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If y = f(x) and (x) depends on time (t), then ЁЭССтБвЁЭСУЁЭССтБвЁЭСбтАЛ equals ______.

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If y = f(x) and (x) depends on time (t), then \[\frac {df}{dt}\]тАЛ equals ______.

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  • \[\frac{df}{dx}+\frac{dx}{dt}\]

  • \[\frac{df}{dx}\times\frac{dx}{dt}\]

  • \[\frac{dx}{dt}\div\frac{df}{dx}\]

  • \[\frac{df}{dx}-\frac{dx}{dt}\]

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If y = f(x) and (x) depends on time (t), then \[\frac {df}{dt}\]тАЛ equals \[\frac{df}{dx}\times\frac{dx}{dt}\].

Explanation:

This is the chain rule of differentiation. When a function depends on an intermediate variable, the rate of change with respect to time is the product of the two individual rates of change.

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