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Juniper Enterprise Routing and Switching, Professional (JNCIP-ENT) Sample Questions (Q73-Q78):
NEW QUESTION # 73
Which two are properties of a not-so-stubby area? (Choose two.)
Answer: B,D
NEW QUESTION # 74
Exhibit
You are receiving the 203 0.113.0/24 route from both upstream ISPs You are asked to ensure that ISP A is the preferred ISP for traffic being sent to the 203.0.113.0/24 network from devices in AS 65512.
Referring to the exhibit, which two statements will accomplish this behavior? (Choose two.)
Answer: A,D
Explanation:
The exhibit illustrates an Autonomous System (AS 65512) receiving the same prefix ($203.0.113.0/24$) from two different neighbors, ISP A and ISP B. To influence outbound traffic from AS 65512 so that ISP A is preferred, you must manipulate the BGP Local Preference attribute.BGP Path Selection and Local Preference:
Local preference is the first attribute evaluated by BGP after checking if the next hop is reachable. A higher local preference value is always preferred over a lower one. The default value in Junos OS is 100.Applying the Preference (Option B): By applying an import policy on router R1 to set a local preference higher than
100 (e.g., 200) for routes from ISP A, R1, R2, and R3 will all prefer the path through R1 to reach ISP A.
Applying the Preference (Option C): Alternatively, you can achieve the same result by applying an import policy on R2 to set a local preference lower than 100 (e.g., 50) for routes from ISP B. Since the routes from R1 remain at the default of 100, the path through ISP A (100) will be preferred over ISP B (50).Why A and D are incorrect: Setting a lower preference for ISP A (Option A) or a higher preference for ISP B (Option D) would result in ISP B being preferred for outbound traffic, which is the opposite of the requirement.
NEW QUESTION # 75
Exhibit.
Referring to the exhibit, what is required for the BGP peering to establish?
Answer: C
Explanation:
In this scenario, router1 (AS 65001) is attempting to establish anExternal BGP (EBGP)peering with router2 (AS 65002) using theirloopback (lo0) interface addresses(192.168.1.1 and 172.16.1.1).
According to the Junos OS 24.4 documentation on BGP peering sessions:
* EBGP TTL Default:By default, EBGP packets are sent with aTime-to-Live (TTL) value of 1. This assumes the peer is directly connected on a shared physical subnet.
* Loopback Peering Challenge:When peering between loopback addresses, the destination IP is not on the same subnet as the physical ingress interface. Even if the routers are directly connected physically, the router treats the loopback interface as an additional "hop". With a TTL of 1, the BGP packet expires before it can be processed by the peer's routing engine.
* The Multihop Solution (Option D):To allow this session to form, you must configure the multihop statement under the BGP neighbor hierarchy. This tells Junos to increase the TTL (the default becomes
64 when multihop is enabled) and allows the session to establish even though the peer's address is not directly connected.
* Target Neighbor:The neighbor address specified in the configuration on router1 must be the remote loopback address of router2 (172.16.1.1).
* Option A (Multipath)is incorrect because it is used for load balancing across multiple active BGP paths, not for initial session establishment.
* Options B and Care incorrect because they reference physical interface addresses (10.10.20.1 or
10.10.10.1) which are not the addresses being used for the loopback-based BGP session.
NEW QUESTION # 76
Which two statements are correct about EVPN Pure Type-5 routes? (Choose two.)
Answer: B,C
Explanation:
EVPN Route Type 5 (IP Prefix Route) is used to advertise IP prefixes (subnets) between broadcast domains or between VRFs in an EVPN fabric.
* IP-VRF-to-IP-VRF (Statement C):In an EVPN-VXLAN architecture, Type 5 routes are primarily used forLayer 3 connectivity. They allow different IP-VRFs on different VTEPs to exchange prefix information directly. This model is widely referred to asIP-VRF-to-IP-VRFrouting because it enables inter-subnet routing at the leaf layer without requiring Layer 2 MAC learning for those specific prefixes.
* Overlay Next Hop (Statement B):For a PE router to reach a prefix advertised via a Type 5 route, it must resolve theoverlay next hop. This next hop is typically the loopback IP address of the originating VTEP, which the receiving router uses to build the VXLAN tunnel.
* Why others are incorrect:Statement A is incorrect because Type 7 routes are used for IGMP/MLD join synchronization. Statement D is incorrect because Type 5 routes advertise IP prefixes, not MAC addresses; MAC extended communities are associated with Type 2 routes.
NEW QUESTION # 77
When configuring 802.1X authentication, what are three server fail fallback settings? (Choose three.)
Answer: B,C,E
NEW QUESTION # 78
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