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Tag Archives: Cloud-Deployment-and-Operations valid test braindumps

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[Dec-2025] Cloud-Deployment-and-Operations Dumps With 100% Verified Q&As – Pass Guarantee or Full Refund [Q24-Q46]

[Dec-2025] Cloud-Deployment-and-Operations Dumps With 100% Verified Q&As – Pass Guarantee or Full Refund [Q24-Q46]

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Pass WGU Cloud-Deployment-and-Operations Exam With Practice Test Questions Dumps Bundle

NEW QUESTION 24
(Which two solutions should an administrator use to receive emails when a Lambda function returns an error?
Choose 2 answers.)

 
 
 
 
To receive emails when a Lambda function returns an error, the administrator should use Amazon CloudWatch to monitor the function’s logs and metrics (e.g., errors) and Amazon Simple Notification Service (SNS) to send email notifications based on CloudWatch alarms. The WGU Cloud Deployment and Operations Study Guide (Section 4.3, CloudWatch and SNS) states, “CloudWatch can detect Lambda errors via logs and trigger an alarm, which integrates with SNS to send email notifications to subscribed endpoints, ensuring timely error alerts.” SQS and CloudTrail are not designed for this notification workflow.

NEW QUESTION 25
(Which performance optimization method must be used when uploading files larger than 5 GB to S3?)

 
 
 
 
Multipart uploads must be used when uploading files larger than 5 GB to Amazon S3, as this method splits the file into smaller parts for parallel upload, improving reliability and performance. The WGU Cloud Deployment and Operations Study Guide (Section 2.1, S3 Uploads) states, “For files exceeding 5 GB, multipart upload is required in S3, allowing the file to be divided into parts (minimum 5 MB each) for concurrent uploads, ensuring efficient and resumable transfers.” Glacier Select, Transfer Acceleration, and Intelligent-Tiering are not designed for this upload optimization.

NEW QUESTION 26
(What should be used to monitor estimated AWS charges?)

 
 
 
 
Comprehensive and Detailed Explanation From Exact Extract:
A Billing alarm in Amazon CloudWatch should be used to monitor estimated AWS charges by setting thresholds on cost metrics and triggering notifications when exceeded. This helps manage budgets effectively.
The WGU Cloud Deployment and Operations Study Guide (Section 7.4, Cost Monitoring) states, “Billing alarms in CloudWatch monitor estimated charges against a defined threshold, sending alerts via SNS to prevent cost overruns.” Cognito handles user authentication, Pricing Calculator estimates costs pre- deployment, and Forecast predicts usage, none of which monitor real-time charges.

NEW QUESTION 27
(Which service should be used to schedule the patching of EC2 instances and on-premises servers with security updates?)

 
 
 
 
AWS Systems Manager should be used to schedule the patching of EC2 instances and on-premises servers with security updates, utilizing features like Patch Manager and maintenance windows. This service supports hybrid environments and automated patch deployment. The WGU Cloud Deployment and Operations Study Guide (Section 5.2, Systems Manager Patch Manager) states, “Systems Manager provides Patch Manager to schedule and deploy security updates to EC2 instances and on-premises servers during maintenance windows, ensuring consistent patching across hybrid environments.” EventBridge, Config, and App Runner do not offer this patching capability.

NEW QUESTION 28
(Which component should be used to configure email notifications for a trigger by Amazon Made?)

 
 
 
 
Amazon EventBridge should be used to configure email notifications for a trigger by Amazon Made, as it can route events to targets like Amazon SNS (Simple Notification Service) for email delivery. EventBridge integrates with AWS services to handle event-driven notifications. The WGU Cloud Deployment and Operations Study Guide (Section 4.3, EventBridge) states, “EventBridge can be configured to send events from Amazon Made to SNS, enabling email notifications by subscribing an email endpoint to the SNS topic.” SQS, EKS, and CodeDeploy do not support this notification configuration.

NEW QUESTION 29
(What is used to change stacks across multiple accounts and Regions in a single operation?)

 
 
 
 
Comprehensive and Detailed Explanation From Exact Extract:
StackSets are used to change stacks across multiple AWS accounts and regions in a single operation, enabling centralized management of infrastructure deployments. StackSets allow administrators to create, update, or delete stacks consistently across specified accounts and regions. The WGU Cloud Deployment and Operations Study Guide (Section 5.4, StackSets) states, “StackSets provide the capability to manage and update stacks across multiple accounts and regions with a single operation, streamlining multi-region deployments.” StackInstance, nested stacks, and stack policies do not support this multi-account, multi-region functionality.

