Cian Cummins,Alberto Alvarez-Fernandez,Ahmed Bentaleb,Georges Hadziioannou,Virginie Pon-Sinet等。Langmuir,2020,36(46),pp.13872-13880。10.1021/acs.langmuir.0c02261。hal-03033202
Arbelaez,J。D.,Dwiyanti,M。S.,Tandayu,E.,Llantada,K.,Jarana,A.1K-RICA(1K-RICE自定义扩增子)一种基于大米中遗传学和育种应用的新型基因分型SNP分析。米,12,1 - 15。Cameron,J。N.,Han,Y.,Wang,L。,&Beavis,W。D.(2017)。 特质渗入项目的系统设计。 理论和应用遗传学,130,1993 - 2004。https://doi.org/10.1007/S00122-017-2938-9 Chen,G.K.,G.K.,Marjoram,P。,&Wall,J。D.(2009)。 DNA序列数据的快速而灵活的模拟。 基因组研究,19,136 - 142。https:// doi。 org/10.1101/gr.083634.108 Cobb,J.N.,Biswas,P.S。,&Platten,J.D。(2019)。 回到未来:将MAS作为现代植物繁殖的工具。 理论和应用遗传学,132,647 - 667。https://doi.org/10.1007/s00122-018-3266-3266-4 Cobb,J.N.,J.N.,Juma,Juma,R.U. M.和Ng,E。H.(2019)。 提高公共部门植物育种计划中的遗传增益率:育种者方程式的经验教训。 理论和应用遗传学,132,627 - 645。https://doi.org/10.1007/s00122-019-019-019-03317-0 Collard,B.C. Y. Raghavan,C.,Gregorio,G。B.,Vial,L.,Demont,M.,Biswas,P.S.,Iftekharuddaula,K.M.,Rahman,M.A. 重新审视水稻育种方法 - 评估快速生成前进(RGA)的常规水稻育种。Cameron,J。N.,Han,Y.,Wang,L。,&Beavis,W。D.(2017)。特质渗入项目的系统设计。理论和应用遗传学,130,1993 - 2004。https://doi.org/10.1007/S00122-017-2938-9 Chen,G.K.,G.K.,Marjoram,P。,&Wall,J。D.(2009)。DNA序列数据的快速而灵活的模拟。 基因组研究,19,136 - 142。https:// doi。 org/10.1101/gr.083634.108 Cobb,J.N.,Biswas,P.S。,&Platten,J.D。(2019)。 回到未来:将MAS作为现代植物繁殖的工具。 理论和应用遗传学,132,647 - 667。https://doi.org/10.1007/s00122-018-3266-3266-4 Cobb,J.N.,J.N.,Juma,Juma,R.U. M.和Ng,E。H.(2019)。 提高公共部门植物育种计划中的遗传增益率:育种者方程式的经验教训。 理论和应用遗传学,132,627 - 645。https://doi.org/10.1007/s00122-019-019-019-03317-0 Collard,B.C. Y. Raghavan,C.,Gregorio,G。B.,Vial,L.,Demont,M.,Biswas,P.S.,Iftekharuddaula,K.M.,Rahman,M.A. 重新审视水稻育种方法 - 评估快速生成前进(RGA)的常规水稻育种。DNA序列数据的快速而灵活的模拟。基因组研究,19,136 - 142。https:// doi。org/10.1101/gr.083634.108 Cobb,J.N.,Biswas,P.S。,&Platten,J.D。(2019)。回到未来:将MAS作为现代植物繁殖的工具。理论和应用遗传学,132,647 - 667。https://doi.org/10.1007/s00122-018-3266-3266-4 Cobb,J.N.,J.N.,Juma,Juma,R.U. M.和Ng,E。H.(2019)。提高公共部门植物育种计划中的遗传增益率:育种者方程式的经验教训。理论和应用遗传学,132,627 - 645。https://doi.org/10.1007/s00122-019-019-019-03317-0 Collard,B.C. Y. Raghavan,C.,Gregorio,G。B.,Vial,L.,Demont,M.,Biswas,P.S.,Iftekharuddaula,K.M.,Rahman,M.A.重新审视水稻育种方法 - 评估快速生成前进(RGA)的常规水稻育种。植物生产科学,20,337 - 352。https://doi.org/10。1080/1343943X.2017.1391705 Collard,B.C. Y.,Gregorio,G。B.,G。B.,Thomson,M。J.,M。J.,R.转移水稻育种:在国际水稻研究所(IRRI)上重新设计灌溉育种管道。作物育种,遗传学和基因组学,1,E190008。https://doi.org/10.20900/cbgg20190008 Dar,M.H.,Zaidi,N。W.,Waza,S.A.,Verulkar,S.B.,S.B.,Ahmed,T.,Singh,P.K. K.,Kathiresan,R.M.,Singh,B.N.,Singh,U.S。,&Ismail,A.M。(2018)。在有利条件下没有收益罚款,为成功采用洪水大米铺平了道路。科学报告,8,9245。B.(2011)。ridge回归和其他用于基因组选择的内核,r tagkage rrblup。植物基因组,4,250 - 255。https://doi.org/10.3835/plantgenome2011.08.0024
Cost effective design and manufacturing • Modularity of battery system sizes due to specific tooling concept and adjustable “Light Battery” module sizes • Outstanding energy and power density at low costs More solutions available: Structural adhesives for Electric & Electronics Ancamine® cyclo-aliphatic amine and Ancamide® polyamide curing agents offer a wide product range to modify Tg, viscosity, latency, cure speed and toughness of 2K adhesives for环境和热固化应用,用于电动汽车中的电池外壳和结构应用。
3.1。f非精神图标................................................................................................................................................................................................................................. 9 3.2。C ONTEXTUAL ICONS ............................................................................................. 9 3.3.i Con s tyles ......................................................................................................................................................................................................................................................................................................................................................................................................................................... 