数学专业英语课文翻译.pptx
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1、Key points:Introduction to Differential Equations Introduction to Differential EquationsDifficult points:Applications of matrices Applications of matrices第1页/共27页Requirements:Requirements:1.理解微分方程的分类。2.理解矩阵学习的重要性。第2页/共27页A large variety of scientific problems arise in which one tries to determine so
2、mething from its rate of change.9-A Introduction大量的科学问题需要人们根据事物的变化率来确定该事物。For example,we could try to compute the position of a moving particle from a knowledge of its velocity or acceleration.例如,我们可以由已知速度或者加速度来计算移动质点的位置.第3页/共27页Or a radioactive substance may be disintegrating at a known rate and we
3、 may be required to determine the amount of material present after a given time.又如,某种放射性物质可能正在以已知的速度进行衰变,需要我们确定在给定的时间后遗留物质的总量。第4页/共27页In examples like these,we are trying to determine an unknown function from prescribed information expressed in the form of an equation involving at least one of the d
4、erivatives of the unknown function.在类似的例子中,我们力求由方程的形式表述的信息来确定未知函数,而这种方程至少包含了未知函数的一个导数。第5页/共27页These equations are called differential equations,and their study forms one of the most challenging branches of mathematics.这些方程称为微分方程,对其研究形成了数学中最具有挑战性的一个分支。Differential equations are classified under two m
5、ain headings:ordinary and partial,depending on whether the unknown is a function of just one variable or of two more variables.微分方程根据未知量是单变量函数还是多变量函数分成两个主题:常微分方程和偏微分方程。第6页/共27页A simple example of an ordinary differential equation is the relation f(x)=f(x)(9.1)which is satisfied,in particular by the
6、exponential function,f(x)=ex.常微分方程的一个简单例子是f(x)=f(x),特别地,指数函数f(x)=ex 满足这个等式。We shall see presently that every solution of(9.1)must be of the form f(x)=Cex,where C may be any constant.我们马上就会发现(9.1)的每一个解都一定是f(x)=Cex这种形式,这里C可以是任何常数。第7页/共27页On the other hand,an equation likeis an example of a partial dif
7、ferential equation.另一方面,如下方程是偏微分方程的一个例子。This particular one,is called Laplaces equation,appears in the theory of electricity and magnetism,fluid mechanics,and elsewhere.这个特殊的方程叫做拉普拉斯方程,出现于电磁学理论、流体力学理论以及其他理论中。第8页/共27页The study of differential equations is one part of mathematics that,perhaps more tha
8、n any other,has been directly inspired by mechanics,astronomy,and mathematical physics.微分方程的研究是数学的一部分,也许比其他分支更多的直接受到力学,天文学和数学物理的推动。Its history began in the 17th century when Newton,Leibniz,and the Bernoullis solved some simple differential equations arising from problems in geometry and mechanics.微分
9、方程起源于17世纪,当时牛顿,莱布尼茨,伯努利家族解决了一些来自几何和力学的简单的微分方程。第9页/共27页These early discoveries,beginning about 1690,gradually led to the development of a lot of“special tricks”for solving certain special kinds of differential equation.开始于1690年的早期发现,逐渐导致了解某些特殊类型的微分方程的大量特殊技巧的发展。第10页/共27页Although these special tricks a
10、re applicable in relatively few cases,they do enable us to solve many differential equations that arise in mechanics and geometry,so their study is of practical importance.尽管这些特殊的技巧只是适用于相对较少的几种情况,但他们能够解决许多出现于力学和几何中的微分方程,因此,他们的研究具有重要的实际应用。第11页/共27页Some of these special methods and some of the problem
11、s which they help us solve are discussed near the end of this chapter.这些特殊的技巧和利用这些技巧可以解决的一些问题将在本章最后讨论。第12页/共27页本小节重点掌握如果一个微分方程的未知函数是多元函数,则称为偏微分方程。A differential equation is called partial differential equation if the unknown of it is a function of two or more variables.第13页/共27页New Words&Expressions
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