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Amazon SAA-C03 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Threat vectors external to AWS
  • AWS federated access and identity services
Topic 2
  • Encryption and appropriate key management
  • Determine appropriate data security controls
Topic 3
  • Design cost-optimized compute solutions
  • Design Cost-Optimized Architectures
Topic 4
  • Design secure access to AWS resources
  • Design Secure Architectures
Topic 5
  • Determine high-performing data ingestion and transformation solutions
  • Determine high-performing and
  • or scalable storage solutions
Topic 6
  • The AWS shared responsibility model
  • Access controls and management across multiple accounts
Topic 7
  • Distributed computing concepts supported by AWS global infrastructure and edge services
  • Serverless technologies and patterns
Topic 8
  • Storage types with associated characteristics
  • Design High-Performing Architectures
Topic 9
  • How to appropriately use edge accelerators
  • AWS managed services with appropriate use cases
Topic 10
  • Design highly available and
  • or fault-tolerant architectures
  • Determine high-performing and
  • or scalable network architectures.

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Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam Sample Questions (Q300-Q305):

NEW QUESTION # 300
A company has multiple AWS Site-to-Site VPN connections placed between their VPCs and their remote network. During peak hours, many employees are experiencing slow connectivity issues, which limits their productivity. The company has asked a solutions architect to scale the throughput of the VPN connections.
Which solution should the architect carry out?

  • A. Associate the VPCs to an Equal Cost Multipath Routing (ECMR)-enabled transit gateway and attach additional VPN tunnels.
  • B. Re-route some of the VPN connections to a secondary customer gateway device on the remote network's end.
  • C. Modify the VPN configuration by increasing the number of tunnels to scale the throughput.
  • D. Add more virtual private gateways to a VPC and enable Equal Cost Multipath Routing (ECMR) to get higher VPN bandwidth.

Answer: A

Explanation:
With AWS Transit Gateway, you can simplify the connectivity between multiple VPCs and also connect to any VPC attached to AWS Transit Gateway with a single VPN connection.
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AWS Transit Gateway also enables you to scale the IPsec VPN throughput with equal-cost multi-path (ECMP) routing support over multiple VPN tunnels. A single VPN tunnel still has a maximum throughput of 1.25 Gbps. If you establish multiple VPN tunnels to an ECMP-enabled transit gateway, it can scale beyond the default limit of 1.25 Gbps.
Hence, the correct answer is: Associate the VPCs to an Equal Cost Multipath Routing (ECMR)-enabled transit gateway and attach additional VPN tunnels.
The option that says: Add more virtual private gateways to a VPC and enable Equal Cost Multipath Routing (ECMR) to get higher VPN bandwidth is incorrect because a VPC can only have a single virtual private gateway attached to it one at a time. Also, there is no option to enable ECMR in a virtual private gateway.
The option that says: Modify the VPN configuration by increasing the number of tunnels to scale the throughput is incorrect. The maximum tunnel for a VPN connection is two. You cannot increase this beyond its limit.
The option that says: Re-route some of the VPN connections to a secondary customer gateway device on the remote network's end is incorrect. This would only increase connection redundancy and won't increase throughput. For example, connections can failover to the secondary customer gateway device in case the primary customer gateway device becomes unavailable. References:
https://aws.amazon.com/premiumsupport/knowledge-center/transit-gateway-ecmp-multiple-tunnels/
https://aws.amazon.com/blogs/networking-and-content-delivery/scaling-vpn-throughput-using-aws-transit
-gateway/
Check out this AWS Transit Gateway Cheat Sheet:
https://tutorialsdojo.com/aws-transit-gateway/


NEW QUESTION # 301
A company uses a 100 GB Amazon RDS for Microsoft SQL Server Single-AZ DB instance in the us-east-1 Region to store customer transactions. The company needs high availability and automate recovery for the DB instance.
The company must also run reports on the RDS database several times a year. The report process causes transactions to take longer than usual to post to the customer' accounts.
Which combination of steps will meet these requirements? (Select TWO.)

  • A. Migrate the database to RDS Custom.
  • B. Use RDS Proxy to limit reporting requests to the maintenance window.
  • C. Take a snapshot of the current DB instance. Restore the snapshot to a new RDS deployment in another Availability Zone.
  • D. Create a read replica of the DB instance in a different Availability Zone. Point All requests for reports to the read replica.
  • E. Modify the DB instance from a Single-AZ DB instance to a Multi-AZ deployment.

Answer: D,E

Explanation:
Explanation
https://medium.com/awesome-cloud/aws-difference-between-multi-az-and-read-replicas-in-amazon-rds-60fe848


NEW QUESTION # 302
A company uses a payment processing system that requires messages for a particular payment ID to be received in the same order that they were sent Otherwise, the payments might be processed incorrectly.
Which actions should a solutions architect take to meet this requirement? (Select TWO.)

  • A. Write the messages to an Amazon Simple Queue Service (Amazon SQS) queue Set the message attribute to use the payment ID
  • B. Write the messages to an Amazon DynamoDB table with the payment ID as the partition key
  • C. Write the messages to an Amazon Simple Queue Service (Amazon SQS) FIFO queue. Set the message group to use the payment ID.
  • D. Write the messages to an Amazon Kinesis data stream with the payment ID as the partition key.
  • E. Write the messages to an Amazon ElastiCache for Memcached cluster with the payment ID as the key

Answer: B,C


NEW QUESTION # 303
A company has an on-premises MySQL database that needs to be replicated in Amazon S3 as CSV files. Once data has been fully copied, ongoing changes to the database should be continually streamed into the S3 bucket. The company wants a solution that can be implemented with little management overhead yet still highly secure.
Which ingestion pattern should a solutions architect take?