NEW QUESTION 30
(A cloud engineer needs to notify the response team whenever a high-security web server responds with a 403 Forbidden error. Which two steps can enable this functionality? Choose 2 answers.)

 
 
 
 
To notify a response team when a high-security web server returns a 403 Forbidden error, two key steps are required. First, define a metric filter for Apache logs in CloudWatch to detect the 403 error code within the log data. This involves setting up a filter pattern to match “403” in the Apache access logs. Second, create an alarm for the metric filter and configure it to deliver alerts using Amazon SNS, which supports email or other notifications to the response team. The WGU Cloud Deployment and Operations Study Guide (Section 4.2, CloudWatch Logs and Alarms) confirms that metric filters and SNS-integrated alarms are the standard approach for monitoring and alerting on log-based events. Options B and D are incorrect as they involve unnecessary or unsupported configurations (e.g., binding Lambda to Apache or using SQS for alarms).

NEW QUESTION 31
(What should be configured in Systems Manager to set the error threshold for automation documents?)

 
 
 
 
In AWS Systems Manager, the error threshold for automation documents is configured using rate control.
Rate control allows administrators to define the maximum number of errors or concurrent executions that can occur before an automation task is throttled or stopped, ensuring system stability. The WGU Cloud Deployment and Operations Study Guide (Section 5.1, Systems Manager Automation) explicitly states, “Rate control settings in Automation documents can be used to specify the maximum number of errors allowed during execution, helping to manage error thresholds effectively.” Resource groups, session preferences, and maintenance windows do not directly address error thresholds.

NEW QUESTION 32
(Which two protocols are supported in security group rules? Choose 2 answers.)

 
 
 
 
Security group rules in AWS support the Internet Control Message Protocol (ICMP) and User Datagram Protocol (UDP) for defining inbound and outbound traffic rules. These protocols are commonly used for network communication and monitoring. The WGU Cloud Deployment and Operations Study Guide (Section
3.2, Security Groups) states, “Security groups support protocols like ICMP for diagnostic traffic and UDP for streaming or low-latency applications, allowing fine-grained control over instance access.” BGP and MPLS are routing or network layer protocols not supported by security group rules.

NEW QUESTION 33
(A company has deployed an application to AWS and a standby instance to its on-premises data center. The on-premises infrastructure is a scaled-down version of the AWS infrastructure. Which routing policy in Route
53 will allow the company to send 75% of the load to AWS and the remaining 25% to its on-premises infrastructure?)

 
 
 
 
The weighted routing policy in Amazon Route 53 allows the company to distribute traffic with specific percentages, such as 75% to AWS and 25% to the on-premises infrastructure, by assigning weights to each resource record. This enables load balancing across hybrid environments. The WGU Cloud Deployment and Operations Study Guide (Section 3.1, Route 53 Routing Policies) states, “Weighted routing policy assigns weights to resource record sets (e.g., 75 for AWS, 25 for on-premises), controlling the percentage of traffic directed to each endpoint.” Geolocation, failover, and simple policies do not support percentage-based traffic splitting.

NEW QUESTION 34
(A company configures the CloudFront caching TTL to the following settings: Min: 0, Max: 172800. An administrator updates the Cache-Control setting to 432000. However, objects are only cached for 48 hours.
What is required to ensure objects are cached for up to 120 hours?)

 
 
 
 
Comprehensive and Detailed Explanation From Exact Extract:
In Amazon CloudFront, the caching TTL is controlled by the minimum and maximum TTL settings, with the maximum TTL (in seconds) capping the cache duration. The current Max TTL is 172800 seconds (48 hours), and the Cache-Control setting of 432000 seconds (120 hours) is ignored because it exceeds the Max TTL. To cache objects for up to 120 hours, the Max setting must be configured to 432000 seconds. The WGU Cloud Deployment and Operations Study Guide (Section 4.4, CloudFront Caching) states, “The maximum TTL in CloudFront settings (e.g., 172800 seconds) overrides any higher Cache-Control value; to allow 120 hours (432000 seconds), the Max TTL must be set accordingly.” Adjusting Min, expiration, or Cache-Control alone does not resolve this.

