Equation of a Line, Sphere, and a Plane in Different Forms
Three Dimensional Geometry

121281 The equation of the plane through the intersection of the planes \(x+2 y+3 z-4=0\) and \(4 x+3 y+2 z+1=0\) and passing through the origin is ........

1 \(17+14 y+11 z=0\)
2 \(7 x+4 y+z=0\)
3 \(x+14 y+11 z=0\)
4 \(17 x+y+z=0\)
Three Dimensional Geometry

121282 If \((2,3,-3)\) is one end of a diameter of the sphere \(x^2+y^2+z^2-6 x-12 y-2 z+20=0\), then the other end of the diameter is

1 \((4,9,-1)\)
2 \((4,9,5)\)
3 \((-8,-15,1)\)
4 \((8,15,5)\)
Three Dimensional Geometry

121283 The radius of the sphere
\(x^2+y^2+z^2=12 x+4 y+3 z\) is

1 \(\frac{13}{2}\)
2 13
3 26
4 52
Three Dimensional Geometry

121284 The equation of the plane bisecting the line segment joining the points \((2,0,6)\) and \((-6,2\), 4) and perpendicular to it, is

1 \(2 x-y+4 z-15=0\)
2 \(4 x-y+3 z-6=0\)
3 \(4 x-y+z+4=0\)
4 \(x-2 y+3 z-11=0\)
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Three Dimensional Geometry

121281 The equation of the plane through the intersection of the planes \(x+2 y+3 z-4=0\) and \(4 x+3 y+2 z+1=0\) and passing through the origin is ........

1 \(17+14 y+11 z=0\)
2 \(7 x+4 y+z=0\)
3 \(x+14 y+11 z=0\)
4 \(17 x+y+z=0\)
Three Dimensional Geometry

121282 If \((2,3,-3)\) is one end of a diameter of the sphere \(x^2+y^2+z^2-6 x-12 y-2 z+20=0\), then the other end of the diameter is

1 \((4,9,-1)\)
2 \((4,9,5)\)
3 \((-8,-15,1)\)
4 \((8,15,5)\)
Three Dimensional Geometry

121283 The radius of the sphere
\(x^2+y^2+z^2=12 x+4 y+3 z\) is

1 \(\frac{13}{2}\)
2 13
3 26
4 52
Three Dimensional Geometry

121284 The equation of the plane bisecting the line segment joining the points \((2,0,6)\) and \((-6,2\), 4) and perpendicular to it, is

1 \(2 x-y+4 z-15=0\)
2 \(4 x-y+3 z-6=0\)
3 \(4 x-y+z+4=0\)
4 \(x-2 y+3 z-11=0\)
Three Dimensional Geometry

121281 The equation of the plane through the intersection of the planes \(x+2 y+3 z-4=0\) and \(4 x+3 y+2 z+1=0\) and passing through the origin is ........

1 \(17+14 y+11 z=0\)
2 \(7 x+4 y+z=0\)
3 \(x+14 y+11 z=0\)
4 \(17 x+y+z=0\)
Three Dimensional Geometry

121282 If \((2,3,-3)\) is one end of a diameter of the sphere \(x^2+y^2+z^2-6 x-12 y-2 z+20=0\), then the other end of the diameter is

1 \((4,9,-1)\)
2 \((4,9,5)\)
3 \((-8,-15,1)\)
4 \((8,15,5)\)
Three Dimensional Geometry

121283 The radius of the sphere
\(x^2+y^2+z^2=12 x+4 y+3 z\) is

1 \(\frac{13}{2}\)
2 13
3 26
4 52
Three Dimensional Geometry

121284 The equation of the plane bisecting the line segment joining the points \((2,0,6)\) and \((-6,2\), 4) and perpendicular to it, is

1 \(2 x-y+4 z-15=0\)
2 \(4 x-y+3 z-6=0\)
3 \(4 x-y+z+4=0\)
4 \(x-2 y+3 z-11=0\)
Three Dimensional Geometry

121281 The equation of the plane through the intersection of the planes \(x+2 y+3 z-4=0\) and \(4 x+3 y+2 z+1=0\) and passing through the origin is ........

1 \(17+14 y+11 z=0\)
2 \(7 x+4 y+z=0\)
3 \(x+14 y+11 z=0\)
4 \(17 x+y+z=0\)
Three Dimensional Geometry

121282 If \((2,3,-3)\) is one end of a diameter of the sphere \(x^2+y^2+z^2-6 x-12 y-2 z+20=0\), then the other end of the diameter is

1 \((4,9,-1)\)
2 \((4,9,5)\)
3 \((-8,-15,1)\)
4 \((8,15,5)\)
Three Dimensional Geometry

121283 The radius of the sphere
\(x^2+y^2+z^2=12 x+4 y+3 z\) is

1 \(\frac{13}{2}\)
2 13
3 26
4 52
Three Dimensional Geometry

121284 The equation of the plane bisecting the line segment joining the points \((2,0,6)\) and \((-6,2\), 4) and perpendicular to it, is

1 \(2 x-y+4 z-15=0\)
2 \(4 x-y+3 z-6=0\)
3 \(4 x-y+z+4=0\)
4 \(x-2 y+3 z-11=0\)