Standard and General Form of Equation of a Circle
Conic Section

119675 If the equation of the circle having its centre in the second quadrant touches the coordinate axes and also the line \(\frac{x}{5}+\frac{y}{12}=1\) is \(x^2+y^2+2 \lambda x-2 \lambda y+\lambda^2=0\), then \(\lambda=\)

1 3
2 10
3 15
4 -2
Conic Section

119676 The equation of a circle passing through the point \((2,8)\), touching the lines \(4 x-3 y-24=0\) and \(4 x+3 y-42=0\) and having the \(x\) coordinate of its centre less than or equal to 8 is

1 \(x^2+y^2+2 x-8 y-8=0\)
2 \(x^2+y^2-4 x-6 y-12=0\)
3 \(x^2+y^2-4 x-10 y+4=0\)
4 \(x^2+y^2-6 x-4 y-24=0\)
Conic Section

119678 The largest value of a for which the circle \(\mathbf{x}^2+\mathrm{y}^2=\mathbf{a}^2\) lies completely in the interior of the parabola \(y^2=4 x+16\) is

1 \(4 \sqrt{3}\)
2 \(2 \sqrt{3}\)
3 \(2 \sqrt{6}\)
4 \(4 \sqrt{6}\)
Conic Section

119679 The equation of circle of radius \(\sqrt{17} \mathrm{unit}\), with centre on the positive side of \(\mathrm{X}\)-axis and through the point \((0,1)\) is

1 \(x^2+y^2-8 x-1=0\)
2 \(x^2+y^2+8 x-1=0\)
3 \(x^2+y^2-9 y-1=0\)
4 \(2 x^2+2 y^2-3 x+2 y=4\)
Conic Section

119675 If the equation of the circle having its centre in the second quadrant touches the coordinate axes and also the line \(\frac{x}{5}+\frac{y}{12}=1\) is \(x^2+y^2+2 \lambda x-2 \lambda y+\lambda^2=0\), then \(\lambda=\)

1 3
2 10
3 15
4 -2
Conic Section

119676 The equation of a circle passing through the point \((2,8)\), touching the lines \(4 x-3 y-24=0\) and \(4 x+3 y-42=0\) and having the \(x\) coordinate of its centre less than or equal to 8 is

1 \(x^2+y^2+2 x-8 y-8=0\)
2 \(x^2+y^2-4 x-6 y-12=0\)
3 \(x^2+y^2-4 x-10 y+4=0\)
4 \(x^2+y^2-6 x-4 y-24=0\)
Conic Section

119678 The largest value of a for which the circle \(\mathbf{x}^2+\mathrm{y}^2=\mathbf{a}^2\) lies completely in the interior of the parabola \(y^2=4 x+16\) is

1 \(4 \sqrt{3}\)
2 \(2 \sqrt{3}\)
3 \(2 \sqrt{6}\)
4 \(4 \sqrt{6}\)
Conic Section

119679 The equation of circle of radius \(\sqrt{17} \mathrm{unit}\), with centre on the positive side of \(\mathrm{X}\)-axis and through the point \((0,1)\) is

1 \(x^2+y^2-8 x-1=0\)
2 \(x^2+y^2+8 x-1=0\)
3 \(x^2+y^2-9 y-1=0\)
4 \(2 x^2+2 y^2-3 x+2 y=4\)
Conic Section

119675 If the equation of the circle having its centre in the second quadrant touches the coordinate axes and also the line \(\frac{x}{5}+\frac{y}{12}=1\) is \(x^2+y^2+2 \lambda x-2 \lambda y+\lambda^2=0\), then \(\lambda=\)

1 3
2 10
3 15
4 -2
Conic Section

119676 The equation of a circle passing through the point \((2,8)\), touching the lines \(4 x-3 y-24=0\) and \(4 x+3 y-42=0\) and having the \(x\) coordinate of its centre less than or equal to 8 is

1 \(x^2+y^2+2 x-8 y-8=0\)
2 \(x^2+y^2-4 x-6 y-12=0\)
3 \(x^2+y^2-4 x-10 y+4=0\)
4 \(x^2+y^2-6 x-4 y-24=0\)
Conic Section

119678 The largest value of a for which the circle \(\mathbf{x}^2+\mathrm{y}^2=\mathbf{a}^2\) lies completely in the interior of the parabola \(y^2=4 x+16\) is

1 \(4 \sqrt{3}\)
2 \(2 \sqrt{3}\)
3 \(2 \sqrt{6}\)
4 \(4 \sqrt{6}\)
Conic Section

119679 The equation of circle of radius \(\sqrt{17} \mathrm{unit}\), with centre on the positive side of \(\mathrm{X}\)-axis and through the point \((0,1)\) is

1 \(x^2+y^2-8 x-1=0\)
2 \(x^2+y^2+8 x-1=0\)
3 \(x^2+y^2-9 y-1=0\)
4 \(2 x^2+2 y^2-3 x+2 y=4\)
Conic Section

119675 If the equation of the circle having its centre in the second quadrant touches the coordinate axes and also the line \(\frac{x}{5}+\frac{y}{12}=1\) is \(x^2+y^2+2 \lambda x-2 \lambda y+\lambda^2=0\), then \(\lambda=\)

1 3
2 10
3 15
4 -2
Conic Section

119676 The equation of a circle passing through the point \((2,8)\), touching the lines \(4 x-3 y-24=0\) and \(4 x+3 y-42=0\) and having the \(x\) coordinate of its centre less than or equal to 8 is

1 \(x^2+y^2+2 x-8 y-8=0\)
2 \(x^2+y^2-4 x-6 y-12=0\)
3 \(x^2+y^2-4 x-10 y+4=0\)
4 \(x^2+y^2-6 x-4 y-24=0\)
Conic Section

119678 The largest value of a for which the circle \(\mathbf{x}^2+\mathrm{y}^2=\mathbf{a}^2\) lies completely in the interior of the parabola \(y^2=4 x+16\) is

1 \(4 \sqrt{3}\)
2 \(2 \sqrt{3}\)
3 \(2 \sqrt{6}\)
4 \(4 \sqrt{6}\)
Conic Section

119679 The equation of circle of radius \(\sqrt{17} \mathrm{unit}\), with centre on the positive side of \(\mathrm{X}\)-axis and through the point \((0,1)\) is

1 \(x^2+y^2-8 x-1=0\)
2 \(x^2+y^2+8 x-1=0\)
3 \(x^2+y^2-9 y-1=0\)
4 \(2 x^2+2 y^2-3 x+2 y=4\)