NEW QUESTION 35
(A company builds an application that renders 3D movies for its users. The application does this by spawning a fleet of instances that each take a slice of the workload and then render a few hundred frames in around 30 minutes. If processing on a node is interrupted, the work can be moved to other running nodes. The cost to users is based on the underlying AWS cost plus a margin. Which EC2 instance type is most suitable to run workload pattern at the lowest cost?)

 
 
 
 
Comprehensive and Detailed Explanation From Exact Extract:
Spot Instances are the most suitable EC2 instance type for this workload pattern, offering the lowest cost for short, interruptible tasks like 3D rendering, where work can be redistributed if interrupted. This aligns with the company’s cost-plus pricing model. The WGU Cloud Deployment and Operations Study Guide (Section
7.3, EC2 Instance Types) states, “Spot Instances provide significant cost savings (up to 90% off On-Demand) for fault-tolerant, short-term workloads like rendering, where interruptions can be handled by redistributing tasks to other nodes.” On-Demand, Dedicated, and Reserved Instances are more expensive and less flexible for this use case.

NEW QUESTION 36
(An administrator plans to deploy a database to AWS that supports the following: multiple Availability Zones, a standby database instance that provides failover support, a database instance that allows only read-only connections. Which two database solutions should the administrator use? Choose 2 answers.)

 
 
 
 
To meet the requirements, the administrator should use an Amazon RDS Multi-AZ DB instance for multiple Availability Zones and failover support, and an Amazon Aurora DB instance with Aurora Replica for a read- only connection. The RDS Multi-AZ configuration automatically provisions a standby instance in a different AZ for failover, while Aurora Replicas provide read-only instances for scaling read traffic. The WGU Cloud Deployment and Operations Study Guide (Section 7.1, RDS and Aurora) states, “RDS Multi-AZ deploys a standby instance across AZs for failover, and Aurora Replicas are read-only instances that enhance performance by offloading read traffic from the primary instance.” Options A and D are incorrect as multi- master replication and Multi-AZ clusters do not align with the read-only requirement.

NEW QUESTION 37
(An administrator needs to deploy a NAT gateway in an existing VPC subnet. Which two tasks should this administrator perform during deployment? Choose 2 answers.)

 
 
 
 
To deploy a NAT gateway in an existing VPC subnet, the administrator must assign an elastic IP address to the NAT gateway for public internet access and configure the route table associated with the subnet to route traffic through the NAT gateway. The WGU Cloud Deployment and Operations Study Guide (Section 3.2, NAT Gateway) states, “Deployment of a NAT gateway requires an elastic IP address for outbound internet connectivity and a route table update to direct private subnet traffic to the NAT gateway (e.g., 0.0.0.0/0 via NAT).” Private IP assignment and ACL configuration are not required steps.

NEW QUESTION 38
(Which solution is used to protect a server from Layer 7 attacks?)

 
 
 
 
AWS WAF (Web Application Firewall) is used to protect a server from Layer 7 (application layer) attacks, such as SQL injection or cross-site scripting, by filtering HTTP/HTTPS traffic based on defined rules. The WGU Cloud Deployment and Operations Study Guide (Section 6.2, AWS WAF) states, “WAF protects web applications at Layer 7 by inspecting and blocking malicious requests, such as those involving SQL injection or XSS, when integrated with ALB or CloudFront.” Shield protects against DDoS (Layer 3/4), CloudWatch monitors metrics, and KMS key rotation manages encryption, none of which address Layer 7 attacks.

NEW QUESTION 39
(What needs to be configured in Systems Manager to run Automation documents on schedule?)

 
 
 
 
To run Automation documents on a schedule in AWS Systems Manager, a maintenance window must be configured. Maintenance windows define the time periods during which automated tasks, including the execution of Automation documents, can run. The WGU Cloud Deployment and Operations Study Guide (Section 5.2, Maintenance Windows) explains that maintenance windows are used to schedule and control the execution of Systems Manager tasks, ensuring they align with operational windows. Rate control, session preferences, and resource groups are not used for scheduling automation tasks.

NEW QUESTION 40
(A company that uses five Elastic IP addresses does not want to request more from AWS. Which solution should be used to route requests to a healthy endpoint?)

 
 
 
 
To route requests to a healthy endpoint without requesting additional Elastic IP addresses, the company should register a DNS name to an auto-assigned public IP address using a service like Route 53. This leverages dynamic DNS to distribute traffic, reducing reliance on fixed EIPs. The WGU Cloud Deployment and Operations Study Guide (Section 3.1, Route 53) states, “Registering a DNS name with an auto-assigned public IP in Route 53 allows traffic routing to healthy instances, avoiding the need for additional Elastic IP addresses.” TTL adjustment, route table edits, and Systems Manager are not relevant solutions.

