NSE6_WCS-7.0 VALID TORRENT & NSE6_WCS-7.0 LATEST VCE & NSE6_WCS-7.0 EXAM GUIDE

NSE6_WCS-7.0 valid torrent & NSE6_WCS-7.0 latest vce & NSE6_WCS-7.0 exam guide

NSE6_WCS-7.0 valid torrent & NSE6_WCS-7.0 latest vce & NSE6_WCS-7.0 exam guide

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Fortinet NSE6_WCS-7.0 exam is an essential certification for professionals who want to prove their expertise in securing cloud-based workloads on AWS. Fortinet NSE 6 - Cloud Security 7.0 for AWS certification covers a wide range of topics and validates an individual's understanding of cloud security architecture, network security, access control, data protection, and compliance. The Fortinet NSE 6 - Cloud Security 7.0 for AWS certification is highly valued in the industry, and it demonstrates an individual's ability to secure cloud-based workloads on AWS.

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Fortinet NSE 6 - Cloud Security 7.0 for AWS Sample Questions (Q23-Q28):

NEW QUESTION # 23
Refer to the exhibit.

An administrator configured a FortiGate device to connect to the AWS API to retrieve resource values from the AWS console to create dynamic objects for the FortiGate policies. The administrator is unable to retrieve AWS dynamic objects on FortiGate.
Which two reasons can explain why? (Choose two.)

  • A. The AWS Lab SDN did not find any instances in the configured VPC.
  • B. AWS was not able to validate credentials provided by the AWS Lab SDN connector because of a clock skew between FortiGate and AWS.
  • C. The AWS Lab SDN connector is configured with an invalid AWS access or secret key.
  • D. The AWS Lab SDN connector failed to connect on port 401.
  • E. The AWS API call is not supported on XML version 1.0.

Answer: B,C

Explanation:
* Invalid Credentials:
* The debug output shows an "AuthFailure" error, indicating that AWS was not able to validate the provided access credentials. This usually points to incorrect or invalid AWS access or secret keys configured in the AWS Lab SDN connector (Option C).
* Clock Skew:
* Another common reason for authentication failures in AWS API calls is a clock skew between the FortiGate device and AWS. AWS requires that the system time of the client making the API call is synchronized with its own time, within a small margin. If there is a significant time difference, AWS will reject the credentials (Option B).
* Other Options Analysis:
* Option A is incorrect because the AWS API supports XML version 1.0.
* Option D is incorrect as the error message does not indicate an issue with connecting on port 401.
* Option E is incorrect because the error is related to authentication, not the absence of instances.
References:
* AWS API Authentication: AWS API Security
* FortiGate AWS Integration Guide: FortiGate AWS Integration


NEW QUESTION # 24
Refer to the exhibit.

An administrator configured a FortiGate device to connect to me AWS API to retrieve resource values from the AWS console to create dynamic objects for the FortiGatepolicies. The administrator is unable to retrieve AWS dynamic objects on FortiGate.
Which three reasons can explain btw? (Choose three.)

  • A. AWS was not able to validate credentials provided by the AWS Lab SON connector.
  • B. The AWS API call is not supported on XML version I . O.
  • C. The AWS Lab SON connector is configured with an invalid AWS access or secret key
  • D. The AWS Lab SON connector failed to retrieve the instance list.
  • E. The AWS Lab SON connector failed to connect on port 401.

Answer: A,C,D


NEW QUESTION # 25
Refer to the exhibit.

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

  • A. You can associate VPC ID pcx-23232323 with VPC B to form a VPC peering connection between VPC B and VPC C.
  • B. You cannot route packets directly from VPC B to VPC C through VPC A.
  • C. You cannot create a separate VPC peering connection between VPC B and VPC C to route packets directly.
  • 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 # 26
Your company deployed a FortiSandbox for AWS.
Which statement is correct about FortiSandbox for AWS?

  • A. FortiSandbox deploys new EC2 instances with the custom Windows and Linux VMs, then it sends malware, runs it, and captures the results for analysis.
  • B. FortiSandbox for AWS does not need more resources because it performs only management and analysis tasks.
  • C. FortiSandbox for AWS comes as a hybrid solution. The FortiSandbox manager is installed on-premises and analyzes the results of the sandboxing process received from AWS EC2 instances.
  • D. The FortiSandbox manager is installed on the AWS platform and analyzes the results of the sandboxing process received from on-premises Windows instances.

Answer: A

Explanation:
* FortiSandbox Deployment:
* FortiSandbox for AWS deploys new EC2 instances to create isolated environments where it can safely execute and analyze suspicious files. These instances run custom Windows and Linux virtual machines specifically configured for sandboxing (Option D).
* Sandboxing Process:
* The process involves sending potential malware to these isolated VMs, executing it, and monitoring its behavior to detect malicious activities. The results are then captured and analyzed to provide detailed threat intelligence.
* Other Options Analysis:
* Option A is incorrect because FortiSandbox for AWS operates entirely within the AWS environment and does not require an on-premises manager.
* Option B is incorrect as the FortiSandbox manager is not installed on the AWS platform for managing on-premises instances.
* Option C is incorrect because FortiSandbox requires sufficient resources to perform the actual sandboxing and analysis tasks.
References:
* FortiSandbox for AWS Documentation: FortiSandbox
* Sandboxing Concepts: Sandboxing


NEW QUESTION # 27
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 S3 functions
  • B. AWS Mapping functions
  • C. AWS Lambda functions
  • D. AWS DynamoDB functions

Answer: C


NEW QUESTION # 28
......

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