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NEW QUESTION 35
A company has an application that runs on Amazon EC2 instances within a private subnet in a VPC. The instances access data in an Amazon S3 bucket in the same AWS Region. The VPC contains a NAT gateway in a public subnet to access the S3 bucket. The company wants to reduce costs by replacing the NAT gateway without compromising security or redundancy.
Which solution meets these requirements?
- A. Replace the NAT gateway with an internet gateway.
- B. Replace the NAT gateway with a NAT instance.
- C. Replace the NAT gateway with a gateway VPC endpoint.
- D. Replace the NAT gateway with an AWS Direct Connect connection.
Answer: C
NEW QUESTION 36
You have been asked to design a NAT solution for your company's VPC-based web application. Traffic from the privatesubnets varies throughout the day from 500 Mbps to spikes of 7 Gbps.
What is the most cost-effective and scalable solution?
- A. Create an Auto Scaling group of Amazon EC2 NAT instances in a public subnet; route all private subnet Internet traffic through the NAT gateway
- B. Create an Amazon EC2 NAT instance with a second elastic network (ENI) in a public subnet; route all private subnet Internet traffic through the NAT gateway.
- C. Move the Internet gateway for the VPC to a public subnet; route all Internet traffic through the Internet gateway
- D. Create a NAT gateway in a public subnet; route all private subnet Internet Traffic through the NAT gateway
Answer: D
Explanation:
Explanation: Getting StartedLet's try to see how we can create and configure an AWS NAT Gateway:
* Login to the AWS console, select VPC service and click on NAT Gateways as shown below:Managed NAT gateway - dashboard
* Provide the necessary details, like subnet and Elastic IP, and create the NAT Gateway. You need the select the subnet which you want to be private subnet and your Elastic IP so that it can communicate to Internet.NAT Gateway - create
* Once created you will see this:NAT Gateway - success
* Once the NAT Gateway is created you can edit your routing table to send traffic destined for the Internet toward the gateway. The gateway's internal address will be chosen automatically, and will be in the same subnet as the gateway.
Once the NAT Gateway is configured, you are all set. Your private subnet instances should now be able to communicate with the Internet without much management, monitoring, and configuration overhead.
Sample NAT Gateway architecture:
NAT Gateway - design
Migrating from an existing NAT instanceIf you are already using a NAT instance in your VPC setup, it's time to migrate now, and I can tell you that it's not tough. You only need to make sure that you create the NAT Gateway in the same subnet as your existing NAT instance. Then you need to edit the route table by replacing the existing NAT reference with the internal address of the new gateway. I told you this was very straightforward. You will need to ensure that you don't have any critical tasks running at the time of migration, because changing a route from a NAT instance to the gateway can result in a dropped connection.
This feature was only very recently introduced by AWS, so it's definitely worth sharing. It can resolve lots of existing concerns. Do you have your own experience with this new feature? Why not share it with others.
NEW QUESTION 37
Fill in the blanks: "To ensure failover capabilities, consider using a _____ for incoming traffic on a network interface".
- A. secondary private IP
- B. secondary public IP
- C. add on secondary IP
- D. primary public IP
Answer: A
NEW QUESTION 38
A company that provides wireless services needs a solution to store and analyze log files about user activities. Currently, log files are delivered daily to Amazon Linux on an Amazon EC2 instance. A batch script is run once a day to aggregate data used for analysis by a third-party tool. The data pushed to the third-party tool is used to generate a visualization for end users. The batch script is cumbersome to maintain, and it takes several hours to deliver the ever-increasing data volumes to the third-party tool. The company wants to lower costs, and is open to considering a new tool that minimizes development effort and lowers administrative overhead. The company wants to build a more agile solution that can store and perform the analysis in near-real time, with minimal overhead. The solution needs to be cost effective and scalable to meet the company's end-user base growth.
Which solution meets the company's requirements?
- A. Use an Amazon Kinesis agent running on an EC2 instance in an Auto Scaling group to collect and send the data to an Amazon Kinesis Data Firehose delivery stream. The Kinesis Data Firehose delivery stream will deliver the data directly to Amazon ES. Use Kibana to visualize the data.
- B. Use an Amazon Kinesis agent running on an EC2 instance to collect and send the data to an Amazon Kinesis Data Firehose delivery stream. The Kinesis Data Firehose delivery stream will deliver the data to Amazon S3. Use an AWS Lambda function to deliver the data from Amazon S3 to Amazon ES. Use Kibana to visualize the data.
- C. Develop a Python script to capture the data from Amazon EC2 in real time and store the data in Amazon S3. Use a copycommand to copy data from Amazon S3 to Amazon Redshift. Connect a business intelligence tool running on Amazon EC2 to Amazon Redshift and create the visualizations.
- D. Use an in-memory caching application running on an Amazon EBS-optimized EC2 instance to capture the log data in near real-time. Install an Amazon ES cluster on the same EC2 instance to store the log files as they are delivered to Amazon EC2 in near real-time. Install a Kibana plugin to create the visualizations.
Answer: A
Explanation:
Explanation/Reference:
https://docs.aws.amazon.com/firehose/latest/dev/writing-with-agents.html
NEW QUESTION 39
A solutions architect is developing a multiple-subnet VPC architecture. The solution will consist of six subnets in two Availability Zones. The subnets are defined as public, private and dedicated for databases Only the Amazon EC2 instances running in the private subnets should be able to access a database.
Which solution meets these requirements?
- A. Create a new peering connection between the public subnets and the private subnets. Create a different peering connection between the private subnets and the database subnets.
- B. Create a security group that allows ingress from the security group used by instances in the private subnets. Attach the security group to an Amazon RDS DB instance.
- C. Create a security group that denies ingress from the security group used by instances in the public subnets Attach the security group to an Amazon RDS DB instance
- D. Create a now route table that excludes the route to the public subnets' CIDR blocks Associate the route table lo the database subnets.
Answer: B
NEW QUESTION 40
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