Analytics-Admn-201 Actual Questions - Instant Download 57 Questions Download Free Latest Exam Analytics-Admn-201 Certified Sample Questions Salesforce Analytics-Admn-201 Exam Syllabus Topics: TopicDetailsTopic 1Migration & Upgrade: This section of the exam measures the skills of System Engineers and covers the process of upgrading and migrating Tableau Server environments. Candidates should understand [...]

Analytics-Admn-201 Actual Questions - Instant Download 57 Questions [Q29-Q49]

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Analytics-Admn-201 Actual Questions - Instant Download 57 Questions

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Salesforce Analytics-Admn-201 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Migration & Upgrade: This section of the exam measures the skills of System Engineers and covers the process of upgrading and migrating Tableau Server environments. Candidates should understand how to carry out clean reinstalls, migrate servers to new hardware, and maintain backward compatibility during the process.
Topic 2
  • Connecting to and Preparing Data: This section of the exam measures the skills of Tableau Administrators and covers the basic understanding of Tableau Server’s interface, navigation, and overall topology. Candidates are expected to recognize both client and server components, understand how these interact, and know where to find information about versions, releases, and updates. It also focuses on system requirements, including hardware, operating systems, browsers, email configurations, cloud considerations, and licensing models. Additionally, it examines knowledge of server processes, data source types, network infrastructure, and ports needed for a stable deployment.
Topic 3
  • Installation and Configuration: This section of the exam measures the skills of Server Engineers and covers the process of installing Tableau Server, understanding installation paths, identity store options, SSO integrations, SSL setup, and silent installs. Candidates also need to demonstrate the ability to configure Tableau Server by setting cache, distributing processes, customizing sites, and configuring user quotas. It further includes adding users, managing their roles and permissions, and applying Tableau’s security model at different levels from sites to workbooks.
Topic 4
  • Troubleshooting: This section of the exam measures the skills of Support Specialists and covers resolving common Tableau Server issues. Candidates must know how to reset accounts, package logs, validate site resources, rebuild search indexes, and use analysis reports. It also includes understanding the role of browser cookies and creating support requests when needed.
Topic 5
  • Administration: This section of the exam measures the skills of Tableau Administrators and covers the day-to-day tasks of maintaining Tableau Server. Candidates should understand how to create and manage schedules, subscriptions, backups, and restores, as well as how to use tools such as TSM, Tabcmd, and REST API. It emphasizes monitoring, server analysis, log file usage, and embedding practices. It also includes managing projects, sites, and nested structures, while contrasting end-user and administrator abilities. Knowledge of publishing, web authoring, sharing views, caching, and data source certification is also tested.

 

NEW QUESTION # 29
A user named John publishes a workbook named Sales Quota to a project named Sales. The All Users group has the View and Download Workbook/Save As capabilities only to the Sales project. A user named Sandy has the Explorer (can publish) site role, on the Sales Quota workbook. No other users or groups have permissions to the Sales project. The Sales project is set to Managed by the owner. What are the effective rights for Sandy?

  • A. The same rights as John
  • B. All of the capabilities associated with the Editor rule
  • C. No access
  • D. View and Download Workbook/Save As

Answer: D


NEW QUESTION # 30
A new engineer reports that he is unable to log on to Tableau Services Manager (TSM) from the initial node of a Windows test cluster. Which account credentials should you instruct the engineer to use?

  • A. An account with a Site Administrator role
  • B. An account with administrative rights to the computer
  • C. An account with a Creator site role
  • D. An account for the Tableau Server administrator

Answer: B

Explanation:
Tableau Services Manager (TSM) is the administrative tool for managing Tableau Server's configuration, processes, and topology. To log in to TSM (via the web UI at https://<server>:8850 or CLI), you need:
* TSM administrator credentials: These are distinct from site roles and are set during installation or reset via tsm reset.
* Local administrative rights: On Windows, the account used to access TSM must be in the local Administrators group on the initial node, as TSM interacts with system-level services.
In a test cluster, the engineer's inability to log in suggests they lack either the correct TSM credentials or sufficient OS-level permissions. Since the question focuses on a Windows environment and "initial node," the most immediate requirement is local administrative rights to run TSM commands or access the UI.
* Option C (An account with administrative rights to the computer): Correct. The engineer must use an account in the local Administrators group on the initial node to authenticate to TSM. After that, they' ll need the TSM admin username/password set during installation.
* Option A (An account with a Creator site role): Incorrect. Site roles (e.g., Creator) apply to content access within Tableau Server, not TSM administration.
* Option B (An account with a Site Administrator role): Incorrect. Site Administrators manage site content, not server-level TSM functions.
* Option D (An account for the Tableau Server administrator): Partially correct but incomplete. This likely refers to the TSM admin account, but without local admin rights on the machine, login will fail.
Option C is more precise.
Reference: Tableau Server Documentation - "TSM Authentication" (https://help.tableau.com/current/server
/en-us/tsm_overview.htm#authentication).


