A spherical snowball melts at a rate proportional to its surface area. Show that the rate of change of the radius is constant. (Hint: Surface area=4πr².)
Ch. 3 - Derivatives
3장, 문제 3.9.36
15–48. Derivatives Find the derivative of the following functions.
y = In (x³+1)^π
검증된 단계별 안내1
Step 1: Identify the function type. The function y = ln((x³+1)^π) is a composition of functions, specifically a logarithmic function applied to a power function.
Step 2: Apply the chain rule. The chain rule states that if you have a composite function y = f(g(x)), then the derivative y' = f'(g(x)) * g'(x). Here, f(u) = ln(u) and g(x) = (x³+1)^π.
Step 3: Differentiate the outer function. The derivative of ln(u) with respect to u is 1/u. So, f'(u) = 1/((x³+1)^π).
Step 4: Differentiate the inner function. The function g(x) = (x³+1)^π is a power function. Use the power rule and chain rule: g'(x) = π * (x³+1)^(π-1) * 3x².
Step 5: Combine the derivatives using the chain rule. Multiply the derivative of the outer function by the derivative of the inner function: y' = (1/((x³+1)^π)) * (π * (x³+1)^(π-1) * 3x²).

비슷한 문제에 대한 검증된 영상 답변:
이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
3m주요 개념
질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.
Derivatives
A derivative represents the rate of change of a function with respect to its variable. It is a fundamental concept in calculus that allows us to determine how a function behaves at any given point. The derivative can be interpreted as the slope of the tangent line to the curve of the function at a specific point.
추천 영상:
가이드 코스
Derivatives
Chain Rule
The chain rule is a formula for computing the derivative of the composition of two or more functions. It states that if you have a function that is composed of another function, the derivative can be found by multiplying the derivative of the outer function by the derivative of the inner function. This is particularly useful when dealing with functions that involve nested expressions.
추천 영상:
Intro to the Chain Rule
Logarithmic Differentiation
Logarithmic differentiation is a technique used to differentiate functions that are products or quotients of variables raised to powers. By taking the natural logarithm of both sides of the equation, we can simplify the differentiation process, especially when dealing with complex expressions. This method is particularly effective for functions involving exponentials and logarithms.
추천 영상:
Logarithmic Differentiation
관련 실천
교과서 질문
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교과서 질문
47–56. Derivatives of inverse functions at a point Consider the following functions. In each case, without finding the inverse, evaluate the derivative of the inverse at the given point.
f(x)=4e^10x; (4,0)
182
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교과서 질문
Derivatives Find the derivative of the following functions. See Example 2 of Section 3.2 for the derivative of √x.
f(v) = v¹⁰⁰+e^v+10
277
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교과서 질문
67–78. Derivatives of inverse functions Consider the following functions (on the given interval, if specified). Find the derivative of the inverse function.
f(x) = e^3x+1
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교과서 질문
Simplify the expression e^xln(x²+1).
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교과서 질문
23–51. Calculating derivatives Find the derivative of the following functions.
y = a sin x + b cos x/a sin x - b cos x; a and b are nonzero constants
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