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Amazon AWS Certified Advanced Networking Specialty Exam Sample Questions (Q25-Q30):

NEW QUESTION # 25
A company is deploying a network security product that is based on virtual appliances that run on Amazon EC2 instances.
The appliances are stateful and inspect request traffic and return traffic. The appliances require visibility to a network flow's bidirectional transaction.
The central appliance VPC is connected to a transit gateway. A network administrator notices that connections to the appliances are dropped when the traffic crosses Availability Zones.
The appliances run behind a Gateway Load Balancer. The appliances are deployed across multiple Availability zones in a central VPC. What is MOST likely causing the connections to drop?
Response:

  • A. The transit gateway VPC attachment of the central appliance VPC is configured only for a subnet in a single Availability Zone
  • B. The transit gateway VPC attachment of the appliance is not configured for appliance mode
  • C. The route table that is attached to the subnet in one of the Availability Zones is missing a return route to the originating VPC
  • D. The security group that is attached to one of the appliance instances is blocking traffic to port 6081

Answer: B


NEW QUESTION # 26
The networking team at a company has provisioned a new EC2 instance A by choosing the default security group of the default VPC. The team can ping instance A from other instances in the VPC. These other instances were also created using the default security group.
The next day, the team launches another instance B by creating a new security group and attaching it to instance B. All other configuration options for instance B are chosen as default. However, the team is not able to ping instance B from other instances in the VPC.
As an AWS Certified Networking Specialist, which of the following would you identify as the root cause of the issue?
Response:

  • A. Instance A is in the default security group. The default rules for the default security group allow inbound traffic from all sources. Instance B is in a new security group. The default rules for a security group that you create allow no inbound traffic
  • B. Instance A is in the default security group. The default rules for the default security group allow no inbound traffic from all sources. Instance B is in a new security group. The default rules for a security group that you create allow inbound traffic from all sources
  • C. Instance A is in the default security group. The default rules for the default security group allow inbound traffic from network interfaces (and their associated instances) that are assigned to the same security group. Instance B is in a new security group. The default rules for a security group that you create allow no inbound traffic
  • D. Instance A is in the default security group. The default rules for the default security group allow no inbound traffic from network interfaces (and their associated instances) that are assigned to the same security group. Instance B is in a new security group. The default rules for a security group that you create allow inbound traffic from all sources

Answer: C


NEW QUESTION # 27
An organization launched an IPv6-only web portal to support IPv6-native mobile clients. Front-end instances launch in an Amazon VPC associated with an appropriate IPv6 CIDR. The VPC IPv4 CIDR is fully utilized. A single subnet exists in each of two Availability Zones with appropriately configured IPv6 CIDR associations. Auto Scaling is properly configured, and no Elastic Load Balancing is used.
Customers say the service is unavailable during peak load times. The network engineer attempts to launch an instance manually and receives the following message: "There are not enough free addresses in subnet 'subnet-12345677' to satisfy the requested number of instances." What action will resolve the availability problem?

  • A. Create a new subnet using a VPC secondary IPv4 CIDR, and associate an IPv6 CIDR. Include the new subnet in the Auto Scaling group.
  • B. Create a new subnet using a VPC secondary IPv6 CIDR, and associate an IPv6 CIDR. Include the new subnet in the Auto Scaling group.
  • C. Resize the IPv6 CIDR on each of the existing subnets. Modify the Auto Scaling group maximum number of instances.
  • D. Add a secondary IPv4 CIDR to the Amazon VPC. Assign secondary IPv4 address space to each of the existing subnets.

Answer: A


NEW QUESTION # 28
A company has an AWS Direct Connect connection between its on-premises data center and Amazon VPC. An application running on an Amazon EC2 instance in the VPC needs to access confidential data stored in the on-premises data center with consistent performance.
For compliance purposes, data encryption is required. What should the network engineer do to meet these requirements?
Response:

  • A. Configure a public virtual interface on the Direct Connect connection. Set up an AWS Site-to-Site VPN between the customer gateway and the virtual private gateway in the VPC
  • B. Configure an internet gateway in the VPC. Set up an AWS Site-to-Site VPN between the customer gateway and the virtual private gateway in the VPC.
  • C. Configure an internet gateway in the VPSet up a software VPN between the customer gateway and an EC2 instance in the VPC.
  • D. Configure a private virtual interface on the Direct Connect connection. Set up an AWS Site-to-Site VPN between the customer gateway and the virtual private gateway in the VPC

Answer: A


NEW QUESTION # 29
Your organization leverages an IP Address Management (IPAM) product to manage IP address distribution. The IPAM exposes an API. Development teams use CloudFormation to provision approved reference architectures.
At deployment time, IP addresses must be allocated to the VPC. When the VPC is deleted, the IPAM must reclaim the VPC's IP allocation.
Which method allows for efficient, automated integration of the IPAM with CloudFormation?
Response:

  • A. CloudFormation::OpsWorks::Stack with custom Chef configuration.
  • B. AWS CloudFormation parameters using the "Ref::" intrinsic function
  • C. AWS CloudFormation custom resource using an AWS Lambda invocation.
  • D. AWS CloudFormation parameters using the "Fn::FindlnMap" intrinsic function.

Answer: C


NEW QUESTION # 30
......

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