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1、1,工程數(shù)學(xué)-微分方程,授課者:丁建均,Differential Equations (DE),教學(xué)網(wǎng)頁(yè):.tw/DE.htm (請(qǐng)上課前來(lái)這個(gè)網(wǎng)站將講義印好) 歡迎大家來(lái)修課!,2,授課者:丁建均 Office: 明達(dá)館723室, TEL: 33669652 Office hour: 星期三下午 1:005:00 個(gè)人網(wǎng)頁(yè): E-mail: ,上課時(shí)間: 星期三 第 3, 4 節(jié)(AM 10:2012:10) 星期五 第 2 節(jié) (AM 9:1010:00) 上課地點(diǎn): 電二143 課本: Differential Equations-with Bou
2、ndary-Value Problem, 7th edition, Dennis G. Zill and Michael R. Cullen 評(píng)分方式:四次作業(yè)一次小考 10%, 期中考 45%, 期末考 45%,3,注意事項(xiàng): 請(qǐng)上課前,來(lái)這個(gè)網(wǎng)頁(yè),將上課資料印好。 (2) 請(qǐng)各位同學(xué)踴躍出席 。 (3) 作業(yè)不可以抄襲。作業(yè)若寫(xiě)錯(cuò)但有用心寫(xiě)仍可以有40%90% 的分?jǐn)?shù),但抄襲或借人抄襲不給分。 (4) 我週一至週四下午都在辦公室,有什麼問(wèn)題 ,歡迎同學(xué)們來(lái)找我,4,上課日期,5,課程大綱,Introduction (Chap. 1),First Order DE,Higher Order
3、DE,解法 (Chap. 2),應(yīng)用 (Chap. 3),解法 (Chap. 4),應(yīng)用 (Chap. 5),多項(xiàng)式解法 (Chap. 6),矩陣解法 (Chap. 8),Transforms,Partial DE (Chap. 12),Laplace Transform (Chap. 7),Fourier Series (Chap. 11),Fourier Transform (Chap. 14),6,Chapter 1 Introduction to Differential Equations,1.1 Definitions and Terminology (術(shù)語(yǔ)),Differenti
4、al Equation (DE): any equation containing derivation (page 2, definition 1.1) x: independent variable 自變數(shù) y(x): dependent variable 應(yīng)變數(shù),7,In the text book f(x) is often simplified as f notations of differentiation , , , , . Leibniz notation , , , , . prime notation , , , , . dot notation , , , , . su
5、bscript notation,8,(2) Ordinary Differential Equation (ODE): differentiation with respect to one independent variable,(3) Partial Differential Equation (PDE): differentiation with respect to two or more independent variables,9,(4) Order of a Differentiation Equation: the order of the highest derivat
6、ive in the equation,7th order,2nd order,10,(5) Linear Differentiation Equation:,All the coefficient terms are independent of y.,Property of linear differentiation equations: If and y3 = by1 + cy2, then,11,(6) Non-Linear Differentiation Equation,12,(7) Explicit Solution (page 6) The solution is expre
7、ssed as y = (x) (8) Implicit Solution (page 7) Example: , Solution: (implicit solution) or (explicit solution),13,1.2 Initial Value Problem (IVP),A differentiation equation always has more than one solution. for , y = x, y = x+1 , y = x+2 are all the solutions of the above differentiation equation.
8、General form of the solution: y = x+ c, where c is any constant. The initial value (未必在 x = 0) is helpful for obtain the unique solution. and y(0) = 2 y = x+2 and y(2) =3.5 y = x+1.5,14,The kth order differential equation usually requires k initial conditions (or k boundary conditions) to obtain the
9、 unique solution. solution: y = x2/2 + bx + c, b and c can be any constant y(1) = 2 and y(2) = 3 y(0) = 1 and y(0) =5 y(0) = 1 and y(3) =2 For the kth order differential equation, the initial conditions can be 0th (k1)th derivatives at some points.,(boundary conditions,在不同點(diǎn)),(boundary conditions,在不同
10、點(diǎn)),(initial conditions),15,1.3 Differential Equations as Mathematical Model,Physical meaning of differentiation: the variation at certain time or certain place,A: population 人口增加量和人口呈正比,Example 1:,16,T: 熱開(kāi)水溫度, Tm: 環(huán)境溫度 t: 時(shí)間,Example 2:,17,大一微積分所學(xué)的:,的解,問(wèn)題:,(1) 若等號(hào)兩邊都出現(xiàn) dependent variable (如 pages 15,
11、 16 的例子),(2) 若order of DE 大於 1,例如:,18,Review dependent variable and independent variable DE PDE and ODE Order of DE linear DE and nonlinear DE explicit solution and implicit solution initial value IVP,19,Chapter 2 First Order Differential Equation,2-1 Solution Curves without a Solution,Instead of us
12、ing analytic methods, the DE can be solved by graphs (圖解),slopes and the field directions:,x-axis,y-axis,(x0, y0),the slope is f(x0, y0),20,Example 1 dy/dx = 0.2xy,資料來(lái)源: Fig. 2-1-3(a) of “Differential Equations-with Boundary-Value Problem”, 7th ed., Dennis G. Zill and Michael R. Cullen.,21,資料來(lái)源: Fig
13、. 2-1-4 of “Differential Equations-with Boundary-Value Problem”, 7th ed., Dennis G. Zill and Michael R. Cullen.,Example 2 dy/dx = sin(y), y(0) = 3/2 With initial conditions, one curve can be obtained,22,Advantage: It can solve some 1st order DEs that cannot be solved by mathematics. Disadvantage: It
14、 can only be used for the case of the 1st order DE. It requires a lot of time,23,Section 2-6 A Numerical Method,Another way to solve the DE without analytic methods independent variable x x0, x1, x2, Find the solution of Since approximation,sampling(取樣),前一點(diǎn)的值,取樣間格,24,Example: dy(x)/dx = 0.2xy y(xn+1
15、) = y(xn) + 0.2xn y(xn )*(xn+1 xn). dy/dx = sin(x) y(xn+1) = y(xn) + sin(xn)*(xn+1 xn). .,後頁(yè)為 dy/dx = sin(x), y(0) = 1, (a) xn+1 xn = 0.01, (b) xn+1 xn = 0.1, (c) xn+1 xn = 1, (d) xn+1 xn = 0.1, dy/dx = 10sin(10 x) 的例子,Constraint for obtaining accurate results: (1) small sampling interval (2) small variation of f(x, y),25,(a),(b),(c),(d),26,Advantages - can be used for solving a complicated DE (not constrain for the 1st order case) - suitable for computer simulat
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