P.S.Xhs1991がGoogle Driveで共有している無料の2026 Juniper JN0-364ダンプ:https://drive.google.com/open?id=17ZYVbPxdwhweUKPJM_tcARg04jEqKQIH
どんな困難にあっても、諦めないです。JN0-364試験は難しいと言えば、解決法があります。解決法はJN0-364問題集は購入することです。JN0-364問題集の的中率が高くて、多くの人はJN0-364試験に合格しました。JN0-364問題集の特徴は便利で使い安いです。そして、短い時間で勉強し、JN0-364試験に参加できます。もし、あなたもJN0-364問題集を購入すれば、試験に合格できますよ。
| Section | Weight | Objectives |
|---|---|---|
| Tunnels | 5-8% | - Tunnel configuration and usage - GRE and IP-IP tunnels |
| High Availability | 5-8% | - Graceful restart - NSR and GRES concepts - Nonstop active routing |
| Open Shortest Path First (OSPF) | 15-20% | - LSA types and operation - Configuration and troubleshooting - Areas and router types - Link-state database |
| Border Gateway Protocol (BGP) | 20-25% | - Basic operation and message types - Path selection and attributes - Configuration and troubleshooting - Policy and route filtering - IBGP and EBGP |
| Multiprotocol Label Switching (MPLS) | 12-18% | - LDP and RSVP - Configuration and monitoring - Terminology and forwarding - Segment routing basics - Labels and LIB |
| Intermediate System to Intermediate System (IS-IS) | 10-15% | - Configuration and monitoring - Metrics and wide metrics - PDUs and TLVs - Adjacencies and levels |
| Layer 2 Bridging and VLANs | 8-12% | - Bridging concepts - Service provider switching features - VLANs and trunking |
| Spanning Tree Protocols | 8-12% | - Configuration and convergence - BPDU and protection features - Port roles and states - STP, RSTP, MSTP, VSTP |
| IPv6 | 8-12% | - Static and dynamic routing - OSPFv3 and BGP for IPv6 - Autoconfiguration - Address types and format |
| Protocol-Independent Routing | 10-15% | - Filter-based forwarding - Load balancing - Martian addresses - Routing instances and RIB groups - Static, aggregate, and generated routes |
時代の発展に伴い、人間的な文明が発展し、Xhs1991も発展しています。Xhs1991は君の早くJuniperのJN0-364認定試験に合格するために、きみのもっと輝い未来のために、君の他人に羨ましいほど給料のために、ずっと努力しています。長年の努力を通じて、Xhs1991のJuniperのJN0-364認定試験の合格率が100パーセントになっていました。Xhs1991を選ぶなら、成功を選ぶのに等しいです。
質問 # 19
Which two statements are correct about segment routing? (Choose two.)
正解:A、B
解説:
Segment routing is a source routing paradigm that allows a source router to define the path that a packet will take through the network by assigning an ordered list of segments--identifiers that specify a forwarding path for the packet through the network. Segment Routing can be implemented over an MPLS architecture or with IPv6 (SRv6).
Segment routing does not require a full mesh of adjacencies or state per transit path in the network, which is often the case with conventional MPLS signaling protocols like RSVP-TE. It leverages the existing IGP topology for forwarding without the need to maintain a state for each LSP (Label Switched Path), hence requiring very little resources to maintain.
In segment routing, labels (or segments) are distributed via IGP routing protocols like OSPF or IS-IS with extensions to carry segment routing information. These protocols are enhanced with Segment Routing extensions to distribute labels. For example, OSPFv2 is extended with Segment Routing extensions defined in RFC 8665.
質問 # 20
Exhibit:
on a Juniper switch. It shows interfacexe-0/0/4withunit 0andfamily ethernet-switching. Under vlan, it lists members 10;`] Referring to the exhibit, which two statements are true? (Choose two.)
正解:B、D
解説:
In Junos OS for switching platforms, an interface is configured for Layer 2 bridging under thefamily ethernet- switchinghierarchy. The way an interface handles VLAN traffic depends on its port mode:accessortrunk.
According to Juniper Networks technical documentation, when an interface is configured simply with members <vlan-name/id>, it defaults to anaccess port. In an access port configuration:
* The port is a member of only a single VLAN.
* The portreceives and sends untagged traffic (Option C). Any untagged frame arriving at this interface is implicitly associated with the configured VLAN member.
* The interface does not expect or process 802.1Q tags in incoming frames.
In the exhibit, interface xe-0/0/4 has members 10;. In Junos, the members statement can reference either a VLAN nameor aVLAN ID. However, when the configuration is shown as members 10; without further context of the specific ID mapping, the most precise interpretation of the CLI output provided is thatthe interface is a member of the VLAN named 10 (Option D). While "10" could be the numerical ID, Junos primarily maps members by their defined administrative name.
Why other options are incorrect:
* Option A:Access ports do not receive tagged traffic; only trunk ports (which require the port-mode trunk and vlan members [ ... ] statements) are designed to process tagged frames.
* Option B:While the VLAN named 10likelyhas a VLAN ID of 10, the exhibit does not explicitly confirm the ID mapping. In Junos, a VLAN named "10" could technically have a different tag ID (e.g., VLAN "Office" with ID 10). Option D is the more accurate direct reading of the displayed member configuration.
質問 # 21
During MPLS forwarding, which operation describes the act of imposing a label onto an unlabeled packet?
正解:D
解説:
Label push is the MPLS operation in which a label is added to an unlabeled packet as it enters the MPLS domain. The ingress label switching router assigns the label and places it on the packet so that subsequent routers can forward it based on the MPLS label instead of the IP header.
質問 # 22
You are bringing a new network online with three MX Series devices enabled for STP. No root bridge priority has been configured. Which statement is true in this scenario?
正解:B
解説:
The root bridge in a spanning-tree network is the bridge with the smallest or the lowest bridge ID.
In the absence of a manually configured priority, the Spanning Tree Protocol (STP) elects the root bridge based on the lowest bridge ID, which is a combination of the priority and the MAC address.
The device with the lowest MAC address will have the lowest bridge ID and thus be elected as the root bridge.
質問 # 23
You are asked to configure interfaces on Juniper devices to support dual VLAN tags.
In this scenario, which two interface statements would accomplish this task? (Choose two.)
正解:B、C
解説:
Flexible VLAN tagging enables an interface to support multiple VLAN tagging formats, including QinQ configurations that use two VLAN tags.
Stacked VLAN tagging enables the interface to process double-tagged Ethernet frames, allowing an outer service VLAN tag to be added to an inner customer VLAN tag for QinQ deployments.
質問 # 24
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