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The minimum radius of the circle which is orthogonal with both the circles `x^2+y^2-12 x+35=0` and `x^2+y^2+4x+3=0` is 4 (b) 3 (c) `sqrt(15)` (d) 1

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The minimum radius of the circle which is orthogonal with both the circles x^2+y^2-12 x+35=0 and x^2+y^2+4x+3=0 is (a) 4 (b) 3 (c) sqrt(15) (d) 1

The minimum radius of the circle which is orthogonal with both the circles x^2+y^2-12 x+35=0 and x^2+y^2+4x+3=0 is (a) 4 (b) 3 (c) sqrt(15) (d) 1

The minimum radius of the circle which is orthogonal with both the circles x^2+y^2-12 x+35=0 and x^2+y^2+4x+3=0 is (a) 4 (b) 3 (c) sqrt(15) (d) 1

The minimum radius of the circle which is orthogonal with both the circles x^(2)+y^(2)-12x+35=0 and x^(2)+y^(2)+4x+3=0 is 4(b)3(c)sqrt(15)(d)1

The equation of the circle which cuts orthogonally the three circles x^2+y^2+4x+2y+1=0, 2x^2+2y^2+8x+6y-3=0, x^2+y^2+6x-2y-3=0 is

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The minimum radius of the circle which contains the three circles, x^(2)+y^(2)-4y-5=0,x^(2)+y^(2)+12x+4y+31=0 and x^(2)+y^(2)+6x+12y+36=0 is

The minimum radius of the circle which contains the three circles, x^(2)+y^(2)-4y-5=0,x^(2)+y^(2)+12x+4y+31=0 and x^(2)+y^(2)+6x+12y+36=0 is