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NEW QUESTION: 1
You have a Hyper-V host named Server1 that runs Windows Server 2016.
Server1 hosts the virtual machines configured as shown in the following table.

All the virtual machines have two volumes named C and D.
You plan to implement BitLocker Drive Encryption (BitLocker) on the virtual machines. Which virtual machines can have their volumes protected by using BitLocker? Choose Two.
A. Virtual machines that can have volume D protected by using BitLocker: VM2, VM3 and VM4 only
B. Virtual machines that can have volume D protected by using BitLocker: VM2 and VM3 only
C. Virtual machines that can have volume C protected by using BitLocker and a Trusted Platform Module (TPM) protector: VM2, VM3 and VM4 only
D. Virtual machines that can have volume D protected by using BitLocker: VM2 and VM4 only
E. Virtual machines that can have volume C protected by using BitLocker and a Trusted Platform Module (TPM) protector: VM2 and VM3 only
F. Virtual machines that can have volume C protected by using BitLocker and a Trusted Platform Module (TPM) protector: VM3 only
G. Virtual machines that can have volume D protected by using BitLocker: VM3 only
H. Virtual machines that can have volume C protected by using BitLocker and a Trusted Platform Module (TPM) protector: VM2 and VM4 only
I. Virtual machines that can have volume C protected by using BitLocker and a Trusted Platform Module (TPM) protector: VM1 and VM3 only
J. Virtual machines that can have volume D protected by using BitLocker: VM1, VM2, VM3 and VM4
K. Virtual machines that can have volume D protected by using BitLocker: VM1 and VM3 only
L. Virtual machines that can have volume C protected by using BitLocker and a Trusted Platform Module (TPM) protector: VM1, VM2, VM3 and VM4
Answer: F,G
Explanation:
https://docs.microsoft.com/en-us/windows-server/virtualization/hyper-v/deploy/upgrade-virtual-machine-versionin-hyper-v-on-windows-or-windows-server To use Virtual TPM protector for encrypting C: drive, you have to use at least VM Configuration Version 7.0 and Generation 2 Virtual machines.


https://www.howtogeek.com/howto/6229/how-to-use-bitlocker-on-drives-without-tpm/ If you don't use TPM for protecting a drive, there is no such Virtual TPM or VM Generation, or VM Configuration version requirement, you can even use Bitlocker without TPM Protector with earlier versions of Windows.

NEW QUESTION: 2
Welche Produkte, die beim Erstellen einer Produktstrukturstruktur identifiziert wurden, sollten jeweils einen entsprechenden Eintrag im Risikoregister haben?
A. Diejenigen, die außerhalb des Projektbereichs erstellt werden sollen
B. Diejenigen, die in Unterprodukte unterteilt wurden
C. Diese hängen von mehr als einem anderen Produkt ab
D. Diejenigen, die abgeschlossen, aber NICHT qualitätsgeprüft wurden
Answer: A

NEW QUESTION: 3
You are assisting your colleague in solving a compiler error that his code is throwing.
Following is the problematic portion of his code:
try
{
bool success = ApplyPicardoRotation(100, 0);
// additional code lines here
}
catch(DivideByZeroException dbze)
{
//exception handling code
}
catch(NotFiniteNumberException nfne)
{
//exception handling code
}
catch(ArithmeticException ae)
{
//exception handling code
}
catch(OverflowException oe)
{
//exception handling code
}
To remove the compilation error, which of the following ways should you suggest to rearrange the code?
A. try
{
bool success = ApplyPicardoRotation(100, 0);
// additional code lines here
}
catch(DivideByZeroException dbze)
{
//exception handling code
}
catch(NotFiniteNumberException nfne)
{
//exception handling code
}
catch(OverflowException oe)
{
//exception handling code
}
catch(ArithmeticException ae)
{
//exception handling code
}
B. try
{
bool success = ApplyPicardoRotation(100, 0);
// additional code lines here
}
catch(DivideByZeroException dbze)
{
//exception handling code
}
catch(ArithmeticException ae)
{
//exception handling code
}
catch(OverflowException oe)
{
//exception handling code
}
C. try
{
bool success = ApplyPicardoRotation(100, 0);
// additional code lines here
}
catch(DivideByZeroException dbze)
{
//exception handling code
}
catch(Exception e)
{
//exception handling code
}
catch(OverflowException oe)
{
//exception handling code
}
D. try
{
bool success = ApplyPicardoRotation(100, 0);
// additional code lines here
}
catch(DivideByZeroException dbze)
{
//exception handling code
}
catch(NotFiniteNumberException nfne)
{
//exception handling code
}
catch(Exception e)
{
//exception handling code
}
catch(ArithmeticException ae)
{
//exception handling code
}
Answer: A

NEW QUESTION: 4
A company is building a web and mobile application that uses a serverless architecture powered by AWS Lambda and Amazon API Gateway. The company wants to fully automate the backend Lambda deployment based on code that is pushed to the appropriate environment branch in an AWS CodeCommit repository. The deployment must have the following: *Separate environment pipelines for testing and production. *Automatic deployment that occurs for test environments only. Which steps should be taken to meet these requirements?
A. Configure a new AWS CodePipeline service. Create a CodeCommit repository for each environment. Set up CodePipeline to retrieve the source code from the appropriate repository. Set up a deployment step to deploy the Lambda functions with AWS CloudFormation.
B. Create two AWS CodePipeline configurations for test and production environments. Configure the production pipeline to have a manual approval step. Create one CodeCommit repository with a branch for each environment. Set up each CodePipeline to retrieve the source code from the appropriate branch in the repository. Set up the deployment step to deploy the Lambda functions with AWS CloudFormation.
C. Create two AWS CodePipeline configurations for test and production environments. Configure the production pipeline to have a manual approval step. Create a CodeCommit repository for each environment. Set up each CodePipeline to retrieve the source code from the appropriate repository. Set up the deployment step to deploy the Lambda functions with AWS CloudFormation.
D. Create an AWS CodeBuild configuration for test and production environments. Configure the production pipeline to have a manual approval step. Create one CodeCommit repository with a branch for each environment. Push the Lambda function code to an Amazon S3 bucket. Set up the deployment step to deploy the Lambda functions from the S3 bucket.
Answer: C


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