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E-BW4HANA214 New Real Test - E-BW4HANA214 Training Material, E-BW4HANA214 Test Pattern - Grad-Bsru

SAP Certified Application Specialist – SAP BW/4HANA 2021 Delta

Questions and Answers : 430 Q&As

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Product Description Exam Number/Code: E-BW4HANA214

Exam Number/Code: E-BW4HANA214

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NEW QUESTION: 1
Your network environment includes a Microsoft Visual Studio Team Foundation Server (TFS) 2012 server. You have two teams named Team A and Team B working on a team project.
You assign work items to a team area for each team. Each person belongs to only one team.
You need to provide read-only access to work items in the Team A area node to Team B by using the least number of permissions changes.
What should you do?
A. Set the View Work Items in This Node permission to allow Team B to access the Team A node.
B. Set the Edit Work Items in this Node permission for Team B as Deny to the Team A node and each child of the Team A node.
C. Set the Edit Work Items in This Node permission for Team B as Deny for the Team A node.
D. Set the View Work Items in This Node permission to allow Team B to access the Team A team node and each child node.
Answer: C

NEW QUESTION: 2

A. Option C
B. Option A
C. Option D
D. Option B
Answer: A,B

NEW QUESTION: 3
You create a virtual machine (VM) on a Windows Server 2008 R2 Hyper-V server.
The VM has a single VHD file that is connected to an IDE controller.
You need to add five new virtual disks to the VM.
You must minimize the amount of virtual hardware.
What should you do?
A. Add the virtual disks to IDE Controller 0.
B. Add the virtual disks to an existing SCSI controller.
C. Add five SCSI controllers to the VM, and add one virtual disk to each SCSI controller.
D. Remove the virtual DVD drive, and add the virtual disks to IDE Controller1.
Answer: B
Explanation:
Use of virtual SCSI devices requires integration services to be installed in the guest operating system.
SCSI devices. Each virtual machine supports up to 256 SCSI disks (four SCSI controllers with each controller supporting up to 64 disks).
SCSI controllers use a type of device developed specifically for use with virtual machines and use the virtual machine bus to communicate.
The virtual machine bus must be available when the guest operating system is started. Therefore, virtual hard disks attached to SCSI controllers cannot be used as startup disks. By default, SCSI commands are filtered in Hyper-V in Windows Server 2008 R2. Although it is possible to disable filtering of SCSI commands, we do not recommend that you arbitrarily disable filtering because it represents a possible security risk (when filtering of SCSI commands is turned off, SCSI commands pass directly from the virtual machine to the storage stack on the management operating system).
Programmatically disabling SCSI filtering is supported in Hyper-V in Windows Server 2008 R2 and may be required for certain storage management applications. You should only disable SCSI filtering after consulting with your storage vendor and determining that it is necessary for application compatibility.
Although the I/O performance of physical SCSI and IDE devices can differ significantly, this is not true for the virtualized SCSI and IDE devices in Hyper-V. Hyper-V. IDE and SCSI devices both offer equally fast I/O performance when integration services are installed in the guest operating system

NEW QUESTION: 4
Cryptography does not concern itself with which of the following choices?
A. Validation
B. Availability
C. Confidentiality
D. Integrity
Answer: A
Explanation:
The cryptography domain addresses the principles, means, and methods of disguising information to ensure its integrity, confidentiality, and authenticity. Unlike the other domains, cryptography does not completely support the standard of availability.
Availability
Cryptography supports all three of the core principles of information security. Many access control systems use cryptography to limit access to systems through the use of passwords. Many token-based authentication systems use cryptographic-based hash algorithms to compute one-time passwords. Denying unauthorized access prevents an attacker from entering and damaging the system or network, thereby denying access to authorized users if they damage or currupt the data.
Confidentiality Cryptography provides confidentiality through altering or hiding a message so that ideally it cannot be understood by anyone except the intended recipient.
Integrity Cryptographic tools provide integrity checks that allow a recipient to verify that a message has not been altered. Cryptographic tools cannot prevent a message from being altered, but they are effective to detect either intentional or accidental modification of the message.
Additional Features of Cryptographic Systems In addition to the three core principles of information security listed above, cryptographic tools provide several more benefits.
Nonrepudiation
In a trusted environment, the authentication of the origin can be provided through the simple
control of the keys. The receiver has a level of assurance that the message was encrypted by the
sender, and the sender has trust that the message was not altered once it was received. However,
in a more stringent, less trustworthy environment, it may be necessary to provide assurance via a
third party of who sent a message and that the message was indeed delivered to the right
recipient. This is accomplished through the use of digital signatures and public key encryption. The
use of these tools provides a level of nonrepudiation of origin that can be verified by a third party.
Once a message has been received, what is to prevent the recipient from changing the message
and contesting that the altered message was the one sent by the sender? The nonrepudiation of
delivery prevents a recipient from changing the message and falsely claiming that the message is
in its original state. This is also accomplished through the use of public key cryptography and
digital signatures and is verifiable by a trusted third party.
Authentication
Authentication is the ability to determine if someone or something is what it declares to be. This is
primarily done through the control of the keys, because only those with access to the key are able
to encrypt a message. This is not as strong as the nonrepudiation of origin, which will be reviewed
shortly Cryptographic functions use several methods to ensure that a message has not been
changed or altered. These include hash functions, digital signatures, and message authentication
codes (MACs). The main concept is that the recipient is able to detect any change that has been
made to a message, whether accidentally or intentionally.
Access Control
Through the use of cryptographic tools, many forms of access control are supported-from log-ins
via passwords and passphrases to the prevention of access to confidential files or messages. In
all cases, access would only be possible for those individuals that had access to the correct
cryptographic keys.
NOTE FROM CLEMENT:
As you have seen this question was very recently updated with the latest content of the Official
ISC2 Guide (OIG) to the CISSP CBK, Version 3.
Myself, I agree with most of you that cryptography does not help on the availability side and it is
even the contrary sometimes if you loose the key for example. In such case you would loose
access to the data and negatively impact availability. But the ISC2 is not about what I think or what
you think, they have their own view of the world where they claim and state clearly that
cryptography does address availability even thou it does not fully address it.
They look at crypto as the ever emcompassing tool it has become today. Where it can be use for
authentication purpose for example where it would help to avoid corruption of the data through
illegal access by an unauthorized user.
The question is worded this way in purpose, it is VERY specific to the CISSP exam context where
ISC2 preaches that cryptography address availability even thou they state it does not fully address
it. This is something new in the last edition of their book and something you must be aware of.
Best regards
Clement
The following terms are from the Software Development Security domain:
Validation: The assurance that a product, service, or system meets the needs of the customer and
other identified stakeholders. It often involves acceptance and suitability with external customers.
Contrast with verification below."
Verification: The evaluation of whether or not a product, service, or system complies with a
regulation, requirement, specification, or imposed condition. It is often an internal process.
Contrast with validation."
The terms above are from the Software Development Security Domain.
Reference(s) used for this question:
Schneiter, Andrew (2013-04-15). Official (ISC)2 Guide to the CISSP CBK, Third Edition :
Cryptography (Kindle Locations 227-244). . Kindle Edition.
and
Schneiter, Andrew (2013-04-15). Official (ISC)2 Guide to the CISSP CBK, Third Edition :
Cryptography (Kindle Locations 206-227). . Kindle Edition.
and
http://en.wikipedia.org/wiki/Verification_and_validation


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