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Fortinet NSE 6 - Cloud Security 7.0 for AWS Sample Questions (Q13-Q18):
NEW QUESTION # 13
An administrator has been asked to deploy an active-passive (A-P) FortiGate cluster in the AWS cloud across two availability zones.
In addition to enhanced redundancy, which other major difference is there compared to deploying A-P high availability in the same availability zone?
- A. IP addressing and subnetting are not shared.
- B. The FortiGate devices act as a single, logical instance.
- C. The number of subnets required is less.
- D. Secondary IP address configuration is used.
Answer: A
Explanation:
* Enhanced Redundancy:
* Deploying an active-passive (A-P) FortiGate cluster across two availability zones (AZs) provides enhanced redundancy by ensuring that if one AZ fails, the other can take over, maintaining high availability and uptime.
* IP Addressing and Subnetting:
* One of the major differences when deploying across different AZs compared to the same AZ is that IP addressing and subnetting are not shared between the instances. Each AZ operates independently with its own set of subnets and IP addresses, which must be managed separately (Option D).
* Other Options Analysis:
* Option A is incorrect because the FortiGate devices in an A-P setup do not act as a single logical instance; they operate in a failover setup.
* Option B is incorrect because secondary IP address configuration is used in both single AZ and multi-AZ deployments.
* Option C is incorrect because the number of subnets required is typically more when deploying across multiple AZs for redundancy.
References:
* FortiGate HA Configuration Guide: FortiGate HA
* AWS Availability Zones: AWS AZ
NEW QUESTION # 14
Refer to the exhibit.
A customer is using the AWS Elastic Load Balancer.
Which two statements are correct about the Elastic LoadBalancer configuration? (Choose two.)
- A. The load balancer is configured to load balance traffic between devices in two AZS.
- B. The DNS name is used to access devices.
- C. The load balancer is configuredfor the internal traffic oftheVPC
- D. The Amazon resource name is used to access the load balancer node and targets.
Answer: A,B
NEW QUESTION # 15
Refer to the exhibit.
What occurs during a failover for an active-passive (A-P) cluster that is deployed in two different availability zones? (Choose two.)
- A. The cluster elastic IP address (EIP) is moved from Port1 of FGT-1 to Port1 of FGT-2.
- B. The default static route in the Private-AZ1 subnet route table is modified to forward all traffic to Port2 of FGT2.
- C. An additional route is added to the route table of the HA Sync AZ2 subnet to forward all traffic to the Internet GW.
- D. The secondary IP address of Port2 of FGT-1 is moved to Port2 of FGT-2.
Answer: A,D
Explanation:
* Cluster Elastic IP Address (EIP) Movement:
* During a failover in an active-passive (A-P) cluster, the Elastic IP (EIP) associated with the active FortiGate instance (FGT-1) needs to be moved to the passive instance (FGT-2), which becomes the new active instance. This ensures that the traffic directed to the EIP is now handled by FGT-2 (Option A).
* Secondary IP Address Movement:
* The secondary IP address on Port2 of the current active instance (FGT-1) is moved to the same port on the new active instance (FGT-2). This step is crucial to ensure seamless network traffic redirection and connectivity for the services relying on that IP address (Option B).
* Other Options Analysis:
* Option C is incorrect because the static route modification mentioned is not directly related to the failover process described.
* Option D is incorrect because no additional route needs to be added to the HA Sync AZ2 subnet route table to forward traffic to the Internet Gateway during a failover.
References:
* FortiGate HA Configuration Guide: FortiGate HA
* AWS Elastic IP Documentation: Elastic IP
NEW QUESTION # 16
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. Both cluster members must be in the same availability zone.
- B. VDOM exceptions must be configured.
- 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 # 17
What is the purpose of the created as part Of a FortiGate autoscale deployment using Fortinet cloud formation template in AWS?
- A. To Store the information used for the scale set.
- B. To store information about varying states of auto scaling conditions.
- C. To store the traffic logs Of all FortiGates.
- D. To store the firewall policies used by all FortiGates_
Answer: B
NEW QUESTION # 18
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