Use a linear approximation to approximate 32.121. Let f(x)=3x and use the tangent line point at x=2. Submit an exact answer in fractional form.
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- Use linear approximation, i.e. the tangent line, to approximate 1.954 as follows:Let f(x)=x4 . The equation of the tangent line to f(x) at x=2 can be written in the form y=mx+bwhere m is:and where b is:Using this, we find our approximation for 1.954 is:Use linear approximation, i.e. the tangent line, to approximate 10.253 as follows: Let �(�)=1� and find the equation of the tangent line to �(�) at a "nice" point near 0.253. Then use this to approximate 10.253.Use tangent line approximation to approximate the quantity below. -2ln(1.03)+4
- Use linear approximation, i.e. the tangent line, to approximate 2.9^5 as follows: Let f(x)=x^5. Find the equation of the tangent line to f(x) at x=3. L(x)= ? Using this, we find our approximation for 2.9^5 is ??Use linear approximation to approximate√64.2 as follows.Let f(x)=√x. The equation of the tangent line to f(x) at x=64 can be written in the form y=mx+b. What is bUse linear approximation, i.e. the tangent line, to approximate √16.4 as follows:Let f(x)=√x. Find the equation of the tangent line to f(x) at x=16 L(X)= Using this, we find our approximation for √16.4 is
- Use linear approximations to estimate the following. 1. sin 9/4Use linear approximation, i.e. the tangent line, to approximate √64.4 as follows: let f(x)=√x. Find the equation of the tangent line to f(x) at x=64. L(x)=? Using this, we find our approximation for √64.4 is ?? (Note: give answer to at least 9 significant figures or use an expression to give the exact answer)Use linear approximation, i.e. the tangent line, to appoximate 1/1.002 as follows: Let f(x)= 1/x and find the equation of the tangent line to f(x) at a "nice" point near 1.002. Then use this to approximate 1/1.002.