ACTUAL NSE6_WCS-7.0 TEST - KEY NSE6_WCS-7.0 CONCEPTS

Actual NSE6_WCS-7.0 Test - Key NSE6_WCS-7.0 Concepts

Actual NSE6_WCS-7.0 Test - Key NSE6_WCS-7.0 Concepts

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Fortinet NSE6_WCS-7.0 Exam is an important certification for IT professionals who work with AWS cloud environments. Fortinet NSE 6 - Cloud Security 7.0 for AWS certification validates the skills and knowledge of IT professionals in securing cloud infrastructure and applications in AWS. Fortinet NSE 6 - Cloud Security 7.0 for AWS certification is recognized globally and is a standard for cloud security expertise. Fortinet NSE 6 - Cloud Security 7.0 for AWS certification is also recognized by AWS, which demonstrates the importance of this certification for IT professionals who work with AWS cloud environments.

Fortinet NSE 6 - Cloud Security 7.0 for AWS Sample Questions (Q18-Q23):

NEW QUESTION # 18
A customer has implemented GWLB between the partner and application VPCs. FortiGate appliances are deployed in the partner VPC with multiple AZs to inspect traffic transparently.
Which two things will happen to application traffic based on the GWLB deployment? (Choose two.)

  • A. Inbound and outbound traffic will go to multiple devices, which will perform load balancing.
  • B. The original traffic exchanged between the GWLB and FortiGate will be hashed for data integrity.
  • C. Inbound and outbound traffic will go to the same device, which will perform stateful processing.
  • D. The content of the original traffic exchanged between the GWLB and FortiGate will be preserved.

Answer: A,C

Explanation:
* Understanding Gateway Load Balancer (GWLB):
* GWLB is designed to distribute traffic across multiple appliances for both inbound and outbound traffic, providing scalability and high availability.
* Traffic Load Balancing:
* GWLB can send traffic to multiple FortiGate appliances for load balancing purposes, ensuring efficient use of resources (Option A).
* Stateful Processing:
* For stateful processing, GWLB ensures that traffic flows (both inbound and outbound) for a given connection are directed to the same FortiGate appliance. This maintains session integrity (Option B).
* Preservation and Hashing of Traffic:
* Options C and D are incorrect as they suggest incorrect behavior regarding traffic content preservation and hashing for data integrity, which are not primary functions of GWLB.
References:
* AWS Gateway Load Balancer Documentation: AWS Gateway Load Balancer
* FortiGate Integration with GWLB: Fortinet Documentation


NEW QUESTION # 19
An administrator must deploy a web application firewall (WAF) solution to protect the web applications of their organization.
Why would the administrator choose FortiWeb Cloud over AWS WAF with Fortinet managed rules?

  • A. SSL inspection is a requirement.
  • B. WAF signatures must be manually updated by FortiGuard.
  • C. Traffic must be inspected for malware.
  • D. The solution must meet PCI 6.6 compliance.

Answer: A

Explanation:
* SSL Inspection Requirement:
* FortiWeb Cloud provides comprehensive SSL inspection capabilities, allowing it to decrypt and inspect HTTPS traffic for threats. This is a crucial feature for many organizations that need to ensure all traffic, including encrypted traffic, is thoroughly inspected (Option C).
* Comparison with AWS WAF:
* While AWS WAF with Fortinet managed rules provides robust protection, it might not offer the same level of SSL inspection capabilities as FortiWeb Cloud.
* Other Considerations:
* Option A (Manual WAF signature updates) is incorrect because FortiWeb Cloud updates signatures automatically.
* Option B (PCI 6.6 compliance) is a general requirement for any WAF solution, not specific to choosing FortiWeb Cloud over AWS WAF.
* Option D (Traffic inspection for malware) is a feature provided by both FortiWeb Cloud and AWS WAF with Fortinet managed rules.
References:
* FortiWeb Cloud Overview: FortiWeb Cloud
* AWS WAF Documentation: AWS WAF


NEW QUESTION # 20
A customer is attempting to deploy an active-passive high availability (HA) cluster using the software-defined network (SDN) connector in the AWS cloud.
What is an important consideration to ensure a successful formation of HA, failover, and traffic flow?

