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Download MuleSoft Certified Integration Architect - Level 1 Exam Dumps

NEW QUESTION 44
An Organization has previously provisioned its own AWS VPC hosting various servers. The organization now needs to use Cloudhub to host a Mule application that will implement a REST API once deployed to Cloudhub, this Mule application must be able to communicate securely with the customer-provisioned AWS VPC resources within the same region, without being interceptable on the public internet.
What Anypoint Platform features should be used to meet these network communication requirements between Cloudhub and the existing customer-provisioned AWS VPC?

  • A. Add a default API Whitelisting policy to API Manager to automatically whitelist the customer provisioned AWS VPC IP ranges needed by the Mule applicaton
  • B. Add a Mulesoft hosted Anypoint VPC configured and with VPC Peering to the AWS VPC
  • C. Configure an external identity provider (IDP) in Anypoint Platform with certificates from the customer provisioned AWS VPC
  • D. Use VM queues in the Mule application to allow any non-mule assets within the customer provisioned AWS VPC to subscribed to and receive messages

Answer: A

 

NEW QUESTION 45
An organization is designing an integration Mule application to process orders by submitting them to a back-end system for offline processing. Each order will be received by the Mule application through an HTTPS POST and must be acknowledged immediately. Once acknowledged, the order will be submitted to a back-end system. Orders that cannot be successfully submitted due to rejections from the back-end system will need to be processed manually (outside the back-end system).
The Mule application will be deployed to a customer-hosted runtime and is able to use an existing ActiveMQ broker if needed. The ActiveMQ broker is located inside the organization's firewall. The back-end system has a track record of unreliability due to both minor network connectivity issues and longer outages.
What idiomatic (used for their intended purposes) combination of Mule application components and ActiveMQ queues are required to ensure automatic submission of orders to the back-end system while supporting but minimizing manual order processing?

  • A. One or more On Error scopes to assist calling the back-end system
    One or more ActiveMQ long-retry queues
    A persistent dead-letter object store configured in the CloudHub Object Store service
  • B. A Batch Job scope to call the back-end system
    An Until Successful scope containing Object Store components for long retries A dead-letter object store configured in the Mule application
  • C. One or more On Error scopes to assist calling the back-end system
    An Until Successful scope containing VM components for long retries
    A persistent dead-letter VM queue configured in CloudHub
  • D. An Until Successful scope to call the back-end system
    One or more ActiveMQ long-retry queues
    One or more ActiveMQ dead-letter queues for manual processing

Answer: D

 

NEW QUESTION 46
An organization will deploy Mule applications to Cloudhub, Business requirements mandate that all application logs be stored ONLY in an external splunk consolidated logging service and NOT in Cloudhub.
In order to most easily store Mule application logs ONLY in Splunk, how must Mule application logging be configured in Runtime Manager, and where should the log4j2 splunk appender be defined?

  • A. Disable Cloudhub logging in Runtime Manager
    Define the splunk appender in ONE global log4j.xml file that is uploaded once to Runtime Manger to support at Mule application deployments.
  • B. Keep the default logging configuration in Runtime Manager
    Define the Splunk appender in EACH Mule application log4j2.xml file
  • C. Keep the default logging configuration in RuntimeManager
    Define the splunk appender in ONE global log4j.xml file that is uploaded once to Runtime Manager to support at Mule application deployments.
  • D. Disable Cloudhub logging in Runtime Manager
    Define the splunk appender in EACH Mule application's log4j2.xml file

Answer: D

Explanation:
By default, CloudHub replaces a Mule application's log4j2.xml file with a CloudHub log4j2.xml file. In CloudHub, you can disable the CloudHub provided Mule application log4j2 file. This allows integrating Mule application logs with custom or third-party log management systems

 

NEW QUESTION 47
Refer to the exhibit. A Mule 4 application has a parent flow that breaks up a JSON array payload into 200 separate items, then sends each item one at a time inside an Async scope to a VM queue.
A second flow to process orders has a VM Listener on the same VM queue. The rest of this flow processes each received item by writing the item to a database.
This Mule application is deployed to four CloudHub workers with persistent queues enabled.
What message processing guarantees are provided by the VM queue and the CloudHub workers, and how are VM messages routed among the CloudHub workers for each invocation of the parent flow under normal operating conditions where all the CloudHub workers remain online?
MCIA-Level-1-9574e92085dabcda516aea5178e819c9.jpg

  • A. EACH item VM message is processed AT MOST ONCE by ONE CloudHub worker, with workers chosen in a deterministic round-robin fashion Each of the four CloudHub workers can be expected to process 1/4 of the item VM messages (about 50 items)
  • B. EACH item VM message is processed AT LEAST ONCE by ONE ARBITRARY CloudHub worker Each of the four CloudHub workers can be expected to process some item VM messages
  • C. ALL item VM messages are processed AT MOST ONCE by ONE ARBITRARY CloudHub worker This one CloudHub worker processes ALL 200 item VM messages
  • D. ALL item VM messages are processed AT LEAST ONCE by the SAME CloudHub worker where the parent flow was invoked This one CloudHub worker processes ALL 200 item VM messages

Answer: D

 

NEW QUESTION 48
Refer to the exhibit.
MCIA-Level-1-0b2b65199ca1319f7735999883be25b2.jpg
MCIA-Level-1-379f8461beb5bc54980c5bd88cc25eb2.jpg
A business process involves two APIs that interact with each other asynchronously over HTTP. Each API is implemented as a Mule application. API 1 receives the initial HTTP request and invokes API 2 (in a fire and forget fashion) while API 2, upon completion of the processing, calls back into API l to notify about completion of the asynchronous process.
Each API Is deployed to multiple redundant Mule runtimes and a separate load balancer, and is deployed to a separate network zone.
In the network architecture, how must the firewall rules be configured to enable the above Interaction between API 1 and API 2?

  • A. To enable communication from each API's Mule Runtimes and Network zone to the load balancer of the other API
  • B. To open direct two-way communication between the Mule Runtimes of both API's
  • C. To allow communication between load balancers used by each API
  • D. To authorize the certificate to be used both APIs

Answer: A

Explanation:
* If your API implementation involves putting a load balancer in front of your APIkit application, configure the load balancer to redirect URLs that reference the baseUri of the application directly. If the load balancer does not redirect URLs, any calls that reach the load balancer looking for the application do not reach their destination.
* When you receive incoming traffic through the load balancer, the responses will go out the same way. However, traffic that is originating from your instance will not pass through the load balancer. Instead, it is sent directly from the public IP address of your instance out to the Internet. The ELB is not involved in that scenario.
* The question says "each API is deployed to multiple redundant Mule runtimes", that seems to be a hint for self hosted Mule runtime cluster. Set Inbound allowed for the LB, outbound allowed for runtime to request out.
* Hence correct way is to enable communication from each API's Mule Runtimes and Network zone to the load balancer of the other API. Because communication is asynchronous one

 

NEW QUESTION 49
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