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Use g(x) = ln()(4 + 2) to answer the questions below. (b) Find an equation for the tangent of g(x) at x = 1 .

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Use g(x) = ln()(4 + 2) to answer the questions below. (b) Find an equation for the tangent of g(x) at x = 1 . Use y for the dependent variable and x for the independent variable. S (c) It can be shown that g \"(x) > 0 for x > 0 . Would the local linearization in part (b) produce underapproximations , or overapproximationsor g(x) near x = 1 ? I --Select- under-approximations over-approximations not write below

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