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Viewing page 7 out of 15 pages
Viewing questions 121-140 out of questions
Questions # 121:

A company has hired an external vendor to work in the company’s AWS account. The vendor uses an automated tool that the vendor hosts in its own AWS account. The vendor does not have IAM access to the company ' s AWS account. A solutions architect needs to grant access to the vendor.

Which solution will meet these requirements MOST securely?

Options:

A.

Create an IAM role in the company ' s account to delegate access to the vendor ' s IAM role. Attach the appropriate IAM policies to the new IAM role to grant the permissions that the vendor requires.

B.

Create an IAM user in the company ' s account with a password. Attach the appropriate IAM policies to the IAM user.

C.

Create an IAM group in the company ' s account. Add the IAM user for the vendor ' s automated tool from the vendor account to the IAM group. Attach policies to the group.

D.

Create a new identity provider (IdP) of provider type AWS account. Supply the vendor ' s AWS account ID and username. Attach policies to the IdP.

Questions # 122:

A company is running a business-critical web application on Amazon EC2 instances behind an Application Load Balancer. The EC2 instances are in an Auto Scaling group. The application uses an Amazon Aurora PostgreSQL database that is deployed in a single Availability Zone. The company wants the application to be highly available with minimum downtime and minimum loss of data.

Which solution will meet these requirements with the LEAST operational effort?

Options:

A.

Place the EC2 instances in different AWS Regions. Use Amazon Route 53 health checks to redirect traffic. Use Aurora PostgreSQL Cross-Region Replication.

B.

Configure the Auto Scaling group to use multiple Availability Zones. Configure the database as Multi-AZ. Configure an Amazon RDS Proxy instance for the database.

C.

Configure the Auto Scaling group to use one Availability Zone. Generate hourly snapshots of the database. Recover the database from the snapshots in the event of a failure.

D.

Configure the Auto Scaling group to use multiple AWS Regions. Write the data from the application to Amazon S3. Use S3 Event Notifications to launch an AWS Lambda function to write the data to the database.

Questions # 123:

A company runs a website on Amazon EC2 instances. Clients use the HTTP protocol to connect to the application. The company does not want the EC2 instances to have internet access. However, the application should remain available through the internet. The application must scale in response to traffic demands.

Which solution will meet these requirements?

Options:

A.

Host the application on EC2 instances in an Auto Scaling group behind an internet-facing Network Load Balancer (NLB). Launch the EC2 instances in public subnets that use an internet gateway.

B.

Host the application on EC2 instances in an Auto Scaling group behind an internet-facing Network Load Balancer (NLB). Launch the EC2 instances in private subnets that do not have internet access.

C.

Host the application on EC2 instances in an Auto Scaling group behind an internet-facing Application Load Balancer (ALB). Launch the EC2 instances in private subnets that do not have internet access.

D.

Host the application on EC2 instances in an Auto Scaling group behind an internet-facing Application Load Balancer (ALB). Launch the EC2 instances in public subnets that use an internet gateway.

Questions # 124:

Question:

An ecommerce company hosts an API that handles sales requests. The company hosts the API frontend on Amazon EC2 instances that run behind an Application Load Balancer (ALB). The company hosts the API backend on EC2 instances that perform the transactions. The backend tiers are loosely coupled by an Amazon Simple Queue Service (Amazon SQS) queue.

The company anticipates a significant increase in request volume during a new product launch event. The company wants to ensure that the API can handle increased loads successfully.

Options:

Options:

A.

Double the number of frontend and backend EC2 instances to handle the increased traffic during the product launch event. Create a dead-letter queue to retain unprocessed sales requests when the demand exceeds the system capacity.

B.

Place the frontend EC2 instances into an Auto Scaling group. Create an Auto Scaling policy to launch new instances to handle the incoming network traffic.

C.

Place the frontend EC2 instances into an Auto Scaling group. Add an Amazon ElastiCache cluster in front of the ALB to reduce the amount of traffic the API needs to handle.

D.

Place the frontend and backend EC2 instances into separate Auto Scaling groups. Create a policy for the frontend Auto Scaling group to launch instances based on incoming network traffic. Create a policy for the backend Auto Scaling group to launch instances based on the SQS queue backlog.

Questions # 125:

A company is designing a secure solution to grant access to its Amazon RDS for PostgreSQL database. Applications that run on Amazon EC2 instances must be able to securely authenticate to the database without storing long-term credentials.

Which solution will meet these requirements?

Options:

A.

Enable RDS IAM authentication and configure AWS Secrets Manager to store database credentials. Configure applications to retrieve credentials at runtime.

B.