NEW QUESTION 41
(Which solution sends DNS queries to separate AWS compute instances?)

 
 
 
 
Amazon Route 53 is the AWS solution that sends DNS queries to separate AWS compute instances by leveraging routing policies to distribute traffic across multiple resources. It acts as a scalable Domain Name System (DNS) service, directing queries to healthy instances based on configurations like latency or weighted routing. The WGU Cloud Deployment and Operations Study Guide (Section 3.1, Route 53) states, “Route 53 uses DNS to route end-user requests to multiple AWS compute instances, supporting features like health checks and traffic distribution.” Elastic Beanstalk, CloudWatch, and EC2 Auto Scaling do not perform DNS query routing.

NEW QUESTION 42
(Which feature should be configured to deploy a static website to AWS?)

 
 
 
 
Comprehensive and Detailed Explanation From Exact Extract:
To deploy a static website to AWS, the bucket properties of an Amazon S3 bucket should be configured, specifically enabling static website hosting. This involves setting the bucket policy to allow public read access and configuring the index and error documents. The WGU Cloud Deployment and Operations Study Guide (Section 2.1, S3 Static Website Hosting) states, “Configuring bucket properties for static website hosting in S3 involves enabling the website endpoint, setting an index document (e.g., index.html), and applying a bucket policy for public access, making it suitable for hosting static content.” RDS Proxy, S3 Versioning, and CloudTrail events are not relevant to this use case.

NEW QUESTION 43
(An AWS SysOps administrator needs to configure Amazon Route 53 to load balance customer requests across multiple identically configured websites. The load balancing method must ensure that the customer requests are directed to the website that offers the shortest round-trip time. Which routing policy should be used?)

 
 
 
 
The latency routing policy in Amazon Route 53 should be used to direct customer requests to the website with the shortest round-trip time (RTT). This policy routes traffic to the AWS region with the lowest latency based on the user’s location, optimizing performance. The WGU Cloud Deployment and Operations Study Guide (Section 3.1, Route 53 Routing Policies) states, “The latency-based routing policy in Route 53 measures RTT to direct users to the region with the lowest latency, improving user experience across multiple websites.” Geolocation, geoproximity, and weighted policies do not prioritize RTT in this manner.

NEW QUESTION 44
(Where does Patch Manager send compliance reports?)

 
 
 
 
Patch Manager in AWS Systems Manager sends compliance reports to an Amazon S3 bucket, where they are stored for auditing and analysis. This allows administrators to track patch compliance status across EC2 instances and on-premises servers. The WGU Cloud Deployment and Operations Study Guide (Section 5.2, Patch Manager) states, “Patch Manager compliance reports are delivered to an S3 bucket configured as a target, providing a centralized location for reviewing patch status and compliance data.” OpsWorks, EBS, and Route 53 are not used for storing these reports.

NEW QUESTION 45
(How are custom metrics grouped in CloudWatch?)

 
 
 
 
In Amazon CloudWatch, custom metrics are organized and grouped using namespaces. A namespace is a container for CloudWatch metrics that allows you to isolate and categorize metrics from different applications or services. According to the WGU Cloud Deployment and Operations Study Guide (Section 4.1, CloudWatch Metrics), each custom metric must be assigned to a namespace, which acts as a unique identifier to prevent naming collisions and facilitate metric management. Options like Service, Date, and Value are not used for grouping metrics in this context.

NEW QUESTION 46
(A company is using the CloudWatch agent on its EC2 Linux instances. The company needs to determine how long read requests have waited on the instance’s I/O for proper sizing of the instance. Which metric should the company use?)

 
 
 
 
The `disk_io_time` metric, collected by the CloudWatch agent on EC2 Linux instances, measures the total time (in milliseconds) that read and write requests have waited on I/O, helping to assess disk performance for instance sizing. The WGU Cloud Deployment and Operations Study Guide (Section 4.1, CloudWatch Agent Metrics) states, “The `disk_io_time` metric, available via the CloudWatch agent, tracks the time spent waiting for I/O operations, providing insight into disk contention for optimizing EC2 instance sizing.” disk_read_ops, diskio_reads, and diskio_read_bytes measure operation counts or bytes, not wait times.

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