Reliable JN0-364 Braindump Pdf for Real Exam

BTW, DOWNLOAD part of ITPassLeader JN0-364 dumps from Cloud Storage: https://drive.google.com/open?id=1XEaUpqJma6whziwojC8mKkngrg6fxvdt

The Service Provider Routing and Switching, Specialist (JNCIS-SP) JN0-364 certification provides both novices and experts with a fantastic opportunity to show off their knowledge of and proficiency in carrying out a particular task. With the Juniper JN0-364 exam, you will have the chance to update your knowledge while obtaining dependable evidence of your proficiency. You can also get help from actual Service Provider Routing and Switching, Specialist (JNCIS-SP) JN0-364 Exam Questions and pass your dream Service Provider Routing and Switching, Specialist (JNCIS-SP) JN0-364 certification exam.

Juniper JN0-364 Exam Syllabus Topics:

SectionWeightObjectives
Layer 2 Bridging and VLANs8-12%- Service provider switching features
- Bridging concepts
- VLANs and trunking
Multiprotocol Label Switching (MPLS)12-18%- Segment routing basics
- Configuration and monitoring
- LDP and RSVP
- Terminology and forwarding
- Labels and LIB
High Availability5-8%- Graceful restart
- Nonstop active routing
- NSR and GRES concepts
Tunnels5-8%- Tunnel configuration and usage
- GRE and IP-IP tunnels
Protocol-Independent Routing10-15%- Static, aggregate, and generated routes
- Routing instances and RIB groups
- Filter-based forwarding
- Martian addresses
- Load balancing
Border Gateway Protocol (BGP)20-25%- Policy and route filtering
- Path selection and attributes
- Configuration and troubleshooting
- Basic operation and message types
- IBGP and EBGP
IPv68-12%- Address types and format
- OSPFv3 and BGP for IPv6
- Static and dynamic routing
- Autoconfiguration
Intermediate System to Intermediate System (IS-IS)10-15%- Configuration and monitoring
- PDUs and TLVs
- Metrics and wide metrics
- Adjacencies and levels
Spanning Tree Protocols8-12%- Port roles and states
- BPDU and protection features
- STP, RSTP, MSTP, VSTP
- Configuration and convergence
Open Shortest Path First (OSPF)15-20%- LSA types and operation
- Link-state database
- Areas and router types
- Configuration and troubleshooting

>> JN0-364 Braindump Pdf <<

Latest Juniper JN0-364 Braindumps Questions | JN0-364 Valid Test Vce

The Juniper JN0-364 practice exam will be a great help because you are left with little time to prepare for the Juniper JN0-364 certification exam which you cannot waste to make time for the Juniper JN0-364 Exam Questions. Get the Juniper JN0-364 certification by preparing through Juniper JN0-364 exam questions that will help you pass the Juniper JN0-364 exam.

Juniper Service Provider Routing and Switching, Specialist (JNCIS-SP) Sample Questions (Q121-Q126):

NEW QUESTION # 121
BGP update messages contain which two elements? (Choose two.)

Answer: B,D


NEW QUESTION # 122
Exhibit:
user@R1> show route 10.16.2.0/23 exact detail
inet.0: 12 destinations, 12 routes (11 active, 0 holddown, 1 hidden)
10.16.2.0/23 (1 entry, 1 announced)
*Aggregate Preference: 130
Next hop type: Reject
Address: 0x8f3fd44
Next-hop reference count: 2
State: <Active Int Ext>
Age: 1:39:21
Task: Aggregate
Announcement bits (1): 0-KRT
AS path: I (LocalAgg)
Flags: Depth: 0 Active
AS path list:
AS path: I Refcount: 2
Contributing Routes (2):
10.16.2.0/24 proto Direct
10.16.3.0/24 proto Direct
Which destination IP address will be matched by the aggregate route shown in the exhibit?