Configure a custom IAM policy for the database that allows access from the EC2 instances ' IP addresses. Configure applications to use a static password to authenticate to the database.

C.

Set up an IAM user for each application. Store the access key ID and secret access key in the EC2 instances ' environment variables. Grant the IAM users permission to the database.

D.

Use IAM roles to assign permissions to the EC2 instances. Configure the applications to obtain a token from the RDS database to authenticate by using IAM authentication.

Questions # 126:

A company needs to migrate its customer transactions database from on-premises to AWS. The database resides on an Oracle DB instance that runs on a Linux server. According to a new security requirement, the company must rotate the database password each year.

Which solution will meet these requirements with the LEAST operational overhead?

Options:

A.

Convert the database to Amazon DynamoDB by using AWS Schema Conversion Tool (AWS SCT). Store the password in AWS Systems Manager Parameter Store. Create an Amazon CloudWatch alarm to invoke an AWS Lambda function for yearly password rotation.

B.

Migrate the database to Amazon RDS for Oracle. Store the password in AWS Secrets Manager. Turn on automatic rotation. Configure a yearly rotation schedule.

C.

Migrate the database to an Amazon EC2 instance. Use AWS Systems Manager Parameter Store to keep and rotate the connection string by using an AWS Lambda function on a yearly schedule.

D.

Migrate the database to Amazon Neptune by using AWS Schema Conversion Tool (AWS SCT). Create an Amazon CloudWatch alarm to invoke an AWS Lambda function for yearly password rotation.

Questions # 127:

A company runs an ecommerce application on Amazon EC2 instances behind an Application Load Balancer. The instances run in an Amazon EC2 Auto Scaling group across multiple Availability Zones. The Auto Scaling group scales based on CPU utilization metrics. The ecommerce application stores the transaction data in a MySQL 8.0 database that is hosted on a large EC2 instance.

The database ' s performance degrades quickly as application load increases. The application handles more read requests than write transactions. The company wants a solution that will automatically scale the database to meet the demand of unpredictable read workloads while maintaining high availability.

Options:

A.

Use Amazon Redshift with a single node for leader and compute functionality.

B.

Use Amazon RDS with a Single-AZ deployment. Configure Amazon RDS to add reader instances in a different Availability Zone.

C.

Use Amazon Aurora with a Multi-AZ deployment. Configure Aurora Auto Scaling with Aurora Replicas.

D.

Use Amazon ElastiCache (Memcached) with EC2 Spot Instances.

Questions # 128:

A company runs several applications on Amazon EC2 instances. The company stores configuration files in an Amazon S3 bucket.

A solutions architect must provide the company ' s applications with access to the configuration files. The solutions architect must follow AWS best practices for security.

Which solution will meet these requirements?

Options:

A.

Use the AWS account root user access keys.

B.

Use the AWS access key ID and the EC2 secret access key.

C.

Use an IAM role to grant the necessary permissions to the applications.

D.

Activate multi-factor authentication (MFA) and versioning on the S3 bucket.

Questions # 129:

A company hosts a database that runs on an Amazon RDS instance deployed to multiple Availability Zones. A periodic script negatively affects a critical application by querying the database. How can application performance be improved with minimal costs?

Options:

A.

Add functionality to the script to identify the instance with the fewest active connections and query that instance.

B.

Create a read replica of the database. Configure the script to query only the read replica.

C.

Instruct the development team to manually export new entries at the end of the day.

D.

Use Amazon ElastiCache to cache the common queries the script runs.

Questions # 130:

An analytics company wants to deploy a custom extract, transform, and load ETL solution as a containerized application on AWS. The application requires high-performance access to files that are in a centralized repository. File processing can take up to 1 hour to finish. Which solution will meet these requirements?

Options:

A.

Deploy an AWS Lambda function from a container image. Create and attach an Amazon EFS file system to the function.

B.

Deploy containers on Amazon ECS with the Amazon EC2 launch type. Configure the EC2 instances to use instance store volumes.

C.

Deploy containers on Amazon ECS with the AWS Fargate launch type. Mount an Amazon EFS file system to the containers.

D.

Create an Amazon S3 Express One Zone bucket to store the files. Deploy an AWS Lambda function from a container image. Process files from the S3 Express One Zone bucket.

Questions # 131:

An ecommerce company hosts an analytics application on AWS. The company deployed the application to one AWS Region. The application generates 300 MB of data each month. The application stores the data in JSON format. The data must be accessible in milliseconds when needed. The company must retain the data for 30 days. The company requires a disaster recovery solution to back up the data.

Options:

A.

