cell structure 细胞结构 ; 蜂窝状构造 ; 细孔组织 ; 内部结构
hierarchical cell structure 层次蜂窝结构 ; 小区分层结构 ; 分层小区结构 ; 分层信元结构
Growing Cell Structure 结构 ; 网格增长结构
cell structure of the universe 宇宙的栅元结构
Gas cell structure diagram 气室结构图
Cell Structure and Organization 细胞结构和功能
Hierarchical Cell Structure HCS 小区分层结构
eutectic cell structure 共晶团组织
assembly of cell structure systerm 细胞结构体系的组装
When Zn was excessed, the cell structure was destroyed, the mesophyll cells contracted seriously and the number of chloroplasts decreased obviously.
锌素营养过剩时细胞结构破坏,叶肉细胞严重收缩,叶绿体明显减少。
参考来源 - 锌素营养对作物叶片解剖结构的影响The key problem of cell commercialization is the low power conversion efficiency which can be largely affected by cell structure,properties of photovoltaic material and cell fabrication technology.
光电转化效率较低一直是制约此类电池商业化的关键问题,而影响效率的因素包括电池结构、光伏材料的选择、以及电池的组装技术等。
参考来源 - 聚合物太阳能电池光伏材料的研究进展Chilling injury leaded to the damage of cell. Microstructure showed heat treatment at 38℃for 15 hours improved the integrality of cell structure.
冷害发生会对果实细胞造成损伤,显微观察结果表明,热处理能够提高枇杷果实在冷藏期间细胞结构的完整性,同比对照组,热处理组果实的细胞损伤程度更轻,有效地减轻了果实冷害的发生。
参考来源 - 枇杷果实冷害及其抗冷性诱导机理的研究The excellent properties of the mesophase pitch based carbon foams are because of their perfect cell structure. Frothing process and properties of precursors decide the pore size distribution and the hole-opening states.
中间相沥青基泡沫炭的优异性能源于理想的泡孔结构,发泡工艺和前驱体性质是决定孔径分布、开孔情况的重要因素。
参考来源 - 中间相沥青及其泡沫炭的制备研究It has been found that the cell structure of carbon foams prepared with the pitch self-foaming process and the mesophase pitch foaming process modified by Fe(NO_3)_3 is more ideal than those obtained using the starch-assisted foaming process.
内容包括研究中间相沥青基泡沫炭的制备和性能,探讨不同工艺条件对孔泡结构性能的影响。
参考来源 - 中间相沥青基泡沫炭的制备及性能研究·2,447,543篇论文数据,部分数据来源于NoteExpress
Once synthesized, the histones move into the cell nucleus, where a section of DNA wraps around them to form a structure that resembles beads, or knots, on a string.
一旦合成,组蛋白就会进入细胞核,细胞核内的 DNA 片段会将组蛋白包裹起来,形成一种类似串珠或绳结的结构。
The principle of the biofuel cell and virus-enabled rechargeable battery and the relationship between the cell structure and the performance are described.
阐述了生物燃料电池和以病毒为模板的二次电池的工作原理以及在电池结构和性能等方面取得的研究成果。
Cell structure improves the strength of steel greatly.
胞状结构的出现大大提高了钢的强度。
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