HUT DEPARTMENT OF MATH. APPLIED

INTRO DIFFERENTIAL EQUATIONS
CONTENTS

1.1 DIFFERENTIAL EQUATIONS AND MATHEMATICAL
MODELS
1.2 GENERAL AND PARTICULAR SOLUTIONS
CHAPTER 1: First Order Differential Equations (2
weeks)
LEC 1: BASIC NOTIONS OF FIRST ORDER
D
HUT DEPARTMENT OF MATH. APPLIED

INTRODUCTION TO DIFFERENTIAL
EQUATIONS
CONTENTS

2.1 SEPARABLE DIFFERENTIAL EQUATIONS
2.2 FIRST ORDER LINEAR DIFFERENTIAL EQUATIONS
2.3 EXACT EQUATIONS
Lecture 2: Solving First Order Ordinary
Differential Equations (ODE)
HUT DEPARTMENT OF MATH. APPLIED

IDE ADVANCED PROGRAM
CHAPTER 2: Linear Differential Equations
of Higher Order
2ND ORDER LINEAR EQUATIONS.
HOMOGENOUS & NONHOMOGENOUS
(STUDENT)
CONTENTS

4.1 Introduction to 2nd order differential equation. Reducing case
Ho Chi Minh City, 06 September 2010
HCM UT HCM NU
Faculty of Applied Science
Department of Math Applied
Syllabus
M ATH 385 INTRO DIFFERENTIAL EQUATIONS
Credit
Class Hours
Overall Grade
: 3 (2.1.5)
Theory: 28
Exercises: 14
42
Consultation: 1 class hours pe
HUT DEPARTMENT OF MATH. APPLIED

IDE MODERNIZED PROGRAM
PARTIAL DIFFERENTIAL EQUATIONS (PDE)
LECTURE 03: FOURIER SERIES
PhD. NGUYEN QUOC LAN (December, 2010)
BEGINNING PROBLEM

Express a given function f(x) in the trigonometric serie:
a0
Find cfw_a n ,
HUT DEPARTMENT OF MATH. APPLIED

IDE MODERNIZED PROGRAM
PARTIAL DIFFERENTIAL EQUATIONS
(PDE) STUDENT
Lecture 05: THE WAVE EQUATION
PhD. NGUYEN QUOC LAN (January, 2011)
MOTION OF A VIBRATING STRING (TEXTBOOK, p. 576)

Motion of the string the initial bou
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