Prioritizing manual test cases in rapid release environments

2016 ◽  
Vol 27 (6) ◽  
pp. e1609 ◽  
Author(s):  
Hadi Hemmati ◽  
Zhihan Fang ◽  
Mika V. Mäntylä ◽  
Bram Adams
Keyword(s):  
Author(s):  
SRIHARSHA G ◽  
NARESH E

Software testing is a process where you have the stated requirements, pre-requisite software that is to be installed and the configuration of the machine that need to be done as per the test data for the test case and for a specific platform which when verified works perfectly. This paper describes about Manual test case process overview in the testing life cycle for a large software development project and how you track the effort for the same. A Tester need to know about the fundamentals of testing concepts. Documentation of the testing concepts and the process overview of the testing life cycle for a software product need to be done initially so that a new tester when recruited can understand the basic flow as to how it is carried out in real time in an organization practically. Initially a tester need to execute the manual test case for few platforms and some tougher manual test cases need to be learnt from the tester who is having some experience. The tougher manual test cases need to be identified initially from the experienced tester who will be giving a session for the execution of such test cases. So when the foundation for a new tester is powerful the plan assigned for the execution of test cases is met. The effort tracking for the testing can be captured for a tester and should be matched with planned effort for the execution of test cases. Measurement of the testing effort plays a very important role as to how comfortable a new tester is and further root cause analysis is done if required when the new tester does not meet the planned effort.


Author(s):  
Lucas Raniére Juvino Santos ◽  
Guilherme Gadelha ◽  
Franklin Ramalho ◽  
Tiago Massoni

Author(s):  
Jun Hou ◽  
Hong Zhou ◽  
Chunyan Ma ◽  
Jiangbin Zheng

Because manual test case design is time-consuming and laborious and has certain blindness and inclination, Web service testing is based on WSDL document and formal model tree automatic generation. The theoretical research and Web service single operation test case generation method. Web service operation test case method, and to build test tools. The application results show that this method can greatly save the time of manually analyzing the complex data types in WSDL files and the time of generating the test cases according to the test cases of built-in data types. It simplifies the generation of test cases, and prepares test cases.


2018 ◽  
Vol 146 ◽  
pp. 26-41 ◽  
Author(s):  
Sahar Tahvili ◽  
Wasif Afzal ◽  
Mehrdad Saadatmand ◽  
Markus Bohlin ◽  
Sharvathul Hasan Ameerjan

2014 ◽  
Vol 568-570 ◽  
pp. 1551-1558
Author(s):  
Jin Qin Zheng ◽  
Yong Min Mu ◽  
Zhi Hua Zhang ◽  
Ya Nan Zhang

There are some issues in the manual test ofUOF/OOXML Translator, such as the low efficiency, difficult measurement of test case coverage and project delay. This paper brings about the automated testing process model based on the manualVmodel ofUOF/OOXML Translator, and proposes the implementation scheme of automated testing process through analyzing test case automatic generation, test case management, automatic contrast of function points and defects management. The experiments have shown that this model can effectively manage test cases and defects, and even replace manual testing partly. Besides, this model can improve testing efficiency and reduce test workload, preventing the defects occurring in the late project stage.


1994 ◽  
Vol 144 ◽  
pp. 503-505
Author(s):  
R. Erdélyi ◽  
M. Goossens ◽  
S. Poedts

AbstractThe stationary state of resonant absorption of linear, MHD waves in cylindrical magnetic flux tubes is studied in viscous, compressible MHD with a numerical code using finite element discretization. The full viscosity tensor with the five viscosity coefficients as given by Braginskii is included in the analysis. Our computations reproduce the absorption rates obtained by Lou in scalar viscous MHD and Goossens and Poedts in resistive MHD, which guarantee the numerical accuracy of the tensorial viscous MHD code.


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