FREE PDF 2025 FORTINET AUTHORITATIVE NSE6_WCS-7.0: FORTINET NSE 6 - CLOUD SECURITY 7.0 FOR AWS TESTDUMP

Free PDF 2025 Fortinet Authoritative NSE6_WCS-7.0: Fortinet NSE 6 - Cloud Security 7.0 for AWS Testdump

Free PDF 2025 Fortinet Authoritative NSE6_WCS-7.0: Fortinet NSE 6 - Cloud Security 7.0 for AWS Testdump

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Fortinet NSE 6 - Cloud Security 7.0 for AWS Sample Questions (Q32-Q37):

NEW QUESTION # 32
AWS native network services offer vast functionality and inter-connectivity between the cloud and on- premises networks.
Which three additional functions can FortiGate for AWS offer to complement the native services offered by AWS? (Choose three.)

  • A. Higher VPN throughput
  • B. OSPF over IPSec
  • C. Web filtering
  • D. Secure SD-WAN with application visibility
  • E. Advanced dynamic routing

Answer: B,C,D

Explanation:
* Web Filtering:
* FortiGate for AWS offers advanced web filtering capabilities, which allow organizations to control and monitor web access. This feature complements AWS's native security services by providing granular control over web traffic (Option B).
* OSPF over IPSec:
* FortiGate for AWS can establish dynamic routing protocols such as OSPF (Open Shortest Path First) over IPSec tunnels. This capability enhances network routing flexibility and security, which is not natively provided by AWS (Option C).
* Secure SD-WAN with Application Visibility:
* FortiGate for AWS provides Secure SD-WAN functionality, offering enhanced application visibility and traffic management. This is a significant addition to AWS's networking services, optimizing application performance and security (Option E).
* Comparison with Other Options:
* Option A (Higher VPN throughput) is not specifically enhanced by FortiGate as compared to AWS native services.
* Option D (Advanced dynamic routing) is partially covered under OSPF over IPSec but is not as specific as the other chosen options.
References:
* FortiGate for AWS Documentation: FortiGate on AWS
* AWS Networking and Content Delivery: AWS Networking


NEW QUESTION # 33
You want to deploy FortiGate for AWS to protect your production network in the cloud. but you do not need the 2417 support available in the enterprise bundle.
Which license model do you choose?

  • A. Bring your own device (BYOD)
  • B. pay as you go (PAYG).
  • C. Pay as a bundle (PAYB).
  • D. Bring your own license (BYOL).

Answer: B


NEW QUESTION # 34
An administrator needs to attach an Elastic Network Interface (ENI) to an application instance in a VPC with multiple availability zones. An instance runs in availability zone 1.
Which ENI property must the administrator consider when implementing this requirement?

  • A. An ENI cannot attach to an instance in availability zone 2.
  • B. When you move an ENI, network traffic remains directed to the old instance until you terminate that instance.
  • C. You can detach the primary ENI from an AWS instance.
  • D. After the ENI detaches from one instance, it can reattach only to the same instance.

Answer: A

Explanation:
* ENI Attachment Across Availability Zones:
* Elastic Network Interfaces (ENIs) are associated with a specific Availability Zone. They cannot be attached to instances that are in a different Availability Zone than where the ENI was created.
Therefore, an ENI created in Availability Zone 1 cannot be attached to an instance in Availability Zone 2 (Option A).
* ENI Reattachment:
* ENIs can be detached from one instance and reattached to another instance within the same Availability Zone. This flexibility allows for network interface configuration to be preserved across instance changes within the same AZ.
* Other Options Analysis:
* Option B is incorrect because an ENI can be reattached to any instance in the same AZ.
* Option C is incorrect as the primary ENI (eth0) cannot be detached from an instance.
* Option D is incorrect because when an ENI is moved, the traffic is directed to the new instance, and there is no redirection to the old instance.
References:
* AWS ENI Documentation: Elastic Network Interfaces
* AWS Networking Best Practices: AWS Networking


NEW QUESTION # 35
Refer to the exhibit.

Which statement is correct about the VPC peering connections shown in the exhibit?

  • A. You cannot create a separate VPC peering connection between VPC B and VPC C to route packets directly.
  • B. You cannot route packets directly from VPC B to VPC C through VPC A.
  • C. You can associate VPC ID pcx-23232323 with VPC B to form a VPC peering connection between VPC B and VPC C.
  • D. To route packets directly from VPC B to VPC C through VPC A, you must add a route for network
    192.168.0.0/16 in the VPC A routing table.

Answer: B

Explanation:
* Understanding VPC Peering:
* VPC peering connections allow instances in one VPC to communicate with instances in another VPC. Peering is a one-to-one relationship between two VPCs.
* Transit Routing Limitation:
* AWS VPC peering connections do not support transitive peering. This means that a packet originating in VPC B cannot be routed through VPC A to reach VPC C. Each pair of VPCs must have its own peering connection.
* Routing Table Configuration:
* Even if you add a route in the VPC A routing table for the 192.168.0.0/16 network, it won't allow VPC B to communicate with VPC C because of the non-transitive nature of VPC peering.
* Comparison with Other Options:
* Option A is incorrect because adding a route in VPC A does not overcome the limitation of non- transitive peering.
* Option C is incorrect because associating pcx-23232323 with VPC B is not how VPC peering works.
* Option D is incorrect because you can create a separate peering connection between VPC B and VPC C, which is the required approach for communication between these VPCs.
References:
* AWS VPC Peering Guide: VPC Peering
* Limitations of VPC Peering: AWS VPC Peering Limitations


NEW QUESTION # 36
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 content of the original traffic exchanged between the GWLB and FortiGate will be preserved.
  • C. Inbound and outbound traffic will go to the same device, which will perform stateful processing.
  • D. The original traffic exchanged between the GWLB and FortiGate will be hashed for data integrity.

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 # 37
......

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