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line L:y=mx+3 meets y–axis at E(0, 3) an...

line L:y=mx+3 meets y–axis at E(0, 3) and the are of the parabola `y^(2)=16x, 0leyle6` at the point `F(x_(0),y_(0))`. The tangent to the parabola at `F(x_(0),y_(0))` intersects the y-axis at `G(0,y_(1))`. The slope m of the L is chosen such that the area of the triangle EFG has a local maximum.
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A line L : y = mx + 3 meets y-axis at E (0, 3) and the arc of the parabola y^2 = 16x 0leyle6 at the point art F(x_0,y_0). The tangent to the parabola at F(X_0,Y_0) intersects the y-axis at G(0,y). The slope m of the line L is chosen such that the area of the triangle EFG has a local maximum P) m= Q) = Maximum area of triangle EFG is (R) y_0= (S) y_1=

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RESONANCE-APPLICATION OF DERIVATIVES-Exersise-3 Part I
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  9. Let a in R and let f: R to R be given by f(x) =x^(5) -5x+a. then

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  14. Which of the following options is the only INCORRECT combination ?

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  15. Which of the following options is the only CORRECT combination

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  16. Which of the following options is the only CORRECT combination ?

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  17. If f:R->R is a twice differentiable function such that f''(x) > 0 for ...

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  18. If f:RR-> RR is a differentiable function such that f(x) > 2f(x) f...

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  19. then

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  20. For every twice differentiable function f: R->[-2,\ 2] with (f(0))^...

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