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Check wheather Rolle's theorem is appli...

Check wheather Rolle's theorem is applicable on `f(x) = x^2-8x+12` on [2,6].

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The correct Answer is:
Vertex `-=((2)/(9),(8)/(9))`

Slope of the chord joining point `P(t_(1))andQ(t_(2))` on the parabola `y^(2)=4x` is
`(2)/(t_(2)+t_(1))=2` (given)
`:." "t_(2)+t_(1)=1` (1)
Let point R(h,k) divide PQ in the ratio 1 : 2.
`So," "h=(t_(2)^(2)+2t_(1)^(2))/(1+2)andk=(2t_(2)+2(2t_(1)))/(1+2)`
`rArr" "3h=t_(2)^(2)+2t_(1)^(2)` (2)
`and" "t_(2)+2t_(1)=(3k)//2` (3)
From (1) and (3), we get
`t_(1)=(3)/(2)k-1andt_(2)=2-(3)/(2)k`
Putting these values in (2), we get
`(2-(3)/(2)k)^(2)+2((3)/(2)k-1)^(2)=3h`
Hence, locus of the point R is
`(y-(8)/(9))^(2)=(4)/(9)(x-(2)/(9))`,
which is parabola having vertex at `((2)/(9),(8)/(9))`.
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CENGAGE PUBLICATION-PARABOLA-Concept Applications Exercise 5.2
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  2. Find the equation of parabola whose focus is (0,1) and the directrix i...

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  3. Find the vertex, focus and directrix of the parabola x^(2)=2(2x+y).

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  4. The vertex of a parabola is (2, 2) and the coordinats of its two ex...

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  5. A parabola passes through the point the point (1,2), (2,1), (3,4) and ...

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  6. Find the length of the common chord of the parabola x^2=4(x+3) and the...

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  7. The equation of the latus rectum of a parabola is x+y=8 and the equati...

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  8. Find the length of the latus rectum of the parabola whose focus is at ...

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  9. If (a ,b) is the midpoint of a chord passing through the vertex of the...

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  10. Check wheather Rolle's theorem is applicable on f(x) = x^2-8x+12 on [...

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  11. Plot the region in the first quadrant in which points are nearer to th...

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  12. Prove that the locus of a point, which moves so that its distance from...

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  13. Prove that the locus of the center of a circle, which intercepts a cho...

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  14. Find the equation of the parabola whose focus is S(-1,1) and directrix...

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  15. The axis of parabola is along the line y=x and the distance of its ver...

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  16. Find the equation of parabola whose focus is (0,1) and the directrix i...

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  17. Find the vertex, focus and directrix of the parabola x^(2)=2(2x+y).

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