Advanced Mathematics" is a preliminary but fundamental course for students from physics department etc. Calculus can be said the most important part of Advanced Mathematics. Besides Calculus, Advanced mathematics includes generally also Linear Algebra (mainly Matrix theory), Analytic Geometry, Differential Equation Theory, Integral Transformation and sometimes Probability Theory.
Mathematics
数学源自于古希腊语,是研究数量、结构、变化以及空间模型等概念的一门学科。透过抽象化和逻辑推理的使用,由计数、计算、量度和对物体形状及运动的观察中产生。数学的基本要素是:逻辑和直观、分析和推理、共性和个性。
Physics
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Principles of Biomedical Engineering
Experiment in Analog Circuitry
Introduction to Atmospheric Environment
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Principles of Food Engineering
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Basis of Control Engineering
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Function of Complex Variable
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Introduction to Database Systems
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Mechanics of materials
Linear Electronic Circuitry
Microcomputer Principle and Application
Hydraulic and pneumatic Driving
Fundamentals of Material Engineering
Fundamentals of Materials Science
Principle of Circuit Analysis
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Trial Design and Biostatistics
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Methods of Mathematical Physics
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Introduction to Mechanical Engineering
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Principle of Actuarial Science
soil mechanics
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数学运算
积分求和
函数
变量
极限 : 极限是微积分中的基础概念, 它指的是变量在一定的变化过程中, 从总的来说逐渐稳定的这样一种变化趋势以及所趋向的值 (极限值) .
导数 : 导数是函数的局部性质。一个函数在某一点的导数描述了这个函数在这一点附近的变化率。如果函数的自变量和取值都是实数的话,函数在某一点的导数就是该函数所代表的曲线在这一点上的切线斜率。导数的本质是通过极限的概念对函数进行局部的线性逼近。
微分方程 : 微分方程指描述未知函数的导数与自变量之间的关系的方程。微分方程的解是一个符合方程的函数。而在初等数学的代数方程,其解是常数值。