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NEW QUESTION: 1

A. Option C
B. Option D
C. Option B
D. Option A
Answer: C
Explanation:
A staged read only domain controller (RODC) installation works in two discrete phases:
1. Staging an unoccupied computer account
2. Attaching an RODC to that account during promotion
Reference: Install a Windows Server 2012 R2 Active Directory Read-Only Domain Controller (RODC)

NEW QUESTION: 2
Refer to the exhibit.

Why is the prefix 1.1.1.1/32 not present in the routing table of R1?
A. There is a subnet mask mismatch on Ethernet0/0.
B. There is a duplicate router ID.
C. There is an OSPF network type mismatch that causes the advertising router to be unreachable.
D. The router LSA has an invalid checksum.
Answer: C
Explanation:
A common problem when using Open Shortest Path First (OSPF) is routes in the database don't appear in the routing table. In most cases OSPF finds a discrepancy in the database so it doesn't install the route in the routing table. Often, you can see the Adv Router is not-reachable message (which means that the router advertising the LSA is not reachable through OSPF) on top of the link-state advertisement (LSA) in the database when this problem occurs. Here is an example:
Adv Router is not-reachable
LS agE. 418 Options: (No TOS-capability, DC) LS TypE. Router Links Link State ID. 172.16.32.2
Advertising Router: 172.16.32.2
LS Seq Number: 80000002 Checksum: 0xFA63 Length: 60 Number of Links: 3 There are several reasons for this problem, most of which deal with mis-configuration or a broken topology. When the configuration is corrected the OSPF database discrepancy goes away and the routes appear in the routing table. Reason 1: Network Type Mismatch Let's use the following network diagram as an example:

R4-4K R1-7010
interface Loopback0 ip address 172.16.33.1 255.255.255.255
interface Serial2 ip address 172.16.32.1 255.255.255.0
ip ospf network broadcast
router ospf 20 network 172.16.0.0 0.0.255.255 area 0 interface Loopback0 ip address 172.16.30.1 255.255.255.255 ! interface Serial1/0 ip address 172.16.32.2 255.255.255.0 clockrate 64000
router ospf 20 network 172.16.0.0 0.0.255.255 area 0 R4-4K(4)# show ip ospf interface serial 2 Serial2 is up, line protocol is up Internet Address 172.16.32.1/24, Area 0 Process ID 20, Router ID 172.16.33.1, Network Type BROADCAST, Cost: 64 Transmit Delay is 1 sec, State DR, Priority 1 Designated Router (ID) 172.16.33.1, Interface address 172.16.32.1 Backup Designated router (ID) 172.16.32.2, Interface address 172.16.32.2 Timer intervals configured, Hello 10, Dead 40, Wait 40, Retransmit 5 Hello due in 00:00:08 Neighbor Count is 1, Adjacent neighbor count is 1 Adjacent with neighbor 172.16.32.2 (Backup Designated Router) Suppress hello for 0 neighbor(s)
R1-7010(5)# show ip ospf interface serial 1/0 Serial1/0 is up, line protocol is up Internet Address 172.16.32.2/24, Area 0 Process ID 20, Router ID 172.16.32.2, Network Type POINT_TO_POINT, Cost: 64 Transmit Delay is 1 sec, State POINT_TO_POINT, Timer intervals configured, Hello 10, Dead 40, Wait 40, Retransmit 5 Hello due in 00:00:02 Neighbor Count is 1, Adjacent neighbor count is 1 Adjacent with neighbor 172.16.33.1 Suppress hello for 0 neighbor(s)
As you can see above, Router R4-4K is configured for broadcast, and Router R1-7010 is configured for point-to-point. This kind of network type mismatch makes the advertising router unreachable.
R4-4K(4)# show ip ospf database router 172.16.32.2
Adv Router is not-reachable
LS agE. 418 Options: (No TOS-capability, DC) LS TypE. Router Links Link State ID. 172.16.32.2 Advertising Router: 172.16.32.2 LS Seq Number: 80000002 Checksum: 0xFA63 Length: 60 Number of Links: 3
Link connected to: another Router (point-to-point)
(Link ID) Neighboring Router ID. 172.16.33.1 (Link Data) Router Interface address: 172.16.32.2 Number of TOS metrics: 0 TOS 0 Metrics: 64
Link connected to: a Stub Network (Link ID) Network/subnet number: 172.16.32.0 (Link Data) Network Mask: 255.255.255.0 Number of TOS metrics: 0 TOS 0 Metrics: 64
R1-7010(5)# show ip ospf database router 172.16.33.1
Adv Router is not-reachable
LS agE. 357 Options: (No TOS-capability, DC) LS TypE. Router Links Link State ID. 172.16.33.1
Advertising Router: 172.16.33.1
LS Seq Number: 8000000A Checksum: 0xD4AA Length: 48 Number of Links: 2
Link connected to: a Transit Network
(Link ID) Designated Router address: 172.16.32.1 (Link Data) Router Interface address: 172.16.32.1 Number of TOS metrics: 0 TOS 0 Metrics: 64
You can see that for subnet 172.16.32.0/24, Router R1-7010 is generating a point-to-point link and Router R4-4K is generating a transit link. This creates a discrepancy in the link-state database, which means no routes are installed in the routing table.
R1-7010(5)# show ip route 172.16.0.0/16 is variably subnetted, 3 subnets, 2 masks C 172.16.32.0/24 is directly connected, Serial1/0 C 172.16.30.1/32 is directly connected, Loopback0 Solution To solve this problem, configure both routers for the same network type. You can either change the network type of Router R1-7010 to broadcast, or change Router R4-4K's serial interface to point-to-point.
Reference: http://www.cisco.com/c/en/us/support/docs/ip/open-shortest-path-firstospf/7112-26.html

NEW QUESTION: 3
What benefits can a microservices architecture bring?
A. Supports independent deployment: simple services are easier to deploy. Because the services are autonomous, there will be no system crash after a problem occurs.
B. Simple operation and maintenance: Stateless, self-service operation and maintenance eliminates the need for a mature operation and maintenance team (mechanism) in the system. Significant cost savings
C. Allow technology diversity: With micSroservices, you can mix multiple programming languages, development frameworks,and data storage technologies.
D. The boundaries of service modules are clearer: microservices emphasize modular structure (REST interface calls). This is very important for large teams.
Answer: A,C,D

NEW QUESTION: 4
Which of the following is the cloud characteristic that speeds up development, deployment and overall time of market?
A. Universal access
B. Cloud bursting
C. Network pooling
D. Rapid elasticity
Answer: D
Explanation:
Explanation/Reference:
Explanation:
Rapid elasticity is a cloud computing term for scalable provisioning, or the ability to provide scalable services. Experts point to this kind of scalable model as one of five fundamental aspects of cloud computing.
Rapid elasticity allows users to automatically request additional space in the cloud or other types of services.
References: https://www.techopedia.com/definition/29526/rapid-elasticity