Đang hiển thị 121 - 140 kết quả của 1,617 cho tìm kiếm 'hard is (((((revolves. OR removedddddds.) OR revolves.) OR evolves.) OR involved.) OR involves.)*', thời gian truy vấn: 0.39s Tinh chỉnh kết quả
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    Supplementary Figure 1 from The evolution and fate of diversity under hard and soft selection Bằng Patrick Chen (4343074)

    Được phát hành 2020
    “…Each point is the mean proportion of resistant individuals from evolved lines undergoing either soft or hard selection (n=12 for each treatment). …”
  4. 124

    Table 1_Noble Humbug? Hard and soft laws on clinical placebo use.docx Bằng Mélina Richard (20867453)

    Được phát hành 2025
    “…This study employs a multidisciplinary approach, analyzing both binding laws (“hard laws”) and non-binding principles (“soft laws”) related to placebo administration. …”
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    Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes Bằng Chunyang Wang (500547)

    Được phát hành 2025
    “…For the first time, we directly visualize stochastic Li<sup>0</sup> interconnection-induced soft short circuits, during which the SSEs undergo the transition from a nominal electronic insulator to a state exhibiting memristor-like nonlinear conduction (electronic leakages), ultimately evolving into hard short circuits. Furthermore, we first capture intragranular cracking caused by Li<sup>0</sup> penetration, demonstrating that fully wetted Li<sup>0</sup> can fracture polycrystalline oxide SSEs via a liquid-metal embrittlement-like mechanism. …”
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    Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes Bằng Chunyang Wang (500547)

    Được phát hành 2025
    “…For the first time, we directly visualize stochastic Li<sup>0</sup> interconnection-induced soft short circuits, during which the SSEs undergo the transition from a nominal electronic insulator to a state exhibiting memristor-like nonlinear conduction (electronic leakages), ultimately evolving into hard short circuits. Furthermore, we first capture intragranular cracking caused by Li<sup>0</sup> penetration, demonstrating that fully wetted Li<sup>0</sup> can fracture polycrystalline oxide SSEs via a liquid-metal embrittlement-like mechanism. …”
  7. 127

    Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes Bằng Chunyang Wang (500547)

    Được phát hành 2025
    “…For the first time, we directly visualize stochastic Li<sup>0</sup> interconnection-induced soft short circuits, during which the SSEs undergo the transition from a nominal electronic insulator to a state exhibiting memristor-like nonlinear conduction (electronic leakages), ultimately evolving into hard short circuits. Furthermore, we first capture intragranular cracking caused by Li<sup>0</sup> penetration, demonstrating that fully wetted Li<sup>0</sup> can fracture polycrystalline oxide SSEs via a liquid-metal embrittlement-like mechanism. …”
  8. 128

    Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes Bằng Chunyang Wang (500547)

    Được phát hành 2025
    “…For the first time, we directly visualize stochastic Li<sup>0</sup> interconnection-induced soft short circuits, during which the SSEs undergo the transition from a nominal electronic insulator to a state exhibiting memristor-like nonlinear conduction (electronic leakages), ultimately evolving into hard short circuits. Furthermore, we first capture intragranular cracking caused by Li<sup>0</sup> penetration, demonstrating that fully wetted Li<sup>0</sup> can fracture polycrystalline oxide SSEs via a liquid-metal embrittlement-like mechanism. …”
  9. 129

    Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes Bằng Chunyang Wang (500547)

    Được phát hành 2025
    “…For the first time, we directly visualize stochastic Li<sup>0</sup> interconnection-induced soft short circuits, during which the SSEs undergo the transition from a nominal electronic insulator to a state exhibiting memristor-like nonlinear conduction (electronic leakages), ultimately evolving into hard short circuits. Furthermore, we first capture intragranular cracking caused by Li<sup>0</sup> penetration, demonstrating that fully wetted Li<sup>0</sup> can fracture polycrystalline oxide SSEs via a liquid-metal embrittlement-like mechanism. …”
  10. 130

    Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes Bằng Chunyang Wang (500547)

    Được phát hành 2025
    “…For the first time, we directly visualize stochastic Li<sup>0</sup> interconnection-induced soft short circuits, during which the SSEs undergo the transition from a nominal electronic insulator to a state exhibiting memristor-like nonlinear conduction (electronic leakages), ultimately evolving into hard short circuits. Furthermore, we first capture intragranular cracking caused by Li<sup>0</sup> penetration, demonstrating that fully wetted Li<sup>0</sup> can fracture polycrystalline oxide SSEs via a liquid-metal embrittlement-like mechanism. …”
  11. 131

    Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes Bằng Chunyang Wang (500547)

    Được phát hành 2025
    “…For the first time, we directly visualize stochastic Li<sup>0</sup> interconnection-induced soft short circuits, during which the SSEs undergo the transition from a nominal electronic insulator to a state exhibiting memristor-like nonlinear conduction (electronic leakages), ultimately evolving into hard short circuits. Furthermore, we first capture intragranular cracking caused by Li<sup>0</sup> penetration, demonstrating that fully wetted Li<sup>0</sup> can fracture polycrystalline oxide SSEs via a liquid-metal embrittlement-like mechanism. …”
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    Average INR rate by type of proxy respondent. Bằng Daniele Zaccaria (8396616)

    Được phát hành 2025
    Những chủ đề:
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    Item nonresponse by relationship proxy-centenarian. Bằng Daniele Zaccaria (8396616)

    Được phát hành 2025
    Những chủ đề:
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    Validation. Bằng Zachary Roelen (16533287)

    Được phát hành 2023
    Những chủ đề: