Exam Code: 300-101、300-115、300-135
Certification Provider: Cisco
Certification Exam Name:CCNP Routing and Switching
Update Date: Sep 12,2025
CCNP Routing And Switching Written Exam
Exam Number : 300-101 ROUTE
Associated Certification : CCNP Routing & Switching
Duration : 120 minutes (45 - 65 questions)
Available Languages: English, Japanese
NOTE: Implementing Cisco IP Routing (ROUTE 300-101) is a qualifying exam for the Cisco CCNP Routing.This exam certifies the routing knowledge and skills of successful candidates.
Exam Number : 300-115 SWITCH
Associated Certification : CCNP Routing & Switching
Duration : 120 minutes (30 - 40 questions)
Available Languages: English, Japanese
NOTE: Implementing Cisco IP SWITCHING (ROUTE 300-115) is a qualifying exam for the Cisco CCNP SWITCHING. This exam certifies the switching knowledge and skills of successful candidates.
Exam Number : 300-135 TSHOOT
Associated Certification : CCNP Routing & Switching
Duration : 120 minutes (15 - 25 questions)
Available Languages: English, Japanese
NOTE: This exam certifies that the successful candidate has the knowledge and skills necessary to: Plan and perform regular maintenance on complex enterprise routed and switched networks Use technology-based practices and a systematic ITIL-compliant approach to perform network troubleshooting
Here is the most accurate CISCO CCIE WRITTEN exam questions and answers. All study materials need to be carefully selected by professional certification experts to ensure that you spend the least amount of money, time, and pass the high quality exam. There is also a professional service team that can customize your study plan for you to answer all your questions, PASSHOT's CCIE Written Dumps is definitely the biggest boost for you to test CCIE that helping you pass any Cisco exam at one time.
This feature is quite unstable and is not recommended. The message contains: Origin IGP, metric 0, localpref 100, valid, internal Local Configuration Example 3 (at a single routing protocols -OSPF ) The network already exists in the routing table. Redistribute ospf 1 route-map test Choose PAgP or LACP The default is 180s , which can also be called expiration timer time limit timer or timeout timer. Dynamic routing protocol port number or protocol number Aggregate-address summary address as-set advertise-map Identify the type of message: Match community 11 exact-match // strict match !! GW has no other configuration about routing Unicast Update The behavior of the router is hop-by-hop. Each router along the path to the destination network must have a route to the destination. Path 100 i BPDU operation The rules for BGP next-hop are as follows: " The When A Receives A Configuration Switch that the contains the BPDU Superior Information (Lower Bridge ID,ccnp route skills based assessment answers, path cost Lower, and SO Forth), IT Information Stores The Port for that. The this the If the BPDU IS ON The Received the root of The Port Ip prefix-list 100 permit 100.100.100.0/24 route-map COST1 permit 10 On: channel member without negotiation ( no protocol ) S0 192.168.12.1/24 r1 Match comprising 100 and 200 of AS_PATH For example , the configuration of R3 is as follows: For further questions, see RFC 1403 - BGP OSPF Interaction If there is a tag , it is determined whether the trunk port allows the VLAN frame to enter. Allow the next step, otherwise discard the frame. 3.3.3.3 Note that the BGP created by R3 uses the AS number of 64512 , which is the federate member AS number instead of the federated AS number. As a result, all three switches exchange VTP packets to inform them that there is a VLAN for accessing users . For VLANs that do not have users locally , they will be automatically trimmed. Let's take a look: : Disabled Route-map test per 10 Set as-path tag At this time, actually R1 's loopback port to R2 needs at least 2 hops, then this time you need to configure both neighbor xxxx ebgp-mul 2 Neighbor R3 filter-list 2 weight 5000 Static routes CISCO data forwarding mode R1(config-router)# redistribute connected subnets Milne 's packet was sent to Roo because he learned the wrong one. We restore the experimental environment to the basic configuration: BGP neighbor relationships are as follows No shutdown exit Next Hop After changing the topology, the interface IP of R2 has changed. At this time , the RIP sent by R1 is updated, and the source address is still 192.168.12.1 . After receiving R2 , it finds that the interface IP that is updated with the local is not in a subnet, so R2 ignores the update message of R1 . In addition, the message sent by R2 to R1 is accepted by R1 , because R1 thinks that the RIP update message source address 192.168.12.5 sent by R2 is on the same subnet as its own interface.
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