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Latest Updated Amazon Valid ANS-C01 Exam Dumps: AWS Certified Advanced Networking Specialty Exam
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The ANS-C01 exam covers a range of networking concepts and technologies, including advanced networking architectures, hybrid IT networking, network security, automation, and optimization. Candidates will be tested on their ability to design, deploy, and manage complex network solutions using AWS services and tools such as Amazon VPC, AWS Direct Connect, AWS Transit Gateway, and Amazon Route 53. ANS-C01 Exam also assesses candidates' understanding of network performance optimization, network troubleshooting, and network cost optimization strategies on AWS. Passing the ANS-C01 exam demonstrates a high level of expertise in AWS networking and validates that an individual is capable of designing and implementing complex networking solutions on the AWS platform.
Amazon AWS Certified Advanced Networking Specialty Exam Sample Questions (Q274-Q279):
NEW QUESTION # 274
A company has workloads that run in a VPC. The workloads access Amazon S3 by using an S3 gateway endpoint. The company also has on-premises workloads that need to access Amazon S3 privately over a VPN connection. The company has established the VPN connection to the VPC.
Which solution will provide connectivity to Amazon S3 from the VPC workloads and the on-premises workloads in the MOST operationally efficient way?
- A. Set up an AWS Direct Connect connection. Create a public VIF. Configure on-premises routing to route the S3 traffic over the public VIF. Make no changes to the on-premises workloads. Continue to use the S3 gateway endpoint for the VPC workloads to access Amazon S3.
- B. Delete the S3 gateway endpoint. Create an S3 interface endpoint. Deploy a proxy fleet of Amazon EC2 instances in the VPC behind an Application Load Balancer (ALB).
Configure the on-premises workloads to use the ALB as the proxy server to connect to Amazon S3. Configure the proxy fleet and the VPC workloads to use the S3 interface endpoint to connect to Amazon S3. - C. Create an S3 interface endpoint. Configure an on-premises DNS resolver to resolve the S3 DNS names to the private IP addresses of the S3 interface endpoint. Use the S3 interface endpoint to access Amazon S3. Continue to use the S3 gateway endpoint for the VPC workloads to access Amazon S3.
- D. Deploy a proxy fleet of Amazon EC2 instances in the VPC behind an Application Load Balancer (ALB). Configure the on-premises workloads to use the ALB as the proxy server to connect to Amazon S3. Configure the proxy fleet to use the S3 gateway endpoint to connect to Amazon S3.
Answer: C
Explanation:
The correct solution is to use an S3 interface endpoint and an on-premises DNS resolver. An S3 interface endpoint allows you to access Amazon S3 using private IP addresses within your VPC. An on-premises DNS resolver can be configured to forward the DNS queries for the S3 domain names to the S3 interface endpoint, so that the on-premises workloads can access Amazon S3 privately over the VPN connection. This solution is operationally efficient, as it does not require any additional infrastructure or changes to the existing workloads. The VPC workloads can continue to use the S3 gateway endpoint, which provides lower latency and higher throughput than the S3 interface endpoint.
NEW QUESTION # 275
A company has expanded its network to the AWS Cloud by using a hybrid architecture with multiple AWS accounts. The company has set up a shared AWS account for the connection to its on-premises data centers and the company offices. The workloads consist of private web-based services for internal use. These services run in different AWS accounts. Office-based employees consume these services by using a DNS name in an on-premises DNS zone that is named example.internal.
The process to register a new service that runs on AWS requires a manual and complicated change request to the internal DNS. The process involves many teams.
The company wants to update the DNS registration process by giving the service creators access that will allow them to register their DNS records. A network engineer must design a solution that will achieve this goal. The solution must maximize cost-effectiveness and must require the least possible number of configuration changes.
Which combination of steps should the network engineer take to meet these requirements? (Choose three.)
- A. Create an Amazon Route 53 Resolver inbound endpoint in the shared account VPC. Create a conditional forwarder for a domain named aws.example.internal on the on-premises DNS servers. Set the forwarding IP addresses to the inbound endpoint's IP addresses that were created.
- B. Launch two Amazon EC2 instances in the shared AWS account. Install BIND on each instance. Create a DNS conditional forwarder on each BIND server to forward queries for each subdomain under aws.
example.internal to the appropriate private hosted zone in each AWS account. Create a conditional forwarder for a domain named aws.example.internal on the on-premises DNS servers. Set the forwarding IP addresses to the IP addresses of the BIND servers. - C. Create an Amazon Route 53 private hosted zone named aws.example.internal in the shared AWS account to resolve queries for this domain.
- D. Create a record for each service in its local private hosted zone (serviceA.account1.aws.example.
internal). Provide this DNS record to the employees who need access. - E. Create an Amazon Route 53 Resolver rule to forward any queries made toonprem.example.internal to the on-premises DNS servers.
