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NEW QUESTION 39
A corporate network routing table contains 624 individual RFC 1918 and public IP prefixes. You have two AWS Direct Connect connectors. You congure a private virtual interface on both connections to a virtual private gateway. The virtual private gateway is not currently attached to a VPC. Neither BGP session will maintain the Established state on the customer router. The AWS Management Console reports the private virtual interfaces as Down.
What could you do to address the problem so that the AWS Management Console reports the private virtual interface as Available?
- A. Filter the public IP prexes on the corporate network from the private virtual interface.
- B. Attach the virtual private gateway to a VPC and enable route propagation.
- C. Attach the second virtual interface to an alternative virtual private gateway.
- D. Change the BGP advertisements from the corporate network to only be a default route.
Answer: C
NEW QUESTION 40
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. Create an Amazon CloudFront distribution in front of all the Regions
- B. Use an Amazon Route 53 geoproximity routing policy to navigate traffic to the closest Region
- 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: A
NEW QUESTION 41
You have a three-tier web application with separate subnets for Web, Applications, and Database tiers. Your CISO suspects your application will be the target of malicious activity. You are tasked with notifying the security team in the event your application is port scanned by external systems.
Which two AWS Services cloud you leverage to build an automated notification system? (Select two.)
- A. AWS Inspector
- B. Internet gateway
- C. VPC Flow Logs
- D. AWS CloudTrail
- E. Lambda
Answer: C,E
Explanation:
References: https://aws.amazon.com/blogs/security/how-to-receive-alerts-when-specific-apis-are-called-by-using-aws-cloudtrail-amazon-sns-and-aws-lambda/
NEW QUESTION 42
A company has a hybrid architecture with dual AWS Direct Connect connections and applications running in the AWS Cloud and on premises The company uses its on-premises DNS servers to provide name resolution tor its internal domain company com The company uses an Amazon Route 53 private hosted zone, aws company com for resolution of AWS resource records
A new application that runs on Amazon EC2 in the company’s VPC needs to resolve records in the company.com domain and on other AWS resources
What should the company do to meet these requirements?
- A. Create Route 53 Resolver outbound endpoints in each subnet in the VPC Configure conditional forwarding rules on the on-premises DNS servers to forward queries for the domain aws company com to the Route 53 Resolver endpoints Modify the DHCP options set to configure instances to resolve hostnames using the on-premises DNS servers
- B. Create a private hosted zone for company com within the AWS account Create Route 53 Resolver inbound endpoints in each subnet in the VPC Configure the on-premises DNS servers to send outbound zone transfers for company com to the Route 53 Resolver endpoints
- C. Create Route 53 Resolver outbound endpoints in each subnet in the VPC Configure a Route 53 forwarding rule with a rule type of Forward for company com that points to the on-premises DNS servers Configure a Route 53 forwarding rule with a rule type of System for aws company com
- D. Create a new DHCP options set Configure the DHCP options set name servers to be the on-premises DNS servers, and configure the domain name to be company com Assign the DHCP options set to the VPC with the EC2 instances
Answer: A
NEW QUESTION 43
You currently use a single security group assigned to all nodes in a clustered NoSQL database.
Only your cluster members in one region must be able to connect to each other. This security group uses a self- referencing rule using the cluster security group’s group-id to make it easier to add or remove nodes from the cluster. You need to make this database comply with out-of-region disaster recovery requirements and ensure that the network traffic between the nodes is encrypted when travelling between regions.
How should you enable secure cluster communication while deploying additional cluster members in another AWS region?
- A. Create an IPsec VPN between AWS regions, use private IP addresses to route traffic, and create cluster security group CIDR-based rules that correspond with the VPC CIDR in the other region.
- B. Use public IP addresses and TLS to securely communicate between cluster nodes in each AWS region, and create cluster security group rules that reference each other’s security group-id in each region.
- C. Create an IPsec VPN between AWS regions, use private IP addresses to route traffic, and create cluster security group rules that reference each other’s security group-id in each region.
- D. Use public IP addresses and TLS to securely communicate between cluster nodes in each AWS region, and create cluster security group CIDR-based rules that correspond with the VPC CIDR in the other region.
Answer: A
Explanation:
https://aws.amazon.com/blogs/database/how-to-configure-a-private-network-environment-for- amazon-dynamodb-using-vpc-endpoints/ So, it’s possible to create a more secure environment using private routing, and CDIR based security group references can be created:
https://docs.aws.amazon.com/vpc/latest/peering/vpc-peering-security-groups.html
NEW QUESTION 44
……
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