NEW QUESTION # 31
What should you do to disable table recommendations for popular data sources and tables to users?

  • A. Disable the option using the site Settings page
  • B. Use the command: tsm configuration set -k recommendations.enabled -v false
  • C. Publish data sources only to projects with permissions locked to the project
  • D. Disable the option using the server Settings page

Answer: A

Explanation:
Table recommendations in Tableau Server suggest popular tables and data sources to users when they create new content in the web authoring environment. This feature is enabled by default but can be disabled at the site level.
Option A (Disable the option using the site Settings page): Correct. A site administrator can disable table recommendations by navigating to the site's Settings > General page in the Tableau Server web interface and unchecking the option "Enable table recommendations." This prevents users on that site from seeing these suggestions, offering a straightforward UI-based solution.
Option B (Use the command: tsm configuration set -k recommendations.enabled -v false): Incorrect. There is no recommendations.enabled key in the TSM configuration settings. This feature is managed per site, not server-wide via TSM.
Option C (Publish data sources only to projects with permissions locked): Incorrect. Locking permissions restricts access but doesn't disable the recommendation feature itself. Users with access would still see recommendations.
Option D (Disable the option using the server Settings page): Incorrect. Table recommendations are a site- specific setting, not a server-wide setting. The server Settings page (via TSM) controls global configurations, not this feature.
Reference: Tableau Server Documentation - "Manage Site Settings" (https://help.tableau.com/current/server/en-us/site_settings.htm).


NEW QUESTION # 32
What process decides when a Repository failover is required?

  • A. Cluster Controller
  • B. Gateway
  • C. Backgrounder
  • D. Coordination Service

Answer: A

Explanation:
In a high-availability (HA) Tableau Server setup, the Repository (PostgreSQL) has an active and passive instance. Failover occurs if the active Repository fails. Let's dive into the process:
* HA Setup:
* Two Repository instances across nodes (active/passive).
* Failover switches to the passive instance if the active one becomes unavailable (e.g., crash, network issue).
* Cluster Controller:
* Role: Monitors all processes (e.g., Repository, File Store) across nodes, detecting failures via heartbeats and status checks.
* Failover Decision: If the active Repository stops responding, Cluster Controller initiates failover, promoting the passive instance to active.
* Coordination: Works with Coordination Service (ZooKeeper) to update topology but makes the initial detection call.
* Option A (Cluster Controller): Correct.
* Why: It's the watchdog process, constantly monitoring Repository health and triggering failover when needed.
* Option B (Coordination Service): Incorrect.
* Role: ZooKeeper maintains cluster state and coordinates topology updates post-failover, but doesn't detect the failure-Cluster Controller does.
* Option C (Gateway): Incorrect.
* Role: Routes client requests-unrelated to internal process monitoring or failover.
* Option D (Backgrounder): Incorrect.
* Role: Executes background tasks-no involvement in Repository failover decisions.
Why This Matters: Understanding failover ensures HA reliability-Cluster Controller is the linchpin for resilience.
Reference: Tableau Server Documentation - "High Availability" (https://help.tableau.com/current/server/en-us
/ha.htm).


NEW QUESTION # 33
A user receives an error after attempting to run an extract refresh on the Tableau Server. What should you review to identify the cause of the problem?

  • A. The Background Tasks for Extracts administrative view on the site status page
  • B. The UNC path to the extract's data source
  • C. The status of the Backgrounder process, as shown by the tsm status -v command
  • D. Whether the project permissions are set to Locked to the project

