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NEW QUESTION: 1
Instructions To configure the router (Gotha) click on the console host icon that is connected to a router by a serial console cable (shown in the diagram as a dashed black line).
You can click on the buttons below to view the different windows.
Each of the windows can be minimized by clicking on the [-]. You can also reposition a window by dragging it by the title bar.
The "Tab" key and most commands that use the "Control" or "Escape" keys are not supported and are not necessary to complete this simulation. The command does not display all commands of the help system.
Scenario Central Florida Widgets recently installed a new router in their Gotha office. Complete the network installation by performing the initial router configurations and configuring RIPv2 routing using the router command line interface (CLI) on the Gotha router.
Configure the router per the following requirements: Name of the router is Gotha Enable-secret password is mi222ke The password access user EXEC mode using the console is The password to allow telnet access to the router is dun63apIPv4 addresses must be configured as follows:
Ethernet network 209.165.201.0/27 assignable host address in subnet.
Serial network is 192.0.2.176/28 - router has assignable host address in the subnet. Interface should be enabled. Routing protocol is RIPv2
Attention: In practical examinations, please note the following, the actual information will prevail.
* Name of the router is xxx
* Enable. secret password is xxx
* Password In access user EXEC mode using the console is xxx
* The password to allow telnet access to the router is xxx
* IP information
Answer:
Explanation:
See explanation
Explanation
Router>enable Router#config terminal Router(config)#hostname Gotha
2) Enable-secret password (cisco10):
Gotha(config)#enable secret mi222ke
3) Set the console password to G8tors1:
Gotha(config)#line console 0 Gotha(config-line)#password G8tors1 Gotha(config-line)#login Gotha(config-line)#exit
4) Set the Telnet password to dun63lap:
Gotha(config)#line vty 0 4 Gotha(config-line)#password dun63lap Gotha(config-line)#login Gotha(config-line)#exit
5) Configure Ethernet interface (on the right) of router Gotha: Ethernet network 209.165.201.0 /27 - Router has the fourth assignable host address in subnet. Ethernet Interface on router R2 is Fast Ethernet 0/0 as per the exhibit First we need to identify the subnet mask Network: 209.165.201.0 /27 Subnet mask: /27: 27 bits = 8 + 8 + 8 + 3 =8(bits).8(bits).8(bits) .11100000 (3bits) =255.255.255.11100000 =11100000 = 128+64+32+0+0+0+0+0 = 224 Subnet mask: 255.255.255.224 Different subnet networks and there valid first and last assignable host address range for above subnet mask are Subnet Networks :::::: Valid Host address range :::::: Broadcast address
209.165.201.0 :::::: 209.165.201.1 - 209.165.201.30 ::::: 209.165.201.31
209.165.201.32 :::::: 209.165.201.33 - 209.165.201.62 ::::: 209.165.201.63
209.165.201.64 :::::: 209.165.201.65 - 209.165.201.94 :::::: 209.165.201.95
209.165.201.96 :::::: 209.165.201.97 - 209.165.201.126 :::::: 209.165.201.127
209.165.201.128 :::::: 209.165.201.129 - 209.165.201.158 :::::: 209.165.201.159
209.165.201.160 :::::: 209.165.201.161 - 209.165.201.190 :::::: 209.165.201.191
209.165.201.192 :::::: 209.165.201.193 - 209.165.201.222 :::::: 209.165.201.223
