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Realistic JN0-351 Braindumps Torrent - Pass JN0-351 Exam

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Juniper JN0-351 Exam Syllabus Topics:
Topic
Details
Topic 1

* Describe the concepts, benefits, or functionalities of VLANs
* STP and Rapid Spanning Tree Protocol (RSTP) concepts
Topic 2

* Identify the concepts, benefits, applications
* Demonstrate knowledge of how to configure, monitor
Topic 3

* Demonstrate knowledge of how to configure, monitor, or troubleshoot BGP
* Demonstrate knowledge of how to configure, monitor, or troubleshoot IP tunnels
Topic 4

* Demonstrate knowledge of how to configure, monitor, or troubleshoot IS-IS
* Demonstrate knowledge how to configure, monitor, or troubleshoot OSPF
Topic 5

* Demonstrate knowledge how to configure, monitor
* Port security, including MAC limiting, DHCP snooping
Topic 6

* Describe the concepts, benefits, operations
* Demonstrate knowledge how to configure, monitor

Juniper Enterprise Routing and Switching, Specialist (JNCIS-ENT) Sample Questions (Q30-Q35):

NEW QUESTION # 30
Exhibit.

You are using OSPF to advertise the subnets that are used by the Denver and Dallas offices. The routers that are directly connected to the Dallas and Denver subnets are not advertising the connected subnets.
Referring to the exhibit, which two statements are correct? (Choose two.)

* A. Enable the passive option on the OSPF interfaces that are connected to the Dallas and Denver subnets.
* B. Configure and apply a routing policy that redistributes the connected Dallas and Denver subnets.
* C. Create static routes on the switches using the local vMX router's loopback interface for the next hop.
* D. Configure and apply a routing policy that redistributes the Dallas and Denver subnets using Type 5 LSAs.
Answer: A,B

Explanation:
Explanation
The routers that are directly connected to the Dallas and Denver subnets are not advertising the connected subnets. This can be resolved by redistributing the connected subnets into OSPF1.
Option C suggests to configure and apply a routing policy that redistributes the connected Dallas and Denver subnets. This is correct because redistribution allows routes from one routing protocol to be communicated to another, and in this case, it allows the connected subnets to be advertised through OSPF1.
Option D suggests enabling the passive option on the OSPF interfaces that are connected to the Dallas and Denver subnets. This is also correct because in OSPF, a passive interface is an interface that belongs to the OSPF router, but does not send OSPF Hello packets1. It's typically used on an interface that you don't want to use for OSPF adjacencies, but you still want to advertise its IP address1. Therefore, enabling passive interface can help in advertising the Dallas and Denver subnets.

NEW QUESTION # 31
An update to your organization's network security requirements document requires management traffic to be isolated in a non-default routing-instance. You want to implement this requirement on your Junos-based devices.
Which two commands enable this behavior? (Choose two.)

* A. set routing-instances mgmt_junos
* B. set system management-instance
* C. set routing-instances mgmtjunoa interface ge-0/0/0.0
* D. set routing-instances mgmt_junos interface em1
Answer: A,B

Explanation:
Explanation
To isolate management traffic in a non-default routing-instance on Junos-based devices, you can use the set system management-instance and set routing-instances mgmt_junos commands12.
set system management-instance: This command associates the management interface (usually named fxp0 or em0 for Junos OS, or re0:mgmt-* or re1:mgmt-* for Junos OS Evolved) with the non-default virtual routing and forwarding (VRF) instance1. After you configure the non-default management VRF instance, management traffic no longer has to share a routing table with other control traffic or protocol traffic1.
set routing-instances mgmt_junos: This command creates a new routing instance named mgmt_junos. The name of the dedicated management VRF instance is reserved and hardcoded as mgmt_junos; you cannot configure any other routing instance by the name mgmt_junos1.
Therefore, options C and D are correct. Options A and B are not correct because they attempt to assign an interface to the mgmt_junos routing instance, which is not necessary for isolating management traffic1.

NEW QUESTION # 32
Which statement about aggregate routes is correct?

* A. Aggregate routes are used for advertising summarized network prefixes.
* B. Aggregate routes are always preferred over more specific routes, even when the specific routes have a better path.
* C. Aggregate routes are automatically generated for all of the subnets in a routing table.
* D. Aggregate routes can only be used for static routing but not for dynamic routing protocols.
Answer: A

Explanation:
Explanation
Aggregate routes are used for advertising summarized network prefixes12. They help minimize the number of routing tables in an IP network by consolidating selected multiple routes into a single route advertisement1. This approach is in contrast to non-aggregation routing, in which every routing table contains a unique entry for each route1.
Therefore, option D is correct. Options A, B, and C are not correct because:
Aggregate routes can be used with both static routing and dynamic routing protocols1.
Aggregate routes are not automatically generated for all of the subnets in a routing table. They need to be manually configured1.
Aggregate routes are not always preferred over more specific routes. The route selection process in Junos OS considers several factors, including route preference and metric, before determining the active route1.

NEW QUESTION # 33
Exhibit.

Which router will become the OSPF BDR if all routers are powered on at the same time?

* A. R3
* B. R1
* C. R4
* D. R2
Answer: C

Explanation:
Explanation
OSPF DR/BDR election is a process that occurs on multi-access data links. It is intended to select two OSPF nodes: one to be acting as the Designated Router (DR), and another to be acting as the Backup Designated Router (BDR).The DR and BDR are responsible for generating network LSAs for the multi-access network and synchronizing the LSDB with other routers on the same network1.
The DR/BDR election is based on two criteria: the OSPF priority and the router ID. The OSPF priority is a value between 0 and 255 that can be configured on each interface participating in OSPF. The default priority is
1. A priority of 0 means that the router will not participate in the election and will never become a DR or BDR. The router with the highest priority will become the DR, and the router with the second highest priority will become the BDR. If there is a tie in priority, then the router ID is used as a tie-breaker. The router ID is a
32-bit number that uniquely identifies each router in an OSPF domain.It can be manually configured or automatically derived from the highest IP address on a loopback interface or any active interface2.
In this scenario, all routers have the same priority of 1, so the router ID will determine the outcome of the election. The router IDs are shown in the exhibit as RID values. The highest RID belongs to R4 (10.10.10.4), so R4 will become the DR. The second highest RID belongs to R3 (10.10.10.3), so R3 will become the BDR.
References:
1emoticonSPF DR/BDR Election: Process, Configuration, and Tuning2emoticonSPF Designated Router (DR) and Backup Designated Router (BDR)

NEW QUESTION # 34
Which statement is correct about graceful Routing Engine switchover (GRES)?

* A. The PFE restarts and the kernel and interface information is lost.
* B. With no other high availability features enabled, routing is preserved and the new master RE does not restart rpd.
* C. GRES has a helper mode and a restarting mode.
* D. When combined with NSR, routing is preserved and the new master RE does not restart rpd.
Answer: D

Explanation:
Explanation
The Graceful Routing Engine Switchover (GRES) feature in Junos OS enables a router with redundant Routing Engines to continue forwarding packets, even if one Routing Engine fails1. GRES preserves interface and kernel information, ensuring that traffic is not interrupted1. However, GRES does not preserve the control plane1.
To preserve routing during a switchover, GRES must be combined with either Graceful Restart protocol extensions or Nonstop Active Routing (NSR)1. When GRES is combined with NSR, nearly 75 percent of line rate worth of traffic per Packet Forwarding Engine remains uninterrupted during GRES1. Any updates to the primary Routing Engine are replicated to the backup Routing Engine as soon as they occur1.
Therefore, when GRES is combined with NSR, routing is preserved and the new master RE does not restart rpd1.

NEW QUESTION # 35
......

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