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QUESTION NO: 1
You have the Azure virtual machines shown in the following table.
A DNS service is install on VM1.
You configure the DNS server settings for each virtual network as shown in the following exhibit.
You need 10 ensure that all the virtual machines can resolve DNS names by using the DNS service on
VM1. What should you do?
A. Add service endpoints on VNET2 and VNET3.
B. Add service endpoints on VNET1.
C. Configure peering between VNE11, VNETT2, and VNET3.
D. Configure a conditional forwarder on VM1
Answer: D
Reference:
https://docs.microsoft.com/en-us/azure/virtual-network/virtual-networks-name-resolution-for-vms- and-role-instances
QUESTION NO: 2
Note: This question is part of a series of questions that present the same scenario. Each question in the series contains a unique solution that might meet the stated goals. Some question sets might have more than one correct solution, while others might not have a correct solution.
After you answer a question in this section, you will NOT be able to return to it. As a result, these questions will not appear in the review screen.
You have an Azure subscription that contains the following resources:
* A virtual network that has a subnet named Subnet1
* Two network security groups (NSGs) named NSG-VM1 and NSG-Subnet1
* A virtual machine named VM1 that has the required Windows Server configurations to allow
Remote Desktop connections NSG-Subnet1 has the default inbound security rules only.
NSG-VM1 has the default inbound security rules and the following custom inbound security rule:
* Priority: 100
* Source: Any
* Source port range: *
* Destination: *
* Destination port range: 3389
* Protocol: UDP
* Action: Allow
VM1 connects to Subnet1. NSG1-VM1 is associated to the network interface of VM1. NSG-Subnet1 is associated to Subnet1.
You need to be able to establish Remote Desktop connections from the internet to VM1.
Solution: You add an inbound security rule to NSG-Subnet1 and NSG-VM1 that allows connections from the internet source to the VirtualNetwork destination for port range 3389 and uses the TCP protocol.
Does this meet the goal?
A. No
B. Yes
Answer: B
Explanation:
The default port for RDP is TCP port 3389. A rule to permit RDP traffic must be created automatically when you create your VM.
Note on NSG-Subnet1: Azure routes network traffic between all subnets in a virtual network, by default.
References:
https://docs.microsoft.com/en-us/azure/virtual-machines/troubleshooting/troubleshoot-rdp- connection
QUESTION NO: 3
Note: This question is part of a series of questions that present the same scenario. Each question in the series contains a unique solution that might meet the stated goals. Some question sets might have more than one correct solution, while others might not have a correct solution.
After you answer a question in this section, you will NOT be able to return to it. As a result, these questions will not appear in the review screen.
You have an Azure subscription that contains the following resources:
* A virtual network that has a subnet named Subnet1
* Two network security groups (NSGs) named NSG-VM1 and NSG-Subnet1
* A virtual machine named VM1 that has the required Windows Server configurations to allow
Remote Desktop connections NSG-Subnet1 has the default inbound security rules only.
NSG-VM1 has the default inbound security rules and the following custom inbound security rule:
* Priority: 100
* Source: Any
* Source port range: *
* Destination: *
* Destination port range: 3389
* Protocol: UDP
* Action: Allow
VM1 connects to Subnet1. NSG1-VM1 is associated to the network interface of VM1. NSG-Subnet1 is associated to Subnet1.
You need to be able to establish Remote Desktop connections from the internet to VM1.
Solution: You add an inbound security rule to NSG-Subnet1 that allows connections from the Internet source to the VirtualNetwork destination for port range 3389 and uses the UDP protocol.
Does this meet the goal?
A. No
B. Yes
Answer: A
QUESTION NO: 4
You have an Azure subscription named Subscription1 that contains the resources shown in the following table.
In storage1, you create a blob container named blob1 and a file share named share1.
Which resources can be backed up to Vault1 and Vault2? To answer, select the appropriate options in the answer area.
NOTE: Each correct selection is worth one point.
Answer:
Explanation:
Box 1: VM1 only
VM1 is in the same region as Vault1.
File1 is not in the same region as Vautl1.
SQL is not in the same region as Vault1.
Blobs cannot be backup up to service vaults.
Note: To create a vault to protect virtual machines, the vault must be in the same region as the virtual machines.
Box 2: Share1 only.
Storage1 is in the same region (West USA) as Vault2. Share1 is in Storage1.
Note: After you select Backup, the Backup pane opens and prompts you to select a storage account from a list of discovered supported storage accounts. They're either associated with this vault or present in the same region as the vault, but not yet associated to any Recovery Services vault.
References:
https://docs.microsoft.com/bs-cyrl-ba/azure/backup/backup-create-rs-vault
https://docs.microsoft.com/en-us/azure/backup/backup-afs
QUESTION NO: 5
You need to use Azure Automation State Configuration to manage the ongoing consistency of virtual machine configurations.
Which five actions should you perform in sequence? To answer, move the appropriate action from the list of actions to the answer area and arrange them in the correct order.
NOTE: More than one order of answer choices is correct. You will receive credit for any of the correct orders you select.
Answer:
Explanation:
Step 1: Upload a configuration to Azure Automation State Configuration.
Import the configuration into the Automation account.
Step 2: Compile a configuration into a node configuration.
A DSC configuration defining that state must be compiled into one or more node configurations (MOF document), and placed on the Automation DSC Pull Server.
Step 3: Onboard the virtual machines to Azure Automation State Configuration.
Onboard the Azure VM for management with Azure Automation State Configuration Step 4: Assign the node configuration Step 5: Check the compliance status of the node Each time Azure Automation
State Configuration performs a consistency check on a managed node, the node sends a status report back to the pull server. You can view these reports on the page for that node.
On the blade for an individual report, you can see the following status information for the corresponding consistency check:
The report status - whether the node is "Compliant", the configuration "Failed", or the node is "Not
Compliant" References:
https://docs.microsoft.com/en-us/azure/automation/automation-dsc-getting-started
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Updated: May 28, 2022
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最近更新時間:2024-11-21
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