LATEST FCP_WCS_AD-7.4 PRACTICE MATERIALS: FCP - AWS CLOUD SECURITY 7.4 ADMINISTRATOR OFFER YOU THE MOST ACCURATE EXAM QUESTIONS - TROYTECDUMPS

Latest FCP_WCS_AD-7.4 Practice Materials: FCP - AWS Cloud Security 7.4 Administrator offer you the most accurate Exam Questions - TroytecDumps

Latest FCP_WCS_AD-7.4 Practice Materials: FCP - AWS Cloud Security 7.4 Administrator offer you the most accurate Exam Questions - TroytecDumps

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The customizable mock tests make an image of a real-based FCP - AWS Cloud Security 7.4 Administrator (FCP_WCS_AD-7.4) exam which is helpful for you to overcome the pressure of taking the final examination. Customers of TroytecDumps can take multiple FCP - AWS Cloud Security 7.4 Administrator (FCP_WCS_AD-7.4) practice tests and improve their preparation to achieve the FCP_WCS_AD-7.4 Certification. You can even access your previously given tests from the history, which allows you to be careful while giving the mock test next time and prepare for FCP - AWS Cloud Security 7.4 Administrator (FCP_WCS_AD-7.4) certification in a better way.

Fortinet FCP_WCS_AD-7.4 Exam Syllabus Topics:

TopicDetails
Topic 1
  • AWS components: The topic identifies AWS networking components. It discusses the application of AWS security components. Lastly, the topic describes traffic flow in AWS.
Topic 2
  • Fortinet product deployment: Integration of Fortinet solutions in AWS is discussed in this topic. Additionally, the topic focuses on the deployment of WAF in AWS.
Topic 3
  • Load balancers and FortiCNF: Its sub-topics discuss comparing load balancer types in AWS and deploying FortiGate CNF.
Topic 4
  • Public cloud fundamentals: It delves into AWS public cloud concepts. Moreover, the topic points out different Fortinet solutions to secure the cloud.
Topic 5
  • High availability: It covers the deployment of HA in AWS. Moreover, the topic discusses the configuration of HA by using Fortinet CloudFormation templates.

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Fortinet FCP - AWS Cloud Security 7.4 Administrator Sample Questions (Q33-Q38):

NEW QUESTION # 33
Which three statements correctly describe FortiGate Cloud-Native Firewall (CNF)? (Choose three.)

  • A. It provides copyright-grade protection.
  • B. It uses AWS Elastic Load Balancing (ELB).
  • C. It can be managed by FortiManager and AWS firewall manager.
  • D. It is considered to be a Firewall-as-a-Service (FWaaS).
  • E. It scales seamlessly.

Answer: C,D,E

Explanation:
Scalability:
FortiGate Cloud-Native Firewall (CNF) is designed to scale seamlessly with your cloud infrastructure, providing the necessary protection without requiring manual intervention for scaling (Option B).
Firewall-as-a-Service:
FortiGate CNF is offered as a Firewall-as-a-Service (FWaaS), which simplifies the deployment and management of firewall capabilities directly in the cloud environment (Option D).
Management:
FortiGate CNF can be managed using FortiManager and AWS Firewall Manager, providing comprehensive management capabilities both from Fortinet's platform and AWS's native management tools (Option E).
Other Considerations:
Option A (copyright-grade protection) is not specifically highlighted as a feature of FortiGate CNF.
Option C (uses AWS Elastic Load Balancing) is incorrect as FortiGate CNF operates independently of AWS ELB, although it can integrate with various AWS services.
Reference:
FortiGate CNF Documentation: FortiGate CNF
AWS Firewall Manager: AWS Firewall Manager


NEW QUESTION # 34
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 create a separate VPC peering connection between VPC B and VPC C to route packets directly.
  • C. You cannot route packets directly from VPC B to VPC C through VPC A.
  • 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: C

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.
Reference:
AWS VPC Peering Guide: VPC Peering
Limitations of VPC Peering: AWS VPC Peering Limitations


NEW QUESTION # 35
Your customers have been reporting slow response times when accessing your web application.
What are two possible ways to increase response times from web servers protected by FortiWeb Cloud? (Choose two.) Your customers have been reporting slow response times when accessing your web application.
What are two possible ways to increase response times from web servers protected by FortiWeb Cloud? (Choose two.)

  • A. Modify DNS entries to directly point to your web server.
  • B. Enable a content delivery network
  • C. Disable WAF functionality.
  • D. Deploy FortiWeb Cloud in the same region where your web application is being hosted.

Answer: B,D

Explanation:
Same Region Deployment:
Deploying FortiWeb Cloud in the same AWS region as your web application minimizes latency and ensures faster response times by reducing the distance data needs to travel (Option A).
Content Delivery Network (CDN):
Enabling a CDN can significantly improve response times by caching content closer to the end-users, reducing the load on the origin server, and speeding up content delivery (Option B).
Other Options Analysis:
Option C is incorrect because modifying DNS entries to directly point to your web server bypasses the WAF protection, which is not advisable for security reasons.
Option D is incorrect because disabling WAF functionality would expose your web application to vulnerabilities and threats, compromising security.
Reference:
AWS Regions and Availability Zones: AWS Regions
Content Delivery Network Overview: AWS CloudFront


NEW QUESTION # 36
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. Secure SD-WAN with application visibility
  • D. Advanced dynamic routing
  • E. Web filtering

Answer: B,C,E

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.
Reference:
FortiGate for AWS Documentation: FortiGate on AWS
AWS Networking and Content Delivery: AWS Networking


NEW QUESTION # 37
An organization has created a VPC with two subnets and deployed a FortiGate-VM (VM04/c4.xlarge) in AWS.
The EC2 instance is initially configured with two Elastic Network Interfaces (ENIs). The primary ENI is configured on the public subnet, and the secondary ENI is configured on the private subnet. To provide internet access for the FortiGate-VM, they now want to associate an EIP to its primary ENI, but the assignment is failing.
Which action would allow the EIP assignment to be successful?

  • A. Create and associate a public subnet with the primary ENI of the FortiGate VM, and then assign the EIP to the primary ENI.
  • B. Shut down the FortiGate VM, if it is running, assign the EIP to the primary ENI, and then power it on.
  • C. Create and attach an internet gateway to the VPC, and then assign the EIP to the primary ENI of the FortiGate VM.
  • D. Create and attach a public routing table to the public subnet, associate the public subnet with the primary ENI of the FortiGate VM, and then assign the EIP to the primary ENI.

Answer: C


NEW QUESTION # 38
......

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