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NEW QUESTION: 1
A network deployment engineer needs to deploy four Dell Networking N1500 series switches. All switches
are to be stacked together using 10Gbe ports on each switch and implement OSPF per the deployment
plan. The customer has been shipped only the four switches with SAS stacking cables. No other
equipment has been shipped.
Which two issues occur when the network engineer tries to stack all four switches and implement OSPF?
(Choose two.)
A. The N1500 series switches support Layer 3 lite Functionality.
B. The N1500 series switches do not support advanced Layer 3 Functionality.
C. Stacking is limited to only four switches because of the limited back-plane bandwidth.
D. Incorrect cabling was shipped for stacking instead of the required 10Gbs TwinAx.
E. Stacking modules were provided as per the deployment.
Answer: A,D
NEW QUESTION: 2
IS 감사인은 일부 IT 직원이 ERP (Enterprise Resource Planning) 응용 프로그램, 데이터베이스 및 서버에 대한 관리 액세스 권한이 있음을 확인했습니다. IT 관리자는 제한된 리소스로 인해 동일한 IT 직원이 ERP 애플리케이션의 세 계층을 모두 지원해야 한다고 응답했습니다. 다음 중 감사인이 경영진에게 가장 권장하는 것은 무엇입니까?
A. 매주 시스템 생성 로그를 검토하여 관련 IT 직원의 활동을 모니터링 합니다.
B. 업무 분리를 위해 추가 IT 직원을 고용 할 자금을 요청하십시오.
C. 업무 부서 직원을 활용하여 응용 프로그램 관리자 역할을 합니다.
D. 관련 IT 직원의 일부 관리자 액세스 권한을 제거하십시오.
Answer: A
NEW QUESTION: 3
CORRECT TEXT
EIGRP
After adding RTR_2 router, no routing updates are being exchanged between RTR_1 and the new location. All other inter connectivity and internet accesses for the existing locations of the company are working properly.
The task is to identify the fault(s) and correct the router configuration to provide full connectivity between the routers.
Access to the router CLI can be gained by clicking on the appropriate host. All passwords on all routers are Cisco.
IP addresses are listed in the chart below.
RTR_A#show run ! !
interface FastEthernet0/0 ip address 192.168.60.97 255.255.255.240 ! interface FastEthernet0/1 ip address 192.168.60.113 255.255.255.240 ! interface Serial0/0 ip address 192.168.36.14 255.255.255.252 clockrate 64000 ! router eigrp 212 network 192.168.36.0 network 192.168.60.0 no auto-summary ! RTR_A#show ip route 192.168.36.0/30 is subnetted, 1 subnets C 192.168.36.12 is directly connected, Serial 0/0 192.168.60.0/24 is variably subnetted, 5 subnets, 2 masks C 192.168.60.96/28 is directly connected, FastEthernet0/0 C 192.168.60.112/28 is directly connected, FastEthernet0/1 D 192.168.60.128/28 [ 90/21026560 ] via 192.168.36.13, 00:00:57, Serial 0/0 D 192.168.60.144/28 [ 90/21026560 ] via 192.168.36.13, 00:00:57, Serial 0/0 D 192.168.60.24/30 [ 90/21026560 ] via 192.168.36.13, 00:00:57, Serial 0/0 D* 198.0.18.0 [ 90/21026560 ] via 192.168.36.13, 00:00:57, Serial 0/0 ******************************************************************************* RTR_2#show run ! ! interface FastEthernet0/0 ip address 192.168.77.34 255.255.255.252 ! interface FastEthernet0/1 ip address 192.168.60.65 255.255.255.240 ! interface FastEthernet1/0 ip address 192.168.60.81 255.255.255.240 ! ! router eigrp 22 network 192.168.77.0 network 192.168.60.0 no auto-summary ! RTR_2#show ip route 192.168.60.0/28 is variably subnetted, 2 subnets C 192.168.60.80 is directly connected, FastEthernet1/0 C 192.168.60.64 is directly connected, FastEthernet0/1 192.168.77.0/30 is subnetted, 1 subnets C 192.168.77.32 is directly connected, FastEthernet0/0 ********************************************************** RTR_B#show run ! interface FastEthernet0/0 ip address 192.168.60.129 255.255.255.240 ! interface FastEthernet0/1 ip address 192.168.60.145 255.255.255.240 ! interface Serial0/1 ip address 192.168.60.26 255.255.255.252 ! router eigrp 212 network 192.168.60.0 ! RTR_B#show ip route 192.168.60.0/24 is variably subnetted, 5 subnets, 2 masks C 192.168.60.24/30 is directly connected, Serial0/1 C 192.168.60.128/28 is directly connected, FastEthernet0/0 C 192.168.60.144/28 is directly connected, FastEthernet0/1 D 192.168.60.96/28 [ 90/21026560 ] via 192.168.60.25, 00:00:57, Serial 0/1 D 192.168.60.112/28 [ 90/21026560 ] via 192.168.60.25, 00:00:57, Serial 0/1 192.168.36.0/30 is subnetted, 1 subnets D 192.168.36.12 [ 90/21026560 ] via 192.168.60.25, 00:00:57, Serial 0/1 D* 198.0.18.0 [ 90/21026560 ] via 192.168.60.25, 00:00:57, Serial 0/1 ************************************************************************** RTR_1#show run ! ! interface FastEthernet0/0 ip address 192.168.77.33 255.255.255.252
! interface Serial1/0 ip address 198.0.18.6 255.255.255.0 ! ! interface Serial0/0 ip address 192.168.36.13 255.255.255.252 clockrate 64000 ! interface Serial0/1 ip address 192.168.60.25 255.255.255.252 clockrate 64000 ! ! router eigrp 212 network 192.168.36.0 network 192.168.60.0 network 192.168.85.0 network 198.0.18.0 no auto-summary ! ip classless ip default-network 198.0.18.0 ip route 0.0.0.0 0.0.0.0 198.0.18.5 ip http server RTR_1#show ip route 192.168.36.0/30 is subnetted, 1 subnets C 192.168.36.12 is directly connected, Serial 0/0
192.168.60.0/24 is variably subnetted, 5 subnets, 2 masks
C 192.168.60.24/30 is directly connected, Serial0/1
D 192.168.60.128/28 [ 90/21026560 ] via 192.168.60.26, 00:00:57, Serial 0/1
D 192.168.60.144/28 [ 90/21026560 ] via 192.168.60.26, 00:00:57, Serial 0/1
D 192.168.60.96/28 [ 90/21026560 ] via 192.168.36.14, 00:00:57, Serial 0/0
192.168.77.0/30 is subnetted, 1 subnets
C 192.168.77.32 is directly connected, FastEthernet0/0
C 192.0.18.0/24 is directly connected, Serial 1/0
*S 0.0.0.0 via 198.0.18.5
Answer:
Explanation:
2>enable Router2#config t Router2(config)#no router eigrp 22 Router2(config)#router eigrp 212 Router2(config-router)#network 192.16.60.0 Router2(config-router)#network 192.16.77.0 ROUTER1>enable ROUTER1#config t ROUTER1(config)#router eigrp 212 ROUTER1(config-router)#network 192.16.77.0 ROUTER1(config-router)#end ROUTER1#copy run start