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| Section | Weight | Objectives |
|---|---|---|
| Network Topology Mapper (NTM) | 10% | - Auto-discovery and mapping - Layer 2 and Layer 3 topology visualization - Map maintenance and updates |
| Advanced Features and Integration | 15% | - Orion Platform integrations - Reporting and capacity planning - API usage and automation - Custom pollers and monitors |
| Network Performance Monitor (NPM) | 30% | - Custom dashboards and views - Advanced packet analysis - Traffic analysis and NetFlow - Network latency and quality monitoring - Interface and device monitoring |
| Network Configuration Manager (NCM) | 15% | - Configuration backup and compliance - Change management workflows - Config change detection and alerting |
| Network Monitoring Fundamentals | 20% | - Alerting and notification configuration - SNMP configuration and monitoring - Network device monitoring concepts - Network discovery and topology mapping |
| SolarWinds Platform Overview | 10% | - SolarWinds Hybrid Cloud Observability platform architecture - Product portfolio and licensing models - Deployment options (on-premises, cloud, hybrid) |
>> SolarWinds Hybrid-Cloud-Observability-Network-Monitoring Test Collection <<
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NEW QUESTION # 69
Some of the flows received are mapping to an IP address that does not match any of the nodes being monitored. It has been verified that all flow sources are also being monitored by NPM and SNMP polling.
The known source nodes for these flows have the correct IP address. What could be causing this issue?
Answer: A
Explanation:
SolarWinds NTA maps flow sources to nodes by matching the IP address. If a device exports flows using a secondary IP (not the one defined as " primary " in SolarWinds), and the setting " Allow matching by other IPs " is not enabled, the flow will not map to a known node. The documentation explains:
" If flow packets are received from an IP address not designated as primary in SolarWinds, and matching by other IPs is disabled, the flow source is not linked to a node. Enable the setting to match by any device IP to resolve this issue. " References:
Network Performance Monitor Administrator Guide, " Flow Source Matching and IP Address Mapping " SolarWinds NTA documentation
NEW QUESTION # 70
Which additional polling method is needed after adding an F5 load balancing node for SNMP monitoring?
Answer: A
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
When monitoring F5 BIG-IP load balancers, SolarWinds Network Insight requires both SNMP for device status and iControl (a proprietary F5 API) for advanced configuration and health monitoring. The SolarWinds guide states:
"After adding an F5 load balancer with SNMP, configure the iControl connection to access additional F5- specific health and configuration metrics." References:
F5 BIG-IP and iControl configuration - SolarWinds NPM Administrator Guide, Network Insight for F5 BIG- IP section
NEW QUESTION # 71
NetFlow and CBQoS monitoring can be disabled through web console settings. If NetFlow monitoring is disabled for a node or interface, the data collection is stopped. Which two of the following statements are true regarding disabling NetFlow monitoring? (Choose two.)
Answer: B,D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Disabling NetFlow/CBQoS stops flow data collection, resulting in gaps in graphs during the disabled period (A). However, historical data collected prior to disabling is retained in the database (C), so you can still view past flow information.
Reference:
NTA Administrator Guide, "Enabling/Disabling Flow Collection and Data Retention,"
"Disabling monitoring creates data gaps but does not delete historical flow records."QUESTION
NEW QUESTION # 72
Which application classification system is used with deep packet inspection technologies to provide better visibility into network traffic and is a mechanism used by certain Cisco routers/switches to recognize dataflow by inspecting some of the packets sent?
Answer: D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
NBAR2 (Next Generation Network-Based Application Recognition) is Cisco's deep packet inspection technology used to classify network traffic at the application layer. It provides visibility by inspecting packet payloads, not just ports, and is supported in SolarWinds for advanced application recognition.
SolarWinds documentation states:
"NBAR2 allows supported Cisco devices to classify traffic by application using deep packet inspection. This provides detailed application visibility within SolarWinds network monitoring solutions." References:
Network Performance Monitor Administrator Guide, "NBAR2 and Application Classification" SolarWinds Success Center: "Using NBAR2 with NetFlow"
NEW QUESTION # 73
Which two of the following best practices are used when creating a universal device poller (UDP)? (Choose two.)
Answer: A,B
Explanation:
The best practices for creating a Universal Device Poller (UDP) in SolarWinds are:
Consult vendor documentation for OID: Always check the device/vendor documentation for the correct OID to monitor the desired metric.
Perform SNMPwalk to determine if OID exists: Use SNMPwalk to verify the OID's existence and see if it is supported and returns the correct values from the device.
Calling SolarWinds support is not a standard step for obtaining OIDs, and WBemtest is a Windows tool for WMI, not SNMP/OID polling.
Exact Extract from Official Guide:
"Consult device vendor documentation for correct OIDs and perform SNMPwalk to ensure the OID exists and is supported by the device before creating a UDP."
- (Network Performance Monitor Administrator Guide, "Best Practices for Universal Device Pollers" section) References:
Network Performance Monitor Administrator Guide, Best Practices for Universal Device Pollers
NEW QUESTION # 74
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