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HiLumi News: Recovery of an HL-LHC niobium–tin magnet(图)     HL-LHC  铌锡磁铁  加速器       font style='font-size:12px;'> 2023/5/25
CERN and the US Accelerator Upgrade Project (AUP, a consortium of various US institutions including Fermilab, BNL and LBNL laboratories based at Fermilab) are working in tandem to develop, build and t...
Another success for the HL-LHC magnet programme: after the successful endurance test of a 4.2-metre-long niobium–tin quadrupole magnet in the United States in spring 2022, the HL-LHC quadrupole’s long...
Future accelerator projects, including the high-luminosity upgrade of the Large Hadron Collider, will rely on niobium–tin (Nb3Sn) alloys for their superconducting components, such as electromagnets. T...
Grabbing magic tin by the tail(图)     欧洲核子研究中心  ISOLDE设施  锡-100  铟核       font style='font-size:12px;'> 2023/5/29
Atomic nuclei have only two ingredients, protons and neutrons, but the relative number of these ingredients makes a radical difference in their properties. Certain configurations of protons and neutro...
In a surprising new discovery, alpha-tin, commonly called gray tin, exhibits a novel electronic phase when its crystal structure is strained, putting it in a rare new class of 3D materials called topo...
TiN纳米颗粒实现太阳能利用新突破     TiN纳米颗粒  太阳能利用       font style='font-size:12px;'> 2016/6/28
近日,日本国立研究所材料纳米构造中心纳米系统光子学组研究团队通过数值计算发现,过渡金属氮化物和碳化物纳米颗粒能有效吸收阳光。同时实验证实,当氮化物纳米颗粒分散于水中时,会迅速提升水温。通过有效利用阳光,这些纳米颗粒可能被应用于水的加热和蒸馏。
HERNDON, Va. (December 15, 2006) — The International Electronics Manufacturing Initiative’s Tin Whisker User Group announces a major update of its publication, “Recommendations on Lead-Free Finishes f...

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