Shambhavi Das, an Anveshana 2025 student researcher from Prayoga Institute of Education Research, has won the Best STEM Presentation Award at the International ...
随着半导体行业的迅猛发展,集成电路的设计和制造技术经历了从简单的平面二维布局到复杂的三维堆叠结构的重大转变。这种转变极大地增强了芯片的性能,并提高了其功能集成度。三维集成电路的实现关键在于硅通孔技术(TSV),该技术允许不同层级的芯片 ...
Discover how Imaris 11 streamlines image analysis with automated workflows, reproducibility tools, and powerful batch processing.
A free-standing sodium-ion battery anode combines bismuth, molybdenum disulfide, and carbon nanofibers to deliver strong long-term cycling performance in lab-based half-cell tests. Study: Construction ...
Researchers have developed a PFAS-free dual-layer sol-gel and hydrophobic silica coating that repels water, dust, and dirt while maintaining high light transmission for solar panels. The transparent, ...
A team of more than 30 physicists and materials scientists published a detailed strategy for reaching room-temperature superconductivity, identifying the most promising material families, the biggest ...
Let us help you with your inquiries, brochures and pricing requirements Request A Quote Download PDF Copy Request A Quote Download PDF Copy Request A Quote Download ...
Introduction:Attosecond pulses capture ultrafast electron and light–matter dynamics on the shortest timescales accessible to controlled experiments ...
02、X射线衍射技术与应变张量的求解 X射线衍射(X-ray diffraction, XRD)是目前表征晶格应变最为经典与广泛应用的手段之一。 其基本原理基于布拉格定律(nλ = 2dsinθ),通过测量衍射角θ的变化可以间接求出晶面间距d的微小变化,从而定量获得应变信息。