Showing 3,501 - 3,520 results of 45,950 for search '"TIME"', query time: 0.12s Refine Results
  1. 3501

    Temporal Hölder continuity of the parabolic Anderson model driven by a class of time-independent Gaussian fields with rough initial conditions by Hui Sun, Yangyang Lyu

    Published 2024-12-01
    “…In this paper, we considered the parabolic Anderson model with a class of time-independent generalized Gaussian fields on $ \mathbb{R}^d $, which included fractional white noise, Bessel field, massive free field, and other nonstationary Gaussian fields. …”
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  2. 3502
  3. 3503

    Collisional Solitons Described by Two-Sided Beta Time Fractional Korteweg-de Vries Equations in Fluid-Filled Elastic Tubes by Sharmin Akter, M. D. Hossain, M. F. Uddin, M. G. Hafez

    Published 2023-01-01
    “…By implementing the extended Poincare–Lighthill–Kuo method and a variational approach, the new two-sided beta time fractional Korteweg-de-Vries (BTF-KdV) equations are derived based on the concept of beta fractional derivative (BFD). …”
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  4. 3504
  5. 3505

    Adjusting on-scene CPR duration based on transport time interval in out-of-hospital cardiac arrest: a nationwide multicenter study by Daseul Kim, Jae Yong Yu, Minha Kim, Gun Tak Lee, Sang Do Shin, Sung Yeon Hwang, Daun Jeong

    Published 2025-01-01
    “…Determining this critical time period requires outweighing the potential risks associated with intra-arrest transport while minimizing delays in accessing definitive hospital-based treatments. …”
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    Article
  6. 3506
  7. 3507
  8. 3508

    Impact of Sprouting Time of Chickpea on the Physicochemical, Textural, Sensory, and Total Phenolic Characteristics of Falafel Prepared from Sprouted Chickpea Flour by Kimia Goharpour, Fakhreddin Salehi, Amir Daraei Garmakhany

    Published 2025-01-01
    “…The aim of this research was to investigate the impact of sprouting time on the physicochemical characteristics of sprouted chickpea flour. …”
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  9. 3509
  10. 3510

    On a Coupled Time-Varying Beverton–Holt Model with Two Habitats Subject to Harvesting, Repopulation, and Mixed Migratory Flows of Populations by Manuel De la Sen, Santiago Alonso-Quesada, Asier Ibeas, Aitor J. Garrido

    Published 2023-01-01
    “…Two time-varying Beverton–Holt models are investigated in which the population of the same species evolves jointly in two coupled habitats which can be subject to population exchanges. …”
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    Article
  11. 3511

    Clinical performance of real-time nanopore metagenomic sequencing for rapid identification of bacterial pathogens in cerebrospinal fluid: a pilot study by Yoon Hyun Sung, Yong Kuk Ju, Hak Jun Lee, Seung Min Park, Jin Woong Suh, Jeong Yeon Kim, Jang Wook Sohn, Young Kyung Yoon

    Published 2025-01-01
    “…Abstract This study aimed to evaluate the usefulness of amplicon-based real-time metagenomic sequencing applied to cerebrospinal fluid (CSF) for identifying the causative agents of bacterial meningitis. …”
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  12. 3512
  13. 3513

    Guaranteed Cost Control for Exponential Synchronization of Cellular Neural Networks with Mixed Time-Varying Delays via Hybrid Feedback Control by T. Botmart, W. Weera

    Published 2013-01-01
    “…The interval time-varying delay function is not necessary to be differentiable. …”
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  14. 3514
  15. 3515

    Classification of All Single Traveling Wave Solutions of (3+1)-Dimensional Jimbo-Miwa Equation with Space-Time Fractional Derivative by Tianyong Han, Zhao Li, Jiajin Wen, Jun Yuan

    Published 2022-01-01
    “…In this paper, the complete discrimination system method is used to construct the single traveling wave solutions for the (3+1)-dimensional Jimbo-Miwa equations with space-time fractional derivative. As a result, we get the exact traveling wave solutions of the (3+1)-dimensional Jimbo-Miwa equation with space-time fractional derivative, which include rational function solutions, Jacobian elliptic function solutions, hyperbolic function solutions, and trigonometric function solutions. …”
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  16. 3516

    Permanence and Almost Periodic Solutions for N-Species Nonautonomous Lotka-Volterra Competitive Systems with Delays and Impulsive Perturbations on Time Scales by Xuxu Yu, Qiru Wang, Yuzhen Bai

    Published 2018-01-01
    “…We investigate a class of nonautonomous N-species Lotka-Volterra-type competitive systems with time delays and impulsive perturbations on time scales. …”
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  17. 3517

    Impact of the COVID-19 pandemic on utilization of mental health services among children and adolescents using an interrupted time series analysis by Fumihiro Endo, Yuji Hiramatsu, Hiroo Ide

    Published 2025-01-01
    “…We conducted an interrupted time series analysis of the number of mental health visits and average incurred medical expenses, stratified by sex and age group, using monthly medical claims data on 3,029,048 patients for the period from January 2016 to December 2020. …”
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  18. 3518

    Subdifferential Properties of Minimal Time Functions Associated with Set-Valued Mappings with Closed Convex Graphs in Hausdorff Topological Vector Spaces by Messaoud Bounkhel

    Published 2013-01-01
    “…For a set-valued mapping M defined between two Hausdorff topological vector spaces E and F and with closed convex graph and for a given point (x,y)∈E×F, we study the minimal time function associated with the images of M and a bounded set Ω⊂F defined by 𝒯M,Ω(x,y):=inf{t≥0:M(x)∩(y+tΩ)≠∅}. …”
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  19. 3519

    Graves’ Disease Causing Pancytopenia and Autoimmune Hemolytic Anemia at Different Time Intervals: A Case Report and a Review of the Literature by Peyman Naji, Geetika Kumar, Shabana Dewani, William A. Diedrich, Ankur Gupta

    Published 2013-01-01
    “…Herein, we report a patient with GD who had both of these rare complications at different time intervals, along with a review of the related literature. …”
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  20. 3520

    Symmetry Groups, Similarity Reductions, and Conservation Laws of the Time-Fractional Fujimoto–Watanabe Equation Using Lie Symmetry Analysis Method by Baoyong Guo, Huanhe Dong, Yong Fang

    Published 2020-01-01
    “…In this paper, the time-fractional Fujimoto–Watanabe equation is investigated using the Riemann–Liouville fractional derivative. …”
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