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To pass the Amazon ANS-C01 exam, candidates must demonstrate their ability to design, deploy, and troubleshoot advanced networking solutions on AWS. They must also be able to identify and mitigate network security risks, automate network tasks, and optimize network performance. ANS-C01 exam consists of multiple-choice and multiple-response questions, and candidates are given 170 minutes to complete it. Achieving the ANS-C01 Certification is a valuable credential for networking professionals who want to advance their careers and demonstrate their expertise in AWS networking.
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To pass the ANS-C01 exam, candidates must demonstrate their ability to design and implement complex networking solutions using AWS services. This requires a deep understanding of AWS networking services such as VPC, Direct Connect, VPN, Route 53, and Elastic Load Balancing. Candidates must also have a comprehensive understanding of network security principles and best practices to secure AWS resources.
To become AWS Certified Advanced Networking Specialty, candidates must have a solid understanding of various networking concepts, such as routing, switching, VPN, network security, and network optimization. They must also have hands-on experience in configuring and managing network infrastructure on the AWS platform. The ANS-C01 Exam consists of multiple-choice and multiple-response questions that test the candidate's knowledge and skills in designing, deploying, and managing complex networking solutions on AWS. ANS-C01 exam takes approximately 170 minutes to complete, and the passing score is 750 out of 1000 points.
NEW QUESTION # 100
A customer has set up multiple VPCs for Dev, Test, Prod, and Management. You need to set up AWS Direct Connect to enable data flow from on-premises to each VPC. The customer has monitoring software running in the Management VPC that collects metrics from the instances in all the other VPCs. Due to budget requirements, data transfer charges should be kept at minimum.
Which design should be recommended?
Answer: C
Explanation:
-creating VPC peering is free of charge -traffic costs ~0.01/GB for VPC peering (IN + OUT) and
~0.02/GB for direct connect (OUT only). As the communication involved in monitoring will never have IN == OUT, then 0.01 * (IN + OUT) will always be lower the 0.02 * OUT, ergo VPC peering will be cheaper
NEW QUESTION # 101
Which of the following statements concerning LAGs is incorrect?
Response:
Answer: B
NEW QUESTION # 102
A retail company is running its service on AWS. The company's architecture includes Application Load Balancers (ALBs) in public subnets. The ALB target groups are configured to send traffic to backend Amazon EC2 instances in private subnets. These backend EC2 instances can call externally hosted services over the internet by using a NAT gateway.
The company has noticed in its billing that NAT gateway usage has increased significantly. A network engineer needs to find out the source of this increased usage.
Which options can the network engineer use to investigate the traffic through the NAT gateway? (Choose two.)
Answer: C,D
Explanation:
To investigate the increased usage of a NAT gateway in a VPC architecture with ALBs and backend EC2 instances, a network engineer can use the following options:
* Enable VPC flow logs on the NAT gateway's elastic network interface and publish the logs to a log group in Amazon CloudWatch Logs. Use CloudWatch Logs Insights to query and analyze the logs.
(Option A)
* Enable VPC flow logs on the NAT gateway's elastic network interface and publish the logs to an Amazon S3 bucket. Create a custom table for the S3 bucket in Amazon Athena to describe the log structure and use Athena to query and analyze the logs. (Option D) These options allow for detailed analysis of traffic through the NAT gateway to identify the source of increased usage.
NEW QUESTION # 103
A government contractor is designing a multi-account environment with multiple VPCs for a customer. A network security policy requires all traffic between any two VPCs to be transparently inspected by a third-party appliance.
The customer wants a solution that features AWS Transit Gateway. The setup must be highly available across multiple Availability Zones, and the solution needs to support automated failover.
Furthermore, asymmetric routing is not supported by the inspection appliances. Which combination of steps is part of a solution that meets these requirements? (Choose two.)
Answer: A,B
Explanation:
https://docs.aws.amazon.com/elasticloadbalancing/latest/gateway/introduction.html
https://docs.aws.amazon.com/whitepapers/latest/building-scalable-secure-multi-vpc-network- infrastructure/using-gwlb-with-tg-for-cns.html
NEW QUESTION # 104
A network engineer needs to improve the network security of an existing AWS environment by adding an AWS Network Firewall firewall to control internet-bound traffic. The AWS environment consists of five VPCs. Each VPC has an internet gateway, NAT gateways, public Application Load Balancers (ALBs), and Amazon EC2 instances. The EC2 instances are deployed in private subnets. The architecture is deployed across two Availability Zones.
The network engineer must be able to configure rules for the public IP addresses in the environment, regardless of the direction of traffic. The network engineer must add the firewall by implementing a solution that minimizes changes to the existing production environment. The solution also must ensure high availability.
Which combination of steps should the network engineer take to meet these requirements?
(Choose two.)
Answer: A,D
NEW QUESTION # 105
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