  • A. VDOM exceptions must be configured.
  • B. Both cluster members must be in the same availability zone.
  • C. Both cluster members must show as healthy in the elastic load balancer (ELB) configuration.
  • D. Unicast FortiGate Clustering Protocol (FGCP) must be used.

Answer: D

Explanation:
* HA Cluster in AWS Cloud:
* Deploying an active-passive HA cluster in AWS requires careful consideration of the clustering protocol used to ensure seamless failover and traffic flow.
* Unicast FortiGate Clustering Protocol (FGCP):
* Unicast FGCP is specifically designed for environments where multicast traffic is not feasible or supported, such as in the AWS cloud. Using unicast FGCP ensures that heartbeat and synchronization traffic between the cluster members are managed correctly over unicast communication, which is suitable for AWS's network infrastructure (Option C).
* Comparison with Other Options:
* Option A is incorrect because while placing both cluster members in the same availability zone might be required for certain configurations, it is not the critical factor for HA formation.
* Option B is incorrect as VDOM exceptions are not directly related to the successful formation of HA.
* Option D is incorrect because the ELB configuration checks are more about ensuring that the load balancer correctly routes traffic but do not specifically ensure HA formation and failover.
References:
* FortiGate HA in AWS Documentation: FortiGate HA
* Fortinet FGCP Details: FGCP Documentation


NEW QUESTION # 21
Refer to the exhibit.

You deployed an active-passive FortiGate HA cluster using a CloudFormation template on an existing VPC.
Now you want to test active-passive FortiGate HA failover by running a debug so you can see the API calls to change the Elastic and secondary IP addresses.
Which statement is correct about the output of the debug?

  • A. The Elastic IP is associated with port1 of Fgt2.
  • B. IP address 10.0.0.13 is now associated with eni-0b61d8afc0aefb8a2.
  • C. The routing table for Fgt2 updated successfully, and port2 will provide internet access to Fgt2.
  • D. The Elastic IP is associated with port2 of Fgt2, and the secondary IP address for port1 and port2 was updated successfully.

Answer: A

Explanation:
* HA Event and Failover:
* The debug output indicates that a failover event occurred and the secondary instance (Fgt2) is now taking over as the master.
* Elastic IP Association:
* The debug output shows the process of moving the Elastic IP (eipalloc-090425f83f912c8d6) to the new master instance. This involves associating the Elastic IP with the appropriate network interface (eni) of the new master.
* Specific IP Address Association:
* The Elastic IP is specifically associated with port1 of Fgt2. The message "associate elastic ip eipalloc-090425f83f912c8d6 to 10.0.0.13 of eni eni-0f6b35f8fccd24eb0" indicates that the Elastic IP is now linked to the primary IP address (10.0.0.13) on port1 of the new master.
* Other Options Analysis:
* Option A is incorrect because the routing table update details are not explicitly stated.
* Option C is incorrect because the IP address association mentioned relates to an Elastic IP, not eni-0b61d8afc0aefb8a2.
* Option D is incorrect because it specifically mentions port2 for the Elastic IP association, which is not indicated in the debug output.
References:
* FortiGate HA Configuration Guide: FortiGate HA
* AWS Elastic IP Documentation: Elastic IP


NEW QUESTION # 22
A customer deployed an HA Cloud formation to Stage and bootstrap the FortiGate configuration.
Which AWS functions are used by FortiGate HA to call the HA failover?

  • A. AWS Mapping functions
  • B. AWS DynamoDB functions
  • C. AWS Lambda functions
  • D. AWS S3 functions

Answer: C


NEW QUESTION # 23
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