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Lecture 3. Differentiation of Composite and Implicit Functions

Язык: Русский
Тип: Текст
Год издания: 2026

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The lecture focuses on differential calculus for functions of several variables. It begins with the chain rule for differentiating composite functions, covering cases where arguments depend on one or multiple variables. Theory is supported by proofs and examples. Special attention is given to differentiating implicitly defined functions. Students learn to find derivatives of functions defined by equations, including cases with one or two independent variables. Conditions for theorem applicability are discussed with examples. The concept of directional derivative is introduced, characterizing the rate of function change in a specified direction. The formula using partial derivatives and direction cosines is derived, with examples in two and three dimensions. The lecture concludes with a preview of the gradient — a vector pointing in the direction of steepest function increase. Its geometric interpretation and connection to directional derivatives are explained.

Lecture 3. Differentiation of Composite and Implicit Functions
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