Exam Hub Rendering Issues (copy)

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This statement is correct. For Rolle's Theorem to apply, the function must indeed be continuous on the closed interval $$[a, b]$$ and differentiable on the open interval $$(a, b)$$. These conditions ensure that the function does not have any breaks, jumps, or sharp corners in the interval, which are necessary conditions for the existence of a point $$c$$ where the derivative $$f'\(c) = 0$$.

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This statement is correct. For Rolle's Theorem to apply, the function must indeed be continuous on the closed interval $$[a, b]$$ and differentiable on the open interval $$(a, b)$$. These conditions ensure that the function does not have any breaks, jumps, or sharp corners in the interval, which are necessary conditions for the existence of a point $$c$$ where the derivative $$f'\(c) = 0$$.

renders the first three latex in the editor but not in the rendering

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Which of the following is the correct antiderivative of 1x\frac{1}{\sqrt{x}}?

Square roots aren’t rendering properly in the editor

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Rank the following functions in order of increasing difficulty to differentiate using the chain rule: $$f(x) = (3x^2 + 2)^5$$, $$g(x) = \sin(5x^3)$$, $$h(x) = \e^{2x^2 + 3x}$$, $$j(x) = \sqrt{4x + 1}$$.

The one \e messes up everything when actually it could render a lot better

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Given the function $$y = \sqrt{x^3 + 3x^2 + x}$$, rank the following steps in the correct order for applying the chain rule to find $$dy\dx$$: A) Differentiate the outer function, leaving the inside function alone, B) Multiply by the derivative of the inside function, C) Identify the inside and outside functions, D) Simplify the derivative expression.

Again renders the first one and semi renders the second but doesn’t work for either term on rendering

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