Elements of Geometry: Containing the First Six Books of Euclid, with a Supplement on the Quadrature of the Circle, and the Geometry of Solids; to which are Added Elements of Plane and Spherical Trigonometry |
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Side 46
TV but the triangle ABC is the half of the parallelogram EBCA , because the
diameter AB bisects ( 34. 1. ) it ; and the triangle DBC is the half of the
parallelogram DBCF , because the diameter DC bisects it : And the halves of
equal things are ...
TV but the triangle ABC is the half of the parallelogram EBCA , because the
diameter AB bisects ( 34. 1. ) it ; and the triangle DBC is the half of the
parallelogram DBCF , because the diameter DC bisects it : And the halves of
equal things are ...
Side 48
It is required to describe a parallelogram that shall be equal to the given triangle
ABC , and have one of its angles equal to D. Bisect ( 10. 1. ) BC in E , join AE ,
and at the point E in the straight line EC make ( 23. 1. ) the angle CEF equal to D
...
It is required to describe a parallelogram that shall be equal to the given triangle
ABC , and have one of its angles equal to D. Bisect ( 10. 1. ) BC in E , join AE ,
and at the point E in the straight line EC make ( 23. 1. ) the angle CEF equal to D
...
Side 125
ABC to the triangle ACD , and the parallelogram EC to the parallelogram CF.
Produce BD both ways to the points H , L , and take any number of straight lines
BG , GH , each equal to the base BC ; and DK , KL , any number of them , each
equal ...
ABC to the triangle ACD , and the parallelogram EC to the parallelogram CF.
Produce BD both ways to the points H , L , and take any number of straight lines
BG , GH , each equal to the base BC ; and DK , KL , any number of them , each
equal ...
Side 132
Therefore the angles ABC , DEF are not unequal , that is , they are equal : And
the angle at A is equal to the angle at D ; wherefore the remaining angle at C is
equal to the remaining angle at F : Therefore the triangle ABC is equiangular to
the ...
Therefore the angles ABC , DEF are not unequal , that is , they are equal : And
the angle at A is equal to the angle at D ; wherefore the remaining angle at C is
equal to the remaining angle at F : Therefore the triangle ABC is equiangular to
the ...
Side 136
Let the triangles be placed so that their sides CA , AD be in one straight line ;
wherefore also EA and AB are in one straight line ( 14 . 1. ) ; join BD . Because
the triangle ABC is equal to the triangle ADE , and ABD is another triangle ;
therefore ...
Let the triangles be placed so that their sides CA , AD be in one straight line ;
wherefore also EA and AB are in one straight line ( 14 . 1. ) ; join BD . Because
the triangle ABC is equal to the triangle ADE , and ABD is another triangle ;
therefore ...
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Elements of Geometry: Containing the First Six Books of Euc, With a ... Formerly Chairman Department of Immunology John Playfair,John Playfair Ingen forhåndsvisning tilgjengelig - 2017 |
Vanlige uttrykk og setninger
ABCD altitude angle ABC angle BAC arch base bisected Book called centre circle circle ABC circumference coincide common cosine cylinder definition demonstrated described diameter difference divided double draw drawn equal equal angles equiangular Euclid extremity fall fore four fourth given given straight line greater half inscribed interior join less Let ABC magnitudes manner meet multiple opposite parallel parallelogram pass perpendicular plane polygon prism produced PROP proportionals proposition proved Q. E. D. PROP radius ratio reason rectangle contained rectilineal figure right angles segment shewn sides similar sine solid square straight line taken tangent THEOR thing third touches triangle ABC wherefore whole
Populære avsnitt
Side 56 - If a straight line be divided into two equal parts, and also into two unequal parts; the rectangle contained by the unequal parts, together with the square of the line between the points of section, is equal to the square of half the line.
Side 19 - A circle is a plane figure contained by one line, which is called the circumference, and is such that all straight lines drawn from a certain point within the figure to the circumference, are equal to one another.
Side 33 - THE greater angle of every triangle is subtended by the greater side, or has the greater side opposite to it.
Side 62 - In every triangle, the square on the side subtending either of the acute angles, is less than the squares on the sides containing that angle, by twice the rectangle contained by either of these sides, and the straight line intercepted between the...
Side 62 - In obtuse-angled triangles, if a perpendicular be drawn from either of the acute angles to the opposite side produced, the square of the side subtending the obtuse angle, is greater than the squares of the sides containing the obtuse angle, by twice the rectangle contained by the side upon which, when produced, the perpendicular falls, and the straight line intercepted without the triangle, between the perpendicular and the obtuse angle. Let ABC be an obtuse-angled triangle, having the obtuse angle...
Side 130 - If two triangles have one angle of the one equal to one angle of the other and the sides about these equal angles proportional, the triangles are similar.
Side 76 - THE diameter is the greatest straight line in a circle; and, of all others, that which is nearer to the centre is always greater than one more remote ; and the greater is nearer to the centre than the less.* Let ABCD be a circle, of which...
Side 36 - IF two triangles have two sides of the one equal to two sides of the other, each to each, but the angle contained by the two sides of one of them greater than the angle contained by the two sides equal to them, of the other ; the base of that which has the greater angle shall be greater than the base of the other.
Side 18 - When a straight line standing on another straight line makes the adjacent angles equal to one another, each of the angles is called a right angle ; and the straight line which stands on the other is called a perpendicular to it.
Side 55 - If a straight line be divided into any two parts, the rectangle contained by the whole and one of the parts, is equal to the rectangle contained by the two parts, together with the square of the aforesaid part.