209. 165.201.224 :::::: 209.165.201.225 - 209.165.201.254 :::::: 209.165.201.255 Use above table information for network 209.165.201.0 /27 to identify First assignable host address: 209.165.201.1 Last assignable host address: 209.165.201.30 Fourth assignable host address: 209.165.201.4 Assign the fourth assignable host address to Fa0/0 interface of Gotha router:
Gotha(config)#interface Fa0/0 Gotha(config-if)#ip address 209.165.201.4 255.255.255.224 Gotha(config-if)#no shutdown Gotha(config-if)#exit
6) Configure Serial interface (on the left) of router Gotha: Serial Network is 192.0.2.176 /28 - Router has the last assignable host address in subnet. Serial Interface on R2 is Serial 0/0/0 as per the exhibit First we need to identify the subnet mask Network: 192.0.2.176 /28 Subnet mask: /28: 28bits = 8bits+8bits+8bits+4bits
=8(bits).8(bits).8(bits) .11110000 (4bits) =255.255.255.11100000 =11100000 = 128+64+32+16+0+0+0+0
240 Subnet mask: 255.255.255.240 Different subnet networks and there valid first and last assignable host address range for above subnet mask are Subnet Networks ::::: Valid Host address ::::::::::: Broadcast address
192.0.2.0 :::::: 192.0.2.1 - 192.0.2.14 ::::::: 192.0.2.15
192.0.2.16 ::::::: 192.0.2.17 - 192.0.2.30 ::::::: 192.0.2.31
192.0.2.32 :::::::: 192.0.2.33 - 192.0.2.46 :::::: 192.0.2.47
192.0.2.48 :::::: 192.0.2.49 - 192.0.2.62 ::::::: 192.0.2.64
192.0.2.64 ::::::: 192.0.2.65 - 192.0.2.78 ::::::: 192.0.2.79
192.0.2.80 :::::::: 192.0.2.81 - 192.0.2.94 :::::: 192.0.2.95
192.0.2.96 :::::: 192.0.2.97 - 192.0.2.110 ::::::: 192.0.2.111
192.0.2.112 ::::::: 192.0.2.113 - 192.0.2.126 ::::::: 192.0.2.127
192.0.2.128 :::::::: 192.0.2.129 - 192.0.2.142 :::::: 192.0.2.143
192.0.2.144 :::::: 192.0.2.145 - 192.0.2.158 ::::::: 192.0.2.159
192.0.2.160 ::::::: 192.0.2.161 - 192.0.2.174 ::::::: 192.0.2.175
192. 0.2.176 :::::::: 192.0.2.177 - 192.0.2.190 :::::: 192.0.2.191 and so on .... Use above table information for network 192.0.2.176 /28 to identify First assignable host address: 192.0.2.177 Last assignable host address:
192.0.2.190
We need to configure Last assignable host address (192.0.2.190) on serial 0/0/0 using the subnet mask
255.255.255.240 Assign the last assignable host address to S0/0/0 interface of Gotha router:
Gotha(config)#interface S0/0/0 (or use interface S0/0 if not successful) Gotha(config-if)#ip address 192.0.2.190 255.255.255.240 Gotha(config-if)#no shutdown Gotha(config-if)#exit
7) Configure RIP v2 routing protocol:
Gotha(config)#router rip Gotha(config-router)#version 2 Gotha(config-router)#network 209.165.201.0 Gotha (config-router)#network 192.0.2.176 Gotha(config-router)#end Save the configuration: Gotha#copy running-config startup-config Finally, you should use the ping command to verify all are working properly!
NEW QUESTION: 2
A Solution Architect는 Amazon DynamoDB 테이블에 저장된 관광 명소에 대한 정보를 검색하기 위한 소셜 네트워킹 게임용 AWS Lambda 기반 서비스로 개발 중입니다. Architect 솔루션은 모바일 앱을 통해 수백만 명의 사용자가 서비스를 확장 할 때 비용을 최소화하고자 합니다.
솔루션 아키텍트는 비용을 최소화하면서 어떻게 성능을 최적화 할 수 있습니까? (2 개 선택)
A. Amazon CloudFront를 구성하고, 응답 캐싱을위한 적절한 TTL을 지정하고, DynamoDB 테이블을 원점으로 구성합니다
B. 모바일 클라이언트가 AWS STS 토큰을 통해 DynamoDB와 직접 통신하고 전역 복제 및 자동 크기 조정을 위해 DynamoDB를 구성하도록 인증합니다.
C. Amazon API 게이트웨이를 통해 람다 함수를 노출하고 캐싱으로 끝점을 구성하며 DynamoDB 테이블에서 읽기 처리량의 자동 확장을 구성합니다.
D. 모바일 클라이언트에서 응답을 캐시하도록 AppSync를 구성하고 DynamoDB 테이블에서 읽기의 자동 크기 조정을 구성합니다.
E. DynamoDB Accelerator (DAX)를 사용하고 DynamoDB 테이블에서 읽기 처리량의 자동 확장을 구성합니다.
Answer: C,E
NEW QUESTION: 3
Which of the following Source Structure elements and Target Structure elements have a 1:1 cardinality?
A. Element can occur more than once
B. Element persists of different types
C. Element is obligatory
D. Element which must exist
Answer: D