Checkout the Mulesoft MCIA-Level-1 Exam Dumps by Exams4sure
Posted: Jun 24, 2022
MuleSoft Certified Integration Architect - Level 1 MCIA-Level-1 Exam is a three-hour, proctored exam that tests your knowledge of MuleSoft Anypoint Platform™. The exam is designed for integration architects who have experience designing and managing APIs and integrations using Anypoint Platform.
The MuleSoft Certified Integration Architect - Level 1 Exam covers the following topics:
- Designing and managing APIs
- Designing and managing integrations
- Managing environment configurations
- Anypoint Platform architecture
To help you prepare for the exam, MuleSoft provides the following resources:
- Anypoint Platform™ for Developers: Quick Start Guide
- Anypoint Platform™ for Developers: API Design and Implementation Guide
- Anypoint Platform™ for Developers: Integration Design and Implementation Guide
- Anypoint Platform™ for Developers: Environment Management Guide
- Anypoint Platform™ for Developers: Deployment and Lifecycle Management Guide
- Anypoint Platform™ for Developers: Reference Architecture
MuleSoft also offers a free, online course that covers the topics covered in the exam:
- Anypoint Platform™ for Developers: Essentials
In addition to the resources listed above, we recommend that you have at least six months of experience using Anypoint Platform™ before taking the exam.Exam Details:
The MuleSoft Certified Integration Architect - Level 1 Exam is a three-hour, proctored exam that tests your knowledge of MuleSoft Anypoint Platform™. The exam is designed for integration architects who have experience designing and managing APIs and integrations using Anypoint Platform.
The exam consists of 60 multiple-choice questions. The questions are based on the topics listed in the Exam Topics section.
- You will have three hours to complete the exam.
- You must achieve a passing score of 70% to earn your certification.
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So, what are you waiting for? Go ahead and purchase Exams4sure study material today and ace your MuleSoft MCIA-Level-1 Dumps in the first attempt.FAQ's About MCIA-Level-1 Exam:
Q. What is the passing score for the MuleSoft MCIA-Level-1 Dumps?
A. The passing score for the MuleSoft MCIA-Level-1 exam is 70%.
Q. How many questions are there in the MuleSoft MCIA-Level-1 exam?
A. There are 60 questions in the MuleSoft MCIA-Level-1 exam.
Q. How much time do I have to complete the MuleSoft MCIA-Level-1 exam?
A. You have three hours to complete the MuleSoft MCIA-Level-1 exam.
Q. What is the format of the MuleSoft MCIA-Level-1 exam?
A. The MuleSoft MCIA-Level-1 exam is a multiple-choice exam.Sample Exam Questions:
An organization is creating a Mule application that will be deployed to CloudHub. The Mule application has a property named dbPassword that stores a database user’s password.
The organization's security standards indicate that the dbPassword property must be hidden from every Anypoint Platform user after the value is set in the Runtime Manager Properties tab.
What configuration in the Mule application helps hide the dbPassword property value in Runtime Manager?
A. Use secure::dbPassword as the property placeholder name and store the cleartext (unencrypted) value in a secure properties placeholder file
B. Use secure::dbPassword as the property placeholder name and store the property encrypted value in a secure properties placeholder file
C. Add the dbPassword property to the secureProperties section of the pom.xml file
D. Add the dbPassword property to the secureProperties section of the mule-artifact.json file
49 of A popular retailer is designing a public API for its numerous business partners. Each business partner will invoke the API at the URL 58. https://api.acme.com/partnefs/vl. The API implementation is estimated to require deployment to 5 CloudHub workers.
The retailer has obtained a public X.509 certificate for the name apl.acme.com, signed by a reputable CA, to be used as the server certificate.
Where and how should the X.509 certificate and Mule applications be used to configure load balancing among the 5 CloudHub workers, and what DNS entries should be configured in order for the retailer to support its numerous business partners?
A. Add the X.509 certificate to the Mule application's deployable archive, then configure a CloudHub Dedicated Load Balancer (DLB) for each of the Mule application's CloudHub workers Create a CNAME for api.acme.com pointing to the DLB's A record
B. Add the X.509 certificate to the CloudHub Shared Load Balancer (SLB), not to the Mule application Create a CNAME for api.acme.com pointing to the SLB's A record
C. Add the X.509 certificate to a CloudHub Dedicated Load Balancer (DLB), not to the Mule application Create a CNAME for api.acme.com pointing to the DLB's A record
D. Add the x.509 certificate to the Mule application's deployable archive, then configure the CloudHub Shared Load Balancer (SLB) for each of the Mule application's CloudHub workers
Create a CNAME for api.acme.com pointing to the SLB's A record
An organization has an HTTPS-enabled Mule application named Orders API that receives requests from another Mule application named Process Orders.
