically configured and managed in FortiClient EMS, not directly in FortiClient.
E: FortiClient EMS sends the endpoint information received through FortiClient Telemetry to FortiOS: While FortiClient EMS does process telemetry data, the direct sending of endpoint information to FortiOS is not typically described in this manner.
References:
Zero Trust Telemetry in Fortinet Solutions.
FortiClient EMS and FortiOS Integration for ZTNA.

Q29. Which statement is true regarding a FortiClient quarantine using FortiAnalyzer playbooks?

 
 
 
 
FortiAnalyzer playbooks are automated workflows that can perform actions based on triggers, conditions, and outputs. One of the actions that a playbook can perform is to quarantine a device by sending an API call to FortiClient EMS, which then instructs the FortiClient agent on the device to disconnect from the network. This can help isolate and contain a compromised or non-compliant device from spreading malware or violating policies. References := Quarantine a device from FortiAnalyzer playbooks Playbooks

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