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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 inbound endpoints. - B. 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. - C. 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. - 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 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.
Answer: B
Explanation:
https://d1.awsstatic.com/whitepapers/hybrid-cloud-dns-options-for-vpc.pdf
NEW QUESTION 40
Your organization runs a popular e-commerce application deployed on AWS that uses autoscaling in conjunction with an Elastic Load balancing (ELB) service with an HTTPS listener. Your security team reports that an exploitable vulnerability has been discovered in the encryption protocol and cipher that your site uses.
Which step should you take to fix this problem?- A. Leverage your current configuration management system to update SSL policy on all web servers.
- B. Generate new SSL certificates and use ELB to front-end the encrypted traffic for all web servers.
- C. Generate new SSL certificates for all web servers and replace current certificates.
- D. Change the security policy on the ELB to disable vulnerable protocols and ciphers.
Answer: D
Explanation:
https://docs.aws.amazon.com/elasticloadbalancing/latest/classic/elb-create-https-ssl-load-balancer.html
NEW QUESTION 41
A gaming company is running an online multiplayer game in multiple AWS Regions The company needs traffic from its end users to be routed to the Region that is closest to the end users geographically When maintenance occurs in a Region, traffic must be routed to the next closest Region with no changes to the IP addresses being used as connections by the end users Which solution will meet these requirements?- A. Use an Amazon Route 53 geoproximity routing policy to navigate traffic to the closest Region
- B. Create an Amazon CloudFront distribution in front of all the Regions
- C. Configure AWS Global Accelerator in front of all the Regions
- D. Use an Amazon Route 53 geolocation routing policy to navigate traffic to the closest Region
Answer: C
Explanation:
If Global Accelerator detects that your application endpoint is failing in the primary AWS Region, it instantly triggers traffic re-routing to your application endpoint in the next available, closest AWS Region. See the provided link below (Page 13) https://docs.aws.amazon.com/global-accelerator/latest/dg/global-accelerator-guide.pdf
NEW QUESTION 42
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DOWNLOAD the newest CramPDF AWS-Advanced-Networking-Specialty PDF dumps from Cloud Storage for free: https://drive.google.com/open?id=1mdOiG-H7veH46dZenBiMyYWCojcerChf - 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.