Mathews' Euclid examination papers ... on Euc. i.-iv |
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Page 119
... centre of the circle BCD , = . The st . line AB the st . line AC , without showing that he knows the suppressed premiss ( Def . 15 ) by which the above conclusion can only be correctly obtained . ( d ) After assuming the truth of the ...
... centre of the circle BCD , = . The st . line AB the st . line AC , without showing that he knows the suppressed premiss ( Def . 15 ) by which the above conclusion can only be correctly obtained . ( d ) After assuming the truth of the ...
Page 127
... centre of perpendiculars of the other . A circle A passes through the centre of a circle B , prove that their common tangents will touch A in points lying on a tangent to B. In a given quadrilateral a parallelogram is inscribed , whose ...
... centre of perpendiculars of the other . A circle A passes through the centre of a circle B , prove that their common tangents will touch A in points lying on a tangent to B. In a given quadrilateral a parallelogram is inscribed , whose ...
Page 128
... centre of perpendiculars will lie on a fixed circle . If from any point , straight lines be drawn to the angles of a triangle , and if through each of these angles straight lines be drawn , making with either of the sides an angle equal ...
... centre of perpendiculars will lie on a fixed circle . If from any point , straight lines be drawn to the angles of a triangle , and if through each of these angles straight lines be drawn , making with either of the sides an angle equal ...
Page 129
... centre on AB meets AC in D : prove that the straight line joining D to the pole of BC is parallel to AB . Given the centres of four circles , determine their radii , so that they may pass , three and three , through four points . Fan ...
... centre on AB meets AC in D : prove that the straight line joining D to the pole of BC is parallel to AB . Given the centres of four circles , determine their radii , so that they may pass , three and three , through four points . Fan ...
Page 131
... these circles at P and Q form a quadrilateral equal in all re- spects to the original , and that the line joining the centres of the circles about the two quadrilaterals bisects PQ . 4. Describe a circle about a given triangle . A 131.
... these circles at P and Q form a quadrilateral equal in all re- spects to the original , and that the line joining the centres of the circles about the two quadrilaterals bisects PQ . 4. Describe a circle about a given triangle . A 131.
Common terms and phrases
acute angle angle contained angle equal angled triangle angular points base centre chord circle are equal circle described circumference cuts the circle Describe a square diameter draw a straight equal circles equal in area equilateral triangle exterior angle fixed circle given circle given point given square given straight line given triangle half the line hypothenuse Inscribe a circle isosceles triangle line be divided line be drawn line is equal LONDON SCHOOL BOARD London University MATRICULATION middle points Notes of Lessons obtuse angle opposite angles opposite sides parallel straight lines parallelogram are equal perpendicular point of contact proposition prove Pupil Teachers quadrilateral figure rectangle contained rectilineal figure rhombus right angles right-angled triangle segment side subtending sides containing sides equal square on half squares described straight line intercepted straight lines cut student tangents theorem third angle touch a circle triangle the square twice the rectangle vertex whole line
Popular passages
Page 160 - If two triangles have two angles of the one equal to two angles of the other, each to each, and one side equal to one side, viz.
Page 154 - If, from the ends of the side of a triangle, there be drawn two straight lines to a point within the triangle, these shall be less than, the other two sides of the triangle, but shall contain a greater angle. Let...
Page 184 - If a straight line touch a circle, and from the point of contact a chord be drawn, the angles which this chord makes with the tangent are equal to the angles in the alternate segments.
Page 156 - A tangent to a circle is perpendicular to the radius drawn to the point of contact.
Page 182 - IF a side of any triangle be produced, the exterior angle is equal to the two interior and opposite angles ; and the three interior angles of every triangle are equal to two right angles.
Page 153 - Any two sides of a triangle are together greater than the third side.
Page 167 - THE angles at the base of an isosceles triangle are equal to one another : and, if the equal sides be produced, the angles upon the other side of the base shall be equal.
Page 164 - AB be the given straight line ; it is required to divide it into two parts, so that the rectangle contained by the whole, and one of the parts, shall be equal to the square of the other part.
Page 130 - To describe an isosceles triangle, having each of the angles at the base double of the third angle.
Page 154 - Straight lines which are parallel to the same straight line are parallel to one another. Triangles and Rectilinear Figures. The sum of the angles of a triangle is equal to two right angles.