-
出版商:
Springer
-
出版日期:
2015-10-14
-
售價:
$3,120
-
貴賓價:
9.5 折
$2,964
-
語言:
英文
-
頁數:
294
-
裝訂:
Hardcover
-
ISBN:
3319195530
-
ISBN-13:
9783319195537
-
相關分類:
物理學 Physics
商品描述
This book teaches the users on how to construct a library of routines to simulate scattering and diffraction by almost any kind of samples. The main goal of this book is to break down the huge barrier of difficulties faced by beginners from many fields (Engineering, Physics, Chemistry, Biology, Medicine, Material Science, etc.) in using X-rays as an analytical tool in their research. Besides fundamental concepts, MatLab routines are provided, showing how to test and implement the concepts. The major difficult in analysing materials by X-ray techniques is that it strongly depends on simulation software. This book teaches the users on how to construct a library of routines to simulate scattering and diffraction by almost any kind of samples. It provides to a young student the knowledge that would take more than 20 years to acquire by working on X-rays and relying on the available textbooks. The scientific productivity worldwide is growing at a breakneck pace, demanding ever more dynamic approaches and synergies between different fields of knowledge. To master the fundamentals of X-ray physics means the opportunity of working at an infiniteness of fields, studying systems where the organizational understanding of matter at the atomic scale is necessary. Since the discovery of X radiation, its usage as investigative tool has always been under fast expansion afforded by instrumental advances and computational resources. Developments in medical and technological fields have, as one of the master girders, the feasibility of structural analysis offered by X-rays. One of the major difficulties faced by beginners in using this fantastic tool lies in the analysis of experimental data. There are only few cases where it is possible to extract structural information directly from experiments. In most cases, structure models and simulation of radiation-matter interaction processes are essential. The advent of intense radiation sources and rapid development of nanotechnology constantly creates challenges that seek solutions beyond those offered by standard X-ray techniques. Preparing new researchers for this scenario of rapid and drastic changes requires more than just teaching theories of physical phenomena. It also requires teaching of how to implement them in a simple and efficient manner. In this book, fundamental concepts in applied X-ray physics are demonstrated through available computer simulation tools. Using MatLab, more than eighty routines are developed for solving the proposed exercises, most of which can be directly used in experimental data analysis. Therefore, besides X-ray physics, this book offers a practical programming course in modern high-level language, with plenty of graphic and mathematical tools.
商品描述(中文翻譯)
本書教導使用者如何構建一個例程庫,以模擬幾乎任何類型樣本的散射和衍射。本書的主要目標是打破初學者在使用X射線作為研究分析工具時所面臨的巨大困難障礙,這些初學者來自許多領域(工程、物理、化學、生物、醫學、材料科學等)。除了基本概念外,本書還提供了MatLab例程,展示如何測試和實施這些概念。利用X射線技術分析材料的主要困難在於它強烈依賴於模擬軟體。本書教導使用者如何構建一個例程庫,以模擬幾乎任何類型樣本的散射和衍射。它為年輕學生提供了知識,這些知識通常需要超過20年的時間才能通過研究X射線和依賴現有教科書來獲得。全球的科學生產力正在以驚人的速度增長,對不同知識領域之間的動態方法和協同作用的需求也在不斷增加。掌握X射線物理的基本原理意味著有機會在無數領域工作,研究需要在原子尺度上對物質進行組織理解的系統。自從X射線輻射被發現以來,作為調查工具的使用一直在快速擴展,這得益於儀器的進步和計算資源的提升。醫療和技術領域的發展,其中一個主要支柱是X射線提供的結構分析的可行性。初學者在使用這個奇妙工具時面臨的主要困難之一在於實驗數據的分析。只有少數情況下可以直接從實驗中提取結構信息。在大多數情況下,結構模型和輻射-物質相互作用過程的模擬是必不可少的。強輻射源的出現和納米技術的快速發展不斷創造出需要尋求超越標準X射線技術所提供解決方案的挑戰。為新研究者準備這種快速和劇烈變化的情況需要的不僅僅是教授物理現象的理論,還需要教導如何以簡單而有效的方式實施這些理論。在本書中,應用X射線物理的基本概念通過可用的計算機模擬工具進行演示。使用MatLab,開發了超過八十個例程來解決所提出的練習題,其中大多數可以直接用於實驗數據分析。因此,除了X射線物理外,本書還提供了一門現代高級語言的實用編程課程,並配有豐富的圖形和數學工具。