Showing 741 - 760 results of 8,656 for search 'application (errors OR error)', query time: 0.11s Refine Results
  1. 741

    Port-Based State Preparation and Applications by Garazi Muguruza, Florian Speelman

    Published 2024-12-01
    “…We give a construction that needs strictly less memory in terms of dimension than the optimal approximate Universal Programmable Quantum Processor achieving the same error. Additionally, we provide lower bounds for the optimal trade-off between memory and error of UPHPs.…”
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  7. 747

    Clinical and Operational Applications of Artificial Intelligence and Machine Learning in Pharmacy: A Narrative Review of Real-World Applications by Maree Donna Simpson, Haider Saddam Qasim

    Published 2025-03-01
    “…According to reports, hospital implementations have reduced prescription distribution errors by up to 75% and enhanced the detection of adverse medication reactions by up to 65%. …”
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  8. 748
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    Applications of quantum computing in clinical care by Stevan C. Fairburn, Stevan C. Fairburn, Lara Jehi, Brenton T. Bicknell, Beckley G. Wilkes, Bharat Panuganti

    Published 2025-04-01
    “…IntroductionThis review examines quantum computing (QC) applications in clinical care, emphasizing advancements directly impacting patient outcomes. …”
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  10. 750

    Improved effective Łojasiewicz inequality and applications by Saugata Basu, Ali Mohammad-Nezhad

    Published 2024-01-01
    “…As a consequence, we improve the current best error bounds for polynomial systems under some conditions. …”
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  11. 751

    A Python Module for Implementing Cointegration Tests with Multiple Endogenous Structural Breaks by Abdulnasser Hatemi-J, Alan Mustafa

    Published 2024-07-01
    “…In addition to implementing cointegration tests, the software also estimates the underlying parameters along with the standard errors and the significance tests for the parameters. …”
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    Formalized approaches to assessing the usability of the user interface of web applications by B.M M. Basok, S. L. Frenkel

    Published 2021-04-01
    “…To clarify the features of the UI analysis models proposed in the article, the website of the RTU MIREA Admission Committee (https://priem.mirea.ru) is provided with a fairly simple organization that provides a search for information about admission and training at the University. The application of the approach described in the paper, along with traditional methods of testing the usability of UI, will increase the overall level of usability of applications, and thereby reduce the cost of identifying and correcting related errors.…”
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    Evaluating Machine Unlearning: Applications, Approaches, and Accuracy by Zulfiqar Ali, Asif Muhammad, Rubina Adnan, Tamim Alkhalifah, Sheraz Aslam

    Published 2025-01-01
    “…One approach shows a high forget error of 99.90% with a full test error of 20.68%, while retraining yields a 100% forget error and a test error of 21.37%. …”
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  18. 758

    Applicability of formulas for calculating differential renal depth by Luo Jin, Deng Wei, Cao Jiang, Tian Jia-li, Wang Ying, Wang Rong, Li Yan-mei, Zhao Qian, Yang Ji-qin, Li Juan

    Published 2021-01-01
    “…Objective To evaluate the applicability of differential renal depth calculation formulas for Chinese people and provide references for selecting renal depth calculation formulas.Methods The SPECT/CT data were analyzed retrospectively for 234 patients with glomerular filtration rate measured by renal dynamic imaging from May to December 2018.CT depth was measured as the standard, correlation, average difference and 1 cm error rate between six renal depth calculation formulas and CT measurements were compared.Results Strong correlations existed between estimated values of six formulas and measured values of CT.Data analysis showed that the correlation coefficient between Lee’s equation and CT measured values was better than that of the other five formulas, r=0.737 for left kidney and 0.750 for right kidney.The renal depth obtained by Lee’s equation was closest to that measured by CT and the difference was not statistically significant(left kidney mean deviation 0.03 cm, right kidney mean deviation 0.08 cm).The 1 cm error rate of Tonnesen formula was the largest.And it was 54.70% for left kidney and 57.69% for right kidney.The 1 cm error rates of the other five formulas were tested by X2 test and there was no statistical difference(P>0.05).Conclusions No significant difference exists between left and right kidney depth calculated by Lee’s equation and the measured value of CT.Its deviation range is small and it is better than the other five formulas.A wider clinical popularization is worthwhile.…”
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