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QCL03清仓机工作装置的优化设计 被引量:1
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作者 王桂梅 杜金萍 匡宏兵 《煤矿机械》 2000年第6期3-5,共3页
为减小清仓机的总体尺寸、提高性能 ,我们对其工作装置进行了优化设计。
关键词 清仓机 工作装置 优化设计 QLC03
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Specific Radius Change of Quantum Dot inside the Lipid Bilayer by Charge Effect of Lipid Head-Group
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作者 Soon Ki Sung Hyuk Kyu Pak +5 位作者 Jong Hyeok Kwak Sang Weon Lee Young Ha Kim Beong Ik Hur Seong Jin Jin Gyeong Rip Kim 《Open Journal of Biophysics》 2018年第3期163-175,共13页
We studied the quantum dot-liposome complex (QLC), which is the giant unilamellar vesicle with quantum dots (QDs) incorporated in its lipid bilayer. A spin coating method in conjunction with the electroformation techn... We studied the quantum dot-liposome complex (QLC), which is the giant unilamellar vesicle with quantum dots (QDs) incorporated in its lipid bilayer. A spin coating method in conjunction with the electroformation technique yielded vesicles with highly homogeneous unilamellar structure. We observed QD size dependence of the QLC formation: QLCs form with blue, green and yellow-emission QD (core radius ~1.05 nm, 1.25 nm and 1.65 nm) but not with red-emission QD (core radius ~2.5 nm). In order to explain this size dependence, we made a simple model explaining the QD size effect on QLC formation in terms of the molecular packing parameter and the lipid conformational change. This model predicts that QDs below a certain critical size (radius ≈ 1.8 nm) can stably reside in a lipid bilayer of 4 - 5 nm in thickness for Egg-PC lipids. This is consistent with our previous experimental results. In the case of red-emission QD, QD-aggregations are only observed on the fluorescent microscopy instead of QLC. We expected that the reduction of packing parameter (P) would lead to the change of specific QD radius. This prediction could be verified by our experimental observation of the shift of the specific QD size by mixing DOPG. 展开更多
关键词 Quantum Dot-Liposome Complexes (qlcs) The Interface Energy at Optical HEAD Area Packing Parameter DOPC/DOPG QLC
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QLC型纤维质滑油精滤器
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作者 邵祖谦 《海运科技》 1995年第1期14-15,共2页
关键词 船舶 滑油精滤器 QLC型
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蓄势待发,英特尔以傲腾+QLC产品组合引领内存和存储的未来
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《世界电子元器件》 2018年第8期13-13,共1页
英特尔提出将以傲腾+QLC这一产品组合重塑内存和存储行业的愿景。通过将傲腾?和英特尔?QLC 3D NAND?这两种独有的技术史无前例地整合到内存和存储解决方案当中,英特尔正在革新整个内存和存储市场,并引领计算技术进入一个新的时代。
关键词 英特尔 QLC 产品组合
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QLC油田石家河注水区储层评价
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作者 薛鹏 雷鑫 +2 位作者 王玮 郭海芳 张杰 《中国石油和化工标准与质量》 2024年第4期14-16,共3页
QLC油田石家河注水区开发层位为鄂尔多斯盆地延长组长6油层,该油层已规模化开发多年,虽为致密油田,但区块油气采出程度较低,开发效果达不到预期,主要原因是由于地质特征认识不足。基于此,本文对该油区的储层特征及主控因素进行分析,为... QLC油田石家河注水区开发层位为鄂尔多斯盆地延长组长6油层,该油层已规模化开发多年,虽为致密油田,但区块油气采出程度较低,开发效果达不到预期,主要原因是由于地质特征认识不足。基于此,本文对该油区的储层特征及主控因素进行分析,为进一步油气勘探开发提供参考依据。 展开更多
关键词 QLC采油厂 储层特征 低渗透油藏
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Quad-Level Cell NAND Design and Soft-Bit Generation for Low-Density Parity-Check Decoding in System-Level Application
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作者 LIU Shijun ZOU Xuecheng WANG Baocun 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2018年第1期70-78,共9页
QLC(Quad-Level Cell) NAND flash will be one of the future technologies for next generation memory chip after three-dimensional(3D) TLC(Triple-Level Cell) stacked NAND flash. In QLC device, data errors will easil... QLC(Quad-Level Cell) NAND flash will be one of the future technologies for next generation memory chip after three-dimensional(3D) TLC(Triple-Level Cell) stacked NAND flash. In QLC device, data errors will easily occur because of 2~4 data levels in the limited voltage range. This paper studies QLC NAND technology which is 4 bits per cell. QLC programming methods based on 16 voltage levels and reading method based on "half-change" Gray coding are researched. Because of the probable error impact of QLC NAND cell's voltage change, the solution of generating the soft information after XOR(exclusive OR) the soft bits by internal read mechanism is presented for Low-Density Parity-Check(LDPC) Belief Propagation(BP) decoding in QLC design for its system level application. 展开更多
关键词 QLC (Quad-Level Cell)NAND error-correcting code(ECC) Low-Density Parity-Check (LDPC) Soft-Bit Generation
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