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NEW QUESTION: 1
Refer to the exhibit.

An enterprise is migrating its single-area OSPF network from a Frame Relay WAN service to an MPLS L3VPN service. Frame Relay will remain in only a few sites that require increased resiliency via two different WAN connections.
Which feature could be used in the ?MPLS VPN service provider network to support the design requirement by ensuring that during normal operation, intersite traffic will only use the MPLS VPN service and not the old Frame Relay service?
33
A. multiple stub areas
B. sham links
C. super backbone
D. virtual links
Answer: B
Explanation:
Explanation/Reference:
Explanation:

NEW QUESTION: 2
The implementations group has been using the test bed to do a 'proof-of-concept' that requires both Client 1 and
Client 2 to access the WEB Server at 209.65.200.241. After several changes to the network addressing, routing scheme, DHCP services, NTP services, layer 2 connectivity, FHRP services, and device security, a trouble ticket has been opened indicating that Client 1 cannot ping the 209.65.200.241 address.
Use the supported commands to isolated the cause of this fault and answer the following questions.
What is the solution to the fault condition?
A. Enable OSPF routing on the s0/0/0 interface using the network 209.65.200.0 0.0.0.255 area 12 command.
B. Enable OSPF authentication on the s0/0/0 interface using the ip ospf authentication message-digest command
C. Redistribute the BGP route into OSPF using the redistribute BGP 65001 subnet command.
D. Enable OSPF routing on the s0/0/0 interface using the network 10.1.1.0 0.0.0.255 area 12 command.
Answer: B
Explanation:
On R1, for IPV4 authentication of OSPF the command is missing and required to configure------ ip ospf authentication message-digest
Case Study: 4
Ticket 4 : BGP Neighbor
Topology Overview (Actual Troubleshooting lab design is for below network design)
Client Should have IP 10.2.1.3
*
EIGRP 100 is running between switch DSW1 & DSW2
*
OSPF (Process ID 1) is running between R1, R2, R3, R4
*
Network of OSPF is redistributed in EIGRP
*
BGP 65001 is configured on R1 with Webserver cloud AS 65002
*
HSRP is running between DSW1 & DSW2 Switches
*
The company has created the test bed shown in the layer 2 and layer 3 topology exhibits.
This network consists of four routers, two layer 3 switches and two layer 2 switches.
In the IPv4 layer 3 topology, R1, R2, R3, and R4 are running OSPF with an OSPF process number 1.
DSW1, DSW2 and R4 are running EIGRP with an AS of 10. Redistribution is enabled where necessary.
R1 is running a BGP AS with a number of 65001. This AS has an eBGP connection to AS 65002 in the
ISP's network. Because the company's address space is in the private range.
R1 is also providing NAT translations between the inside (10.1.0.0/16 & 10.2.0.0/16) networks and outside
(209.65.0.0/24) network.
ASW1 and ASW2 are layer 2 switches.
NTP is enabled on all devices with 209.65.200.226 serving as the master clock source.
The client workstations receive their IP address and default gateway via R4's DHCP server.
The default gateway address of 10.2.1.254 is the IP address of HSRP group 10 which is running on DSW1 and DSW2.
In the IPv6 layer 3 topology R1, R2, and R3 are running OSPFv3 with an OSPF process number 6.
DSW1, DSW2 and R4 are running RIPng process name RIP_ZONE.
The two IPv6 routing domains, OSPF 6 and RIPng are connected via GRE tunnel running over the underlying IPv4 OSPF domain. Redistrution is enabled where necessary.
Recently the implementation group has been using the test bed to do a 'proof-of-concept' on several implementations. This involved changing the configuration on one or more of the devices. You will be presented with a series of trouble tickets related to issues introduced during these configurations.
Note: Although trouble tickets have many similar fault indications, each ticket has its own issue and solution.
Each ticket has 3 sub questions that need to be answered & topology remains same.
Question-1 Fault is found on which device,
Question-2 Fault condition is related to,
Question-3 What exact problem is seen & what needs to be done for solution


Client is unable to ping IP 209.65.200.241
Solution
Steps need to follow as below:-
When we check on client 1 & Client 2 desktop we are not receiving DHCP address from R4
* ipconfig ----- Client will be receiving IP address 10.2.1.3
IP 10.2.1.3 will be able to ping from R4 , R3, R2, R1
*
Look for BGP Neighbourship
*
Sh ip bgp summary ----- No O/P will be seen
Check for interface IP & ping IP 209.65.200.225 ---- Reply will be received from Webserver interface
*
Look for peering IP address via sh run on R1 interface serial 0/0/1
*


Since we are receiving icmp packets from Webserver interface on R1 so peering IP address under router
*
BGP is configured wrong IP but with correct AS nos.
Change required: On R1 under router BGP Change neighbor 209.56.200.226 remote-as 65002 statement
* to neighbor 209.65.200.226 remote-as 65002

NEW QUESTION: 3
Share directories via SMB
Configure the SMB service on the system1
Your SMB server must be a member of the work group STAFF
Share /common and share name must be common
Only clients of domain11.example.com can access the common share
Common must be able to browse
User andy must be able to read the content of the share, if necessary, verfication code is redhat
Answer:
Explanation:
See Explanation
Explanation/Reference:
system1:
yum -y install samba samba-client
firewall-cmd --add-service=samba -permanent
firewall-cmd --add-service=mountd -permanent
systemctl restart firewalld
vim /etc/samba/smb.conf
workgroup = STAFF
[common]
path = /common
hosts allow = 172.24.11.
browseable = yes
:wq
mkdir /common
chcon -R -t samba_share_t /common/
smbpasswd -a andy
systemctl start smb
systemctl enable samba
system2:
yum install -y cifs-utils samba-client

NEW QUESTION: 4
Which two statements about IPv6 Neighbor Solicitation Messages are true? (Choose two.)
A. They are identified by Type value 133 in the ICMP packet header.
B. They are identified by Type value 134 in the ICMP packet header.
C. They are sent at a regular interval through the interfaces on a IPv6 device.
D. They are sent to the link-layer address of the destination node.
E. They elicit neighbor advertisement message from the destination device.
F. They include the link-layer address of the source device.
Answer: E,F
Explanation:
https://supportforums.cisco.com/document/77521/ipv6-neighbor-discovery-protocol-ndp
http://www.cisco.com/c/en/us/td/docs/ios-xml/ios/ipv6/configuration/15-2mt/ip6-15-2mt-book/ip6-neighb-
disc.html
ICMPv6 Type Name of Message
Type 133 Router Solicitation (RS)
Type 134 Router Advertisement (RA)
Type 135 Neighbor Solicitation (NS)
Type 136 Neighbor Advertisement (NA)
Type 137 Redirect Message


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