Answer: A

Explanation:
When an extract refresh fails on Tableau Server, troubleshooting requires identifying the root cause-e.g., connectivity issues, resource constraints, or configuration errors. The Backgrounder process handles extract refreshes, so it's a key focus, but the best diagnostic tool depends on granularity and context. Let's explore this thoroughly:
* Extract Refresh Process:
* An extract refresh pulls data from a source (e.g., database, file) into a .hyper file stored on Tableau Server.
* The Backgrounder executes these tasks based on schedules or manual triggers.
* Errors could stem from: database connectivity, credentials, file access, resource overload, or task misconfiguration.
* Option B (Background Tasks for Extracts administrative view): Correct. This is the most direct and detailed method:
* Location: In the Tableau Server web UI, go to Server > Status > Background Tasks for Extracts (or site-specific under Site > Status).
* Details Provided:
* Task name, schedule, and workbook/data source.
* Start/end times and status (e.g., Failed, Success).
* Error messages (e.g., "Cannot connect to database," "Permission denied").
* Why It's Best: It pinpoints the exact failure (e.g., "timeout," "invalid credentials") for the specific refresh, offering actionable insights without needing to dig through logs manually. Server or site administrators can access this view to diagnose issues quickly.
* Example: If the error is "Database login failed," you'd check credentials in the data source settings next.
* Option A (Status of the Backgrounder process via tsm status -v): Partially useful but insufficient:
* What It Shows: Running/stopped status of all processes (e.g., "Backgrounder: RUNNING").
* Limitation: It confirms if Backgrounder is operational but doesn't reveal why a specific task failed-no error details or task-level granularity.
* Use Case: If Backgrounder is stopped or crashed, this might indicate a broader issue, but the question implies a single refresh error, not a server-wide failure.
* Option C (The UNC path to the extract's data source): Relevant but secondary:
* Context: If the data source is a file (e.g., CSV on a network share), the UNC path (e.g.,
\\server\share\file.csv) must be accessible.
* Why Not First: The error could be unrelated (e.g., database issue, not file-based). The admin view (B) would reveal if it's a path issue first, guiding you to check the UNC path only if indicated (e.g., "File not found").
* Practical Note: Backgrounder needs share permissions and the Run As account must access it- checking this without context wastes time.
* Option D (Whether project permissions are set to Locked): Unlikely cause:
* Permissions Impact: Locked permissions restrict who can edit/view content, not whether an extract refresh runs-that's tied to the data source's connection settings and Backgrounder execution.
* Exception: If the refresh user lacks "Connect" permission to the data source, it might fail, but this is rare (owner/schedule typically has access). The admin view would flag this.
Why This Matters: The Background Tasks view is Tableau's purpose-built tool for extract diagnostics, saving time and reducing guesswork in production environments.
Reference: Tableau Server Documentation - "Administrative Views: Background Tasks for Extracts" (https://help.tableau.com/current/server/en-us/adminview_background_tasks.htm).


NEW QUESTION # 34
What two Tableau Services Manager (TSM) processes continue to run when Tableau Server is stopped?
(Choose two.)

  • A. VizQL Server
  • B. License Manager
  • C. Administration Controller
  • D. Backgrounder

Answer: B,C

Explanation:
Tableau Server consists of multiple processes managed by TSM. When you stop Tableau Server (e.g., via tsm stop), most application processes halt, but some TSM-specific processes remain active to manage the server's infrastructure. Let's examine each:
* TSM Processes: These include the Administration Controller, Administration Agent, and License Manager, which handle configuration, monitoring, and licensing.
* Application Processes: These include VizQL Server, Backgrounder, Data Server, etc., which deliver Tableau's core functionality and stop when the server is stopped.
When tsm stop is executed:
* The Administration Controller (port 8850) continues running to manage TSM operations (e.g., restarts, status checks).
* The License Manager remains active to validate licenses and ensure compliance, even when the server is offline.
* Application processes like VizQL Server and Backgrounder shut down, as they're tied to user-facing services.
* Option B (License Manager): Correct. It persists to handle licensing tasks, ensuring the server can restart without license issues.
* Option D (Administration Controller): Correct. It's the core TSM process, always running to accept commands and manage the server state.
* Option A (VizQL Server): Incorrect. VizQL stops, as it renders visualizations for users-an application process tied to active server operation.
* Option C (Backgrounder): Incorrect. Backgrounder stops, as it processes background tasks (e.g., extract refreshes), which halt when the server is down.
Why This Matters: Understanding which processes persist helps administrators troubleshoot and manage server lifecycle events effectively.
Reference: Tableau Server Documentation - "TSM Processes" (https://help.tableau.com/current/server/en-us
/tsm_overview.htm#processes).


NEW QUESTION # 35
What should you do to ensure that server tasks associated with a particular schedule run one-at-a-time?

  • A. Set Execution to Serial
  • B. Set Frequency to Hourly
  • C. Set Execution to Parallel
  • D. Set Default priority to 0

