Locus and its Equation
Co-Ordinate system

88473 The side \(A B\) of \(\triangle A B C\) is fixed and is of length 2 a unit. The vertex moves in the plane such that the vertical angle is always constant and is \(\alpha\). Let \(x\)-axis be along \(A B\) and the origin be at \(A\). Then the locus of the vertex is

1 \(x^{2}+y^{2}+2 a x \sin \alpha+a^{2} \cos \alpha=0\)
2 \(x^{2}+y^{2}-2 a x-2 a y \cot \alpha=0\)
3 \(x^{2}+y^{2}-2 a x \cos \alpha-a^{2}=0\)
4 \(x^{2}+y^{2}-a x \sin \alpha-a y \cos \alpha=0\)
Co-Ordinate system

88474 If the sum of the distances of a point from two perpendicular lines in a plane is 1 unit, then its locus is

1 a square
2 a circle
3 a straight line
4 two intersecting lines
Co-Ordinate system

88475 Locus of the centroid of a triangle whose vertices are \((1,0),(a \cos t, a \sin t)\), \((b \sin t,-b \cos t)\) is \(9 x^{2}+9 y^{2}-6 x=k\). Then, the value of \(k=\)

1 \(a^{2}+b^{2}\)
2 \(\mathrm{a}^{2}+\mathrm{b}^{2}-1\)
3 \(a^{2}+b^{2}+1\)
4 0
Co-Ordinate system

88476 If it is mentioned such that for a curve passing through \((3,4)\), the slope of the curve at any point is the reciprocal of twice the ordinate of that point, then that curve is a ......

1 Ellipse
2 Parabola
3 Hyperbola
4 Circle
Co-Ordinate system

88473 The side \(A B\) of \(\triangle A B C\) is fixed and is of length 2 a unit. The vertex moves in the plane such that the vertical angle is always constant and is \(\alpha\). Let \(x\)-axis be along \(A B\) and the origin be at \(A\). Then the locus of the vertex is

1 \(x^{2}+y^{2}+2 a x \sin \alpha+a^{2} \cos \alpha=0\)
2 \(x^{2}+y^{2}-2 a x-2 a y \cot \alpha=0\)
3 \(x^{2}+y^{2}-2 a x \cos \alpha-a^{2}=0\)
4 \(x^{2}+y^{2}-a x \sin \alpha-a y \cos \alpha=0\)
Co-Ordinate system

88474 If the sum of the distances of a point from two perpendicular lines in a plane is 1 unit, then its locus is

1 a square
2 a circle
3 a straight line
4 two intersecting lines
Co-Ordinate system

88475 Locus of the centroid of a triangle whose vertices are \((1,0),(a \cos t, a \sin t)\), \((b \sin t,-b \cos t)\) is \(9 x^{2}+9 y^{2}-6 x=k\). Then, the value of \(k=\)

1 \(a^{2}+b^{2}\)
2 \(\mathrm{a}^{2}+\mathrm{b}^{2}-1\)
3 \(a^{2}+b^{2}+1\)
4 0
Co-Ordinate system

88476 If it is mentioned such that for a curve passing through \((3,4)\), the slope of the curve at any point is the reciprocal of twice the ordinate of that point, then that curve is a ......

1 Ellipse
2 Parabola
3 Hyperbola
4 Circle
Co-Ordinate system

88473 The side \(A B\) of \(\triangle A B C\) is fixed and is of length 2 a unit. The vertex moves in the plane such that the vertical angle is always constant and is \(\alpha\). Let \(x\)-axis be along \(A B\) and the origin be at \(A\). Then the locus of the vertex is

1 \(x^{2}+y^{2}+2 a x \sin \alpha+a^{2} \cos \alpha=0\)
2 \(x^{2}+y^{2}-2 a x-2 a y \cot \alpha=0\)
3 \(x^{2}+y^{2}-2 a x \cos \alpha-a^{2}=0\)
4 \(x^{2}+y^{2}-a x \sin \alpha-a y \cos \alpha=0\)
Co-Ordinate system

88474 If the sum of the distances of a point from two perpendicular lines in a plane is 1 unit, then its locus is

1 a square
2 a circle
3 a straight line
4 two intersecting lines
Co-Ordinate system

88475 Locus of the centroid of a triangle whose vertices are \((1,0),(a \cos t, a \sin t)\), \((b \sin t,-b \cos t)\) is \(9 x^{2}+9 y^{2}-6 x=k\). Then, the value of \(k=\)

1 \(a^{2}+b^{2}\)
2 \(\mathrm{a}^{2}+\mathrm{b}^{2}-1\)
3 \(a^{2}+b^{2}+1\)
4 0
Co-Ordinate system

88476 If it is mentioned such that for a curve passing through \((3,4)\), the slope of the curve at any point is the reciprocal of twice the ordinate of that point, then that curve is a ......

1 Ellipse
2 Parabola
3 Hyperbola
4 Circle
Co-Ordinate system

88473 The side \(A B\) of \(\triangle A B C\) is fixed and is of length 2 a unit. The vertex moves in the plane such that the vertical angle is always constant and is \(\alpha\). Let \(x\)-axis be along \(A B\) and the origin be at \(A\). Then the locus of the vertex is

1 \(x^{2}+y^{2}+2 a x \sin \alpha+a^{2} \cos \alpha=0\)
2 \(x^{2}+y^{2}-2 a x-2 a y \cot \alpha=0\)
3 \(x^{2}+y^{2}-2 a x \cos \alpha-a^{2}=0\)
4 \(x^{2}+y^{2}-a x \sin \alpha-a y \cos \alpha=0\)
Co-Ordinate system

88474 If the sum of the distances of a point from two perpendicular lines in a plane is 1 unit, then its locus is

1 a square
2 a circle
3 a straight line
4 two intersecting lines
Co-Ordinate system

88475 Locus of the centroid of a triangle whose vertices are \((1,0),(a \cos t, a \sin t)\), \((b \sin t,-b \cos t)\) is \(9 x^{2}+9 y^{2}-6 x=k\). Then, the value of \(k=\)

1 \(a^{2}+b^{2}\)
2 \(\mathrm{a}^{2}+\mathrm{b}^{2}-1\)
3 \(a^{2}+b^{2}+1\)
4 0
Co-Ordinate system

88476 If it is mentioned such that for a curve passing through \((3,4)\), the slope of the curve at any point is the reciprocal of twice the ordinate of that point, then that curve is a ......

1 Ellipse
2 Parabola
3 Hyperbola
4 Circle
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