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psl.
... curve . ( b ) By considering the generation of a right circular cone find the position of a centre of figure of a right angled triangle . 8. Prove that a plane section of a right circular cone may be defined as the locus of a point ...
... curve . ( b ) By considering the generation of a right circular cone find the position of a centre of figure of a right angled triangle . 8. Prove that a plane section of a right circular cone may be defined as the locus of a point ...
psl.
... curve . ( 6 ) By considering the generation of a right circular cone find the position of a centre of figure of a right angled triangle . 8. Prove that a plane section of a right circular cone may be defined as the locus of a point ...
... curve . ( 6 ) By considering the generation of a right circular cone find the position of a centre of figure of a right angled triangle . 8. Prove that a plane section of a right circular cone may be defined as the locus of a point ...
psl.
... ) Thence show that three normals may be drawn from any point . 5. Obtain the polar equation to all the conics , the pole being at the focus . 6. Prove that the normal to the curve at any Queen's University Examinations : April , 1898 .
... ) Thence show that three normals may be drawn from any point . 5. Obtain the polar equation to all the conics , the pole being at the focus . 6. Prove that the normal to the curve at any Queen's University Examinations : April , 1898 .
psl.
... series of ellipses have the same major axis the chords at two corresponding points in each ellipse meet at the same point on the major axis . HONOURS . Calculus , I. = 1. Assuming the rule 6. Prove that the normal to the curve at any point.
... series of ellipses have the same major axis the chords at two corresponding points in each ellipse meet at the same point on the major axis . HONOURS . Calculus , I. = 1. Assuming the rule 6. Prove that the normal to the curve at any point.
psl.
... curve y = f ( x ) at the point ( x , y ) . ( b ) Show that in the curve x + y = a3 , the part of the tangent intercepted between the axes is constant . 4. In the polar curve r = f ( ) ) find the angle which the tangent at the point ( r ...
... curve y = f ( x ) at the point ( x , y ) . ( b ) Show that in the curve x + y = a3 , the part of the tangent intercepted between the axes is constant . 4. In the polar curve r = f ( ) ) find the angle which the tangent at the point ( r ...
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