Answer: A

Explanation:
In Tableau Server, schedules manage tasks such as extract refreshes and subscriptions. The execution mode of a schedule determines how tasks within that schedule are processed by the Backgrounder process:
* Parallel: Tasks run simultaneously (up to the Backgrounder's capacity), which is the default setting.
* Serial: Tasks run one-at-a-time in sequence, ensuring that one task completes before the next begins.
To ensure tasks associated with a particular schedule run one-at-a-time, you must configure the schedule's execution mode to Serial. This is done in the Tableau Server web interface:
* Go to Schedules.
* Select the schedule, click Actions > Edit Schedule.
* Under Execution, choose Serial instead of Parallel.
* Option A (Set Execution to Serial): Correct. This directly addresses the requirement by forcing tasks to execute sequentially.
* Option B (Set Default priority to 0): Incorrect. Priority (1-100) determines the order of task execution across all schedules, not whether tasks run one-at-a-time within a single schedule. Also, 0 is not a valid priority value (minimum is 1).
* Option C (Set Frequency to Hourly): Incorrect. Frequency (e.g., hourly, daily) controls when the schedule runs, not how tasks within it are executed.
* Option D (Set Execution to Parallel): Incorrect. Parallel execution allows tasks to run simultaneously, which contradicts the requirement.
Reference: Tableau Server Documentation - "Create or Modify a Schedule" (https://help.tableau.com/current
/server/en-us/schedule_manage_create.htm).


NEW QUESTION # 36
Which three items can be contained in a project? (Choose three.)

  • A. Data Sources
  • B. Nested Projects
  • C. Workbooks
  • D. Groups

Answer: A,B,C

Explanation:
In Tableau Server, projects are containers for organizing and securing content. They help manage permissions and structure content hierarchically. Let's define what can be contained:
* Workbooks: Visualizations and dashboards published to the Server.
* Data Sources: Published connections or extracts reusable across workbooks.
* Nested Projects: Sub-projects within a parent project, introduced in later versions (e.g., 2018.2) for deeper organization.
* Option B (Workbooks): Correct. Workbooks are the primary content type in projects, containing views and dashboards.
* Option C (Nested Projects): Correct. Nested projects allow hierarchical structuring (e.g., a "Sales" project with "Q1" and "Q2" sub-projects), with inherited or custom permissions.
* Option D (Data Sources): Correct. Published data sources reside in projects, providing reusable data connections.
* Option A (Groups): Incorrect. Groups are collections of users managed at the site or server level, not stored within projects. Projects contain content, not user entities.
Why This Matters: Projects are key to content governance-knowing what they hold helps administrators organize and secure assets effectively.
Reference: Tableau Server Documentation - "Projects" (https://help.tableau.com/current/server/en-us/projects.
htm).


NEW QUESTION # 37
Which three types of authentications can you use to implement single-sign-on (SSO) authentication to Tableau Server? (Choose three.)

  • A. Local Authentication
  • B. Security Assertion Markup Language (SAML)
  • C. OpenID Connect
  • D. Kerberos with Active Directory

Answer: B,C,D

Explanation:
Single Sign-On (SSO) allows users to authenticate once (e.g., via a corporate identity provider) and access Tableau Server without re-entering credentials. Tableau Server supports several SSO methods:
* OpenID Connect (OIDC): An OAuth 2.0-based protocol for SSO, configured via Tableau's SAML settings with an OIDC-compatible IdP (e.g., Google, Okta).
* Kerberos with Active Directory: A ticket-based SSO protocol, widely used in Windows environments with AD integration.
* SAML: A flexible SSO standard using XML assertions, supporting various IdPs (e.g., ADFS, PingFederate).
Let's evaluate:
* Option A (OpenID Connect): Correct. OIDC is an SSO method, implemented as a SAML variant in Tableau Server, enabling seamless login.
* Option C (Kerberos with Active Directory): Correct. Kerberos provides SSO in AD environments, delegating authentication to the domain controller.
* Option D (Security Assertion Markup Language - SAML): Correct. SAML is a core SSO method in Tableau, widely adopted for enterprise integrations.
* Option B (Local Authentication): Incorrect. Local Authentication uses Tableau's internal user database, requiring manual credential entry-no SSO support.
Why This Matters: SSO enhances user experience and security by leveraging existing identity systems, reducing password fatigue.
Reference: Tableau Server Documentation - "Authentication" (https://help.tableau.com/current/server/en-us
/auth_overview.htm).


NEW QUESTION # 38
Which two statements are advantages of published data sources in comparison to embedded data sources?
(Choose two.)

  • A. Centralized data management is easier
  • B. Data is protected so that it is only available in one workbook
  • C. Storage space is conserved and resource usage during data refreshes is optimized
  • D. Drivers are automatically installed on each client's machine

