6430 



Methods of Analytical Geometry 



6430 



Greatheed, S. S. (vi Adds.) Camb. Mth. J. 



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241-, 321-, 401- ; 4 (1845) 15-. 

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No. 5, 80 pp. 



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 Algebra, application to geometry, and vice-versa. 



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of plane and of space. Boguslavskij, A. I. 

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Algebraic principle, single, deduction of geo- 

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Analytical and geometrical methods, advantages 

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operations, generalisation by help of 

 geometry. Neovius, E. [1876] Helsingf. 

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Angle between two lines given by their equations. 



Heal, W. E. Des Moines Anal. 5 (1878) 148. 

 Area of polygon in terms of coordinates of 



vertices. Stainville, de. Gergonne A. 



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Area of polygon in terms of coordinates of 



vertices. Terquem, O. N. A. Mth. 9 (1850) 



65. 

 . Prouhet.E. N. A. 



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 . Veltmann, W. 



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 triangle. Lowry, W. L. [1874] Mess. 



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 and tetrahedron volume, in Cartesian, 



tetrahedral and quadriplanar coordinates. 



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 Areas and centres of polygons. Padula, F. 



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of surfaces and volumes of solids, methods 

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Axes, Conditions for system of three, being 

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, 3, problem. Puttkammer, J. N. van. 

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, rectangular, nine angles between two 

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Barycentric calculus of Mobius. Allardice, 

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Binary forms, application to analytical geo- 

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Cartesian geometry. Battaglini, G. G. Mt. 



29 (1891) 3-, 93-, 195-, 298-. 

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, historical development and bases. 

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Circle and concentric rectangular hyperbola, 

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Circular relation (Kreisverwandtschaft) in geo- 

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of Mobius. Cayley, A. QJ. Mth. 2 



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. Enneper, A. Z. Mth. Ps. 13 



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. Lucas, E. N. A. Mth. 15 (1876) 



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(Lucas). Cassani, P. G. Mt. 14 



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. Cayley, A. L. Mth. S. P. 8 



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, equation. Grunert, J. A. Arch. 



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 , . Zahradmk, K. Arch. Mth. 



Ps. 56 (1874) 15-. 

 Complex elements. Tognoli, 0. G. Mt. 31 



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quantities, application to plane geometry. 

 Brill, J. Mess. Mth. 16 (1887) 8-. 



Condition that straight line should be normal 

 to a conic in trilinear coordinates. Pinker- 

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