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By passing the Microsoft AZ-700 exam, IT professionals can demonstrate their expertise in designing and implementing Azure networking solutions. Designing and Implementing Microsoft Azure Networking Solutions certification can be useful for professionals seeking to advance their careers in cloud computing, and for organizations looking to hire skilled Azure networking professionals. With a Microsoft Azure certification, professionals can gain a competitive edge in the job market and increase their earning potential.
Microsoft AZ-700 Exam is designed for professionals who specialize in designing and implementing networking solutions in the Azure environment. AZ-700 exam is intended for individuals who have a deep understanding of Azure networking services, including virtual networking, load balancing, and network security. Candidates for the AZ-700 exam should also have experience with hybrid networking, network migration, and network automation.
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NEW QUESTION # 250
You have two Azure subscriptions named Subscription1 and Subscription2.
There are no connections between the virtual networks in two subscriptions.
You configure a private link service as shown in the privatelinkservice1 exhibit. (Click the privatelinkservice1 tab.)
You create a load balancer name in Subscription1 and configure the backend pool shown in the lb1 exhibit. (Click tie 1b1 tab.)
You create a private endpoint in Subscription2 as shown in the privateendpoint4 exhibit. (Click the privateendpoint4)
For each of the following statements, select YES if the statement is true. Otherwise. select No.
Answer:
Explanation:
NEW QUESTION # 251
You have an Azure subscription that contains an app named Appl. App1 is hosted on the Azure App Service instances shown in the following table.
You need to implement Azure Traffic Manager to meet the following requirements:
* App1 traffic must be assigned equally to each App Service instance in each Azure region.
* App1 traffic from North Europe must be routed to the Appl instances in the North Europe region.
* App1 traffic from North America must be routed to the Appl instances in the East US Azure region.
Answer:
Explanation:
Topic 2, Litware. Inc
Hybrid Environment
The on-prernises network contains an Active Directory forest named litwareinc.com that syncs to an Azure Active Directory (Azure AD) tenant named litwareinc.com by usinq Azure AD Connect.
All the offices connect to a virtual network named Vnetl by using a Site-to-Site VPN connection.
Azure Environment
Litware has an Azure subscription named Sub1 that is linked to the litwareinc.com Azure AD tenant. Sub1 contains resources in the East US Azure region as shown in the following table.
There is bidirectional peering between Vnet1 and Vnet2. There is bidirectional peering between Vnet1 and Vnet3. Currently, Vnet2 and Vnet3 cannot communicate directly.
Requirements:
Business Requirements
Litware wants to minimize costs whenever possible, as long as all other requirements are met.
Virtual Networking Requirements
Litware identifies the following virtual networking requirements:
* Direct the default route of 0.0.0.0/0 on Vnet2 and Vnet3 to the Boston datacenter over an ExpressRoute circuit.
* Ensure that the records in the cloud.litwareinc.com zone can be resolved from the on-premises locations.
* Automatically register the DNS names of Azure virtual machines to the cloud.litwareinc.com zone.
* Minimize the size of the subnets allocated to platform-managed services.
* Allow traffic from VMScaleSet1 to VMScaleSet2 on the TCP port 443 only.
Hybrid Networking Requirements
Litware identifies the following hybrid networking requirements:
* Users must be able to connect to Vnet1 by using a Point-to-Site (P2S) VPN when working remotely. Connections must be authenticated by Azure AD.
* Latency of the traffic between the Boston datacenter and all the virtual networks must be minimized.
* The Boston datacenter must connect to the Azure virtual networks by using an ExpressRoute FastPath connection.
* Traffic between Vnet2 and Vnet3 must be routed through Vnet1.
PaaS Networking Requirements
Litware identifies the following networking requirements for platform as a service (PaaS):
* The storage1 account must be accessible from all on-premises locations without exposing the public endpoint of storage1.
* The storage2 account must be accessible from Vnet2 and Vnet3 without exposing the public endpoint of storage2.
NEW QUESTION # 252
For each of the following statements, select Yes if the statement is true. Otherwise, select No.
NOTE: Each correct selection is worth one point.
Answer:
Explanation:
NEW QUESTION # 253
You have an Azure Traffic Manager parent profile named TM1. TM1 has two child profiles named TM2 and TM3.
TM1 uses the performance traffic-routing method and has the endpoints shown in the following table.
TM2 uses the weighted traffic-routing method with MinChildEndpoint = 2 and has the endpoints shown in the following table.
TM3 uses priority traffic-routing method and has the endpoints shown in the following table.
The App2, App4, and App6 endpoints have a degraded monitoring status.
To which endpoint is traffic directed? To answer, select the appropriate options in the answer area.
NOTE: Each correct selection is worth one point
Answer:
Explanation:
Explanation:
Reference:
https://docs.microsoft.com/en-us/azure/traffic-manager/traffic-manager-nested-profiles Traffic from West Europe:
Basedd on TM1 table, West Europe will trigger TM2. However, as the MinChildEndpoint is set to 2, and App4 is degraded (down), the entire TM2 will not be considered available.
