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AZ-301 PDF DEMO:

QUESTION NO: 1
You are designing an Azure solution for a company that wants to move a .NET Core web application an
on-premises data center to Azure. The web application relies on a Microsoft SQL Server 2016 database on
Windows Server 2016. The database server will not move to Azure.
A separate networking team is responsible for configuring network permissions.
The company uses Azure ExpressRoute and has an ExpressRoute gateway connected to an Azure virtual
network named VNET1.
You need to recommend a solution for deploying the web application.
Solution: Deploy the web application to a web app hosted in an Isolated App Service plan on VNET1.
Does this meet the goal?
A. Yes
B. No
Answer: B

QUESTION NO: 2
You plan to move a web application named App1 from an on-premises data center to Azure.
App1 depends on a custom framework that is installed on the host server.
You need to recommend a solution to host App1 in Azure. The solution must meet the following requirements:
* App1 must be available to users if an Azure data center becomes unavailable.
* Costs must be minimized.
What should you include in the recommendation?
A. In two Azure regions, deploy a Traffic Manager profile and a web app.
B. In two Azure regions, deploy a load balancer and a virtual machine scale set.
C. In two Azure regions, deploy a load balancer and a web app.
D. Deploy a load balancer and a virtual machine scale set across two availability zones.
Answer: D
Explanation
"Azure App Service does not allow the registration of COM components on the platform. If your app makes
use of any COM components, these would need to be rewritten in managed code and deployed with the site or
application."
https://docs.microsoft.com/en-us/dotnet/azure/dotnet-howto-migrate-app-service?view=azure- dotnet

QUESTION NO: 3
Note: This question is part of 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 need to deploy resources to host a stateless web app in an Azure subscription. The solution must meet the
following requirements:
* Provide access to the full .NET framework.
* Provide redundancy if an Azure region fails.
Grant administrators access to the operating system to install custom application dependencies.
Solution: You deploy an Azure virtual machine to two Azure regions, and you deploy an Azure
Application
Gateway.
Does this meet the goal?
A. Yes
B. No
Answer: B

QUESTION NO: 4
You have standard Load balancer configured to support three virtual machines on the same subnet.
You need to recommend a solution to notify administrators when the load balancer fails.
Which metrics should you recommend using to test the load balancer? To answer, drag the appropriate metrics
to the correct conditions. Each metric may be used once, more than once, or not at all. You may need to drag
the split bar between panes or scroll to view content.
NOTE: Each correct selection is worth one point.
Answer:
Explanation
Backend instance health: Health Probe Status
Health Probe Status (DIP Availability): Standard Load Balancer uses a distributed health-probing service that
monitors your application endpoint's health according to your configuration settings. This metric provides an
aggregate or per-endpoint filtered view of each instance endpoint in the load balancer pool. You can see how
Load Balancer views the health of your application, as indicated by your health probe configuration.
Outbound port exhaustion: SNAT connection Count
SNAT connections: Standard Load Balancer reports the number of outbound flows that are masqueraded to the
Public IP address front end. Source network address translation (SNAT) ports are an exhaustible resource.
This metric can give an indication of how heavily your application is relying on SNAT for outbound originated flows. Counters for successful and failed outbound SNAT flows are reported and can be used to
troubleshoot and understand the health of your outbound flows.
Reference:
https://docs.microsoft.com/en-us/azure/load-balancer/load-balancer-standard-diagnostics

QUESTION NO: 5
Note: This question is part of 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.
Your company has deployed several virtual machines (VMs) on-premises and to Azure. Azure
ExpressRoute
has been deployed and configured for on-premises to Azure connectivity.
Several VMs are exhibiting network connectivity issues.
You need to analyze the network traffic to determine whether packets are being allowed or denied to the VMs.
Solution: Use Azure Network Watcher to run IP flow verify to analyze the network traffic.
Does the solution meet the goal?
A. Yes
B. No
Answer: A
Explanation
The Network Watcher Network performance monitor is a cloud-based hybrid network monitoring solution that
helps you monitor network performance between various points in your network infrastructure. It also helps
you monitor network connectivity to service and application endpoints and monitor the performance of Azure
ExpressRoute.
Note:
IP flow verify checks if a packet is allowed or denied to or from a virtual machine. The information consists of
direction, protocol, local IP, remote IP, local port, and remote port. If the packet is denied by a security group,
the name of the rule that denied the packet is returned. While any source or destination IP can be chosen, IP
flow verify helps administrators quickly diagnose connectivity issues from or to the internet and from or to the
on-premises environment.
IP flow verify looks at the rules for all Network Security Groups (NSGs) applied to the network interface, such
as a subnet or virtual machine NIC. Traffic flow is then verified based on the configured settings to or from
that network interface. IP flow verify is useful in confirming if a rule in a Network Security Group is blocking
ingress or egress traffic to or from a virtual machine.
References:
https://docs.microsoft.com/en-us/azure/network-watcher/network-watcher-monitoring-overview
https://docs.microsoft.com/en-us/azure/network-watcher/network-watcher-ip-flow-verify-overview

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Updated: May 28, 2022