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ccie rs lab sections

    ccie rs lab sections

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  • Layer 3 IP to link layer address mapping -> NS is also sent when the terminal knows the destination IPV6 address but does not know the destination link layer address. (1) dir flash: (view the current IOS image file name, you can also use rouote#show version); Hostname ABC   Link-local unicast address: Generally used as the source address of the IPV6 routing protocol packet in IPV6, it can only be used on the direct link. =========================================================== ================   Use multicast to route notifications ( reliable )   Configuration Choices, Basic Procedures, and Required Input Parameters Source filename ? C3825-spservicesk9-mz.150-1.M.bin (the name of the IOS to be upgraded)      1.ASCII transmission method When the candidates who followed the exchange of TS1's MPLS *** solution, the language was too rigid. From PC104 to SW3 to R9~ all the way up to check the default route, RT, neighbors, R7 routing and NAT, almost no idea. There are several other institutions in the 4 points that are directly linked to the candidates. => Best route   2. When the target address is unknown , the switch will flood the data frame ( the target address is known , the frame will not be flooded )   ccie test failed, and started the experiment on safety aspects such as Interface ethernet 0/1   someone will explain patiently to you. Someone will teach you step by Configure the corresponding interface without sending any notifications   =========================================================== ================   Router upgrade IOS summary Debug neighbor creation process   2. Topology table   Interface s 1   The interior of a source address of 192.168.1.10 translated into an external one Ge IP is 1.1.1.1   Show frame-relay map   PS: There are a lot of pictures in the version, and the requirements are detailed. So the test preparation partners don't worry about not drawing! ! Actually, it is basically not used after you are familiar with it. (Version 1 version has been knocked 11 times in total, version 1 + version 7 times, version 2 version 15 times, version 2+ version 10 times, version 3 version 5 times) 1. Transmission area ( backbone area ) 2. Common area ( non-backbone area )   problems independently. I think this is equivalent to losing the ability Ping 1.1.1.1   the determination to solve the problem, there will be no external Enable "use all zero broadcast"? y/n [n]: n (select no) show ip protocols check to see RIP -related information    End   Enable "use all zero broadcast"? y/n [n]: n (select no) Interface serial 0   Many commands on Cisco devices can be used by replacing IP with IPV6. Note: Before the upgrade to prevent new IOS problems, the original IOS is now backed up. to everyone, because you don't feel it, you may have no work experience, Configuring and Verifying Interface VLANs    A: The main sacrifice is my spare time. I think everyone who needs to prepare for the CCIE lab exam needs to make such sacrifices. Although this is a big sacrifice, I feel that it is better to prepare for it than to gradually study it in stages. That's why I always learn in the winter, because I don't have to do too much work at the time, so I can do other things I like to do. One of the difficulties I encountered was that when I took the first CCIE experiment, I lacked special experimental equipment for me to practice. Of course,ccie rs lab sections, where I work at TAC, there are countless routers and switches, but these devices are used as a customer when resolving customer cases, so that they cannot be used for the CCIE lab exam. Perhaps this is also why, when I became a SiS engineer, one of the first plans I decided to reach was to lobby the relevant people to set up a special CCIE lab test for other SiS engineers. The interval used. At that time, I thought that although I don't need to take CCIE again in the future, I don't need it for the interval of the CCIE lab exam, but it is helpful for other colleagues who want to get CCIE to achieve their goals. But I can't think of it later I still need it. I am fortunate that all management supports and rewards our team's employees for CCIE status (or multiple CCIE qualifications).

ccie rs lab sections


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CCIE Routing and Switching LAB Dumps

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Exam Code: CFG: LAB1、LAB1+、LAB2、LAB2+、LAB3
TS: TS1(5 sets)、TS2(3 sets)
DIAG:DIAG 1~DIAG 8(8 sets)

Certification Provider: Cisco

Certification Exam Name:CCIE Routing and Switching Lab

Update Date: Apr 24,2024

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SECTION 1 LAYER 2 TECHNOLOGIES


Section 1.1: LAN Access

The following requirements were pre-configured

VTP is turned off in all switches

All required VLAN, including access-ports configuration in all relevant switches are provisioned.

All required SVI interface in all relevant switches (including IP address and subnets mask) are provisioned.

Configure the network in all sites as per the following requirements:

Access-port must immediately transition to the forwarding state upon link up, as long as they do not receive a BPDU. Use the minimal number of commands per switch to enable this feature.

If an access-port receive a BPDU, it must automatically shutdown. Use the minimal commands per switch to enable this feature.

