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NEW QUESTION: 1
Which areas do the HP Care Pack services cover for consumers?
A. Usage with HP Smart Friend only
B. Care services only
C. Deployment , Usage, and Care
D. Configuration, Usage, and Care
Answer: A
NEW QUESTION: 2
Click to expand each objective. To connect to the Azure portal, type https://portal.azure.com in the browser address bar.





When you are finished performing all the tasks, click the 'Next' button.
Note that you cannot return to the lab once you click the 'Next' button. Scoring occur in the background while you complete the rest of the exam.
Overview
The following section of the exam is a lab. In this section, you will perform a set of tasks in a live environment. While most functionality will be available to you as it would be in a live environment, some functionality (e.g., copy and paste, ability to navigate to external websites) will not be possible by design.
Scoring is based on the outcome of performing the tasks stated in the lab. In other words, it doesn't matter how you accomplish the task, if you successfully perform it, you will earn credit for that task.
Labs are not timed separately, and this exam may have more than one lab that you must complete. You can use as much time as you would like to complete each lab. But, you should manage your time appropriately to ensure that you are able to complete the lab(s) and all other sections of the exam in the time provided.
Please note that once you submit your work by clicking the Next button within a lab, you will NOT be able to return to the lab.
To start the lab
You may start the lab by clicking the Next button.
You plan to deploy several Azure virtual machines and to connect them to a virtual network named VNET1007.
You need to ensure that future virtual machines on VNET1007 can register their name in an internal DNS zone named corp8548984.com. The zone must be hosted on a virtual machine.
What should you do from Azure Cloud Shell?
To complete this task, start Azure Cloud Shell and select PowerShell (Linux), Click Show Advanced settings, and then enter corp8548984n1 in the Storage account text box and File1 share text box. Click Create storage, and then complete the task.
Answer:
Explanation:
See solution below.
Explanation
Step 1: Launch Cloud Shell from the top navigation of the Azure portal.
Step 2: Select PowerShell
When you start the Azure Cloud Shell for the first time, you will be prompted to create a storage account in order to associate a new Azure File Share to persist files across sessions.
Step 3: Click Show Advanced settings.
Step 4: Enter corp8548984n1 in the Storage account text box and File1 share text box. Click Create storage.
Step 5: Enter the following command at the powershell command prompt:
New-AzDnsZone -Name "corp8548984.com"
-ResourceGroupName "mycloudshell"
-ZoneType Private
-RegistrationVirtualNetworkId VNET1007
Note: A DNS zone is created by using the New-AzDnsZone cmdlet with a value of Private for the ZoneType parameter.
References:
https://docs.microsoft.com/en-us/azure/dns/private-dns-getstarted-powershell
https://docs.microsoft.com/en-us/azure/cloud-shell/quickstart-powershell
https://docs.microsoft.com/en-us/powershell/module/az.dns/new-azdnszone?view=azps-1.5.0
NEW QUESTION: 3
You work as a network engineer for a Company. Study the exhibit carefully. In this network, R1 is redistributing 10.1.5.0/24 into OSPF, and R2 is originating 10.1.4.0/24 as an internal route. R6 has received packets destined to 10.1.4.1 and 10.1.5.1. Which statement is true about the path or paths these two packets will take?
A. Both packets will follow optimal paths through the network to their destinations
B. The packet destined to 10.1.5.1 will follow the optimum path through the network, R4 to R1, while the packet destined to 10.1.4.1 will follow a suboptimal path through the network.
C. There is not enough information provided to determine which packet will take an optimal or suboptimal path through the network.