Answer: A,C

Explanation:
In Tableau, data sources can be embedded (stored within a workbook) or published (stored separately on Tableau Server). Let's define these and analyze the advantages:
* Embedded Data Source: The connection details and any extract are bundled in the .twb or .twbx file.
Each workbook manages its own copy.
* Published Data Source: The connection or extract is hosted on Tableau Server, reusable across multiple workbooks.
Now, let's evaluate the options:
* Option C (Centralized data management is easier): Correct. Published data sources allow:
* Single source of truth: One data source can serve multiple workbooks, ensuring consistency.
* Unified updates: Refresh schedules, permissions, and metadata (e.g., calculated fields) are managed in one place via the Server UI.
* Governance: Administrators can control access and monitor usage centrally.In contrast, embedded data sources require individual updates per workbook, leading to duplication and management overhead.
* Option D (Storage space is conserved and resource usage during data refreshes is optimized):
Correct. With published data sources:
* Storage: A single extract on the Server (e.g., a .hyper file) is shared across workbooks, avoiding redundant copies stored in each embedded workbook.
* Refreshes: One refresh job updates the shared extract, reducing CPU and memory usage compared to multiple refreshes for duplicate embedded extracts.Embedded data sources replicate extracts, increasing disk space and refresh load.
* Option A (Data is protected so that it is only available in one workbook): Incorrect. This describes embedded data sources, not published ones. Published data sources are shared, not restricted to one workbook-permissions control access, not exclusivity.
* Option B (Drivers are automatically installed on each client's machine): Incorrect. Drivers (e.g., for SQL Server, PostgreSQL) must be installed on the Server hosting the published data source, not client machines. This is unrelated to the published vs. embedded distinction.
Why This Matters: Published data sources enhance scalability and efficiency in enterprise deployments, making them a cornerstone of Tableau Server's data strategy.
Reference: Tableau Server Documentation - "Published Data Sources" (https://help.tableau.com/current/server
/en-us/datasource_publish.htm).


NEW QUESTION # 39
Which Tableau Server process performs the role of a database for metadata?

  • A. Repository
  • B. Data Engine
  • C. Backgrounder
  • D. File Store

Answer: A

Explanation:
Tableau Server relies on several processes to function, each with a specific role. The Repository process (powered by PostgreSQL) serves as the database for metadata, storing critical information such as:
* User and group details.
* Permissions and site configurations.
* Workbook and data source metadata (e.g., schedules, subscriptions).
* Option B (Repository): Correct. The Repository is the centralized database that holds all metadata, making it the backbone of Tableau Server's content management. There are typically two instances in an HA setup (one active, one passive), monitored by the Cluster Controller.
* Option A (Data Engine): Incorrect. The Data Engine manages in-memory data processing and extract storage (e.g., .hyper files), not metadata. It's separate from the Repository.
* Option C (Backgrounder): Incorrect. The Backgrounder handles background tasks like extract refreshes and subscriptions, but it doesn't store metadata-it interacts with the Repository to retrieve task details.
* Option D (File Store): Incorrect. The File Store manages physical extract files and workbook assets, not metadata, which is stored in the Repository.
Reference: Tableau Server Documentation - "Tableau Server Processes" (https://help.tableau.com/current
/server/en-us/processes.htm).


NEW QUESTION # 40
A user published a workbook ten days ago. The user can see the workbook on the Server, but she is unable to find the workbook by using Search. What should you do to resolve the problem?

  • A. Run the tsm maintenance reindex-search command
  • B. Instruct the user to add tags to the workbook
  • C. Instruct the user to log out, and then log back in
  • D. Instruct the user to re-publish the workbook with keywords

Answer: A

Explanation:
Tableau Server's search functionality relies on an indexed catalog of content (workbooks, data sources, etc.) stored in the Repository. If a user can see a workbook in the UI (e.g., under Content > Workbooks) but not find it via search, the search index may be outdated or corrupted. This can happen due to:
* Indexing delays after publishing.
* Server maintenance or crashes affecting the index.
* Option D (Run the tsm maintenance reindex-search command): Correct. This command rebuilds the search index, ensuring all content (including the user's workbook) is properly cataloged and searchable. Steps:
* Stop Tableau Server (tsm stop).
* Run tsm maintenance reindex-search.
* Start Tableau Server (tsm start).This is a server administrator task and resolves systemic search issues.
* Option A (Re-publish the workbook with keywords): Incorrect. Re-publishing might update the index for that workbook, but it doesn't fix a broader indexing problem. Keywords enhance relevance, not indexing itself.
* Option B (Add tags to the workbook): Incorrect. Tags improve searchability but don't address an index failure. If the workbook isn't indexed, tags won't help.
* Option C (Log out, and then log back in): Incorrect. This refreshes the user session but doesn't affect the server-side search index.
Why This Matters: A reliable search index is critical for content discovery in large deployments-reindex- search ensures consistency.
Reference: Tableau Server Documentation - "Reindex Search" (https://help.tableau.com/current/server/en-us
/cli_maintenance_tsm.htm#reindex-search).


NEW QUESTION # 41
What are two features of the Tableau Server user-based license? (Choose two.)