The communication between these two Mule applications must be secured by TLS mutual authentication (two-way TLS).
At a minimum, what must be stored in each truststore and keystore of these two Mule applications to properly support two-way TLS between the two Mule applications while properly protecting each Mule application's keys?
A. Orders API truststore: The Orders API public key Process Orders keystore: The Process Orders private key and public key
B. Orders API truststore: The Orders API private key and public key Process Orders keystore: The Process Orders private key public key
C. Orders API truststore: The Process Orders public key Orders API keystore: The Orders API private key and public key Process Orders truststore: The Orders API public key Process Orders keystore: The Process Orders private key and public key
D. Orders API truststore: The Process Orders public key Orders API keystore: The Orders API private key Process Orders truststore: The Orders API public key Process Orders keystore: The Process Orders private key
An organization's security requirements mandate centralized control at all times over authentication and authorization of external applications when invoking web APIs managed on Anypoint Platform.
What Anypoint Platform feature is most idiomatic (used for its intended purpose), straightforward, and maintainable to use to meet this requirement?
A. Client management configured in access management
B. Identity management configured in access management
C. Enterprise Security module coded in Mule applications
D. External access configured in API Manager
As a part of business requirement, old CRM system needs to be integrated using Mule application. CRM system is capable of exchanging data only via SOAP/HTTP protocol. As an integration architect who follows API led approach, what is the the below step you will perform so that you can share document with CRM team?
A. Create RAML specification using Design Center
B. Create SOAP API specification using Design Center
C. Create WSDL specification using text editor
D. Create WSDL specification using Design Center
Mule application A receives a request Anypoint MQ message REQU with a payload containing a
variable-length list of request objects. Application A uses the For Each scope to split the list into individual objects and sends each object as a message to an Anypoint MQ queue.
Service S listens on that queue, processes each message independently of all other messages, and sends a response message to a response queue.
Application A listens on that response queue and must in turn create and publish a response Anypoint MQ message RESP with a payload containing the list of responses sent by service S in the same order as the request objects originally sent in REQU.
Assume successful response messages are returned by service S for all request messages.
What is required so that application A can ensure that the length and order of the list of objects in RESP and REQU match, while at the same time maximizing message throughput?
A. Use a Scatter-Gather within the For Each scope to ensure response message order Configure the Scatter-Gather with a persistent object store
B. Perform all communication involving service S synchronously from within the For Each scope, so objects in RESP are in the exact same order as request objects in REQU
C. Use an Async scope within the For Each scope and collect response messages in a second For Each scope in the order In which they arrive, then send RESP using this list of responses
D. Keep track of the list length and all object indices in REQU, both in the For Each scope and in all communication involving service Use persistent storage when creating RESP
Mule application is deployed to Customer Hosted Runtime. Asynchronous logging was implemented to improved throughput of the system. But it was observed over the period of time that few of the important exception log messages which were used to rollback transactions are not working as expected causing huge loss to the Organization. Organization wants to avoid these losses. Application also has constraints due to which they cant compromise on throughput much. What is the possible option in this case?
A. Logging needs to be changed from asynchronous to synchronous
B. External log appender needs to be used in this case
C. Persistent memory storage should be used in such scenarios
D. Mixed configuration of asynchronous or synchronous loggers should be used to log exceptions via synchronous way
What best describes the Fully Qualified Domain Names (FQDNs), also known as DNS entries, created when a Mule application is deployed to the CloudHub Shared Worker Cloud?
A. A fixed number of FQDNs are created, IRRESPECTIVE of the environment and VPC design
B. The FQDNs are determined by the application name chosen, IRRESPECTIVE of the region
C. The FQDNs are determined by the application name, but can be modified by an administrator after deployment
D. The FQDNs are determined by both the application name and the region
An organization is designing a mule application to support an all or nothing transaction between serval database operations and some other connectors so that they all roll back if there is a problem with any of the connectors
Besides the database connector, what other connector can be used in the transaction.
B. Anypoint MQ
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