Deploy an Amazon OpenSearch Service cluster in the primary Region and in a second Region. Enable OpenSearch Service cluster replication. Configure the clusters to expire data after 30 days. Modify the application to use OpenSearch Service to store the data.

B.

Deploy an Amazon S3 bucket in the primary Region and in a second Region. Enable versioning on both buckets. Use the Standard storage class. Configure S3 Lifecycle policies to expire objects after 30 days. Configure S3 Cross-Region Replication from the bucket in the primary bucket to the backup bucket.

C.

Deploy an Amazon Aurora PostgreSQL global database. Configure cluster replication between the primary Region and a second Region. Use a replicated cluster endpoint during outages in the primary Region.

D.

Deploy an Amazon RDS for PostgreSQL cluster in the same Region where the application is deployed. Configure a read replica in a second Region as a backup.

Questions # 132:

A healthcare company is running an Amazon EMR cluster on Amazon EC2 instances to process data that is stored in Amazon S3. The company must ensure that the data processing jobs have access only to the relevant data in Amazon S3. Each job must have specific EMR runtime roles.

Which combination of steps will meet these requirements? (Select THREE.)

Options:

A.

Set up security configurations in Amazon EMR, and set EnableApplicationScopedIAMRole to true.

B.

Set up runtime roles to assume the EC2 instance profile of the Amazon EMR cluster.

C.

Set up an EC2 instance profile for the Amazon EMR cluster to assume the runtime roles.

D.

For each IAM role that serves as an EMR runtime role, set up a trust policy with the EC2 instance profile role.

E.

Establish a trust policy between the EMR runtime roles and the EMR service role of the cluster.

F.

Set up security configurations in Amazon EMR, and set EnableInTransitEncryption to true.

Questions # 133:

A company is migrating applications from an on-premises Microsoft Active Directory that the company manages to AWS. The company deploys the applications in multiple AWS accounts. The company uses AWS Organizations to manage the accounts centrally.

The company ' s security team needs a single sign-on solution across all the company ' s AWS accounts. The company must continue to manage users and groups that are in the on-premises Active Directory

Which solution will meet these requirements?

Options:

A.

Create an Enterprise Edition Active Directory in AWS Directory Service for Microsoft Active Directory. Configure the Active Directory to be the identity source for AWS IAM Identity Center

B.

Enable AWS IAM Identity Center. Configure a two-way forest trust relationship to connect the company ' s self-managed Active Directory with IAM Identity Center by using AWS Directory Service for Microsoft Active Directory.

C.

Use AWS Directory Service and create a two-way trust relationship with the company ' s self-managed Active Directory.

D.

Deploy an identity provider (IdP) on Amazon EC2. Link the IdP as an identity source within AWS IAM Identity Center.

Questions # 134:

A company is planning to deploy its application on an Amazon Aurora PostgreSQL Serverless v2 cluster. The application will receive large amounts of traffic. The company wants to optimize the storage performance of the cluster as the load on the application increases

Which solution will meet these requirements MOST cost-effectively?

Options:

A.

Configure the cluster to use the Aurora Standard storage configuration.

B.

Configure the cluster storage type as Provisioned IOPS.

C.

Configure the cluster storage type as General Purpose.

D.

Configure the cluster to use the Aurora l/O-Optimized storage configuration.

Questions # 135:

A company receives data transfers from a small number of external clients that use SFTP software on an Amazon EC2 instance. The clients use an SFTP client to upload data. The clients use SSH keys for authentication. Every hour, an automated script transfers new uploads to an Amazon S3 bucket for processing.

The company wants to move the transfer process to an AWS managed service and to reduce the time required to start data processing. The company wants to retain the existing user management and SSH key generation process. The solution must not require clients to make significant changes to their existing processes.

Which solution will meet these requirements?

Options:

A.

Reconfigure the script that runs on the EC2 instance to run every 15 minutes. Create an S3 Event Notifications rule for all new object creation events. Set an Amazon Simple Notification Service (Amazon SNS) topic as the destination.

B.

Create an AWS Transfer Family SFTP server that uses the existing S3 bucket as a target. Use service-managed users to enable authentication.

C.

Require clients to add the AWS DataSync agent into their local environments. Create an IAM user for each client that has permission to upload data to the target S3 bucket.

D.

Create an AWS Transfer Family SFTP connector that has permission to access the target S3 bucket for each client. Store credentials in AWS Systems Manager. Create an IAM role to allow the SFTP connector to securely use the credentials.

Questions # 136:

A company wants to migrate its on-premises Oracle database to Amazon Aurora. The company wants to use a secure and encrypted network to transfer the data. Which combination of steps will meet these requirements? (Select TWO.)

Options:

A.