  • A. A subscription license
  • B. Restricts the number of machine cores you can deploy
  • C. A perpetual license
  • D. Enables distinct user roles

Answer: A,D

Explanation:
Tableau Server's user-based licensing model assigns licenses to individual users (Creator, Explorer, Viewer) rather than machines or cores. Key features include:
* Subscription license: Licenses are typically subscription-based, renewed annually or monthly, aligning with Tableau's pricing model.
* Distinct user roles: It supports three roles (Creator, Explorer, Viewer), each with specific capabilities, enabling granular access control.
* Option A (A subscription license): Correct. User-based licenses are subscription-based by default.
* Option B (Enables distinct user roles): Correct. The model defines Creator, Explorer, and Viewer roles.
* Option C (Restricts the number of machine cores): Incorrect. This applies to core-based licensing, not user-based.
* Option D (A perpetual license): Incorrect. Perpetual licenses were phased out; user-based licenses are subscription-based as of recent models.
Reference: Tableau Server Documentation - "Licensing Overview" (https://help.tableau.com/current/server/en- us/license_usage.htm).


NEW QUESTION # 42
What Tableau Server authentication method should you configure to use OpenID Connect?

  • A. SAML
  • B. Local Authentication
  • C. Active Directory
  • D. Kerberos

Answer: A

Explanation:
Tableau Server supports multiple authentication methods, including Local Authentication, Active Directory, Kerberos, SAML, and OpenID Connect. OpenID Connect (OIDC) is an identity layer built on OAuth 2.0, commonly used for single sign-on (SSO). In Tableau Server, OIDC is implemented as a variant of SAML (Security Assertion Markup Language) authentication because both are SSO protocols managed through the same configuration workflow.
To use OpenID Connect:
* Configure Tableau Server for SAML/SSO.
* Provide an OIDC-compatible identity provider (IdP) configuration (e.g., Google, Okta).
* Set up the IdP metadata and certificates in TSM.
* Option D (SAML): Correct. Tableau Server treats OIDC as a subset of its SAML authentication framework, so you configure it under the SAML settings in TSM.
* Option A (Local Authentication): Incorrect. Local Authentication uses Tableau's internal user database, not an external SSO protocol like OIDC.
* Option B (Kerberos): Incorrect. Kerberos is a network authentication protocol for Windows environments, unrelated to OIDC.
* Option C (Active Directory): Incorrect. AD uses LDAP or Kerberos, not OIDC, for authentication.
Reference: Tableau Server Documentation - "Configure SAML and OpenID Connect" (https://help.tableau.
com/current/server/en-us/saml_config.htm).


NEW QUESTION # 43
What type of information is stored in the tsm maintenance backup -f <filename>.tsbak command?

  • A. SMTP server settings
  • B. Topology data
  • C. Repository data
  • D. Notification settings

Answer: C

Explanation:
The tsm maintenance backup command creates a backup file (with a .tsbak extension) that captures critical data needed to restore Tableau Server in case of failure or migration. This backup primarily includes:
Repository data: This encompasses the PostgreSQL database, which stores metadata such as workbooks, data sources, user information, permissions, schedules, and subscriptions.
Configuration data: This includes server settings like authentication methods, port configurations, and service layouts, but it does not include topology data as a separate entity (topology is part of the configuration).
The command does not back up the following:
Extract files (stored in the File Store), which must be backed up separately if needed.
Log files, which are archived using tsm maintenance ziplogs.
Option A (Notification settings) is incorrect because while notification settings are part of the configuration data stored in the repository, they are not the primary focus of the backup. The broader category is "repository data." Option B (SMTP server settings) is also incorrect for the same reason-SMTP settings are configuration data within the repository, but the backup is not limited to just these settings.
Option D (Topology data) is incorrect because topology data (e.g., how services are distributed across nodes) is part of the configuration included in the backup, but it's not stored as a standalone item. The .tsbak file is centered on the repository database.
Reference: Tableau Server Documentation - "Back Up Tableau Server Data" (https://help.tableau.com/current
/server/en-us/backup_restore.htm).


NEW QUESTION # 44
Which three types of authentications can be used with user-based licensing? (Choose three.)

