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NEW QUESTION: 1
You currently have an application with an Auto Scalinggroup with an Elastic Load Balancer configured in AWS. After deployment users are complaining of slow response time for your application. Which of the following can be used as a start to diagnose the issue
A. Use Cloudwatch to monitor the HealthyHostCount metric
B. Use Cloudwatch to monitor the CPU Utilization
C. Use Cloudwatch to monitor the ELB latency
D. Use Cloudwatch to monitor the Memory Utilization
Answer: C
Explanation:
Explanation
High latency on the ELB side can be caused by several factors, such as:
* Network connectivity
* ELB configuration
* Backend web application server issues
For more information on ELB latency, please refer to the below link:
* https://aws.amazon.com/premiumsupport/knowledge-center/elb-latency-troubleshooting/
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.
Which is the solution to the fault condition?
A. Under the EIGRP process, delete the redistribute ospf 1 route-map OSPF_ to_ EIGRP command and enter the redistribute ospf 1 route-map OSPF - > EIGRP command.
B. Under the OSPF process, delete the redistribute eigrp10 subnets route-map EIGPR ->OSPF command and enter the redistribute eigrp10 subnets route-map OSPF - > EIGRP command.
C. Under the EIGRP process, delete the redistribute ospf 1 route-map OSPF _to_ EIGRP command and enter redistribute ospf 1 metric 100000 100 100 1 15000 route_ map OSPF _to _EIGRP command
D. Under the OSPF process, delete the redistribute eigrp10 subnets route-map EIGPR ->OSPF command and enter the redistribute eigrp10 subnets route-map EIGPR - > OSPF command.
E. Under the EIGRP process, delete the redistribute ospf 1 route-map OSPF_ to_ EIGRP command and enter the redistribute ospf 6 metric route-map OSPF - > EIGRP command.
Answer: A
Explanation:
Explanation
On R4, in the redistribution of EIGRP routing protocol, we need to change name of route-map to resolve the issue. It references route-map OSPF_to_EIGRP but the actual route map is called OSPF->EIGRP.
Topic 9, Ticket 9 : EIGRP AS number
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
* From Client PC we can ping 10.2.1.254
* But IP 10.2.1.3 is not able to ping from R4, R3, R2, R1
* This clearly shows problem at R4 Kindly check routes in EIGRP there are no routes of eigrp.
* Check the neighborship of EIGRP on R4; there are no neighbor seen from DSW1 & DSW2 check the running config of EIGRP protocol it shows EIGRP AS 1 process.... Now check on DSW1 & DSW2 On DSW1 only one Eigrp neighbour is there with DSW2 but its not with R4...
* From above snapshot & since R4 has EIGRP AS number 1 due to which neighbour is not happening.
* Change required: On R4, IPV4 EIGRP Routing, need to change the EIGRP AS number from 1 to 10 since DSW1 & DSW2 is configured to be in EIGRP AS number 10.
------------------------------------------------------------------------------------------------------------------------------
NEW QUESTION: 3
Network mapping provides a security testing team with a blueprint of the organization.
Which of the following steps is NOT a part of manual network mapping?
A. Gathering private and public IP addresses
B. Collecting employees information
C. Performing Neotracerouting
D. Banner grabbing
Answer: C
Explanation:
Explanation/Reference:
Explanation:
Using automated tools, such as NeoTraceroute, for mapping a network is a part of automated network mapping. part of manual network mapping. Network mapping is the process of providing a blueprint of the organization to a security testing team. There are two ways of performing network mapping:
Manual Mapping: In manual mapping, a hacker gathers information to create a matrix that contains the domain name information, IP addresses of the network, DNS servers, employee information, company location, phone numbers, yearly earnings, recently acquired organizations, email addresses, publicly available IP address ranges, open ports, wireless access points, modem lines, and banner grabbing details.
Automated Mapping: In automated mapping, a hacker uses any automated tool to gather information about the network. There are many tools for this purpose, such as NeoTrace, Visual traceroute, Cheops, Cheops-ng, etc. The only advantage of automated mapping is that it is very fast and hence it may generate erroneous results.
NEW QUESTION: 4
When configuring Fibre Channel ports and Ethernet ports on the same Cisco Nexus 5500 Platform, which rule must be followed?
A. Fibre Channel ports must be configured in blocks of eight ports on the same ASIC.
B. Fibre Channel ports must be configured with the range that starts with the last port on the module.
C. Ethernet ports must be configured with the range that starts with the last port on the module.
D. Fibre Channel ports must be configured with the range that starts with the first port on the module.
Answer: B
Explanation:
Explanation/Reference:
Explanation:
Ethernet ports and Fibre Channel ports must be configured in the following order:
Fibre Channel ports must be configured from the last port of the module.
Ethernet ports must be configured from the first port of the module.
If the order is not followed, the following errors are displayed:
ERROR: Ethernet range starts from first port of the module
ERROR: FC range should end on last port of the module