This goes back to the origin TM1 that uses performance traffic-routing method, which means the closest location is App1 and naturally be the next best performance instance.
Hence, Answer = App1
Traffic from West US:
Based on TM1 table, West US will trigger TM3. However, both App2 and App6 were degraded (down), so none of them can be considered.
This goes back to the original TM1 that uses performance traffic-routing method, from TM1, the other 2 US locations would be App2 and App3. But App2 we know it's already degraded (unavailable), hence the only option would be App3.
Answer = App3
NEW QUESTION # 254
Task 7
You need to ensure that hosts on VNET2 can access hosts on both VNET1 and VNET3. The solution must prevent hosts on VNET1 and VNET3 from communicating through VNET2.
Answer:
Explanation:
See the Explanation below for step by step instructions.
Explanation
Here are the steps and explanations for ensuring that hosts on VNET2 can access hosts on both VNET1 and VNET3, but hosts on VNET1 and VNET3 cannot communicate through VNET2:
* To connect different virtual networks in Azure, you need to use virtual network peering. Virtual network peering allows you to create low-latency, high-bandwidth connections between virtual networks without using gateways or the internet1.
* To create a virtual network peering, you need to go to the Azure portal and select your virtual network. Then select Peerings under Settings and select + Add2.
* On the Add peering page, enter or select the following information:
* Name: Type a unique name for the peering from the source virtual network to the destination virtual network.
* Virtual network deployment model: Select Resource manager.
* Subscription: Select the subscription that contains the destination virtual network.
* Virtual network: Select the destination virtual network from the list or enter its resource ID.
* Name of the peering from [destination virtual network] to [source virtual network]: Type a unique name for the peering from the destination virtual network to the source virtual network.
* Configure virtual network access settings: Select Enabled to allow resources in both virtual networks to communicate with each other.
* Allow forwarded traffic: Select Disabled to prevent traffic that originates from outside either of the peered virtual networks from being forwarded through either of them.
* Allow gateway transit: Select Disabled to prevent either of the peered virtual networks from using a gateway in the other virtual network.
* Use remote gateways: Select Disabled to prevent either of the peered virtual networks from using a gateway in the other virtual network as a transit point to another network.
* Select Add to create the peering2.
* Repeat the previous steps to create peerings between VNET2 and VNET1, and between VNET2 and VNET3. This will allow hosts on VNET2 to access hosts on both VNET1 and VNET3.
* To prevent hosts on VNET1 and VNET3 from communicating through VNET2, you need to use network security groups (NSGs) to filter traffic between subnets. NSGs are rules that allow or deny inbound or outbound traffic based on source or destination IP address, port, or protocol3.
* To create an NSG, you need to go to the Azure portal and select Create a resource. Search for network security group and select Network security group. Then select Create4.
* On the Create a network security group page, enter or select the following information:
* Subscription: Select your subscription name.
* Resource group: Select your resource group name.
* Name: Type a unique name for your NSG.
* Region: Select the same region as your virtual networks.
* Select Review + create and then select Create to create your NSG4.
* To add rules to your NSG, you need to go to the Network security groups service in the Azure portal and select your NSG. Then select Inbound security rules or Outbound security rules under Settings and select + Add4.
* On the Add inbound security rule page or Add outbound security rule page, enter or select the following information:
* Source or Destination: Select CIDR block.
* Source CIDR blocks or Destination CIDR blocks: Enter the IP address range of the source or destination subnet that you want to filter. For example, 10.0.1.0/24 for VNET1 subnet 1,
10.0.2.0/24 for VNET2 subnet 1, and 10.0.3.0/24 for VNET3 subnet 1.
* Protocol: Select Any to apply the rule to any protocol.
* Action: Select Deny to block traffic from or to the source or destination subnet.
* Priority: Enter a number between 100 and 4096 that indicates the order of evaluation for this rule.
Lower numbers have higher priority than higher numbers.
* Name: Type a unique name for your rule.
* Select Add to create your rule4.
* Repeat the previous steps to create inbound and outbound rules for your NSG that deny traffic between VNET1 and VNET3 subnets. For example, you can create an inbound rule that denies traffic from
10.0.1.0/24 (VNET1 subnet 1) to 10.0.3.0/24 (VNET3 subnet 1), and an outbound rule that denies traffic
* from 10.0.3.0/24 (VNET3 subnet 1) to 10.0.1.0/24 (VNET1 subnet 1).
* To associate your NSG with a subnet, you need to go to the Virtual networks service in the Azure portal and select your virtual network. Then select Subnets under Settings and select the subnet that you want to associate with your NSG5.
* On the Edit subnet page, under Network security group, select your NSG from the drop-down list. Then select Save5.
* Repeat the previous steps to associate your NSG with the subnets in VNET1 and VNET3 that you want to isolate from each other.
NEW QUESTION # 255
......
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