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SolarWinds Hybrid-Cloud-Observability-Network-Monitoring Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Advanced Features and Integration | 15% | - Custom pollers and monitors - Reporting and capacity planning - API usage and automation - Orion Platform integrations |
| Topic 2: Network Configuration Manager (NCM) | 15% | - Configuration backup and compliance - Change management workflows - Config change detection and alerting |
| Topic 3: Network Topology Mapper (NTM) | 10% | - Layer 2 and Layer 3 topology visualization - Map maintenance and updates - Auto-discovery and mapping |
| Topic 4: Network Monitoring Fundamentals | 20% | - Network discovery and topology mapping - SNMP configuration and monitoring - Network device monitoring concepts - Alerting and notification configuration |
| Topic 5: Network Performance Monitor (NPM) | 30% | - Advanced packet analysis - Custom dashboards and views - Network latency and quality monitoring - Traffic analysis and NetFlow - Interface and device monitoring |
| Topic 6: SolarWinds Platform Overview | 10% | - Deployment options (on-premises, cloud, hybrid) - SolarWinds Hybrid Cloud Observability platform architecture - Product portfolio and licensing models |
SolarWinds Hybrid Cloud Observability Network Monitoring Sample Questions:
1. A node has been added to hybrid cloud observability and shows an "unknown" status until the data is polled.
The default interval for polling status is two minutes.
If the node stays in the "unknown" status longer than the polling interval, which three of the following steps can be performed to resolve the issue? (Choose three.)
A) Ping device from assigned polling engine.
B) Verify the appropriate polling method is set for this node.
C) Run SNMP walk on the appropriate node.
D) Verify a ping response for this node is received through the ICMP.
2. Which two of the following actions are recommended for more precise forecasting of capacity trends on critical devices? (Choose two.)
A) Set warning and critical thresholds to lower percentages.
B) Monitor devices with platform agents.
C) Set calculation methods to use average daily values.
D) More historical data used in calculations.
3. From which two of the following locations can the status of the flow collector service be checked? (Choose two.)
A) Top XX receivers
B) NetFlow settings
C) Flow and CBQoS sources
D) NetFlow collector services
4. Which statement depicts the relationship between device studio pollers' supported technologies and universal device pollers' (UDPs) supported technologies?
A) UDPs can poll for memory utilization of SNMP enabled devices, device studio pollers cannot
B) device studio pollers can poll for node details of SNMP enabled devices, UDPs cannot
C) UDPs can poll for hardware status of SNMP enabled devices, device studio pollers cannot
D) device studio pollers can poll for CPU utilization of SNMP enabled devices, UDPs cannot
5. A device studio poller is being built for node detail information. For the values supported, it has been decided to enter textual values instead of object IDs (OIDs). Which statement is true?
A) If the textual value is misspelled, it will not poll correctly.
B) Only textual values can be used for host names, all other values must be OIDs.
C) If the textual value changes on the node, the poller must be manually updated.
D) If the textual value changes, it will update automatically.
Solutions:
| Question # 1 Answer: A,B,D | Question # 2 Answer: C,D | Question # 3 Answer: B,D | Question # 4 Answer: B | Question # 5 Answer: C |

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