ANS-C01 RELIABLE BRAINDUMPS EBOOK, ANS-C01 PRACTICE GUIDE

ANS-C01 Reliable Braindumps Ebook, ANS-C01 Practice Guide

ANS-C01 Reliable Braindumps Ebook, ANS-C01 Practice Guide

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The AWS Certified Advanced Networking Specialty Exam or ANS-C01 is a certification exam offered by Amazon Web Services (AWS) for professionals who want to validate their advanced networking skills and expertise. ANS-C01 Exam is designed for individuals who have a strong background in networking technologies and architecture and are looking to demonstrate their knowledge of AWS networking services.

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To qualify for the ANS-C01 exam, candidates should have at least five years of experience in networking technology and at least two years of experience working with AWS. They should also have a strong understanding of networking concepts such as TCP/IP, routing, DNS, and VPN. ANS-C01 exam is 170 minutes long and consists of multiple-choice and multiple-response questions. A passing score is required to earn the certification, which is valid for three years. With the ANS-C01 Certification, networking professionals can demonstrate their advanced skills and knowledge in AWS networking and stand out in a competitive job market.

Amazon AWS Certified Advanced Networking Specialty Exam Sample Questions (Q147-Q152):

NEW QUESTION # 147
A network engineer is designing the DNS architecture for a new AWS environment. The environment must be able to resolve DNS names of endpoints on premises, and the on-premises systems must be able to resolve the names of AWS endpoints. The DNS architecture must give individual accounts the ability to manage subdomains.
The network engineer needs to create a single set of rules that will work across multiple accounts to control this behavior. In addition, the network engineer must use AWS native services whenever possible.
Which combination of steps should the network engineer take to meet these requirements?
(Choose three.)

  • A. Ensure that networking exists between the other accounts and the central account so that traffic can reach the Amazon Route 53 Resolver endpoints.
  • B. Create AWS Directory Service for Microsoft Active Directory server endpoints in the central AWS account that hosts the private hosted zone for the overall cloud domain. Create a conditional forwarding rule in Microsoft Active Directory DNS to forward traffic to a DNS resolver endpoint on premises. Create another rule to forward traffic between subdomains to the VPC resolver.
  • C. Create Amazon Route 53 Resolver inbound and outbound endpoints in the central AWS account that hosts the private hosted zone for the overall cloud domain. Create a forwarding rule to forward traffic to a DNS resolver endpoint on premises. Create another rule to forward traffic between subdomains to the Resolver inbound endpoint.
  • D. Create an Amazon Route 53 private hosted zone for the overall cloud domain. Plan to create subdomains that align to other AWS accounts that are associated with the central Route 53 private hosted zone.
  • E. Share the Amazon Route 53 Resolver rules between accounts by using AWS Resource Access Manager (AWS RAM). Ensure that networking exists between the other accounts and the central account so that traffic can reach the Route 53 Resolver endpoints.
  • F. Ensure that networking exists between the other accounts and the central account so that traffic can reach the AWS Directory Service for Microsoft Active Directory DNS endpoints.

Answer: C,D,E


NEW QUESTION # 148
You use a VPN to extend your corporate network in to a VPC. Instances in the VPC are able to resolve resource records in an Amazon Route 53 private hosted zone.
Your on-premises DNS server is configured with a forwarder to the VPC DNS server IP address. On- premises users are unable to resolve names in the private hosted zone, although instances in a peered VPC can.
What should you do to provide on-premises users with access to the private hosted zone?
Response:

  • A. Update the on-premises forwarders with the four name servers assigned to the private hosted zone.
  • B. Configure the on-premises server as a secondary DNS for the private zone. Update the NS records.
  • C. Modify the network access control list on the VPC to allow DNS queries from on-premises systems.
  • D. Create a proxy resolver within the VPC. Point the on-premises forwarder to the proxy resolver.

Answer: D


NEW QUESTION # 149
A company has deployed a software-defined WAN (SD-WAN) solution to interconnect all of its offices. The company is migrating workloads to AWS and needs to extend its SD-WAN solution to support connectivity to these workloads.
A network engineer plans to deploy AWS Transit Gateway Connect and two SD-WAN virtual appliances to provide this connectivity. According to company policies, only a single SD-WAN virtual appliance can handle traffic from AWS workloads at a given time. How should the network engineer configure routing to meet these requirements?

  • A. Configure the AS_PATH prepend attribute on the secondary SD-WAN virtual appliance for BGP routes toward the transit gateway.
  • B. Add a static default route in the transit gateway route table to point to the secondary SD-WAN virtual appliance. Add routes that are more specific to point to the primary SD-WAN virtual appliance.
  • C. Disable equal-cost multi-path (ECMP) routing on the transit gateway for Transit Gateway Connect.
  • D. Configure the BGP community tag 7224:7300 on the primary SD-WAN virtual appliance for BGP routes toward the transit gateway.

Answer: A

Explanation:
AS_PATH prepending is a standard BGP way of influencing return traffic for advertised prefixes and SDWAN supports this.


NEW QUESTION # 150
A bank built a new version of its banking application in AWS using containers that content to an on-premises database over VPN connection. This application version requires users to also update their client application. The bank plans to deprecate the earlier client version. However, the company wants to keep supporting earlier clients through their on-premises version of the application to serve a small portion of the customers who haven't yet upgraded.
What design will allow the company to serve both newer and earlier clients in the MOST efficient way?

  • A. Use a Classic Load Balancer for the new application. Route all traffic to the new application by using an Elastic Load Balancing (ELB) load balancer DNS. Define a user-agent-based rule on the backend servers to redirect earlier clients to the on-premises application.
  • B. Use an Application Load Balancer for the new application. Register both the new and earlier application backends as separate target groups. Use header-based routing to route traffic based on the application version.
  • C. Use an Amazon Route 53 multivalue answer routing policy to route older client traffic to the on-premises application version and the rest of the traffic to the new AWS based version.
  • D. Use an Application Load Balancer for the new application. Register both the new and earlier applications as separate target groups and use path-based routing to route traffic based on the application version.

Answer: B


NEW QUESTION # 151
An organization has ordered a new AWS Direct Connect connection. The AWS Management Console reports that the connection is available and BGP status is up. However, the networking team is not able to reach instances in the VPC using ping on the organization's private IP address.
What could cause this connectivity issue?
(Select TWO.)
Response:

  • A. There is a misconfiguration of the bi-directional forwarding detection
  • B. The on-premises router is not advertising the correct CIDR range to AWS
  • C. The VGW is not advertising the correct CIDR range back on-premises
  • D. A public virtual interface must be configured for Amazon EC2 connectivity
  • E. The instance security group does not allow ICMP traffic

Answer: B,E


NEW QUESTION # 152
......

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