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Pass the iSQI ISQI certification CTAL-TAE_V2 Questions and answers with ExamsMirror

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Questions # 1:

The last few runs for a suite of automated keyword-driven tests on a SUT were never completed. The test where the run was aborted was not the same between runs. Currently, it is not possible to identify the root cause of these aborts, but only determine that test execution aborted when exceptions (e.g., NullPointerException, OutOfMemoryError) occurred on the SUT by analyzing its log files. Test execution log files are currently generated, in HTML format, by the TAS as follows: all expected logging data is logged for each keyword in intermediate log files. This data is then inserted into the final log file only for keywords that fail, while only a configurable subset of that data is logged for keywords that execute successfully. Which of the following actions (assuming it is possible to perform all of them) would you take FIRST to help find the root cause of the aborts?

Options:

A.

Log the stack trace and amount of memory available to the SUT at the start and end of each test in the suite, in the SUT log files

B.

Split the generated log file into smaller parts, load them into external files that are loaded into the browser in transparent mode when needed

C.

Log all expected logging data in the final test execution log file, not only for keywords that fail, but also for keywords that execute successfully

D.

Use appropriate colors to effectively visually highlight different types of information in the test execution log files

Questions # 2:

Which of the following descriptions of what some test automation tools can be used to do is TRUE?

Options:

A.

Autonomously design intuitive UIs and evaluate them, as well as evaluate the overall UX (User Experience) of an application

B.

Analyze test results, code changes, and metrics to predict potential defects and areas of high risk within an application

C.

Autonomously perform exploratory testing sessions based on test charters to find defects within an application

D.

Make video recordings of UI testing sessions to share with stakeholders to show the functionality and appearance of an application

Questions # 3:

A TAS is used to run on a test environment a suite of automated regression tests, written at the UI level, on different releases of a web app: all executions complete successfully, always providing correct results (i.e., producing neither false positives nor false negatives). The tests, all independent of each other, consist of executable test scripts based on the flow model pattern which has been implemented in a three-layer TAF (test scripts, business logic, core libraries) by expanding the page object model via the façade pattern. Currently the suite takes too long to run, and the test scripts are considered too long in terms of LOC (Lines of Code). Which of the following recommendations would you provide for improving the TAS (assuming it is possible to perform all of them)?

Options:

A.

Modify the TAF so that test scripts are based on the page object model, rather than the flow model pattern

B.

Implement a mechanism to automatically reboot the entire web app in the event of a crash

C.

Split the suite into sub-suites and run each of them concurrently on different test environments

D.

Modify the architecture of the SUT to improve its testability and, if necessary, the TAA accordingly

Questions # 4:

You have been tasked with adding the execution of build verification tests to the current CI/CD pipeline used in an Agile project. The goal of these tests is to verify the stability of daily builds and ensure that the most recent changes have not altered core functionality. Currently, the first activity performed as part of this pipeline is the static source code analysis. Which of the following stages in the pipeline would you add the execution of these smoke tests to?

Options:

A.

As a first activity, before performing static source code analysis and before generating the new build

B.

After performing static analysis on the source code and before generating the new build

C.

After deploying the new build to the test environment and before performing more extensive testing

D.

As a final activity, immediately before releasing the new build into production

Questions # 5:

(Which of the following statements refers to a typical advantage of test automation?)

Options:

A.

Automated tests can determine whether actual results match expected results, even for non-machine-interpretable results

B.

On average, automated tests written at the API level are likely to run faster than automated tests written at the UI level

C.

Artificial intelligence can be used to help identify redundant tests within large, long-running automated regression test suites

D.

Automated tests can allow defects to be detected earlier than manual tests because their execution times can be shorter

Questions # 6:

A release candidate of a SUT, after being fully integrated with all other necessary systems, has successfully passed all required functional tests (90% were automated tests and 10% were manual tests). Now, it is necessary to perform reliability tests aimed at evaluating whether, under certain conditions, that release will be able to guarantee an MTBF (Mean Time Between Failures) in the production environment higher than a certain threshold (expressed in CPU time). Which of the following test environments is BEST suited to perform these reliability tests?

Options:

A.

Local development environment

B.

Build environment

C.

Integration environment

D.

Preproduction environment

Questions # 7:

Consider choosing an approach for the automated implementation of manual regression test suites written at the UI level for some already developed web apps. The TAS is based on a programming language that allows the creation of test libraries and provides a capture/playback feature that allows recognition and interaction with all widgets in the web UIs being tested. The automated tests will be implemented by team members with strong programming skills. The chosen approach should aim to reduce both the effort required to maintain automated tests and the effort required to add new automated tests. Which of the following approaches would you choose?

Options:

A.

Test-Driven Development (TDD)

B.

Capture/playback

C.

Linear scripting

D.

Structured scripting

Questions # 8:

Which of the following is the BEST example of how static analysis tools can help improve the test automation code quality in terms of security?

Options:

A.

Static analysis tools do not generate false positives when attempting to detect security vulnerabilities within test automation code

B.

Static analysis tools can help detect the presence of repeated instances of code within test automation code

C.

Static analysis tools can help detect hard-coded credentials that expose sensitive information within test automation code

D.

Static analysis tools can ensure there are no security vulnerabilities within test automation code

Questions # 9:

A suite of automated test cases was run multiple times on the same release of the SUT in the same test environment. Consider analyzing a test histogram that shows the distribution of test results (pass, fail, etc.) for each test case across these runs. Which of the following potential issues is MOST likely to be identified as a result of such an analysis?

Options:

A.

Outliers in test execution times

B.

Security vulnerabilities in automated test cases

C.

Unstable automated test cases

D.

Maintainability issues in automated test cases

Questions # 10:

(Which of the following answers describes the LEAST relevant concern in selecting suitable test automation tools for a test automation project?)

Options:

A.

What is the degree of technical knowledge and skills within the test team to implement code-based test automation for the project (e.g., in terms of programming and design patterns)?

B.

In the case of open-source test automation tools, are these tools released under permissive or restrictive licenses, and, if applicable, is it specified whether they can be modified and by whom?

C.

Has the test team been formed with the different personalities of its members in mind, to ensure that the interaction between them is effective in achieving the objectives of the test automation project?

D.

In the case of commercial test automation tools, what factors determine the licensing costs of these tools (e.g., in terms of the maximum number of users supported and whether the license type is fixed or floating)?

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