Resultados de búsqueda - (Temperature OR Temperatura) decrease

  1. 481

    Super‐Wide Temperature Lasers Spanning from −180 to 240 °C Based on Fully‐Polymerized Blue Phase Superstructures por Yujie Chen, Chenglin Zheng, Wenjie Yang, Jing Li, Feng Jin, Lei Shi, Jingxia Wang, Lei Jiang

    Publicado 2024
    Tabla de Contenidos: “…Super‐Wide Temperature Lasers Spanning from −180 to 240 °C Based on Fully‐Polymerized Blue Phase…”
    Enlace del recurso
    Artículo Open Access
  2. 482

    Precipitation‐Modulated Harmonic Architectures Enable Superior Strength–Ductility Synergy from Cryogenic to Elevated Temperatures in Nanostructured Alloys por Wei Li, Liangyin Xiong, Mengchao Niu, Junhua Luan, Wei Wang, Zengbao Jiao

    Publicado 2026
    Tabla de Contenidos: “… Cryogenic to Elevated Temperatures in Nanostructured Alloys Wei Li Liangyin Xiong Mengchao Niu Junhua Luan…”
    Enlace del recurso
    Artículo Open Access
  3. 483

    Strong Metal‐Support Interaction between Pt and TiO2 over High‐Temperature CO2 Hydrogenation por Xiaochun Hu, Dan Xu, Jianchun Jiang

    Publicado 2024
    Tabla de Contenidos: “…Strong Metal‐Support Interaction between Pt and TiO2 over High‐Temperature CO2 Hydrogenation…”
    Enlace del recurso
    Artículo Open Access
  4. 484
  5. 485

    Pressure‐ and Temperature‐Coupling‐Induced Structural Transition and Thermal Properties of Al3TM (TM = Ti, Zr, Hf) por Li Ma, Jin‐Li Huang, Qing‐Lian Xie, Yan‐Qing Zhang, Ping‐Ying Tang

    Publicado 2025
    Tabla de Contenidos: “…Pressure‐ and Temperature‐Coupling‐Induced Structural Transition and Thermal Properties of Al3TM…”
    Enlace del recurso
    Artículo Open Access
  6. 486
  7. 487

    A New Polyvinyl Alcohol Lithium Chloride Hydrogel Electrolyte: High Ionic Conductivity and Wide Working Temperature Range por Cheng Tang, Yinzhuo Yao, Manni Li, Yaling Wang, Yan Zhang, Jian Zhu, Ling Wang, Lei Li

    Publicado 2024
    Tabla de Contenidos: “… Working Temperature Range Cheng Tang Yinzhuo Yao Manni Li Yaling Wang Yan Zhang Jian Zhu Ling Wang Lei Li…”
    Enlace del recurso
    Artículo Open Access
  8. 488

    Sandwich‐Like CNTs/Carbon@Si3N4 Porous Foam for Temperature‐Insensitive Electromagnetic Wave Absorption por Hailong Xu, Haoyang Zhan, Zhijian Xu, Chenyang Jing, Qiang Chen, Meng Zhu, Luo Kong, Xiaomeng Fan, Yuchang Qing, Shifeng Wen, Chunhai Wang, Fa Luo

    Publicado 2025
    Tabla de Contenidos: “…Sandwich‐Like CNTs/Carbon@Si3N4 Porous Foam for Temperature‐Insensitive Electromagnetic Wave…”
    Enlace del recurso
    Artículo Open Access
  9. 489
  10. 490

    Deterioration of Polypropylene Random Copolymer Formulations Based on Phenolic Antioxidants and Non‐Phenolic Stabilizers at Elevated Temperatures in Hot Air por Lukas Peham, Gernot M. Wallner, David Nitsche

    Publicado 2024
    Tabla de Contenidos: “…‐Phenolic Stabilizers at Elevated Temperatures in Hot Air Lukas Peham Gernot M. Wallner David Nitsche…”
    Enlace del recurso
    Artículo Open Access
  11. 491

