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Juniper JN0-460 Exam Syllabus Topics:
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Juniper Mist AI Wired, Specialist (JNCIS-MistAI-Wired) Sample Questions (Q22-Q27):
NEW QUESTION # 22
The main advantage of Campus Fabric IP Clos architecture is:
Answer: C
NEW QUESTION # 23
What are thetwo ways to forward BUM trafficwhen usingEVPN?(Choose two.)
Answer: A,D
Explanation:
InEVPN-VXLAN,BUM (Broadcast, Unknown unicast, and Multicast)traffic is handled differently than unicast traffic. EVPN provides two main forwarding mechanisms to distribute BUM traffic betweenVTEPs (VXLAN Tunnel Endpoints):
"BUM traffic in EVPN-VXLAN fabrics is replicated using eitheringress replicationorunderlay multicast(PIM- based). Both methods ensure that broadcast and unknown unicast frames reach all remote VTEPs within the same VXLAN segment." Option A:Incorrect - static routes are unrelated to BUM forwarding.
Option B:Incorrect - BGP is thecontrol plane, not a data-plane forwarding method.
Option C:Correct-Ingress replicationreplicates BUM packets to all remote VTEPs in the same VNI using unicast tunnels.
Option D:Correct-Underlay replication (multicast)uses multicast groups in the IP underlay to distribute BUM frames efficiently.
References:
Juniper Mist AI for Wired - EVPN-VXLAN Forwarding Architecture
Junos OS EVPN-VXLAN Deployment and Operations Guide
Juniper Validated Design - EVPN-VXLAN Control and Data Plane Behavior
NEW QUESTION # 24
InJuniper Mist cloud services, service level expectation (SLE) telemetry is collected from every device and stored for up to how long?
Answer: D
Explanation:
Juniper Mist AI collectstelemetry for Service Level Expectations (SLEs)across wired and wireless devices.
This telemetry includes metrics such as time-to-connect, throughput, coverage, and switch performance.
"Service Level Expectation (SLE) data is collected from every device and stored for up toone monthin the Mist Cloud. This allows administrators to analyze historical performance trends and troubleshoot issues based on real-time and historical data." Option B (2 months):Incorrect - data is not retained this long.
Option C (7 days):Incorrect - telemetry retention is longer.
Option D (24 hours):Incorrect - too short for Mist SLE analytics.
Option A (1 month):Correct - Mist Cloud retains SLE telemetry for30 days (1 month).
References:
Juniper Mist AI for Wired - Service Level Expectations Overview
Juniper Mist AI for Wired - Telemetry and Data Retention Guide
NEW QUESTION # 25
Which statement is correct about a 3-stage campus fabric IP Clos?
Answer: B
Explanation:
Juniper's officialCampus Fabric IP Clos designfor Mist Wired Assurance defines that the3-stage IP Clostopology eliminates the traditionaldistribution layerentirely. This architecture is intended for smaller campus environments that do not need an intermediate distribution layer between the access and core.
"Juniper's Wired Assurance supports 3-Stage and 5-Stage IP Clos deployments. The 3-Stage IP Clos is targeted towards deployments that do not require a Distribution Layer and have smaller scale requirements." Because the distribution layer is not present, the only hierarchical connection in a 3-stage campus fabric is between thecore and access layers. Traffic is routed directly at the access layer, and each access switch acts as a Layer-3 gateway (IRB) for its VLANs.
"In a campus fabric IP Clos architecture, Mist provisions Layer-3 (L3) integrated routing and bridging (IRB) interfaces on the access layer. All the access switches are configured with the same IP address for each L3 subnet." Additionally, the Juniper documentation explains that point-to-point links are configuredbetween layers, and in the case of the 3-stage design (with no distribution), this means between thecore and accessdevices:
"The point-to-point links between each layer utilize /31 addressing to conserve addresses." Therefore, the correct statement isC: The core layer is connected to the access layer.
OptionsAandBincorrectly mention a distribution layer that does not exist in this topology.
OptionDis incorrect because core (spine) devices in a Clos fabric are not interconnected with each other.
References:
Juniper Mist AI for Wired - Campus Fabric IP Clos Architecture Guide
Juniper Mist AI for Wired - Campus Fabric IP Clos Workflow
Juniper Mist AI for Wired - Configure Campus Fabric IP Clos
Juniper Validated Design - Campus Fabric IP Clos Deployment Types
NEW QUESTION # 26
What is the purpose of an EPVN Type 4 route?
Answer: D
Explanation:
According to Juniper Networks' EVPN documentation, an EVPN Type 4 route, also known as an Ethernet Segment route, is a critical component of the BGP EVPN control plane used specifically in multihoming scenarios. When a Customer Edge (CE) device is connected to two or more Provider Edge (PE) routers via a Link Aggregation Group (LAG), these PE routers must coordinate to manage traffic flow and prevent network loops.
The primary purpose of the Type 4 route is to enable Designated Forwarder (DF) election. In a multihomed Ethernet Segment (identified by a unique Ethernet Segment Identifier or ESI), only one PE router-the Designated Forwarder-is permitted to forward Broadcast, Unknown unicast, and Multicast (BUM) traffic from the EVPN core to the CE device. Without this election process, multiple PE routers would forward the same BUM packets to the CE, leading to traffic duplication and potential broadcast storms.
The workflow begins when a PE router is configured with an ESI on a physical or logical interface; it then generates and advertises a Type 4 route to all other PE routers in the network. This route carries the ESI and an "ES-import" extended community, which allows other PEs connected to the same segment to automatically discover their peers. Once these "peering" PEs are discovered, they collectively execute a DF election algorithm-such as the default modulo-based algorithm or the newer preference-based algorithm-to select the DF and Backup Forwarder (BDF) for each VLAN or bridge domain. By ensuring a deterministic and synchronized selection of the forwarder, Type 4 routes provide the foundational stability required for active- active and active-standby multihoming in modern campus and data center fabrics.
NEW QUESTION # 27
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