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Understanding functional and technical aspects of AWS Certified Advanced Networking - Specialty Automate AWS Tasks

The following will be discussed in AMAZON ADVANCED-NETWORKING-SPECIALITY exam dumps:

  • Evaluate tool-based alternatives within AWS for network operations and management
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Amazon AWS Certified Advanced Networking Specialty (ANS-C00) Exam Sample Questions (Q47-Q52):

NEW QUESTION # 47
You have been asked to monitor traffic flows on your Amazon EC2 instance. You will be performing deep packet inspection, looking for atypical patterns.
Which tool will enable you to look at this data?

  • A. AWS CLI
  • B. Wireshark
  • C. VPC Flow Logs
  • D. CloudWatch Logs

Answer: C Explanation:
Explanation
https://aws.amazon.com/answers/networking/vpc-network-management-and-monitoring/ VPC Flow Logs capture network flow information for a VPC, subnet, or network interface in Amazon CloudWatch Logs. Flow logs can help you with a number of tasks, such as troubleshooting why specific traffic is not reaching an instance, which in turn can help you diagnose overly restrictive security group rules. You can also use flow logs as a security tool to monitor the traffic that is reaching your instance, to profile your network traffic, and to look for abnormal traffic behaviors. A common use of VPC flow logs is to watch for abnormal and unexpected denied outbound connection requests, which could be an indication of a misconfigured or compromised EC2 instance. CloudWatch Alerts can provide rudimentary network alerting on VPC Flow Logs, however AWS APN members provide third-party log management systems that provide extensive reporting, visualization, and alerting capabilities based on VPC Flow Log data.
NEW QUESTION # 48
Your company runs an HTTPS application using an Elastic Load Balancing (ELB) load balancer/PHP on nginx server/RDS in multiple Availability Zones. You need to apply Geographic Restriction and identify the client's IP address in your application to generate dynamic content.
How should you utilize AWS services in a scalable fashion to perform this task?

  • A. Use X-Forwarded-For with security groups to apply the Geographic Restriction.
  • B. Modify the nginx log configuration to record value in X-Forwarded-For and use CloudFront to apply the Geographic Restriction.
  • C. Enable ELB access logs to store the client IP address and parse these to dynamically modify a blacklist.
  • D. Modify the application code to use value of X-Forwarded-For and CloudFront to apply the Geographic Restriction.

Answer: B
NEW QUESTION # 49
A company uses AWS Direct Connect to connect its corporate network to multiple VPCs in the same AWS account and the same AWS Region. Each VPC uses its own private VIF and its own virtual LAN on the Direct Connect connection. The company has grown and will soon surpass the limit of VPCs and private VIFs for each connection.
What is the MOST scalable way to add VPCs with on-premises connectivity?

  • A. Create virtual private gateways for each VPC that is over the service quota. Use AWS Site-to-Site VPN to connect the virtual private gateways to the corporate network.
  • B. Provision a new Direct Connect connection to handle the additional VPCs. Use the new connection to connect additional VPCs.
  • C. Create a Direct Connect gateway, and add virtual private gateway associations to the VPCs.
    Configure a private VIF to connect to the corporate network.
  • D. Create a transit gateway, and attach the VPCs. Create a Direct Connect gateway, and associate it with the transit gateway. Create a transit VIF to the Direct Connect gateway.

Answer: A
NEW QUESTION # 50
An insurance company is planning the migration of workloads from its on-premises data center to the AWS Cloud. The company requires end-to-end domain name resolution. Bi-directional DNS resolution between AWS and the existing on-premises environments must be established. The workloads will be migrated into multiple VPCs. The workloads also have dependencies on each other, and not all the workloads will be migrated at the same time.
Which solution meets these requirements?

  • A. Configure a private hosted zone for each application VPC, and create the requisite records. Create a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPC. Define Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver. Associate the application VPC private hosted zones with the egress VPC, and share the Route 53 Resolver rules with the application accounts by using AWS Resource Access Manager.
    Configure the on-premises DNS servers to forward the cloud domains to the Route 53 outbound endpoints.
  • B. Configure a private hosted zone for each application VPC, and create the requisite records. Create a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPC. Define Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver. Associate the Route 53 outbound rules with the application VPCs, and share the private hosted zones with the application accounts by using AWS Resource Access Manager. Configure the on-premises DNS servers to forward the cloud domains to the Route 53 inbound endpoints.
  • C. Configure a public hosted zone for each application VPC, and create the requisite records. Create a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPC. Define Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver. Associate the application VPC private hosted zones with the egress VPC, and share the Route 53 Resolver rules with the application accounts by using AWS Resource Access Manager.
    Configure the on-premises DNS servers to forward the cloud domains to the Route 53 inbound endpoints.
  • D. Configure a private hosted zone for each application VPC, and create the requisite records. Create a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPC. Define Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver. Associate the application VPC private hosted zones with the egress VPC, and share the Route 53 Resolver rules with the application accounts by using AWS Resource Access Manager.
    Configure the on-premises DNS servers to forward the cloud domains to the Route 53 inbound endpoints.

Answer: C Explanation:
https://d1.awsstatic.com/whitepapers/hybrid-cloud-dns-options-for-vpc.pdf
NEW QUESTION # 51
You have a global corporate network with 153 individual IP prefixes in your internal routing table. You establish a private virtual interface over AWS Direct Connect to a VPC that has an Internet gateway (IGW).
All instances in the VPC must be able to route to the Internet via an IGW and route to the global corporate network via the VGW.
How should you configure your on-premises BGP peer to meet these requirements?

  • A. Summarize your prefix announcement to less than 100
  • B. Announce a default route to the VPC over the BGP session
  • C. Configure AS-Prepending on your BGP session
  • D. Enable route propagation on the VPC route table

Answer: D
NEW QUESTION # 52
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