  • A. Local authentication
  • B. Active Directory
  • C. Reliance authentication
  • D. Trusted authentication

Answer: A,B,D

Explanation:
Tableau Server's user-based licensing (Creator, Explorer, Viewer) ties licenses to individual users-let's determine compatible authentication methods:
* User-Based Licensing:
* Licenses are assigned per user, tracked by username.
* Authentication determines how users log in-must integrate with licensing.
* Option A (Local authentication): Correct.
* Details: Users are managed in Tableau Server's internal database-username/password set manually or via import.
* Why: Directly ties to user accounts, fully compatible with licensing.
* Option C (Trusted authentication): Correct.
* Details: Allows external apps to authenticate users via tickets (e.g., /trusted/<ticket>).
* Why: Maps to Tableau usernames, integrating with licensing-common for embedded analytics.
* Config: Trusted IPs or credentials set in TSM.
* Option D (Active Directory): Correct.
* Details: Uses AD for authentication (LDAP or Kerberos)-users sync to Tableau Server.
* Why: AD usernames align with licensing-supports SSO and user management.
* Config: Enable via tsm authentication active-directory configure.
* Option B (Reliance authentication): Incorrect.
* Why: Not a recognized Tableau authentication method-likely a typo (e.g., for "Resilience" or misheard term). No such feature exists.
Why This Matters: Authentication flexibility ensures user-based licensing fits diverse IT environments- critical for adoption.
Reference: Tableau Server Documentation - "Authentication" (https://help.tableau.com/current/server/en-us
/auth_overview.htm), "Licensing Overview" (https://help.tableau.com/current/server/en-us/license_usage.
htm).


NEW QUESTION # 45
Which three types of data should you backup to ensure that you can restore a Tableau Server? (Choose three.)

  • A. Topology data
  • B. Server secrets and Repository passwords
  • C. Repository data
  • D. Configuration data

Answer: B,C,D

Explanation:
Backing up Tableau Server ensures recovery from failures or migrations. A full backup includes multiple data types-let's dissect this comprehensively:
* Backup Components:
* Repository Data: PostgreSQL database with metadata (users, permissions, workbooks). Backed up via tsm maintenance backup -f <filename>.tsbak.
* Configuration Data: Server settings (e.g., ports, authentication) also in the .tsbak file.
* Server Secrets: Encryption keys, internal tokens, Repository passwords-critical for restoring functionality.
* Extracts: .hyper files in File Store (optional, separate backup).
* Option A (Server secrets and Repository passwords): Correct.
* Details: Includes encryption keys (for extracts), internal tokens (process communication), and Repository credentials. Backed up separately or stored securely (e.g., tsm security export-keys).
* Why Critical: Without these, restored data may be inaccessible or services may fail.
* Option C (Configuration data): Correct.
* Details: Ports, authentication settings, process topology-part of the .tsbak file.
* Why Critical: Restores server behavior and connectivity post-recovery.
* Option D (Repository data): Correct.
* Details: Core metadata database-also in .tsbak.
* Why Critical: Without it, all content and user data is lost.
* Option B (Topology data): Incorrect.
* Details: Topology (process distribution) is part of configuration data in the .tsbak, not a separate entity. It's not distinctly backed up as "topology data." Why This Matters: A complete backup (secrets, config, repository) ensures full restoration-missing any piece risks an unusable server.
Reference: Tableau Server Documentation - "Back Up Tableau Server Data" (https://help.tableau.com/current
/server/en-us/backup_restore.htm).


NEW QUESTION # 46
What file format should you use to register Tableau Server from the command line?

  • A. YML
  • B. XML
  • C. JSON
  • D. HTTP

Answer: C

Explanation:
Registering Tableau Server from the command line involves providing configuration details (e.g., identity store, license) via the tsm register command. Let's explore this fully:
* Registration Process:
* Run during initial setup or to update settings (e.g., after changing AD/LDAP config).
* Uses a configuration file to pass parameters to TSM.
* Command: tsm register --file <path-to-file>.
* File Format:
* Tableau Server uses JSON for configuration files in TSM commands like tsm register.
* Example:
json
CollapseWrapCopy
{
"identityStore": {
"type": "local",
"domain": "example.com"
}
}
* JSON is structured, machine-readable, and aligns with Tableau's modern CLI design.
* Option C (JSON): Correct.
* Official format for tsm register, per documentation and practical use.
* Option A (YML): Incorrect.
* While tabsvc.yml exists internally, it's not for registration-tsm register uses JSON.
* Option B (XML): Incorrect.
* Older Tableau configs used XML (e.g., workgroup.yml pre-TSM), but TSM standardized on JSON.
* Option D (HTTP): Incorrect.
* HTTP is a protocol, not a file format-irrelevant here.
Why This Matters: Correct file format ensures seamless registration, avoiding CLI errors in setup or migrations.
Reference: Tableau Server Documentation - "tsm register" (https://help.tableau.com/current/server/en-us
/cli_register.htm).


NEW QUESTION # 47
You need to ensure that Tableau Server requires the setup of a new administrator account the next time you attempt to log in. What should you do?

