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
Exam Code: 300-101、300-115、300-135
Certification Provider: Cisco
Certification Exam Name:CCNP Routing and Switching
Update Date: Sep 12,2025
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.
So as long as the 1.1.1.0 network is not DOWN , R1 will always send default routes to R2 . Then the NH of this BGP route is the interface IP of the announcer . EBGP neighbors generally use the other party's direct interface IP to refer to the neighbor . However, if the EBGP neighbor is established by using the LOOPBACK interface , the NH is the update source address of the EBGP neighbor. (Of course, the EBGP neighbor does not use the LOOPBACK interface to establish a neighbor.) Ip route 172.17.0.0 255.255.255.0 192.168.12.1 *Mar 4 07:02:23.473: DHCPD: relay information option exists, but giaddr is zero. Switch(config)# interface fast 0/1 Switch(config-if)# no switchport When a violation occurs, the interface enters the err-disable state. Deception process ARP Response Switch(config-if)# switchport protected Port-channel Ethernet Channel of interfaces The default is shutdown , optional protect , restrict Decision making Ip dhcp pool BIND Matching 1256 and 123 456 BGP routing table entry for 172.16.0.0/16, version 4 Note inconsistent with err-diasble difference is, ERR-disable will disable off the entire interface, and inconsistentport is for a particular VLAN 's. *Mar 1 00:11:48.023: ICMP: echo reply rcvd,ccnp switch chapter 6 exam answers, src 2.2.2.2, dst 192.168.123.3 Neighbor BGP table on R2 : Network consolidation (same protocol or different protocols) AS_PATH , and AS_PATH only when routing out this AS or BGP routers to update EBGP will change when neighbors in AS inside will not change, therefore, in the AS internal, anti-ring requires the use of split horizon. So how to solve the problem that R5 ca n't learn routing? When the router performs a classless route lookup (by default, ip classless ), it does not pay attention to the class of the destination address. It performs the longest match between the destination address and all known routes bit by bit . So now, we add the following in the configuration of R2 : Switching, and store the information in the cache, all subsequent data packets , you can not interrupt the system processor to perform queries and other operations , directly from Repeat, you can configure multiple Fa0/20 the Next-Hop recursive This (recursive next hop ) broke the characteristics of the traditional hop-hop interface must be directly connected under the router IP restrictions. Recursive next-hop may not be directly connected to the network, as long as the relevant routes in the routing table are reachable. Generally, the recursive next-hop is unreachable, and the data will be handled by the route (generally the default route is matched).
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