对于物理*来说,量子力学是支持我们理解自然世*的三根砥柱之*,另外两根是爱因斯坦的狭义和广义相对论。爱因斯坦的理论分别处理了时间和空间的性质,以及引力问题,而量子力学处理剩下的*切问题。量子世*的 怪异 有很多丰碑 双缝实验 薛定谔的猫 不确定性原理 ,它常常导*混乱,坦率地说,是糟糕的科学。《量子宇宙》中的量子力学为自然界*了*个具体的模型,其本质可与牛顿的*定律、麦克斯韦的电磁理论、爱因斯坦的相对论相媲美。本书从物理切入,追问对自然界的哪些观察使量子力学成为*要,它是如何构建的,以及为什么我们相信,尽管它有明显的怪异性,但它是*个好理论。
本书主要阐述大气压放电等离子体的基础理论、数值模拟、诊断方法、放电性及等离子体应用等。全书分三分,共18章。第分基础篇,共5章,介绍等离子体基础和气体放电基本理论、流体数值模拟、粒子模拟、放电非线性和等离子体光谱诊断。第二分性篇,共6章,介绍介质阻挡均匀放电、纳秒脉冲弥散放电、表面介质阻挡放电、等离子体射流、合成射流和射频等离子体。第三分应用篇,共7章,介绍大气压放电等离子体技术在材料表面处理、废水处理、医学应用、流动控制、生物育种、氧化处理、果汁鲜七个典型领域的应用。
For centuries, scientists have strived to predict the future.But to what extent have they succeeded? Can past events-HurricaneKatrina, the Internet stock bubble, the SARS outbreak-help usunderstand what will happen next? Will scientists ever really beable to forecast catastrophes, or will we always be at the mercy ofMother Nature, waiting for the next storm, epidemic, or economiccrash to thunder through our lives? In The Future of Everything,David Orrell looks back at the history of forecasting, from thetime of the oracle at Delphi to the rise of astrology to the adventof the TV weather report, showing us how scientists (and somecharlatans) predicted the future. How can todays scientists claimto anticipate future weather events when even thee-day forecastsprove a serious challenge? How can we predict and controlepidemics? Can we accurately foresee our financial future? Or willwe only find out about tomorrow when tomorrow arrives?