Übrigens, Sie können die vollständige Version der It-Pruefung JN0-481 Prüfungsfragen aus dem Cloud-Speicher herunterladen: https://drive.google.com/open?id=1JesnMB6WQpevtjPZfoBBi5xLAXrcedfX
Die Juniper JN0-481 Zertifizierungsprüfung ist eine der wertvollsten zeitgenössischen Zertifizierungsprüfung. In den letzten Jahrzehnten ist die Computer-Ausbildung schon ein Fokus geworden. Sie ist ein notwendiger Bestandteil der Informations-Technologie im IT-Bereich. So legen viele IT-fachleute diese Prüfung ab, um ihr Wissen zu erweitern und einen Durchbruch in allen Bereichen zu verschaffen. Und unsere Fragen und Antworten zur Juniper JN0-481 Zertifizierungsprüfung sind genau das, was sie brauchen. Dennoch ist es schwer, diesen Test zu bestehen. Wählen Sie die entsprechende Abkürzung, um Erfolg zu garantieren. Wählen Sie It-Pruefung, kommt der Erfolg auf Sie zu. Die Fragen und Antworten zur Juniper JN0-481 Zerzifizierung von It-Pruefung werden von den IT-Eliten nach ihren Erfahrungen und Praxien bearbeitet und haben die Zertifizierungserfahrung von mehr als zehn Jahren.
| Section | Objectives |
|---|---|
| Apstra Design Phase | - Blueprint Design
|
| Blueprint Operations | - Day-2 Operations
|
| Data Center Multitenancy | - Tenant Services
|
| Data Center Architectures | - IP Fabrics
|
| Intent-Based Analytics | - Analytics and Visibility
|
| Apstra Build and Deploy Phases | - Deployment Operations
|
| Juniper Apstra Architecture | - Apstra Components
|
>> JN0-481 Fragen Antworten <<
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33. Frage
You have accessed your deployed blueprint and see the banner shown in the exhibit.
Which two statements are correct in this scenario? (Choose two.)
Antwort: A,C
Begründung:
In Apstra 5.1, the top-level blueprint banner uses tab indicators (colored badges) to summarize blueprint status across areas such as Staged, Uncommitted, Active, and Analytics. The presence of an Uncommitted indicator signifies that there are staged modifications that have not yet been committed and therefore are not part of the active, deployed intent. That directly corresponds to the statement that changes exist which are not active on the fabric.
At the same time, the banner shows an Active indicator in an alarm state, which reflects that the running fabric has issues requiring attention-commonly surfaced as anomalies (for example, configuration deviation, interface/link faults, protocol/session issues, or service-impacting conditions). In Apstra's operational model, these issues appear as anomalies that operators should investigate and remediate to restore compliance and health. Therefore, the statement that there are anomalies that must be addressed is also correct.
The remaining options are not implied by this banner alone. Device profile assignment and resource assignment are build-time tasks, but their absence is not what the Uncommitted/Active alert indicators are specifically communicating here. The banner is highlighting uncommitted intent changes and active anomalies that affect the deployed blueprint state and assurance posture.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/concept/uncommitted.html
https://www.juniper.net/documentation/us/en/software/apstra5.0/apstra-user-guide/topics/topic-map/anomalies-service-active.html
https://cloudlabs.apstra.com/labguide/Cloudlabs/6.0.0/test-drive-guide/lab1-junos-5_blueprints_.html
34. Frage
The analytics probe shown in the exhibit is enabled.
The ge-0/0/5 interface on the my-esl-001-leaf1 node receives an average of greater than 1 Mbps of traffic. Which two statements are correct in this scenario? (Choose two.)
Antwort: C,D
Begründung:
In Apstra 5.1, an IBA probe is a defined analytics pipeline that applies to a scoped set of graph objects (here, interfaces) and evaluates telemetry against logic defined in its processors. The exhibit shows a probe that consumes Interface Counters Average and then applies a Range processor. In the processor configuration, the Anomalous Range is set to "greater than 1,000,000" (bytes per second-equivalent for ~1 Mbps depending on the probe's metric definition), and Raise Anomaly is set to True. Therefore, when ge-0/0/5 receives an average traffic level above the configured threshold, the probe's condition evaluates as anomalous and Apstra raises a probe anomaly for that interface. That makes statement A correct.
When probe anomalies are raised, Apstra surfaces them in the blueprint's Analytics area because they are analytics-derived findings (as opposed to configuration drift or deployment workflow issues). As a result, the blueprint's Analytics tab indicator changes state (commonly to red with a badge count) to signal active analytics anomalies requiring attention. That makes statement B correct.
This event is not classified as a service anomaly (which is associated with higher-level service intent/assurance objects) unless separately mapped by policy/logic, and it does not primarily drive the Active tab indicator, which is focused on operational state views rather than being the primary alert surface for IBA probe anomalies.
35. Frage
What does EVPN use lo identity which remote leaf device advertised the EVPN route?
Antwort: B
Begründung:
EVPN uses a route distinguisher (RD) value to identify which remote leaf device advertised the EVPN route. An RD is a 64-bit value that is prepended to the EVPN NLRI to create a unique VPNv4 or VPNv6 prefix. The RD value is usually derived from the IP address of the PE that originates the EVPN route. By comparing the RD values of different EVPN routes, a PE can determine which remote PE advertised the route and which VRF the route belongs to.
36. Frage
In the Juniper Apstra UI, what are two aspects that you are able to query under the Active tab within a blueprint? (Choose two.)
Antwort: A,D
Begründung:
In Apstra 5.1, the Active view represents the operational state of the deployed fabric (as opposed to the intended state being edited in Staged). Within Active, the Query function is designed for day-2 operations where an operator needs to quickly locate endpoint-related information and validate forwarding/neighbor state derived from the fabric. The query choices exposed in the UI are focused on operational lookup primitives rather than design objects. Specifically, Apstra supports querying MAC and ARP (and also VMs when virtual infrastructure integration is present).
MAC queries help identify where a Layer 2 endpoint is being learned in the fabric-useful for troubleshooting EVPN-VXLAN fabrics where MAC learning and advertisement can determine reachability and mobility behavior. ARP queries help identify IP-to-MAC bindings and validate whether hosts are being resolved correctly, which is critical when troubleshooting first-hop behavior (for example, IRB gateway adjacency, endpoint onboarding, or unexpected IP conflicts).
By contrast, "Virtual Network" and "Routing Zone" (VRF) are primarily design constructs managed in Staged and validated/assured by analytics and intent checks; they are not the direct query selectors in the Active > Query tool. Therefore, the two correct Active-query aspects from the given options are ARP and MAC.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/task/query-active.html
37. Frage
Which protocol is used to advertise EVPN routes?
Antwort: C
Begründung:
BGP is the protocol used to advertise EVPN routes. EVPN routes are a new type of BGP network layer reachability information (NLRI) that carry MAC address and IP prefix information for Ethernet VPNs. EVPN routes are exchanged between PEs using BGP multiprotocol extensions (MP-BGP) over MPLS, VXLAN, SR, or SRv6 tunnels. EVPN routes enable PEs to learn the reachability of MAC addresses and IP prefixes of different sites within the same EVPN instance.
EVPN routes also support various features such as fast convergence, redundancy, aliasing, and inter-subnet routing.
38. Frage
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Außerdem sind jetzt einige Teile dieser It-Pruefung JN0-481 Prüfungsfragen kostenlos erhältlich: https://drive.google.com/open?id=1JesnMB6WQpevtjPZfoBBi5xLAXrcedfX