    PyTorch‐Based Deep Neural Network Model for the Calendering Process of Non‐Newtonian Fluids With Temperature‐Dependent Viscosity por Sana Naz Maqbool, Fateh ali, Xinlong Feng, M. Usman, Mujahid Islam

    Publicado 2025
    Tabla de Contenidos: “… With Temperature‐Dependent Viscosity Sana Naz Maqbool Fateh ali Xinlong Feng M. Usman Mujahid Islam Heat Transfer…”
    Enlace del recurso
    Artículo Open Access
  12. 492

    Distinguishing Between Thermal Coupling and Spin Interaction for Cr3+ NIR Luminescence Through Temperature‐Dependent Lifetime Analysis por Shengqiang Liu, Zhen Song, Feng Wang, Quanlin Liu

    Publicado 2025
    Tabla de Contenidos: “… Temperature‐Dependent Lifetime Analysis Shengqiang Liu Zhen Song Feng Wang Quanlin Liu Laser & Photonics…”
    Enlace del recurso
    Artículo Open Access
  13. 493

    ¹H NMR Chemical Shifts and J‐Coupling Constants Dependence on Temperature and pH: Implications for the Quantification of Relevant Metabolites por Felizitas C. Wermter, Christian Bock, Wolfgang Dreher

    Publicado 2026
    Tabla de Contenidos: “…¹H NMR Chemical Shifts and J‐Coupling Constants Dependence on Temperature and pH: Implications…”
    Enlace del recurso
    Artículo Open Access
  14. 494

    B‐Site Doping‐Based Variations in Low‐Temperature Electrical Properties of Pr 2 NiMnO 6 por Shohaib Abass, Khalid Sultan, Mohammad Imran Bhat, Mir Adil Raja, Arif Rashid, Mehraj ud Din Mir, Adil Yousuf

    Publicado 2025
    Tabla de Contenidos: “…B‐Site Doping‐Based Variations in Low‐Temperature Electrical Properties of Pr 2 NiMnO 6 Shohaib…”
    Enlace del recurso
    Artículo Open Access
  15. 495
  16. 496

    Tailoring Microstructure and Strength Contribution in a Mo–Nb–Ti Tempering Steel via Controlled Coiling and Tempering Temperatures por Linlin Bao, Le Xiong, Qingxiao Zhang, Wen Liang, Xiaolong Li, Guang Xu, Shaobai Sang, Qing Yuan

    Publicado 2026
    Tabla de Contenidos: “… Coiling and Tempering Temperatures Linlin Bao Le Xiong Qingxiao Zhang Wen Liang Xiaolong Li Guang Xu…”
    Enlace del recurso
    Artículo Open Access
  17. 497

    Effect of Environmental Temperature During the First Week of Brooding Period on Broiler Chick Body Weight, Viscera and Bone Development por VMB Moraes

    Publicado 2002
    Tabla de Contenidos: “…Effect of Environmental Temperature During the First Week of Brooding Period on Broiler Chick Body…”
    Enlace del recurso
    Artículo científico
  18. 498

    Temporal Patterns of Fish Occurrence in the Colorado River, Grand Canyon in Response to Temperature, Largescale Drought, and Newly Exposed Habitat por Crosby Hedden, David L. Rogowski, Jan Boyer, Lauren Mason‐Sarantopulos

    Publicado 2024
    Tabla de Contenidos: “…Temporal Patterns of Fish Occurrence in the Colorado River, Grand Canyon in Response to Temperature…”
    Enlace del recurso
    Artículo Open Access
  19. 499

    Enhance the Room‐Temperature Gas Sensing Performance of TiO 2 Nanoparticles Prepared Using a Chemical Technique por Aseel J. Rahma, Hind Fadhil Oleiwi, Nisreen S. Turki

    Publicado 2025
    Tabla de Contenidos: “…Enhance the Room‐Temperature Gas Sensing Performance of TiO 2 Nanoparticles Prepared Using a…”
    Enlace del recurso
    Artículo Open Access
  20. 500