 

Ports that were shutdown must attempt to automatically recover after 10 minutes.

None of the switches may generate a TC.


section 1.2: LAN distribution

configure the headquarters’ network as well as the large and medium office networks as per the following requirements:

all trunks must use dot1q encapsulation

negotiation of trunking protocol must be disabled in all switches

distribution switches (SW300, SW301, SW400, SW401, SW500, SW501) must initiate etherchannel negotiation using LACP

configure layer 2 etherechannels number as shown in the diagram 1: main topology and diagram 5: layer 2 connections’ (that is use only Po1 and/or Po2)

ensure that all ports included in etherchannels are effectively in use and bundled in the expected channel

access switches must see similar output as shown below:



section 1.3: LAN resiliency: spanning-tree

configure the headquarters‘network as per the following requirements:

SW300 must be the spanning-tree root bridge and must maintain a single spanning-tree instance for the following VLANs: 2000, 2002, 2004, 2006, 2008 (use instance number 2)

SW301 must be the spanning-tree root bridge and must maintain a single spanning-tree instance for the following VLANs: 2001, 2003, 2005, 2007, 2009 (use instance number 1)

 

all other VLANs, except 3001, must share the default spanning-tree instance

ensure that interface E0/2 of SW 300 and SW 301 is a dot1q trunk and that it switches frames for VLAN 3001 only

SW300, SW301, and SW 310 must not have any blocked ports for any access VLAN (2000-2009)

SW310 must have the least chance of being elected the root bridge for any VLAN

none of the three switches may run more than four instance of spanning-tree at any point in time

configure all access switches in both datacenter networks (SW110, SW111, SW210, SW211) as per the following requirements:

use 32-bit based values for the default port path cost

all four switches must use the default value for their interface cost




section 1.4: WAN switching technologies

configure the home router R70 as per following requirements:

the Ethernet WAN link must rely on a layer 2 protocol that supports authentication and layer 3 protocol negotiation

the service provider expects that R70 completes a three-way handshake by providing the expected response of a challenge requested

R70 must use the hostname R70and password CCIE (without quotes)

R70 must receive an IP address from R8 and must install a default route pointing to 201.99.8.8

ensure that R70 can successfully ping 8.8.8.8, which is located in the ISP#2 cloud

you are not allowed to configure any static route in R70 in order to achieve the previous requirements

use the pre-configured Dialer 1 interface as appropriate 

section 2 layer 3 technologies


section 2.1: OSPF in HQ

configure the headquarters network (BGP AS#65003) as per the following requirements:

both gateway routers of the headquarters network must always advertise a default route into the ospf domain

all four devices produce the exact same output as shown below. everything must match, except the dead time” counters and line order


section 2.2: OSPF in DC#1

in order to speed up OSPF convergence in the datacenter#1 network, limit the number of IP prefixes that are carried in OSPF LSAs that OSPF is preconfigured in all required devices in datacenter#1

configure the datacenter#1 network as per the following requirements:

all OSPF devices must exclude the IP prefixes of connected networks when advertising their type 1 router LSA, except for prefixes associated with loopbacks or passive interfaces

host loopbacks are the only OSPF intra-area prefixes that may appear in any DC devices ‘routing table

your solution must still apply if any new interface was added to the OSPF domain

don not use any prefix-list or another explicit filter anywhere

do not configure any interface as unnumbered

do not remove any pre-configuration


section 2.3: B2B connection with partner#1

R100 is located in the partner#1 network and is connected to R42. it supports OSPF only. configure the large office network as per the following requirements:

 

R42 must run a separate OSPF process with R100

as mentioned in item 2.6, the site gateways R40 and R41 area not allowed to redistribute OSPF into BGP and vice versa

R42 is allowed to redistribute OSPF into BGP and vice versa

At the end of the exam:

The server 2 (that is located in the Datacenter#2) must be able to ping the IP address 100.100.100.100/24 (that is located in the partner#1 network)

  R100, the partner router, must receive the external prefixes as shown below and no other prefixes:

Section 3 VPN Technology


Section 3.1: MPLS VPN

Section 3.2: DMVPN

Section 3.3: Internet Access

Section 3.4 LAN to LAN IPsec

Section 4 Infrastructure Security


Section 4.1: Device Security

Section 4.2: Network Security

Section 5 Infrastructure Security


Section 5.1: System Management

Section 5.2: Quality of Service

Section 5.3: Network Services

Section 5.4: Network Services

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