Maxima and Minima
Application of Derivatives

85712 For the function
\(f(x)=\frac{4}{3} x^{3}-8 x^{2}+16 x+5, x=2\) is a point of

1 local maxima
2 local minima
3 point of inflexion
4 none of these
Application of Derivatives

85713 If the area of a circular sector of perimeter 60 \(m\) is to be maximized, then its radius must be

1 \({20}\)
2 15
3 10
4 5
Application of Derivatives

85714 For the function \(f(x)=x^{3}-6 x^{2}-12 x-3, x=2\) is

1 point of maxima
2 point of minima
3 point of inflection
4 not a critical point
Application of Derivatives

85715 Let \(f(x)=x^{2}+2 x+2, g(x)=-x^{2}+2 x-1\) and a, b be the extreme values of \(f(x), g(x)\) respectively. If \(c\) is the extreme value of \(\frac{f}{g}(x)\) (for \(x \neq 1\) ), then \(a+2 b+5 c+4=\)

1 2
2 1
3 4
4 3
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Application of Derivatives

85712 For the function
\(f(x)=\frac{4}{3} x^{3}-8 x^{2}+16 x+5, x=2\) is a point of

1 local maxima
2 local minima
3 point of inflexion
4 none of these
Application of Derivatives

85713 If the area of a circular sector of perimeter 60 \(m\) is to be maximized, then its radius must be

1 \({20}\)
2 15
3 10
4 5
Application of Derivatives

85714 For the function \(f(x)=x^{3}-6 x^{2}-12 x-3, x=2\) is

1 point of maxima
2 point of minima
3 point of inflection
4 not a critical point
Application of Derivatives

85715 Let \(f(x)=x^{2}+2 x+2, g(x)=-x^{2}+2 x-1\) and a, b be the extreme values of \(f(x), g(x)\) respectively. If \(c\) is the extreme value of \(\frac{f}{g}(x)\) (for \(x \neq 1\) ), then \(a+2 b+5 c+4=\)

1 2
2 1
3 4
4 3
Application of Derivatives

85712 For the function
\(f(x)=\frac{4}{3} x^{3}-8 x^{2}+16 x+5, x=2\) is a point of

1 local maxima
2 local minima
3 point of inflexion
4 none of these
Application of Derivatives

85713 If the area of a circular sector of perimeter 60 \(m\) is to be maximized, then its radius must be

1 \({20}\)
2 15
3 10
4 5
Application of Derivatives

85714 For the function \(f(x)=x^{3}-6 x^{2}-12 x-3, x=2\) is

1 point of maxima
2 point of minima
3 point of inflection
4 not a critical point
Application of Derivatives

85715 Let \(f(x)=x^{2}+2 x+2, g(x)=-x^{2}+2 x-1\) and a, b be the extreme values of \(f(x), g(x)\) respectively. If \(c\) is the extreme value of \(\frac{f}{g}(x)\) (for \(x \neq 1\) ), then \(a+2 b+5 c+4=\)

1 2
2 1
3 4
4 3
Application of Derivatives

85712 For the function
\(f(x)=\frac{4}{3} x^{3}-8 x^{2}+16 x+5, x=2\) is a point of

1 local maxima
2 local minima
3 point of inflexion
4 none of these
Application of Derivatives

85713 If the area of a circular sector of perimeter 60 \(m\) is to be maximized, then its radius must be

1 \({20}\)
2 15
3 10
4 5
Application of Derivatives

85714 For the function \(f(x)=x^{3}-6 x^{2}-12 x-3, x=2\) is

1 point of maxima
2 point of minima
3 point of inflection
4 not a critical point
Application of Derivatives

85715 Let \(f(x)=x^{2}+2 x+2, g(x)=-x^{2}+2 x-1\) and a, b be the extreme values of \(f(x), g(x)\) respectively. If \(c\) is the extreme value of \(\frac{f}{g}(x)\) (for \(x \neq 1\) ), then \(a+2 b+5 c+4=\)

1 2
2 1
3 4
4 3