  • A. Use AWS Schema Conversion Tool (AWS SCT) to convert MySQL data to CSV files. Set up the AWS Server Migration Service (AWS MGN) to capture ongoing changes from the on-premises MySQL database and send them to Amazon S3.
  • B. Set up a full load replication task using AWS Database Migration Service (AWS DMS). Add a new Certificate Authority (CA) certificate and create an AWS DMS endpoint with SSL.
  • C. Use an AWS Snowball Edge cluster to migrate data to Amazon S3 and AWS DataSync to capture ongoing changes. Create your own custom AWS KMS envelope encryption key for the associated AWS Snowball Edge job.
  • D. Create a full load and change data capture (CDC) replication task using AWS Database Migration Service (AWS DMS). Launch an AWS DMS endpoint with SSL using the AWS Network Firewall service.

Answer: B

Explanation:
AWS Database Migration Service (AWS DMS) is a cloud service that makes it easy to migrate relational databases, data warehouses, NoSQL databases, and other types of data stores. You can use AWS DMS to migrate your data into the AWS Cloud, between on-premises instances (through an AWS Cloud setup), or between combinations of cloud and on-premises setups. With AWS DMS, you can perform one-time migrations, and you can replicate ongoing changes to keep sources and targets in sync.
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You can migrate data to Amazon S3 using AWS DMS from any of the supported database sources.
When using Amazon S3 as a target in an AWS DMS task, both full load and change data capture (CDC) data is written to comma-separated value (.csv) format by default.
The comma-separated value (.csv) format is the default storage format for Amazon S3 target objects. For more compact storage and faster queries, you can instead use Apache Parquet (.parquet) as the storage format.
You can encrypt connections for source and target endpoints by using Secure Sockets Layer (SSL). To do so, you can use the AWS DMS Management Console or AWS DMS API to assign a certificate to an endpoint. You can also use the AWS DMS console to manage your certificates.
Not all databases use SSL in the same way. Amazon Aurora MySQL-Compatible Edition uses the server name, the endpoint of the primary instance in the cluster, as the endpoint for SSL. An Amazon Redshift endpoint already uses an SSL connection and does not require an SSL connection set up by AWS DMS Hence, the correct answer is Set up a full load replication task using AWS Database Migration Service (AWS DMS). Add a new Certificate Authority (CA) certificate and create an AWS DMS endpoint with SSL.
The option that says: Create a full load and change data capture (CDC) replication task using AWS Database Migration Service (AWS DMS). Launch an AWS DMS endpoint with SSL using the AWS Network Firewall service is incorrect because a full load replication task alone won't capture ongoing changes to the database. You still need to implement a change data capture (CDC) replication to copy the recent changes after the migration. Moreover, the AWS Network Firewall service is not capable of creating an AWS DMS endpoint with SSL. The Certificate Authority (CA) certificate can be directly uploaded to the AWS DMS console without the AWS Network Firewall at all.
The option that says: Use an AWS Snowball Edge cluster to migrate data to Amazon S3 and AWS DataSync to capture ongoing changes is incorrect. While this is doable, it's more suited to the migration of large databases which require the use of two or more Snowball Edge appliances. Also, the usage of AWS DataSync for replicating ongoing changes to Amazon S3 requires extra steps that can be simplified with AWS DMS.
The option that says: Use AWS Schema Conversion Tool (AWS SCT) to convert MySQL data to CSV files. Set up the AWS Application Migration Service (AWS MGN) to capture ongoing changes from the on-premises MySQL database and send them to Amazon S3 is incorrect. AWS SCT is not used for data replication, it just eases up the conversion of source databases to a format compatible with the target database when migrating. In addition, using the AWS Application Migration Service (AWS MGN) for this scenario is inappropriate. This service is primarily used for lift-and-shift migrations of applications from physical infrastructure, VMware vSphere, Microsoft Hyper-V, Amazon Elastic Compute Cloud (AmazonEC2), Amazon Virtual Private Cloud (Amazon VPC), and other clouds to AWS. References:
https://aws.amazon.com/blogs/big-data/loading-ongoing-data-lake-changes-with-aws-dms-and-aws-glue/
https://docs.aws.amazon.com/dms/latest/userguide/Welcome.html
https://docs.aws.amazon.com/dms/latest/userguide/CHAP_Security.html#CHAP_Security.SSL.Limitation s Check out this AWS Database Migration Service Cheat Sheet: https://tutorialsdojo.com/aws-database- migration-service/ AWS Migration Services Overview: https://youtu.be/yqNBkFMnsL8


NEW QUESTION # 304
A company has a web application that is based on Java and PHP The company plans to move the application from on premises to AWS The company needs the ability to test new site features frequently. The company also needs a highly available and managed solution that requires minimum operational overhead Which solution will meet these requirements?

  • A. Deploy the web application lo Amazon EC2 instances that are configured with Java and PHP Use Auto Scaling groups and an Application Load Balancer to manage the website's availability
  • B. Create an Amazon S3 bucket Enable static web hosting on the S3 bucket Upload the static content to the S3 bucket Use AWS Lambda to process all dynamic content
  • C. Containerize the web application Deploy the web application to Amazon EC2 instances Use the AWS Load Balancer Controller to dynamically route traffic between containers thai contain the new site features for testing
  • D. Deploy the web application to an AWS Elastic Beanstalk environment Use URL swapping to switch between multiple Elastic Beanstalk environments for feature testing

Answer: D


NEW QUESTION # 305
......

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