- F. Create a private hosted zone in the shared AWS account for each account that runs the service.Configure the private hosted zone to contain aws.example.internal in the domain (account1.aws.example.internal). Associate the private hosted zone with the VPC that runs the service and the shared account VPC.
Answer: A,C,D
Explanation:
To meet the requirements of updating the DNS registration process while maximizing cost-effectiveness and minimizing configuration changes, the network engineer should take the following steps:
* Create an Amazon Route 53 Resolver inbound endpoint in the shared account VPC. Create a conditional forwarder for a domain named aws.example.internal on the on-premises DNS servers. Set the forwarding IP addresses to the inbound endpoint's IP addresses that were created (Option B).
* Create an Amazon Route 53 private hosted zone named aws.example.internal in the shared AWS account to resolve queries for this domain (Option D).
* Create a record for each service in its local private hosted zone (serviceA.account1.aws.example.
internal). Provide this DNS record to the employees who need access (Option A).
These steps will allow service creators to register their DNS records while keeping costs low and minimizing configuration changes.
NEW QUESTION # 276
A company's AWS environment has two VPCs. VPC A has a CIDR block of 192.168.0.0/16. VPC B has a CIDR block of 10.0.0.0/16. Each VPC is deployed in a separate AWS Region. The company has remote users who work outside the company's offices. These users need to connect to an application that is running in the VPCs.
Traffic to and from the VPCs over the internet must be encrypted. A network engineer must set up connectivity between the remote users and the VPCs.
Which combination of steps should the network engineer take to meet these requirements with the LEAST management overhead? (Choose three.)
- A. Create an AWS Client VPN endpoint in VPC A and VPC B Add an authorization rule to grant access to VPC A and VPC B.
- B. Add a route to the AWS Client VPN endpoint's route table to direct traffic to VPC A.
- C. Create an AWS Client VPN endpoint in VPC A Add an authorization rule to grant access to VPC A and VPC B.
- D. Establish an AWS Site-to-Site VPN connection between VPC A and VPC B.
- E. Establish a VPC peering connection between VPC A and VPC B.
- F. Add a route to the AWS Client VPN endpoint's route table to direct traffic to VPC B.
Answer: C,E,F
NEW QUESTION # 277
Your organization is planning on connecting to AWS. The organization has decided to use a specific Virtual Private Network (VPN) technology for the first phase of the project. You are tasked with implementing the VPN server in a Virtual Private Cloud (VPC) and optimizing it for performance.
What are important considerations for Amazon EC2 VPN performance?
A) The VPN instance should support enhanced networking
B) Because all VPN connections use the Virtual Private Gateway (VGW), it's important to scale the VGW horizontally.
C) IP Security (IPsec) VPNs should use a Network Load Balancer to create a more scalable VPN service
D) Analyze the packet per second and bandwidth limitations
Response:
- A. A & D
- B. A & B
- C. B & D
- D. B & C
Answer: A
NEW QUESTION # 278
A global company operates all its non-production environments out of three AWS Regions: eu-west-1, us-east-
1, and us-west-1. The company hosts all its production workloads in two on-premises data centers. The company has 60 AWS accounts and each account has two VPCs in each Region. Each VPC has a virtual private gateway where two VPN connections terminate for resilient connectivity to the data centers. The company has 360 VPN tunnels to each data center, resulting in high management overhead. The total VPN throughput for each Region is 500 Mbps.
The company wants to migrate the production environments to AWS. The company needs a solution that will simplify the network architecture and allow for future growth. The production environments will generate an additional 2 Gbps of traffic per Region back to the data centers. This traffic will increase over time.
Which solution will meet these requirements?
- A. Peer all the VPCs in each Region to a new VPC in each Region that will function as a centralized transit VPC. Create new VPN connections from each data center to the transit VPCs. Terminate the original VPN connections that are attached to all the original VPCs. Retain the new VPN connection to the new transit VPC in each Region.
- B. Set up an AWS Direct Connect connection from each data center to AWS in each Region. Create and attach private VIFs to a single Direct Connect gateway. Attach the Direct Connect gateway to all the VPCs. Remove the existing VPN connections that are attached directly to the virtual private gateways.
- C. Create a transit gateway in each Region with multiple newly commissioned VPN connections from each data center. Share the transit gateways with each account by using AWS Resource Access Manager (AWS RAM). In each Region, attach the transit gateway to each VPRemove the existing VPN connections that are attached directly to the virtual private gateways.
- D. Create a single transit gateway with VPN connections from each data center. Share the transit gateway with each account by using AWS Resource Access Manager (AWS RAM). Attach the transit gateway to each VPC. Remove the existing VPN connections that are attached directly to the virtual private gateways.
Answer: C
NEW QUESTION # 279
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