  • A. Edit tabsvc.yml
  • B. Run the tsm reset command
  • C. Run the tsm register command
  • D. Reinstall Tableau Server

Answer: B

Explanation:
To force Tableau Server to require the setup of a new administrator account (e.g., resetting the server to an initial setup state), the tsm reset command is the appropriate tool. This command resets Tableau Server's administrative configuration, including the TSM administrator account, while preserving content like workbooks and data sources.
Option B (Run the tsm reset command): Correct. Running tsm reset clears the current TSM administrator credentials and configuration settings. The next time you access TSM (e.g., via the web interface or CLI), it prompts you to set up a new administrator account, mimicking the initial setup process. Command: tsm reset -- username <new-username> --password <new-password>.
Option A (Edit tabsvc.yml): Incorrect. The tabsvc.yml file contains service configuration data, but manually editing it is not supported or recommended for resetting the administrator account. It could also corrupt the installation.
Option C (Run the tsm register command): Incorrect. The tsm register command is used to register Tableau Server with a new product key or identity store, not to reset the administrator account.
Option D (Reinstall Tableau Server): Incorrect. Reinstallation wipes the entire server, including content, and is overkill for this task. The tsm reset command achieves the goal without data loss.
Reference: Tableau Server Documentation - "TSM Reset Command" (https://help.tableau.com/current/server
/en-us/cli_reset.htm).


NEW QUESTION # 48
You use Tableau Desktop 10.5 and plan to publish a visualization to a Tableau Server that runs version
2020.1. You are assigned the Creator site role, and Publisher permissions for a project. What statement correctly describes what happens when you attempt to publish the visualization?

  • A. You will see an error message instructing you that you are unable to publish the workbook to a newer version of Tableau Server
  • B. You will successfully publish the visualization without any errors or warnings
  • C. You will see a warning message instructing you that the workbook will be upgraded to a new version
  • D. You will see a warning message instructing you that embedded .tde extracts will be upgraded to .hyper

Answer: D

Explanation:
Tableau Desktop and Tableau Server have versioning considerations when publishing content, particularly regarding compatibility between older Desktop versions (e.g., 10.5) and newer Server versions (e.g., 2020.1).
Let's break this down step-by-step:
* Version Context: Tableau Desktop 10.5 was released in 2017 and used the .tde (Tableau Data Extract) format for extracts. Tableau Server 2020.1, released in 2020, introduced the .hyper extract format (starting with version 10.5, but fully standardized later). When publishing from an older Desktop version to a newer Server version, Tableau ensures backward compatibility but may upgrade certain components.
* Publishing Process: With a Creator site role and Publisher permissions, you have the rights to publish workbooks to the specified project. Tableau Server accepts workbooks from older Desktop versions (e.
g., 10.5) and upgrades them to the current Server version (2020.1) during publishing. This process is seamless for the workbook itself, but extracts require special handling.
* Extract Handling: If the workbook contains embedded .tde extracts (stored within the .twb or .twbx file), Tableau Server 2020.1 converts these to .hyper format upon publishing. This conversion is necessary because .hyper replaced .tde as the default extract engine starting in Tableau 10.5 and beyond, offering better performance and scalability. During this process, Tableau Desktop or Server displays a warning to inform the user of the upgrade, as it's a one-way conversion (you can't revert to .
tde on the Server).
Now, let's evaluate the options:
* Option A (You will successfully publish without any errors or warnings): Incorrect. While the publishing succeeds, a warning about the .tde to .hyper conversion appears if the workbook contains embedded extracts. Without extracts, no warning occurs, but the question's context implies extracts are likely involved (common in visualizations).
* Option B (Error message: unable to publish to a newer version): Incorrect. Tableau supports publishing from older Desktop versions to newer Server versions. There's no outright error blocking this; compatibility is maintained.
* Option C (Warning: embedded .tde extracts will be upgraded to .hyper): Correct. This is the precise warning displayed when a workbook with .tde extracts is published to a Server version that uses
.hyper. It ensures the user is aware of the format change, which might affect extract refresh schedules or performance expectations.
* Option D (Warning: workbook will be upgraded to a new version): Partially correct but less specific. The workbook is upgraded to 2020.1 compatibility, but the warning focuses on the extract format change (.tde to .hyper), not the workbook version generically. Option C is more accurate.
Why This Matters: The .tde to .hyper shift improves query performance and supports larger datasets, but users need to know about it for planning (e.g., extract refresh schedules might need adjustment). The warning ensures transparency.
Reference: Tableau Server Documentation - "Publish a Workbook" (https://help.tableau.com/current/server
/en-us/publish_workbook.htm) and "Hyper Extract FAQ" (https://help.tableau.com/current/server/en-us
/hyper_faq.htm).


NEW QUESTION # 49
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