10 3.4。I CON SIZES ....................................................................................................... 10 3.5.I CON OPTIONS ................................................................................................... 11 3.6.c rowdesourcing库...............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................M ANDATORY CHECKLIST ...................................................................................... 12 3.8.B EST PRACTICES & RECOMMENDATIONS .................................................................. 13
Silicon is the material for microelectronics Decades of experience in silicon semiconductor technologies Massive down-scaling of feature sizes and therefore Increased performance Lower cost per function …but Other materials enable or provide new functionalities like extended spectral response, light emission,… Heterogeneous Integration is a key element for innovative, efficient and reliable systems solutions
• Li-Metal promising due to high energy density, low pack knockdown factor • No history at these sizes to project • Li-ion Silicon viewed as natural evolution of the Li-ion battery • Projections based on max state-of-art value provided in the year • Li-S is under consideration by EAP, however only low C rates have been achieved • Looking for trends in individual chemistry (“S-Curve”), gathering info about theoretical max
Ground As a ground engineer in the ground engineering and contaminated land team you will be working on a variety of projects of different sizes and scope that may vary from writing a desk study report, assessing preliminary ground engineering constraints, designing a ground investigation, reviewing contractors' factual data, modelling and interpretating the ground, preparing an interpretative ground investigation report, preparing an earthworks specification or remediation strategy, working up a foundation zoning plan drawing,或为下一个有趣的项目准备建议。
Smid 等人(2020 年)进行了一项系统评价,以表征贝叶斯和频率估计在小样本量 SEM 中的表现。在手动筛选 5050 项研究后,仅选定 27 项来回答他们的研究问题。进行系统评价需要付出巨大的筛选努力。这种筛选工作使证据综合成为一项极具挑战性的任务。开源 AI 辅助筛选工具可以潜在地减少工作量:系统评价的主动学习(ASReview;van de Schoot 等人,2020 年)。在 ASReview 中,研究人员与主动学习模型交互筛选摘要。根据研究人员的决策(相关与不相关),该模型会迭代更新其对剩余摘要的相关性预测。通过优先考虑最有可能相关的文章(即基于确定性的主动学习),ASReview 最大限度地减少了研究人员需要筛选的文章数量,同时仍能识别出大多数相关文章。手动筛选和自动优先排序出版物的过程会产生一组相关出版物。作为一个例子,ASReview 被应用于 Smid 等人(2020 年)确定的 5050 篇研究的全部集合。理想的表现被定义为最大限度地识别 Smid 等人最初确定的 27 篇相关文章,同时最大限度地减少研究人员需要筛选的文章数量。相关性预测由主动学习模型进行,该模型使用朴素贝叶斯或逻辑回归作为分类器。对于第一个预测,ASReview 需要一些示例文章。对每个分类器应用了 27 次 ASReview,使用每篇相关文章作为示例文章一次,并与一篇随机的不相关文章配对。如图 1 所示,贝叶斯和逻辑回归模型都发现超过 80%
Budget (How much will I need to produce the show; ticket price, donations) Music (Type, Equipment, Who is in charge) Lighting (what is available and/or what will I need) Merchandise (what stores will I contact) Models (who will be my models; what are their sizes if using fashions from a local store) Hair and Make–up (Will I use a local hair salon, if so who) Commentary (Fashion description) Writers (who will write the descriptions of服装)MC(谁将讲述表演)幕后人员(后台,梳妆台,照明和音乐经理)促销(我如何宣传演出)
Sensitivity study results comparing equivalent fractional hole sizes over a range of pipe diameters Technical justification supporting revisions to NFPA 2 liquid bulk storage setback distances formally documented in SAND2023-12548 NFPA 2 2023 has been published with updated bulk liquid storage setback distance requirements Risk informed approach changed setbacks from being based on stored quantity to pipe size and pressure Effort included technical review of HyRAM+ capabilities外部各方•行业代表审查了技术方法•经过验证的物理和QRA模型对行业软件文档的预测和实施确保了支持分析的支持在将来可以重复