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81.
徐学辉 《计算机光盘软件与应用》2011,(16)
本课题研究的主要目的是要开发出适合当前中职学校“计算机应用能力训练”的校本教材。以“必需、够用”为原则,以“夯实基础”为出发点和主要依据,采取边研究、边实施,边开发、边实践的方法,使研究与实践有机地融为一体,从而寻找一条实施计算机应用基础校本教学的有效途径。 相似文献
82.
李莉 《数码设计:surface》2009,(2):11-13
本文选取"手艺"的物质性和"非物质性"为论述对象,以历史唯物主义社会发展观为思辨基础,通过审视手艺的双重属性,将其放置在社会历史发展的宏大背景中,从文化的维度审视手艺的精神。 相似文献
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Chuanyue Sun Jiabei Luo Shengchang Yan Kerui Li Yaogang Li Hongzhi Wang Chengyi Hou Qinghong Zhang 《Advanced functional materials》2023,33(9):2211035
Smart textiles with good mechanical adaptability play an important role in personal protection, health monitoring, and aerospace applications. However, most of the reported thermally responsive polymers has long response time and poor processability, comfort, and wearability. Skin-core structures of thermally responsive fibers with multiple commercial fiber cores and temperature-responsive hydrogel skins are designed and fabricated, which exhibit rapid mechanical adaptability, good thermohardening, and thermal insulation. This universal method enables tight bonding between various commercial fiber cores and hydrogel skins via specific covalently anchored networks. At room temperature, prepared fibers show softness, flexibility, and skin compatibility similar to those of ordinary fibers. As temperature rises, smart fibers become hard, rigid, and self-supporting. The modulus of hydrogel skin increases from 304% to 30883%, showing good mechanoadaptability and impact resistance owing to the synergy between hydrophobic interactions and ionic bonding. Moreover, this synergistic effect leads to an increase in heat absorption, and fibers exhibit good thermal insulation, which reduces the contact temperature of the body surface by ≈25 °C under the external temperature of 95 °C, effectively preventing thermal burns. Notably, the active mechanoadaptability of these smart fibers using conductive fibers as cores is demonstrated. This study provides feasibility for fabricating environmentally adaptive intelligent textiles. 相似文献
85.
Atomic Insights into Phase Evolution in Ternary Transition‐Metal Dichalcogenides Nanostructures 下载免费PDF全文
Phase engineering through chemical modification can significantly alter the properties of transition‐metal dichalcogenides, and allow the design of many novel electronic, photonic, and optoelectronics devices. The atomic‐scale mechanism underlying such phase engineering is still intensively investigated but elusive. Here, advanced electron microscopy, combined with density functional theory calculations, is used to understand the phase evolution (hexagonal 2H→monoclinic T′→orthorhombic Td) in chemical vapor deposition grown Mo1− x W x Te2 nanostructures. Atomic‐resolution imaging and electron diffraction indicate that Mo1− x W x Te2 nanostructures have two phases: the pure monoclinic phase in low W‐concentrated (0 < x ≤ 10 at.%) samples, and the dual phase of the monoclinic and orthorhombic in high W‐concentrated (10 < x < 90 at.%) samples. Such phase coexistence exists with coherent interfaces, mediated by a newly uncovered orthorhombic phase Td′. Td′, preserves the centrosymmetry of T′ and provides the possible phase transition path for T′→Td with low energy state. This work enriches the atomic‐scale understanding of phase evolution and coexistence in multinary compounds, and paves the way for device applications of new transition‐metal dichalcogenides phases and heterostructures. 相似文献
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简述了复合型导电高分子材料的研究及发展,并对其导电机理、基体树脂、导电填料的研究概况进行了述评,介绍了其在各领域中的应用. 相似文献
89.
在公安现役院校计算机基础教学改革中,大学计算机基础实践教学的课堂教学与实践教学分离,实践教学以学员自主学习为主。作为学员学习的主要参考资料和教学的有益补充,教材在新教学模式下的重要性越发突出。本文对公安现役院校大学计算机基础实践指导教材的建设思路和教材特色进行了详细阐述。 相似文献
90.
Jason Heikenfeld Paul Drzaic Jong‐Souk Yeo Tim Koch 《Journal of the Society for Information Display》2011,19(2):129-156
Abstract— The commercial success of monochrome electronic paper (e‐Paper) is now propelling the development of next‐generation flexible, video, and color e‐Paper products. Unlike the early battles in the 1980s and 1990s between transmissive and emissive display technologies, there is a extraordinary diversity of technologies vying to become the next generation of e‐Paper. A critical review of all major e‐Paper technologies, including a technical breakdown of the performance limitations based on device physics and commentary on possible future breakthroughs, is presented. In addition, the visual requirements for color e‐Paper are provided and compared to standards used in conventional print. It is concluded that researchers have much work remaining in order to bridge the significant gap between reflective electronic displays and print‐on‐paper. 相似文献