Juniper JN0-664 Reliable Dumps Ppt & Top JN0-664 Dumps
Juniper JN0-664 Reliable Dumps Ppt & Top JN0-664 Dumps
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Juniper JN0-664 exam focuses on different areas such as Juniper Networks’ technology, service provider routing and switching, and platform configuration and troubleshooting. It also covers the topics of Border Gateway Protocol (BGP), Intermediate System to Intermediate System (IS-IS), Open Shortest Path First (OSPF), and Multiprotocol Label Switching (MPLS).
The JN0-664 exam covers a wide range of topics, including Junos OS fundamentals, routing protocols, network security, MPLS, QoS, and more. Candidates must have a deep understanding of these topics and practical experience in configuring and troubleshooting Juniper Networks service provider networks. Passing JN0-664 Exam demonstrates that a candidate has the necessary skills and knowledge to design, implement, and troubleshoot complex service provider networks using Juniper Networks technology.
Passing the JN0-664 exam is a key step towards becoming a certified Juniper Networks professional. It demonstrates to employers and clients that the candidate has the knowledge and skills to design, configure, and troubleshoot complex service provider networks using Juniper Networks technology.
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Juniper Service Provider, Professional (JNCIP-SP) Sample Questions (Q37-Q42):
NEW QUESTION # 37
Exhibit
Which two statements are true about the OSPF adjacency displayed in the exhibit? (Choose two.)
- A. There is a mismatch in the hello interval parameter between routers R1 and R2
- B. There is a mismatch in the dead interval parameter between routers R1 and R2.
- C. There is a mismatch in the OSPF hold timer parameter between routers R1 and R2.
- D. There is a mismatch in the poll interval parameter between routers R1 and R2.
Answer: A,B
Explanation:
The hello interval is the time interval between two consecutive hello packets sent by an OSPF router on an interface. The dead interval is the time interval after which a neighbor is declared down if no hello packets are received from it. These parameters must match between two OSPF routers for them to form an adjacency. In the exhibit, router R1 has a hello interval of 10 seconds and a dead interval of 40 seconds, while router R2 has a hello interval of 30 seconds and a dead interval of 120 seconds. This causes a mismatch and prevents them from becoming neighbors23.
NEW QUESTION # 38
Which two statements are correct about a sham link? (Choose two.)
- A. The PEs exchange Type 3 OSPF LSAs instead of Type 1 OSPF LSAs for the L3VPN routes.
- B. It creates an OSPF multihop neighborship between two PE routers.
- C. It creates a BGP multihop neighborship between two PE routers.
- D. The PEs exchange Type 1 OSPF LSAs instead of Type 3 OSPF LSAs for the L3VPN routes
Answer: B,D
Explanation:
A sham link is a logical link between two PE routers that belong to the same OSPF area but are connected through an L3VPN. A sham link makes the PE routers appear as if they are directly connected, and prevents OSPF from preferring an intra-area back door link over the VPN backbone. A sham link creates an OSPF multihop neighborship between the PE routers using TCP port 646. The PEs exchange Type 1 OSPF LSAs instead of Type 3 OSPF LSAs for the L3VPN routes, which allows OSPF to use the correct metric for route selection1.
NEW QUESTION # 39
Exhibit
Referring to the exhibit, which statement is correct?
- A. The vrf-target configuration will allow routes to be shared between CE-1 and CE-2.
- B. The vrf-target configuration will stop routes from being shared between CE-1 and CE-2.
- C. The route-diatinguisher configuration will stop routes from being shared between CE-1 and CE-2.
- D. The route-distinguisher configuration will allow overlapping routes to be shared between CE-1 and CE-2.
Answer: D
Explanation:
The route distinguisher (RD) is a BGP attribute that is used to create unique VPN IPv4 prefixes for each VPN in an MPLS network. The RD is a 64-bit value that consists of two parts: an administrator field and an assigned number field. The administrator field can be an AS number or an IP address, and the assigned number field can be any arbitrary value chosen by the administrator. The RD is prepended to the IPv4 prefix to create a VPN IPv4 prefix that can be advertised across the MPLS network without causing any overlap or conflict with other VPNs. In this question, we have two PE routers (PE-1 and PE-2) that are connected to two CE devices (CE-1 and CE-2) respectively. PE-1 and PE-2 are configured with VRFs named Customer-A and Customer-B respectively.
NEW QUESTION # 40
Exhibit
Referring to the exhibit, CE-1 is providing NAT services for the hosts at Site 1 and you must provide Internet access for those hosts Which two statements are correct in this scenario? (Choose two.)
- A. You must configure a RIB group on PE-1 to leak a default route from the inet.0 table to the VPN-A.inet.0 table.
- B. You must configure a static route in the main routing instance for the 10 1 2.0/24 prefix that uses the VPN-A.inet.0 table as the next hop
- C. You must configure a static route in the main routing instance for the 203.0.113.1/32 prefix that uses the VPN-A.inet.0 table as the next hop.
- D. You must configure a RIB group on PE-1 to leak the 10 1 2.0/24 prefix from the VPN-A.inet.0 table to the inet.0 table.
Answer: A,C
NEW QUESTION # 41
Exhibit
The network shown in the exhibit is based on IS-IS
Which statement is correct in this scenario?
- A. The system IDofR1_2 is 192.168.16.1
- B. The area address is two bytes.
- C. The routers are using unnumbered interfaces
- D. The NSEL byte for Area 0001 is 00.
Answer: D
Explanation:
IS-IS is an interior gateway protocol that uses link-state routing to exchange routing information among routers within a single autonomous system. IS-IS uses two types of addresses to identify routers and areas:
system ID and area address. The system ID is a unique identifier for each router in an IS-IS domain. The system ID is 6 octets long and can be derived from the MAC address or manually configured. The area address is a variable-length identifier for each area in an IS-IS domain. The area address can be 1 to 13 octets long and is composed of high-order octets of the address. An IS-IS instance may be assigned multiple area addresses, which are considered synonymous. Multiple synonymous area addresses are useful when merging or splitting areas in the domain1. In this question, we have a network based on IS-IS with four routers (R1_1, R1_2, R2_1, and R2_2) belonging to area 0001. The area address for area 0001 is 49.0001. The NSEL byte for area 0001 is the last octet of the address, which is 01. The NSEL byte stands for Network Service Access Point Selector (NSAP Selector) and indicates the type of service requested from the network layer2. Therefore, the correct statement in this scenario is that the NSEL byte for area 0001 is 01.
References: 1:
https://www.cisco.com/c/en/us/td/docs/ios-xml/ios/iproute_isis/configuration/xe-16/irs-xe-16-book/irs-ovrvw-cf.
2:
https://www.juniper.net/documentation/us/en/software/junos/is-is/topics/concept/is-is-routing-overview.html
NEW QUESTION # 42
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