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NEW QUESTION 39
A web company is looking to implement an external payment service into their highly available application deployed in a VPC Their application EC2 instances are behind a public facing ELB. Auto scaling is used to add additional instances as traffic increases under normal load the application runs 2 instances in the Auto Scaling group but at peak it can scale 3x in size. The application instances need to communicate with the payment service over the Internet which requires whitelisting of all public IP addresses used to communicate with it. A maximum of 4 whitelisting IP addresses are allowed at a time and can be added through an API.
How should they architect their solution?

A. Whitelist the ELB IP addresses and route payment requests from the Application servers through the ELB.B. Whitelist the VPC Internet Gateway Public IP and route payment requests through the Internet Gateway.C. Route payment requests through two NAT instances setup for High Availability and whitelist the Elastic IP addresses attached to the MAT instances.D. Automatically assign public IP addresses to the application instances in the Auto Scaling group and run a script on boot that adds each instances public IP address to the payment validation whitelist API.

Answer: C

 

NEW QUESTION 40
A solutions architect is designing a publicly accessible web application that is on an Amazon CloudFront distribution with an Amazon S3 website endpoint as the origin. When the solution is deployed, the website returns an Error 403: Access Denied message.
Which steps should the solutions architect take to correct the issue? (Select TWO.)

A. Remove the requester pays option trom the S3 bucket.B. Disable S3 object versioning.C. Remove the origin access identity (OAI) from the CloudFront distribution.D. Change the storage class from S3 Standard to S3 One Zone-Infrequent Access (S3 One Zone-IA).E. Remove the S3 block public access option from the S3 bucket.

Answer: A,E

Explanation:
Explanation
See using S3 to host a static website with Cloudfront:
https://aws.amazon.com/premiumsupport/knowledge-center/cloudfront-serve-static-website/
- Using a REST API endpoint as the origin, with access restricted by an origin access identity (OAI)
- Using a website endpoint as the origin, with anonymous (public) access allowed
- Using a website endpoint as the origin, with access restricted by a Referer header

 

NEW QUESTION 41
The CFO of a company wants to allow one of his employees to view only the AWS usage report page.
Which of the below mentioned IAM policy statements allows the user to have access to the AWS usage report page?

A. "Effect": "Allow", "Action": ["aws-portal: ViewBilling"], "Resource": "*"B. "Effect": "Allow", "Action": ["aws-portal: ViewUsage"], "Resource": "*"C. "Effect": "Allow", "Action": ["Describe"], "Resource": "Billing"D. "Effect": "Allow", "Action": ["AccountUsage], "Resource": "*"

Answer: B

Explanation:
Explanation
AWS Identity and Access Management is a web service which allows organizations to manage users and user permissions for various AWS services. If the CFO wants to allow only AWS usage report page access, the policy for that IAM user will be as given below:
{
"Version": "2012-10-17",
"Statement": [
{
"Effect": "Allow", "Action": [
"aws-portal:ViewUsage"
],
"Resource": "*"
}
]
}
http://docs.aws.amazon.com/awsaccountbilling/latest/aboutv2/billing-permissions-ref.html

 

NEW QUESTION 42
A company is moving a business-critical application onto AWS. It is a traditional three-tier web application using an Oracle database. Data must be encrypted in transit and at rest. The database hosts 12 TB of data.
Network connectivity to the source Oracle database over the internal is allowed, and the company wants to reduce the operational costs by using AWS Managed Services where possible. All resources within the web and application tiers have been migrated. The database has a few tables and a simple schema using primary keys only; however, it contains many Binary Large Object (BLOB) fields. It was not possible to use the database's native replication tools because of licensing restrictions.
Which database migration solution will result in the LEAST amount of impact to the application's availability?

A. Provision an Amazon RDS for Oracle instance. Host the RDS database within a virtual private cloud (VPC) subnet with internet access, and set up the RDS database as an encrypted Read Replica of the source database. Use SSL to encrypt the connection between the two databases. Monitor the replication performance by watching the RDS ReplicaLag metric. During the application maintenance window, shut down the on-premises database and switch over the application connection to the RDS instance when there is no more replication lag. Promote the Read Replica into a standalone database instance.B. Create a compressed full database backup on the on-premises Oracle database during an application maintenance window. While the backup is being performed, provision a 10 Gbps AWS Direct Connect connection to increase the transfer speed of the database backup files to Amazon S3, and shorten the maintenance window period. Use SSL/TLS to copy the files over the Direct Connect connection. When the backup files are successfully copied, start the maintenance window, and rise any of the Amazon RDS supported tools to import the data into a newly provisioned Amazon RDS for Oracle instance with encryption enabled. Wait until the data is fully loaded and switch over the database connections to the new database. Delete the Direct Connect connection to cut unnecessary charges.C. Provision an Amazon EC2 instance and install the same Oracle database software. Create a backup of the source database using the supported tools. During the application maintenance window, restore the backup into the Oracle database running in the EC2 instance. Set up an Amazon RDS for Oracle instance, and create an import job between the database hosted in AWS. Shut down the source database and switch over the database connections to the RDS instance when the job is complete.D. Use AWS DMS to load and replicate the dataset between the on-premises Oracle database and the replication instance hosted on AWS. Provision an Amazon RDS for Oracle instance with Transparent Data Encryption (TDE) enabled and configure it as target for the replication instance. Create a customer-managed AWS KMS master key to set it as the encryption key for the replication instance.
Use AWS DMS tasks to load the data into the target RDS instance. During the application maintenance window and after the load tasks reach the ongoing replication phase, switch the database connections to the new database.

Answer: D

 

NEW QUESTION 43
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