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| Section | Weight | Objectives |
|---|---|---|
| IPv6 | 8-12% | - Autoconfiguration - Address types and format - Static and dynamic routing - OSPFv3 and BGP for IPv6 |
| High Availability | 5-8% | - Graceful restart - Nonstop active routing - NSR and GRES concepts |
| 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 - Configuration and troubleshooting - Policy and route filtering - IBGP and EBGP - Path selection and attributes |
| Multiprotocol Label Switching (MPLS) | 12-18% | - LDP and RSVP - Terminology and forwarding - Labels and LIB - Segment routing basics - Configuration and monitoring |
| Protocol-Independent Routing | 10-15% | - Filter-based forwarding - Static, aggregate, and generated routes - Routing instances and RIB groups - Martian addresses - Load balancing |
| Tunnels | 5-8% | - Tunnel configuration and usage - GRE and IP-IP tunnels |
| Intermediate System to Intermediate System (IS-IS) | 10-15% | - Adjacencies and levels - Metrics and wide metrics - Configuration and monitoring - PDUs and TLVs |
| Layer 2 Bridging and VLANs | 8-12% | - Bridging concepts - Service provider switching features - VLANs and trunking |
| Spanning Tree Protocols | 8-12% | - BPDU and protection features - STP, RSTP, MSTP, VSTP - Configuration and convergence - Port roles and states |
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NEW QUESTION # 15
You are asked to add next-hop redundancy using VRRP for an IPv6 enabled service. The configured primary router must always be active when available, and the servers connected to the network must be able to ping their gateway.
Which VRRP element is required to accomplish this requirement?
Answer: A
Explanation:
The preempt function ensures that the router with the higher priority automatically resumes the master role when it becomes available again. This guarantees that the configured primary router always becomes the active VRRP router whenever it is operational, satisfying the requirement that the primary router must always be active when available.
NEW QUESTION # 16
Which two statements are correct about BGP? (Choose two.)
Answer: B,C
NEW QUESTION # 17
Which term describes the router where traffic enters an MPLS label-switched path (LSP)?
Answer: C
Explanation:
In the architecture of aLabel-Switched Path (LSP), routers are categorized based on their role in the handling of a specific packet's lifecycle through the MPLS network. Juniper Networks documentation defines these roles clearly:
TheIngress Router (Option D), also known as theIngress Label Edge Router (LER), is the entry point of the LSP. Its primary responsibility is to take an incoming "unlabeled" packet (usually a standard IPv4 or IPv6 packet), perform a route lookup, and determine which LSP the packet should follow. Once determined, the Ingress router performs aPushoperation, where it encapsulates the packet with an MPLS label header and forwards it toward the next hop. This is where the transition from IP-based forwarding to Label-based switching occurs.
To contrast this with the other options:
* Transit Router (Option B):These are routers located between the ingress and egress. They perform Swapoperations, replacing an incoming label with an outgoing label based on the Label Forwarding Information Base (LFIB).
* Egress Router (Option A):This is the "tail-end" of the LSP where the packet exits the MPLS domain and the final label is removed (if it hasn't been removed already by the penultimate hop).
* Penultimate Router (Option C):This is the second-to-last router in the path. As discussed in previous questions, it often performs thePopoperation (Penultimate Hop Popping) to remove the transport label before sending the packet to the Egress LER.
Therefore, the router where traffic first "enters" the LSP and receives its initial label is strictly defined as the Ingress router.
NEW QUESTION # 18
Referring to the exhibit, what does the configuration achieve on the ge-0/0/3 interface?
Answer: C
NEW QUESTION # 19
Which BGP message type is used to re-advertise routes that have already been sent to a peer and acknowledged using TCP?
Answer: A
Explanation:
In BGP (Border Gateway Protocol), the Update message is used to advertise new routes to a peer or to withdraw previously advertised routes. If there's a change in the routing information or if a new route needs to be advertised, BGP uses an Update message. This message is crucial for maintaining the most current and accurate routing information among BGP peers.
The other message types serve different purposes:
Keepalive: This message type is used to maintain the connection between BGP peers and ensure that the link is still active. Keepalive messages are periodically sent between peers when there is no other BGP activity to maintain the session.
Notification: This message is used to indicate errors or other significant events to a BGP peer. If a BGP error condition is detected, a Notification message is sent and the BGP session is typically closed.
Refresh: This is not a standard BGP message type. However, in the context of BGP, Route Refresh is a capability (not a message type) that allows a BGP router to request a full or partial re-advertisement of routes from a peer. This helps in re-synchronizing routing tables without tearing down the BGP session.
The BGP Update message is used to advertise routable destinations and includes route advertisements, route withdrawals, and path attribute modifications. Update messages are used to re-advertise routes that have already been acknowledged.
NEW QUESTION # 20
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