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Q: Who was the French mathematician who invented analytic geometry and contributed to the mathematical notation and was famous for the theorem 'the Rule of Signs'?

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Murray H. Protter has written: 'Calculus with analytic geometry: a second course' -- subject(s): Calculus, Geometry, Analytic 'Modern mathematical analysis' -- subject(s): Mathematical analysis 'Modern mathematical analysis and answers book' 'Basic elements of real analysis' -- subject(s): Mathematical analysis 'Calculus with analytic geometry' -- subject(s): Analytic Geometry, Calculus, Geometry, Analytic

Rene descartes..

Yes. There were mathematicians who were in geometry. In fact, anyone who contributed to our understanding of geometry was a mathematician.

Arnold Emch has written: 'An introduction to projective geometry and its applications' -- subject(s): Accessible book, Analytic Geometry, Geometry, Analytic, Geometry, Projective, Plane, Projective Geometry 'Mathematical models' -- subject(s): Mathematics, Study and teaching

The analytic geometry was developed by French mathematician and philosopher Rene Descartes as a new branch of mathematics which unified the algebra and geometry in a such way that we can visualize numbers as points on a graph, equations as geometric figures, and geometric figures as equations.

It was René Descartes who is generally thought of as launching modern analytic geometry. He was dubbed the "Father of Modern Philosophy" but was a superb mathematician, a scientist and a writer. Use the link below and at least read the first paragraph to make your introduction to this world class intellectual.

William K. Smith has written: 'Calculus with analytic geometry' -- subject(s): Analytic Geometry, Calculus 'Modern college mathematics' -- subject(s): Mathematical analysis

Edward Staples Smith has written: 'Analytic geometry' -- subject(s): Analytic Geometry, Geometry, Analytic

Analytical geometry was founded by the French mathematician, Renee Descartes. As for subsequent contributors to that subject, I will leave that for other contributors to add.

All Euclid geometry can be translated to Analytic Geom. And of course, the opposite too. In fact, any geometry can be translated to Analytic Geom.

It was the French mathematician Rene Descartes

Analytic Geometry is useful when manipulating equations for planes and straight lines. You can get more information about Analytic Geometry at the Wikipedia. Once on the page, type "Analytic Geometry" into the search field at the top of the page and press enter to bring up the information.

Analytic geometry.

Max Morris has written: 'Analytic geometry and calculus' -- subject(s): Analytic Geometry, Calculus 'Differential equations' -- subject(s): Differential equations, Equacoes Diferenciais, Equacoes Diferenciais Ordinarias 'Analytic geometry' -- subject(s): Analytic Geometry

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menaechmus

solid geometry deals with 3 dimensional figures while plane geometry deals with 2 dimensional.

Yes. You can use this to prove that two lines are parallel, in analytic geometry, i.e., geometry that uses coordinates.Yes. You can use this to prove that two lines are parallel, in analytic geometry, i.e., geometry that uses coordinates.Yes. You can use this to prove that two lines are parallel, in analytic geometry, i.e., geometry that uses coordinates.Yes. You can use this to prove that two lines are parallel, in analytic geometry, i.e., geometry that uses coordinates.

N. V. Efimov has written: 'Differentialgeometrie' 'A brief course in analytic geometry' -- subject(s): Analytic Geometry 'Linear algebra and multidimensional geometry' -- subject(s): Analytic Geometry, Linear Algebras

Rene Descartes was the mathematician that applied algebra to geometry.

René Descartes developed analytic geometry

It is the branch of mathematics also known as coordinate geometry.

Wray G. Brady has written: 'Analytic geometry' -- subject(s): Analytic Geometry

Alan D. Campbell has written: 'Advanced Analytic Geometry' -- subject(s): Analytic Geometry, Plane, Projective Geometry

What he did was discovered Analytic Geometry.