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Salesforce Certified MuleSoft Platform Integration Architect Sample Questions:
1. Customer is evaluating Platform Events solution and would like help in comparing/contrasting it with Outbound Message for a real-time / near-real time needs. They expect 3,000 consumers of messages from Salesforce.
Which three considerations should be evaluated and highlighted when deciding between the solutions? Choose 3 answers
A) Both Platform Events and Outbound Message are highly scalable. However, unlike Outbound Message, only Platform Events have Event Delivery and Event Publishing limits to be considered.
B) Message sequence is possible in Outbound Message but not guaranteed with Platform Events. Both offer very high reliability. Fault handling and recovery are fully handled by Salesforce.
C) Both Platform Events and Outbound Message offer declarative means for asynchronous near-real time needs. They aren't best suited for real-time integrations.
D) In both Platform Events and Outbound Messages, the event messages are retried by and delivered in sequence, and only once. Salesforce ensures there is no duplicate message delivery.
E) Number of concurrent subscribers to Platform Events is capped at 2,000. An Outbound Message configuration can pass only 100 notifications in a single message to a SOAP end point.
2. Which strategy enhances security when using Anypoint Security for edge access?
A) Disabling all inbound traffic filters.
B) Applying strict policies on IP whitelisting and traffic encryption.
C) Allowing unrestricted data flows to optimize performance.
D) Using basic authentication over HTTPS for all endpoints.
3. Northern Trail Outfitters requires an integration to be set up between one of their Salesforce orgs and anexternal data source us Salesforce Connect. The external data source supports Open Data Protocol.
Which three configurations should an Integration Architect recommend be implemented in order to secure requests coming from Salesforce? Choose 3 answers
A) Configure CSRF Protection for OData connection.
B) Configure Special Compatibility for OData connection,
C) Configure Identity Type for OData connection.
D) Configure CSRF Protection on External Data Source.
E) Configure a Certificate for OData connection.
4. An internet company is building a new search engine that indexes sites on the internet and ranks them according to various signals. The management team wants various features added to the site. There is a team of software developers eager to start on the functional requirements received from the management team.
Which two traditional architectural requirements should the integration architect ensure are in place to support the new search engine? (Choose two.)
A) Relevant search results are returned for a query
B) New features can be added to the system with ease
C) The system can handle increased load as more people utilize the engine
D) Search results are returned in the language chosen by the user
E) Search result listings link to the correct website
5. Refer to the exhibit.
A shopping cart checkout process consists of a web store back end that sends a sequence of HTTPS POST requests to an Experience API, which in turn invokes a Process API using HTTPS. The web store back end executes in a Java EE application server. All API implementations are Mule applications executing in a customer-hosted Mule runtime. End-to-end correlation of all HTTP requests and responses belonging to each checkout instance is required. This is to be done through a common correlation ID so that all log entries written by the web store back end, Experience API implementation, and Process API implementation include the same correlation ID for all requests and responses belonging to the same checkout instance. What is the most efficient way (using the least amount of custom coding or configuration) for the web store back end and the implementations of the Experience API and Process API to participate in end-to-end correlation of the API invocations for each checkout instance?
A) The web store back end generates a new correlation ID value at the start of checkout and sets it on the X-Correlation-ID HTTP request header in each API invocation belonging to that checkout.
B) The Experience API implementation generates a correlation ID for each incoming HTTP request and passes it to the web store back end in the HTTP response, which includes it in all subsequent API invocations to the Experience API.
C) The web store back end, being a Java EE application, automatically uses the thread-local correlation ID generated by the Java EE application server and automatically transmits that to the Experience API using standard HTTP headers.
D) The web store back end sends a correlation ID value in the HTTP request body in the way required by the Experience API.
Solutions:
| Question # 1 Answer: A,C,E | Question # 2 Answer: B | Question # 3 Answer: A,C,E | Question # 4 Answer: B,C | Question # 5 Answer: A |
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