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iSQI CTAL-TAE - ISTQB Certified Tester Advanced Level, Test Automation Engineering

Last Update Feb 16, 2026

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  • Exam Name: ISTQB Certified Tester Advanced Level, Test Automation Engineering
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  • Total Questions: 80 Q&A's
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Total Questions: 80
Free Practice Questions: 24

Consider a TAS implemented to perform automated testing on native mobile apps at the UI level, where the TAF implements a client-server architecture. The client runs on-premise and allows creation of automated test scripts using TAF libraries to recognize and interact with the app’s UI objects. The server runs in the cloud as part of a PaaS service, receiving commands from the client, translating them into actions for the mobile device, and sending the results to the client. The cloud platform hosts several mobile devices dedicated for use by this TAS. The device on which to run test scripts/test suites is specified at run time. You are currently verifying whether the test automation environment and all other TAS/TAF components work correctly. Which of the following activities would you perform to achieve your goal?

Options:

A.

Manage the infrastructure that hosts the server, including hardware, software updates, and security patches

B.

Check whether the references to the device on which the given test scripts/test suites will be executed are correctly hard-coded within these test scripts/test suites

C.

Check whether the TAF libraries that the test scripts will use to recognize and interact with the app’s UI objects (widgets) function as expected

D.

Check whether all test scripts that will be executed by the TAS as part of a given test suite have expected results

Answer
C
Explanation

The task is to verify the test automation environment and TAS/TAF components, not to validate the correctness of specific test suites. In a client-server TAF for mobile automation, a critical component is the automation library layer that exposes functions to locate and interact with UI objects, and that communicates with the cloud server/device farm. TAE guidance highlights that environment verification should focus on ensuring that the automation tooling stack can reliably perform its fundamental operations: connect to the execution infrastructure, select target devices at runtime, execute commands, and receive results. Checking that the TAF libraries correctly recognize and interact with widgets directly validates that the end-to-end automation mechanism (client → server → device → response) is functioning. Option A is not appropriate because the server is on PaaS; infrastructure management is typically handled by the provider and is not part of validating your TAS operation. Option B is incorrect because the scenario states the device is specified at run time, so hard-coding device references is not the expected design and is not the right verification focus. Option D concerns test suite correctness (expected results), which is a later step after confirming the automation environment works. Therefore, verifying that the TAF libraries function as expected is the correct activity.

A SUT (SUT1) is a client-server system based on a thin client. The client is primarily a display and input interface, while the server provides almost all the resources and functionality of the system. Another SUT (SUT2) is a client-server system based on a fat client that relies little on the server and provides most of the resources and functionality of the system. A given TAS is used to implement automated tests on both SUT1 and SUT2. The main objective of the TAS is to cover as many system functionalities as possible through automated tests executed as fast as possible. Which of the following statements about the automation solution is BEST in this scenario?

Options:

A.

The TAS should support mainly client-side automation for both SUT1 and SUT2

B.

The TAS should support mainly client-side automation for SUT1 and server-side automation for SUT2

C.

The TAS should support mainly server-side automation for both SUT1 and SUT2

D.

The TAS should support mainly server-side automation for SUT1 and client-side automation for SUT2

Answer
D
Explanation

TAE promotes selecting automation interfaces that maximize speed, robustness, and functional coverage while minimizing unnecessary UI traversal. For a thin client architecture, most business logic and system functionality resides on the server. To cover functionality efficiently, tests should interact as close as possible to where the logic is implemented—typically via server-side interfaces (e.g., APIs/services, backend endpoints, message interfaces). This reduces GUI overhead and accelerates execution while improving reliability. For a fat client, substantial logic resides on the client side; server-side automation alone may miss critical client behavior, validations, local processing, and UI-driven flows that embody much of the functionality. In such cases, client-side automation (often UI automation or client-level interfaces) is more directly aligned to achieving high functional coverage. TAE also highlights that the “best” interface depends on where behavior is implemented and which interface yields the most stable, fastest checks for the targeted risks. Therefore, the optimal combination is server-side automation for SUT1 (thin client) and client-side automation for SUT2 (fat client), which best meets the goal of broad coverage with minimal execution time.

You identified a suitable project to pilot an automation tool and planned and conduced a pilot. The pilot has been successful and tool Is being deployed within your organization, with a plan to increase tool use by the one project at a time. During this rollout some test processes will be changed slightly to gain additional benefits from using the tool.

In the pilot project, a small set of manual tests were automated for the first time. You are currently monitoring the test automation efficiency and this reveals that the automation regime for the tests is not yet mature.

Which of the following statements is TRUE?

Options:

A.

The approach used for deployed this tool is aligned to the standard success factor for deployment

B.

The pilot project should have been critical so that maximum benefits were delivered

C.

The target defined for the project was inappropriate, because the automation regime for the automated tests at the end of the pilot is not yet mature.

D.

The test process should be radically changed to gain additional benefits from using the tool.

Answer
A

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iSQI CTAL-TAE FAQ'S

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