Microsoft AI-500 - Designing and Implementing Multi-Agent AI Solutions Exam
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Total 107 questions
Question #6 (Topic: Topic 1, Architect multi-agent solutions
)
You have a Microsoft Foundry multi-agent solution that generates an equity research brief based on a given stock ticker symbol. The workflow includes the following agents:

The model deployment quota supports a maximum of three agents simultaneously.
You discover that the current implementation runs all the agents sequentially and exceeds the response-time target.
You need to reduce the total workflow duration to less than 40 seconds without exceeding the quota.
Which orchestration design should you use?

The model deployment quota supports a maximum of three agents simultaneously.
You discover that the current implementation runs all the agents sequentially and exceeds the response-time target.
You need to reduce the total workflow duration to less than 40 seconds without exceeding the quota.
Which orchestration design should you use?
A. Run DataExtraction, and then run FundamentalAnalysis, TechnicalAnalysis, and SentimentAnalysis concurrently; run Summary after all the analysis outputs complete.
B. Run DataExtraction and TechnicalAnalysis concurrently; start FundamentalAnalysis after DataExtraction completes, and then run SentimentAnalysis after FundamentalAnalysis completes; run Summary after all the analysis outputs complete.
C. Run DataExtraction and SentimentAnalysis concurrently; start FundamentalAnalysis and TechnicalAnalysis after DataExtraction completes; run Summary after all the analysis outputs complete.
D. Run DataExtraction, TechnicalAnalysis, and SentimentAnalysis concurrently; start FundamentalAnalysis after DataExtraction completes; run Summary after all the analysis outputs complete.
Answer: D
Question #7 (Topic: Topic 1, Architect multi-agent solutions
)
HOTSPOT
You have the following persistence configuration for a Microsoft Foundry multitenant, multi-agent solution.

For each of the following statements, select Yes if the statement is true. Otherwise, select No.
NOTE: Each correct selection is worth one point.
You have the following persistence configuration for a Microsoft Foundry multitenant, multi-agent solution.

For each of the following statements, select Yes if the statement is true. Otherwise, select No.
NOTE: Each correct selection is worth one point.
Answer:
Question #8 (Topic: Topic 1, Architect multi-agent solutions
)
You are designing a multitenant software as a service (SaaS) platform that uses multiple agents. Users will send latency-sensitive inference requests to the platform by using a shared API.
Initially, there will be 20 tenants, and the platform will expand to 200 tenants.
You need to identify the compute component for a production agent runtime. The solution must meet the following requirements:
Isolate workloads for each tenant by using containerization.
Dynamically scale based on demand.
Minimize administrative effort.
What should you use?
Initially, there will be 20 tenants, and the platform will expand to 200 tenants.
You need to identify the compute component for a production agent runtime. The solution must meet the following requirements:
Isolate workloads for each tenant by using containerization.
Dynamically scale based on demand.
Minimize administrative effort.
What should you use?
A. Azure Container Instances
B. Azure Kubernetes Service (AKS)
C. Microsoft Foundry Agent Service
D. GPU-enabled Azure virtual machines
Answer: B
Question #9 (Topic: Topic 1, Architect multi-agent solutions
)
You have a Microsoft Agent Framework workflow processor that receives customer support requests from a queue. Each request is evaluated by three independent Microsoft Foundry agents.
You discover that the current processor dequeues 30 requests at a time and starts all agent runs immediately. During peak load, as many as 90 agent runs execute simultaneously, and the downstream API receives partial participant messages.
A single agent run completes in five seconds at the 95th percentile (95p), and the target throughput is 120 requests per minute.
You need to change the orchestration to ensure that it meets the throughput target and prevents more than 30 agent runs from executing simultaneously. The solution must produce one consolidated downstream payload for each request.
What should you do?
You discover that the current processor dequeues 30 requests at a time and starts all agent runs immediately. During peak load, as many as 90 agent runs execute simultaneously, and the downstream API receives partial participant messages.
A single agent run completes in five seconds at the 95th percentile (95p), and the target throughput is 120 requests per minute.
You need to change the orchestration to ensure that it meets the throughput target and prevents more than 30 agent runs from executing simultaneously. The solution must produce one consolidated downstream payload for each request.
What should you do?
A. Dequeue 10 requests per batch. Start 10 group chat workflows that include the three agents and a manager.
B. Dequeue 10 requests per batch. Start 10 sequential workflows that include the three agents as ordered steps.
C. Dequeue 10 requests per batch. Start 10 ConcurrentBuilder workflows that include the three agents as participants.
D. Dequeue 30 requests per batch. Start a single ConcurrentBuilder workflow that includes 90 agent executors as participants.
Answer: B
Question #10 (Topic: Topic 1, Architect multi-agent solutions
)
You have a Microsoft Foundry multi-agent solution for loan applications. Each agent scores a full application independently and does NOT require output from other agents.
You need to recommend an orchestration pattern that meets the following requirements:
Produces one aggregated recommendation
Preserves independent scoring
Minimizes end-to-end latency
Minimize development effort
What should you recommend?
You need to recommend an orchestration pattern that meets the following requirements:
Produces one aggregated recommendation
Preserves independent scoring
Minimizes end-to-end latency
Minimize development effort
What should you recommend?
A. group chat
B. magnetic
C. sequential
D. concurrent
Answer: D