D. The packet destined to 10.1.4.1 will follow an optimal path through the network, while the packet destined to 10.1.5.1 will follow a suboptimal path through the network
Answer: B
Explanation:
Below is the configuration information for each router in the example
R1 interface Loopback0 ip address 10.1.5.1 255.255.255.0 ! interface FastEthernet0/0 ip address 10.1.14.1 255.255.255.0 ip ospf cost 10 router ospf 1 network 10.1.5.0 0.0.0.255 area 0 network 10.1.14.0 0.0.0.255 area 0
R2 interface Loopback0 ip address 10.1.4.2 255.255.255.0 ! interface FastEthernet0/0 ip address 10.1.25.2 255.255.255.0 ip ospf cost 10 router ospf 1 network 10.1.4.0 0.0.0.255 area 0 network 10.1.25.0 0.0.0.255 area 0
R4 interface FastEthernet0/0 ip address 10.1.14.4 255.255.255.0 ip ospf cost 10 ! interface FastEthernet0/1 ip address 10.1.46.4 255.255.255.0 ip ospf cost 10 ! interface FastEthernet1/0 ip address 10.1.45.4 255.255.255.0 ip ospf cost 5 ! router ospf 1 area 2 nssa network 10.1.14.0 0.0.0.255 area 0 network 10.1.45.0 0.0.0.255 area 0 network 10.1.46.0 0.0.0.255 area 2
R5 interface FastEthernet0/0 ip address 10.1.25.5 255.255.255.0 ip ospf cost 10 ! interface FastEthernet0/1 ip address 10.1.56.5 255.255.255.0 ! interface FastEthernet1/0 ip address 10.1.45.5 255.255.255.0 ip ospf cost 15 ! router ospf 1 log-adjacency-changes area 2 nssa network 10.1.25.0 0.0.0.255 area 0 network 10.1.45.0 0.0.0.255 area 0 network 10.1.56.0 0.0.0.255 area 2
R6 interface FastEthernet0/0 ip address 10.1.46.6 255.255.255.0 ip ospf cost 10 ! interface FastEthernet0/1 ip address 10.1.56.6 255.255.255.0 ip ospf cost 15 ! router ospf 1 area 2 nssa network 10.1.46.0 0.0.0.255 area 2 network 10.1.56.0 0.0.0.255 area 2 R6#sh ip route
Codes: C - connected, S - static, R - RIP, M - mobile, B - BGP D - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter area N1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2 E1 - OSPF external type 1, E2 - OSPF external type 2 i - IS-IS, su - IS-IS summary, L1 - IS-IS level-1, L2 - IS-IS level-2 ia - IS-IS inter area, * - candidate default, U - per-user static route o - ODR, P - periodic downloaded static route
Gateway of last resort is not set 10.0.0.0/8 is variably subnetted, 7 subnets, 2 masks O IA 10.1.14.0/24 [110/20] via 10.1.46.4, 00:00:59, FastEthernet0/0 O IA 10.1.4.2/32 [110/26] via 10.1.56.5, 00:01:09, FastEthernet0/1 [110/26] via 10.1.46.4, 00:00:59, FastEthernet0/0 O IA 10.1.5.1/32 [110/21] via 10.1.46.4, 00:00:59, FastEthernet0/0 O IA 10.1.25.0/24 [110/25] via 10.1.56.5, 00:01:09, FastEthernet0/1 [110/25] via 10.1.46.4, 00:00:59, FastEthernet0/0 C 10.1.46.0/24 is directly connected, FastEthernet0/0 O IA 10.1.45.0/24 [110/15] via 10.1.46.4, 00:01:01, FastEthernet0/0 C 10.1.56.0/24 is directly connected, FastEthernet0/1 R6#sh ip ospf nei
Neighbor ID Pri State Dead Time Address Interface
10.1.56.5 1 FULL/DR 00:00:36 10.1.56.5 FastEthernet0/1
10.1.46.4 1 FULL/DR 00:00:39 10.1.46.4 FastEthernet0/0 R6#ping 10.1.4.2 Type escape sequence to abort. Sending 5, 100-byte ICMP Echos to 10.1.4.2, timeout is 2 seconds: !!!!! Success rate is 100 percent (5/5), round-trip min/avg/max = 112/156/208 ms R6#traceroute 10.1.4.2 Type escape sequence to abort. Tracing the route to 10.1.4.2
1 10.1.56.5 124 msec
10.1.46.4 96 msec
10.1.56.5 4 msec
2 10.1.45.5 168 msec
10.1.25.2 128 msec
10.1.45.5 120 msec
Configure OSPF Interface Parameters Our OSPF implementation allows you to alter certain interface-specific OSPF parameters, as needed. You are not required to alter any of these parameters, but some interface parameters must be consistent across all routers in an attached network. Those parameters are controlled by the ip ospf hello-interval, ip ospf deadinterval, and ip ospf authentication-key commands. Therefore, be sure that if you do configure any of these parameters, the configurations for all routers on your network have compatible values.
In interface configuration mode, use any of the following commands to specify interface parameters as needed for your network: Reference http://www.cisco.com/en/US/docs/ios/12_0/np1/configuration/guide/1cospf.html#wp4937
