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Information Journal Paper

Title

WHEN CAN FINITE TESTING ENSURE INFINITE TRUSTWORTHINESS?

Pages

  1-37

Abstract

 In this paper we contribute to the general philosophical question as to whether empirical testing can ever prove a physical law. Problems that lead to this question arise under several contexts, and the matter has been addressed by the likes of Bayes and Laplace. After pointing out that a Bayesian approach is the proper way to address this problem, we show that the answer depends on what we start with. Namely, under certain prior assumptions, a finite amount of testing can lead to the conclusion of total trustworthiness, though such priors could be unrealistic. However, we do produce a new class of priors under which a finite amount of testing can lead to a high degree of trustworthiness, at a relatively fast pace. We use the scenario of SOFTWARE TESTING as a way to motivate and discuss our development.

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    APA: Copy

    SINGPURWALLA, N.D., & WILSON, P.H.. (2004). WHEN CAN FINITE TESTING ENSURE INFINITE TRUSTWORTHINESS?. JOURNAL OF THE IRANIAN STATISTICAL SOCIETY (JIRSS), 3(1), 1-37. SID. https://sid.ir/paper/117834/en

    Vancouver: Copy

    SINGPURWALLA N.D., WILSON P.H.. WHEN CAN FINITE TESTING ENSURE INFINITE TRUSTWORTHINESS?. JOURNAL OF THE IRANIAN STATISTICAL SOCIETY (JIRSS)[Internet]. 2004;3(1):1-37. Available from: https://sid.ir/paper/117834/en

    IEEE: Copy

    N.D. SINGPURWALLA, and P.H. WILSON, “WHEN CAN FINITE TESTING ENSURE INFINITE TRUSTWORTHINESS?,” JOURNAL OF THE IRANIAN STATISTICAL SOCIETY (JIRSS), vol. 3, no. 1, pp. 1–37, 2004, [Online]. Available: https://sid.ir/paper/117834/en

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