Exam 1: Limits and Continuity

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Find Find   . .

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For the function f graphed here: For the function f graphed here:   , find   . , find For the function f graphed here:   , find   . .

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Show that the equation f(x) = x2 + 3x - 4 has at least one solution in the interval [-5,0].

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Use δ\delta and ε\varepsilon to prove  Use  \delta  and  \varepsilon to prove   . .

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Find the smallest integer N such that  Find the smallest integer N such that   and  \varepsilon  = 0.000099. and ε\varepsilon = 0.000099.

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Find Find   . .

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Determine if the discontinuity at x = 9 in the function Determine if the discontinuity at x = 9 in the function   is removable. is removable.

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Answer true or false. The Intermediate-Value Theorem can be used to approximate the locations of all discontinuities for Answer true or false. The Intermediate-Value Theorem can be used to approximate the locations of all discontinuities for   . .

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Redefine Redefine   so that it will be continuous everywhere. so that it will be continuous everywhere.

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Let Let   . Then  . Then Let   . Then

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Find the limit. Find the limit.

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Answer true or false. If Answer true or false. If   and   then  and Answer true or false. If   and   then  then Answer true or false. If   and   then

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Express the right hand limit at x = 2 for Express the right hand limit at x = 2 for   . .

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Let Let   , then  , then Let   , then

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Find Find   . .

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Convert Convert   into a limit as x nears 0. into a limit as x nears 0.

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Find the values of x (if any) at which f is not continuous. f(x) = (x + 8)7.

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For the function g graphed here, For the function g graphed here,   find   and identify the function. find For the function g graphed here,   find   and identify the function. and identify the function.

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On the interval of [-4, 4], where is f not continuous? On the interval of [-4, 4], where is f not continuous?

(Multiple Choice)
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Find a value for the constant k so that Find a value for the constant k so that   will be continuous at t = 0. will be continuous at t = 0.

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