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CTAL-TM_001 Prüfungs, ISQI CTAL-TM_001 Deutsch Prüfungsfragen & CTAL-TM_001 Zertifikatsdemo - Sugakumaster

CTAL-TM_001

Exam Code: CTAL-TM_001

Exam Name: ISTQB Certified Tester Advanced Level - Test ManagerCertification

Version: V16.75

Q & A: 400 Questions and Answers

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NEW QUESTION: 1
Which three of these are characteristics of multicast music on hold? (Choose three.)
A. It uses service parameters to set the codec type(s) used by MoH services.
B. It uses one-way RTP point-to-point.
C. There is a single user per audio stream.
D. It uses the multicast group address 239.1.1.1 to 239.255.255.255.
E. It increments on IP address for different audio sources
F. Networks and devices have to support multicast.
Answer: A,D,E

NEW QUESTION: 2
会社のデータは、複数のオンプレミスアプリケーションで使用されるオンプレミスデータセンターに保存されています。同社は、既存のアプリケーション環境を維持し、データ分析と将来の視覚化のためにAWSサービスを使用できるようにしたいと考えています。
ソリューションアーキテクトが推奨するストレージサービスはどれですか。
A. ファイル用のAWS Storage Gateway
B. Amazon Elastic File System(Amazon EFS)
C. Amazon Elastic Block Store(Amazon EBS)
D. Amazon Redshift
Answer: D

NEW QUESTION: 3
Use the following login credentials as needed:
Azure Username: xxxxx
Azure Password: xxxxx
The following information is for technical support purposes only:
Lab Instance: 10277521
You plan to create multiple pipelines in a new Azure Data Factory V2.
You need to create the data factory, and then create a scheduled trigger for the planned pipelines. The trigger must execute every two hours starting at 24:00:00.
To complete this task, sign in to the Azure portal.
Answer:
Explanation:
Step 1: Create a new Azure Data Factory V2
1. Go to the Azure portal.
2. Select Create a resource on the left menu, select Analytics, and then select Data Factory.

4. On the New data factory page, enter a name.
5. For Subscription, select your Azure subscription in which you want to create the data factory.
6. For Resource Group, use one of the following steps:


7. For Version, select V2.
8. For Location, select the location for the data factory.
9. Select Create.
10. After the creation is complete, you see the Data Factory page.
Step 2: Create a schedule trigger for the Data Factory
1. Select the Data Factory you created, and switch to the Edit tab.

2. Click Trigger on the menu, and click New/Edit.

3. In the Add Triggers page, click Choose trigger..., and click New.

4. In the New Trigger page, do the following steps:
a. Confirm that Schedule is selected for Type.
b. Specify the start datetime of the trigger for Start Date (UTC) to: 24:00:00 c. Specify Recurrence for the trigger. Select Every Hour, and enter 2 in the text box.

5. In the New Trigger window, check the Activated option, and click Next.
6. In the New Trigger page, review the warning message, and click Finish.
7. Click Publish to publish changes to Data Factory. Until you publish changes to Data Factory, the trigger does not start triggering the pipeline runs.

References:
https://docs.microsoft.com/en-us/azure/data-factory/quickstart-create-data-factory-portal
https://docs.microsoft.com/en-us/azure/data-factory/how-to-create-schedule-trigger

NEW QUESTION: 4
Which of the following is the process of digitally signing executables and scripts to confirm the software author and guarantee that the code has not been altered or corrupted since it was signed by use of a cryptographic hash?
A. Code signing
B. Non-repudiation
C. Hashing
D. Entropy
Answer: A
Explanation:
Code signing is the process of digitally signing executables and scripts to confirm the software author and guarantee that the code has not been altered or corrupted since it was signed by use of a cryptographic hash.
Overview Code signing can provide several valuable features. The most common use of code signing is to provide security when deploying: in some languages, it can also be used to help prevent namespace conflicts. Almost every code signing implementation will provide some sort of digital signature mechanism to verify the identity of the author or build system, and a checksum to verify that the object has not been modified. It can also be used to provide versioning information about an object or to store other meta data about an object.
Providing security Many code signing implementations will provide a way to sign the code using private and public key systems, similar to the process employed by SSL or SSH. For example, in the case of .NET, the developer uses a key to sign his libraries or executables each time he builds. This key will be unique to a developer or group or sometimes per application or object. The developer can either generate this key on his own or obtain one from a trusted certificate authority (CA).
It is particularly valuable in distributed environments, where the source of a given piece of code may not be immediately evident - for example Java applets. ActiveX controls and other active web and browser scripting code. Another major usage is to safely provide updates and patches to existing software. Most Linux distributions, as well as both Apple Mac OS X and Microsoft Windows update services use code signing to ensure that it is not possible to maliciously distribute code via the patch system. It allows them to not have to worry about distribution security, such as mirror sites which may not be under the authors complete control, or any other intermediate piece of the deployment.
Trusted identification using a certificate authority (CA) The public key used for code signing should be traceable back to a trusted root authority, preferably using a secure public key infrastructure (PKI). This does not ensure that the code itself can be trusted, only that it comes from the stated source or more explicitly, from a particular private key. A certificate authority provides a root trust level which is able to assign trust to others by proxy. If a user is set to trust one of these certificate authorities and receives an executable signed with a key generated by that CA. he can choose to trust the executable by proxy. In many frameworks and operating systems, a number of existing publicly trusted authorities will be pre-installed such as Version, TC TrustCenter, COMOOO, GoDaddy and GlobalSign. When inside a large group of users, such as a large company, it is commonplace to employ a private internal certificate authority suitable for providing the same features of public certificate authority but for deploying signed objects internally.
Alternative to CAs The other model is where developers can choose to provide their own self-generated key. In this scenario, the user would normally have to obtain the public key in some fashion directly from the developer to verify the object is from him for the first time. Many code signing systems will store the public key inside the signature. Some software frameworks and OSs that check the codes signature before executing will allow you to choose to trust that developer from that point on after the first run. An application developer can provide a similar system by including the public keys with the installer. The key can then be used to ensure that any subsequent objects that need to run, such as upgrades, plugins, or another application, are all verified as coming from that same developer.
Problems Like any security measure, code signing can be defeated. Users can be tricked into running unsigned code, or even into running code that refuses to validate, and the system only remains secure as long as the private key remains private. It is also important to note that code signing does not protect the end user from any malicious activity or unintentional software bugs by the software author - it merely ensures that the software has not been modified by anyone other than the author.
Implementations IBM's Lotus Notes has had PKI signing of code from Release 1 - and both client and server software have execution control lists to control what levels of access to data, environment and file system are permitted for given users, individual design elements, including active items such as scripts, actions and agents, are always signed using the editors ID file, which includes both the editor's and the domain's public keys. Core templates such as the mail template are signed with a dedicated ID held by the Lotus template development team.
Signed JavaScript is also popular: signed scripts are allowed to perform additional actions such as cross-domain referencing.
Microsoft implements a form of code signing based on Authenticode provided for Microsoft tested drivers. Since drivers run in the kernel, they can destabilize the system or open the system to security holes. For this reason. Microsoft tests drivers submitted to its WHQL program. After the driver has passed, Microsoft signs that version of the driver as being safe. On 32-bit systems only, installing drivers that are not validated with Microsoft is possible after accepting to allow the installation in a prompt warning the user that the code is unsigned. For .NET managed code, there is an additional mechanism called Strong Name Signing that uses Public/Private keys and SHA1 hash as opposed to Certificates. However, Microsoft discourages reliance on Strong Name Signing as a replacement for Authenticode
Answer options A, B and D are incorrect. These are not valid options.

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