Отображение 181 - 200 результаты of 1,758 для поиска 'hard is (((((evolved. OR involves.) OR involves.) OR revolvesdsssds.) OR involved.) OR resolve.)', время запроса: 0.98сек. Отмена результатов
  1. 181

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

    Опубликовано 2025
    “...This study employs a multidisciplinary approach, analyzing both binding laws (“hard laws”) and non-binding principles (“soft laws”) related to placebo administration. ...”
  2. 182

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

    Опубликовано 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. ...”
  3. 183

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

    Опубликовано 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. ...”
  4. 184

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

    Опубликовано 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. ...”
  5. 185

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

    Опубликовано 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. ...”
  6. 186

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

    Опубликовано 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. 187

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

    Опубликовано 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. 188

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

    Опубликовано 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. 189

    Effects of granule particle size and lubricant concentration on tablet hardness containing large concentration of polymers по Chauhan Rajani (4830822)

    Опубликовано 2018
    “...The work involves optimization of a milling process for size reduction of granules and blending process to achieve tablets of good hardness on compression. ...”
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    Hard Single-Molecule Magnet Behavior by a Linear Trinuclear Lanthanide–[1]Metallocenophane Complex по Trevor P. Latendresse (4102234)

    Опубликовано 2017
    “...A synthetic protocol was developed that involves the transmetalation of a mono-dysprosium–[1]­ferro­cenophane complex with DyX<sub>3</sub> (X = Cl<sup>–</sup> or I<sup>–</sup>) to afford [Dy<sub>3</sub>Fc<sub>6</sub>Li<sub>2</sub>­(THF)<sub>2</sub>]<sup>−</sup>, featuring a rare linear arrangement of magnetically anisotropic Dy<sup>3+</sup> ions. ...”
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    Fig 8 - по Nimisha Ghosh (9637889)

    Опубликовано 2022
    Предметы:
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    Fig 7 - по Nimisha Ghosh (9637889)

    Опубликовано 2022
    Предметы:
  18. 198

    Pipeline of the work. по Nimisha Ghosh (9637889)

    Опубликовано 2022
    Предметы:
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