Answer: C

Explanation:
In the Juniper Networks Junos operating system,aggregate routesare used to represent a group of more specific routes with a single, shorter prefix. This technique is essential for reducing the size of routing tables and minimizing the volume of routing updates sent to neighbors. According to Juniper technical documentation, for a destination IP address to "match" a specific route, it must fall within the range defined by the network address and its associated CIDR mask.
The provided exhibit shows a detailed lookup for the aggregate route$10.16.2.0/23$. To determine the range of IP addresses covered by a $/23$ mask, we examine the binary representation of the third octet. A $/23$ mask means the first 23 bits are fixed. For the address $10.16.2.0$:
* The first two octets ($10.16$) are fixed.
* The third octet ($2$) is $00000010$ in binary.
* The 23rd bit is the second-to-last bit of this octet.
* The $/23$ range allows the 24th bit (the last bit of the third octet) and all 8 bits of the fourth octet to vary.
This results in a range where the third octet can be either $2$ ($00000010$) or $3$ ($00000011$). Therefore, the aggregate route $10.16.2.0/23$ covers all IP addresses from$10.16.2.0$ to $10.16.3.255$. The exhibit further confirms this by listing the "Contributing Routes": $10.16.2.0/24$ and $10.16.3.0/24$.
Analyzing the provided options against this range:
* 10.16.3.79 (Option A):This address falls squarely within the $10.16.2.0$ to $10.16.3.255$ range.
* 10.16.0.4 (Option B):This address falls in the $10.16.0.0/23$ range ($0.0$ to $1.255$).
* 10.16.4.183 (Option C):This address falls in the $10.16.4.0/23$ range ($4.0$ to $5.255$).
* 10.16.1.214 (Option D):This address also falls in the $10.16.0.0/23$ range.
Consequently,10.16.3.79is the only destination listed that matches the aggregate route shown. It is also important to note theNext hop type: Rejectin the exhibit; this means that if a packet matches the aggregate but does not match any of the more specific contributing routes, the router will drop the packet and send an ICMP unreachable message to the source.


NEW QUESTION # 123
Exhibit:

You have configured IPv4 and IPv6 in your network and all OSPF neighbors are established. You apply the configuration shown in the exhibit. Which statement is true in this scenario?

Answer: D

Explanation:
In a Juniper Networks environment running Junos OS, understanding the interaction between different versions of OSPF is essential for multi-protocol environments.OSPFv2(defined in RFC 2328) is the standard protocol used for routing IPv4 unicast traffic.OSPFv3(defined in RFC 5340) was originally developed to support IPv6 routing. However, OSPFv3 was later extended via RFC 5838 to support multiple address families (AF), allowing it to carry IPv4 unicast, IPv4 multicast, and other address types within a single OSPF instance.
According to Juniper technical documentation, Junos OS implements this multi-AF support in OSPFv3 through the use ofrealms. When the realm ipv4-unicast statement is configured under the [edit protocols ospf3] hierarchy, the OSPFv3 process becomes capable of calculating and advertising IPv4 routes.
In the provided exhibit, routerR2has a dual-protocol configuration. First, it is running standard OSPFv2, with the ge-0/0/1.0 interface (which is directly connected to the 172.16.2.0/24 network) participating in Area 0.
This ensures that the prefix is advertised as a standard IPv4 LSA to its neighbor,R1. Second, R2 is running OSPFv3 with the realm ipv4-unicast specifically enabled on that same ge-0/0/1.0 interface. Because of this realm, OSPFv3 also treats the 172.16.2.0/24 prefix as a reachable IPv4 destination and advertises it to R1 as an OSPFv3 IPv4-unicast LSA.
As a result, whenR1(which is also running both protocols) receives these routing updates, it will see the same destination prefix advertised by two different protocols. Its routing table (inet.0) will contain one entry learned from the OSPFv2 process and a second, separate entry learned from the OSPFv3 process. While the Junos Routing Engine will ultimately select one as the "active" route based on route preference (both protocols have a default preference of 10), both entries will technically exist within the Routing Information Base (RIB). This confirms that statementBis the correct description of the operational state of the network.
=========


NEW QUESTION # 124
Referring to the exhibit. You want the R1 and R3 routers to forward traffic destined to the
203.0.113.0/24 network through R2. Which BGP attribute would you modify to satisfy this requirement?

Answer: D

Explanation:
To influence the path taken through an autonomous system, the Multi-Exit Discriminator (MED) attribute can be used. By setting a lower MED on R2 for routes advertised to R1 and R3, it will make the path through R2 to the 203.0.113.0/24 network more preferable.


NEW QUESTION # 125
Which two statements are correct about the behavior of IS-IS metrics? (Choose two.)

Answer: B,C

Explanation:
Wide metrics in IS-IS allow for a larger metric value than what is available with narrow metrics, which supports a maximum of 63. Wide metrics also enable an interface to advertise different metrics for Level 1 and Level 2, allowing for more flexible routing policies and greater scalability in large networks.


NEW QUESTION # 126
......

If you prefer to prepare for your exam on paper, then our JN0-364 exam materials will be your best choice. JN0-364 PDF version is convenient to read and printable, and you can take them with you, and you can practice them anywhere and anyplace. Besides, free demo for JN0-364 PDF version is available, and you can try before buying. We are pass guarantee and money back guarantee and if you fail to pass the exam. You can receive the downloading link and password for JN0-364 Training Materials within ten minutes for JN0-364 exam materials, if you don’t receive, you can contact with us, and we will solve the problem for you.

Latest JN0-364 Braindumps Questions: https://www.itpassleader.com/Juniper/JN0-364-dumps-pass-exam.html

DOWNLOAD the newest ITPassLeader JN0-364 PDF dumps from Cloud Storage for free: https://drive.google.com/open?id=1XEaUpqJma6whziwojC8mKkngrg6fxvdt