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NEW QUESTION: 1
You are designing a virtual network to support a web application. The web application uses Blob storage to store large images. The web application will be deployed to an Azure App Service Web App.
You have the following requirements:
* Secure all communications by using Secured Socket layer (SSL)
* SSL encryption and decryption must be processed efficiently to support high traffic load on the web application
* Protect the web application from web vulnerabilities and attacks without modification to backend code
* Optimize web application responsiveness and reliability by routing HTTP request and responses to the endpoint with the lowest network latency for the client.
You need to configure the Azure components to meet the requirements.
What should you do? To answer, select the appropriate options in the answer area.
NOTE: Each correct selection is worth one point.
Answer:
Explanation:
Explanation
Box 1: Azure application Gateway
Azure Application Gateway supports end-to-end encryption of traffic. Application Gateway terminates the SSL connection at the application gateway. The gateway then applies the routing rules to the traffic, re-encrypts the packet, and forwards the packet to the appropriate back-end server based on the routing rules defined. Any response from the web server goes through the same process back to the end user.
Box 2: Azure Security Center
Azure Security Center is a unified infrastructure security management system that strengthens the security posture of your data centers, and provides advanced threat protection across your hybrid workloads in the cloud - whether they're in Azure or not - as well as on premises.
Box 3: Azure Traffic Manager
Azure Traffic Manager is a DNS-based traffic load balancer that enables you to distribute traffic optimally to services across global Azure regions, while providing high availability and responsiveness.
References:
https://docs.microsoft.com/en-us/azure/application-gateway/application-gateway-end-to-end-ssl-powershell
https://docs.microsoft.com/en-us/azure/traffic-manager/traffic-manager-overview
https://docs.microsoft.com/en-us/azure/security-center/security-center-intro
NEW QUESTION: 2
You plan to deploy three encrypted virtual machines that use Secure Boot. The virtual machines will be configured as shown in the following table.
How should you protect each virtual machine? To answer, select the appropriate options in the answer area.
Answer:
Explanation:
Explanation:
Shielded VM Prevents Virtual Machine connection and PowerShell Direct, it prevent the Hyper-V host to interact in any means with the Shielded VM.
https://docs.microsoft.com/en-us/windows-server/virtualization/guarded-fabric-shielded-vm/guarded-fabric-andshielded-vms
NEW QUESTION: 3
You work as an administrator at Contoso.com. The Contoso.com network consists of a single domain named Contoso.com. All servers on the Contoso.com network have Windows Server 2012 R2 installed.
You have received instructions to convert a basic disk to a GPT disk.
Which of the following is TRUE with regards to GPT disks? (Choose all that apply.)
A. To convert a basic disk to a GPT disk, the disk must not contain any partitions or volumes.
B. GPT disks make use of the standard BIOS partition table.
C. GPT is required for disks larger than 2 TB.
D. The GPT partition style can be used on removable media.
E. GPT is required for disks smaller than 2 TB.
F. You can convert a basic disk to a GPT disk, regardless of partitions or volumes.
Answer: A,C
Explanation:
A. For a drive to be eligible for conversion to dynamic, all basic data partitions on the drive must be contiguous.
C. GPT allows a much larger partition size greater than 2 terabytes (TB)
D. 2 terabytes is the limit for MBR disks.
E. Dynamic disks are not supported on portable computers, removable disks, detachable disks that use USB or IEEE 1394 interfaces.
F. Windows only supports booting from a GPT disk on systems that contain Unified Extensible Firmware Interface (UEFI) boot firmware. Master boot record (MBR) disks use the standard BIOS partition table. GUID partition table (GPT) disks use unified extensible firmware interface (UEFI). One advantage of GPT disks is that you can have more than four partitions on each disk. GPT is also required for disks larger than 2 terabytes. Portable computers and removable media. Dynamic disks are not supported on portable computers, removable disks, detachable disks that use Universal Serial Bus (USB) or IEEE 1394 (also called FireWire) interfaces, or on disks connected to shared SCSI buses. If you are using a portable computer and right-click a disk in the graphical or list view in Disk Management, you will not see the option to convert the disk to dynamic. Dynamic disks are a separate form of volume management that allows volumes to have noncontiguous extents on one or more physical disks. Dynamic disks and volumes rely on the Logical Disk Manager (LDM) and Virtual Disk Service (VDS) and their associated features. These features enable you to perform tasks such as converting basic disks into dynamic disks, and creating fault-tolerant volumes. To encourage the use of dynamic disks, multi-partition volume support was removed from basic disks, and is now exclusively supported on dynamic disks. GPT disks can be converted to MBR disks only if all existing partitioning is first deleted, with associated loss of data.
Q. What happens when a basic disk is converted to dynamic?
A. For a drive to be eligible for conversion to dynamic, all basic data partitions on the drive must be contiguous. If other unrecognized partitions separate basic data partitions, the disk cannot be converted. This is one of the reasons that the MSR must be created before any basic data partitions. The first step in conversion is to separate a portion of the MSR to create the configuration database partition. All non-bootable basic partitions are then combined into a single data container partition. Boot partitions are retained as separate data container partitions. This is analogous to conversion of primary partitions. Windows XP and later versions of the Windows operating system differs from Windows 2000 in that basic and extended partitions are preferentially converted to a single 0x42 partition, rather than being retained as multiple distinct 0x42 partitions as on Windows 2000.