The objective of this short course is to introduce the frontiers in systems neuroscience , from experimental and computational techniques to newest discoveries in this field 本課程將著重介紹系統神經科學研究的前沿,包括實驗技術、數據分析和計算工具以及該領域的最新發現。
New conducting polymer materials together with advanced microelectronics and computational techniques have enabled the development of a new range of chemical sensors capable of mimicking some aspects of the biological system 新的傳導聚合材料結合先進的微電子和計算技術,已經使能模仿生物系統某些方面的一個新的化學傳感器領域得到了發展。
Advanced theoretical - computational techniques combined with the power of computers provide an understanding of nanosized materials at the atomic scale with an unprecedented level of detail and accuracy , enabling nanosized material design and property prediction to realize 摘要先進的理論和計算技術結合計算機的威力,提供了在原子層次上了解納米材料及其演化過程細節的可能性,具有無先例的準確性,使納米材料設計和性能預測成為可能。
Surrounding rock stability analysis and evaluation are the important problem in rock mass engineering . since the new mathematical tools and computational technique are accessible , the rock mass stability classsification , an old and effective evalution method , has been developed rapidly 圍巖穩定性分析和評價問題是巖體工程中的重要問題,巖體穩定性分類方法作為古老而有效的分析評價方法,隨著數學手段和計算技術的日新月異也得到了迅速的發展。
This paper presents a method to calculate elastodynamic fracture parameters of surface crack by using the elastic line - spring model combined with perfect ansys software . the main content includes : the traditional line - spring model which is used in the static analysis of surface crack is extended to the dynamic case , the corresponding constitutive relations are derived and combined with the software ansys , and then the corresponding computational technique is formulated 本文將線彈簧模型與有限元軟件ansys相結合,對彈性表面裂紋的動態斷裂參量進行了研究,所進行的工作主要有:將傳統的用于靜態表面裂紋分析的線彈簧模型推廣用于動態斷裂分析,導出了相應的線彈簧本構關系,并與有限元( ansys )相結合,建立了相應的求解技術。