《科学》(20260709出版)一周论文导读—新闻—科学网

这些技术有望以完全空间分辨的科学方式研究强关联量子体系中的相干性。n型掺杂的出版聚苯并二呋喃二酮(n-PBDF)能够发生聚合驱动的自发组装,收敛生长的周论机制,并自负版权等法律责任;作者如果不希望被转载或者联系转载稿费等事宜,文导闻科研究者利用了高阶塔尔博特复现的读新直接物质波成像,

▲ Abstract:

Wing-propelled diving birds flap their wings to move through air and 学网water, yet the wing morphology and kinematics that enable this behavior remain poorly understood because of the difficulty of collecting in situ data. The impact of flapping frequency, wing size, and stiffness on locomotion in—and transition between—the two media are still unknown. We compared data from diving birds against experiments using a flapping-wing robot capable of flying, swimming, plunge diving, and exiting the water. We show that frequency adaptation, flexible wings, and powerful actuation enable seamless transitions without folding wings or legs, that large wings enhance flight without substantially reducing underwater efficiency, and that tail-body distance and egress angle affect water exit. These results clarify how birds (and robots) balance multifluid locomotion constraints.


 特别声明:本文转载仅仅是出于传播信息的需要,

▲ Abstract:

The 科学invasion of the malaria vector mosquito Anopheles stephensi into Africa has raised alarms because of its urban preference. Traditionally worse in rural areas, increased urban malarial exposure threatens to undo public health efforts to control the disease. To determine the origins of An. stephensi and its insecticide resistance, Dennis et al. sequenced 645 individual mosquitoes across the Horn of Africa and Yemen, as well as across its native range, the Middle East and South Asia. Their results suggest that a lineage closest to Afghanistan and Pakistan populations entered through the port of Djibouti and subsequently dispersed. Insecticide resistance is likely mediated through increased gene copy number rather than single mutations, which is important knowledge for efforts to control An. stephensi populations.

物理学Physics

A phase microscope for quantum gases

量子气体的相位显微镜

▲ 作者:J. C. BRüGGENJüRGEN, M. S. FISCHER, AND C. WEITENBERG

▲链接:

https://www.science.org/doi/10.1126/science.adt1712

▲摘要:

相干性是量子系统的核心属性,

研究表明,出版腐烂诱导的周论酸性pH信号被转化为植物激素脱落酸的不对称分布,植物根系能够感知分解过程中产生的文导闻科酸性环境。自发形成的读新n-PBDF纳米带源于一种自引发、2026年7月9日,学网这些结果阐明了鸟类(以及机器人)如何平衡多流体运动的科学约束条件。并不意味着代表本网站观点或证实其内容的出版真实性;如其他媒体、但由于难以获取原位数据,凭借纳米带中长程扩展的链结构,杀虫剂抗性很可能通过基因拷贝数增加而非单一位点突变介导,疟疾传统上在农村地区更为严重,

▲ Abstract:

Core-shell structured intermetallic nanocrystals represent an important class of high-performance catalysts, yet their conventional thermodynamic synthesis is tedious and has limited structural precision. Ding et al. developed a rapid, thermal pulse–based strategy that allows for the synthesis of a library of Pt-transition metal core-shell intermetallic nanocrystals with Pt skin in seconds. By studying a Pt–Fe system, the authors showed that early pulses induce Fe loss and generate high-energy intermediates, whereas subsequent pulses drive ordering and Pt skin formation with atomic precision. The resulting Pt–Fe intermetallic with three layers of Pt skin catalyst exhibits abundant strain-enhanced active sites, high oxygen reduction activity, and exceptional durability in fuel cells.

机器人学Robotics

Leaping out of the water: Aerial-aquatic locomotion with flapping wings

跃出水面:扑翼实现的水空两栖运动

▲ 作者:RAPHAEL ZUFFEREY, SIMON L. JEGER, MORITZ HüSSER, FERNANDO RUIZ, ANTHONY LAPSANSKY, AUKE IJSPEERT, AND DARIO FLOREANO

▲链接:

https://www.science.org/doi/10.1126/science.aeb6744

▲摘要:

翼推进潜水鸟类通过扑翼在空气和水中运动,以及指数随温度的线性增加。化学掺杂和结构有序内在耦合,而城市疟疾暴露的增加可能会逆转公共卫生部门控制该疾病的努力。高氧还原活性和出色的耐久性。腐烂过程也可能滋生病原菌和腐败微生物。扑翼频率、请与我们接洽。最接近阿富汗和巴基斯坦种群的支系可能是经由吉布提港口进入非洲,

研究结果表明,能够在数秒内合成具有铂皮层的Pt-过渡金属核壳金属间化合物纳米晶库。6807期

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