Use AWS Application Migration Service to migrate the data.

B.

Use AWS Schema Conversion Tool (AWS SCT) and AWS Database Migration Service (AWS DMS) to migrate the data.

C.

Use AWS Direct Connect SiteLink to transfer data from the on-premises environment to AWS.

D.

Use AWS Site-to-Site VPN to establish a connection to transfer the data from the on-premises environment to AWS.

E.

Use AWS App2Container to migrate the data.

Questions # 137:

A company is designing a new Amazon Elastic Kubernetes Service (Amazon EKS) deployment to host multi-tenant applications that use a single cluster. The company wants to ensure that each pod has its own hosted environment. The environments must not share CPU, memory, storage, or elastic network interfaces.

Which solution will meet these requirements?

Options:

A.

Use Amazon EC2 instances to host self-managed Kubernetes clusters. Use taints and tolerations to enforce isolation boundaries.

B.

Use Amazon EKS with AWS Fargate. Use Fargate to manage resources and to enforce isolation boundaries.

C.

Use Amazon EKS and self-managed node groups. Use taints and tolerations to enforce isolation boundaries.

D.

Use Amazon EKS and managed node groups. Use taints and tolerations to enforce isolation boundaries.

Questions # 138:

A company is creating a payment processing application that supports TLS connections from IPv4 clients. The application requires outbound access to the public internet. The application must allow users to access the application from a single entry point while maintaining the lowest possible attack surface.

The company wants to use Amazon ECS tasks to deploy the application. The company wants to enable awsvpc network mode.

Which solution will meet these requirements?

Options:

A.

Create a VPC that has an internet gateway, public subnets, and private subnets. Deploy a Network Load Balancer (NLB) and a NAT gateway in the public subnets. Deploy the ECS tasks in the private subnets.

B.

Create a VPC that has an egress-only internet gateway, public subnets, and private subnets. Deploy an Application Load Balancer (ALB) and a NAT gateway in the public subnets. Deploy the ECS tasks in the private subnets.

C.

Create a VPC that has an internet gateway, public subnets, and private subnets. Deploy an Application Load Balancer (ALB) in the public subnets. Deploy the ECS tasks in the public subnets.

D.

Create a VPC that has an egress-only internet gateway, public subnets, and private subnets. Deploy a Network Load Balancer (NLB) in the public subnets. Deploy the ECS tasks in the public subnets.

Questions # 139:

A company has an API that receives real-time data from a fleet of monitoring devices. The API stores this data in an Amazon RDS DB instance for later analysis. The amount of data that the monitoring devices send to the API fluctuates. During periods of heavy traffic, the API often returns timeout errors.

After an inspection of the logs, the company determines that the database is not capable of processing the volume of write traffic that comes from the API. A solutions architect must minimize the number of connections to the database and must ensure that data is not lost during periods of heavy traffic.

Options:

A.

Increase the size of the DB instance to an instance type that has more available memory.

B.

Modify the DB instance to be a Multi-AZ DB instance. Configure the application to write to all active RDS DB instances.

C.

Modify the API to write incoming data to an Amazon Simple Queue Service (Amazon SQS) queue. Use an AWS Lambda function that Amazon SQS invokes to write data from the queue to the database.

D.

Modify the API to write incoming data to an Amazon Simple Notification Service (Amazon SNS) topic. Use an AWS Lambda function that Amazon SNS invokes to write data from the topic to the database.

Questions # 140:

A company has a three-tier web application that processes orders from customers. The web tier consists of Amazon EC2 instances behind an Application Load Balancer. The processing tier consists of EC2 instances. The company decoupled the web tier and processing tier by using Amazon Simple Queue Service (Amazon SQS). The storage layer uses Amazon DynamoDB.

At peak times some users report order processing delays and halts. The company has noticed that during these delays, the EC2 instances are running at 100% CPU usage, and the SQS queue fills up. The peak times are variable and unpredictable.

The company needs to improve the performance of the application

Which solution will meet these requirements?

Options:

A.

Use scheduled scaling for Amazon EC2 Auto Scaling to scale out the processing tier instances for the duration of peak usage times. Use the CPU Utilization metric to determine when to scale.

B.

Use Amazon ElastiCache for Redis in front of the DynamoDB backend tier. Use target utilization as a metric to determine when to scale.

C.

Add an Amazon CloudFront distribution to cache the responses for the web tier. Use HTTP latency as a metric to determine when to scale.

D.

Use an Amazon EC2 Auto Scaling target tracking policy to scale out the processing tier instances. Use the ApproximateNumberOfMessages attribute to determine when to scale.

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Viewing questions 121-140 out of questions
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