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Roland "Ron" Edwin Larson (born October 31, 1941) is a professor of mathematics at Penn State Erie, The Behrend College, Pennsylvania. [1] He is best known for being the author of a series of widely used mathematics textbooks ranging from middle school through the second year of college.
After his first book was published, Saxon published more books: Algebra 1 1/2, Algebra 1/2 and Geometry, Trigonometry and Algebra 3. (He later renamed his book Algebra 1 1/2 simply Algebra 2). His reasoning for titling his second textbook Algebra 1 1/2 is that a good part of the book was a review of Algebra 1 topics. Later, he co-authored his ...
The origins of Big Ideas Learning go back to 1980, when mathematics textbook author Ron Larson started a small company called Larson Texts. The company became incorporated in Pennsylvania in 1992 and became Larson Texts, Inc. [2] In 2008, the owners of Larson Texts formed a separate publishing company called Big Ideas Learning. [3]
In 1989, working with Richard Larson, he showed that trees have a natural multiplicative structure and are in fact a Hopf algebra. [1] This algebra, sometimes called the Grossman–Larson algebra, is dual to the Connes-Kreimer algebra, [2] which is one way of organizing the computations required when renormalizing Feynman diagrams.
Elementary algebra, also known as high school algebra or college algebra, [1] encompasses the basic concepts of algebra. It is often contrasted with arithmetic : arithmetic deals with specified numbers , [ 2 ] whilst algebra introduces variables (quantities without fixed values).
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Precalculus prepares students for calculus somewhat differently from the way that pre-algebra prepares students for algebra. While pre-algebra often has extensive coverage of basic algebraic concepts, precalculus courses might see only small amounts of calculus concepts, if at all, and often involves covering algebraic topics that might not have been given attention in earlier algebra courses.
The Saxon Math 1 to Algebra 1/2 (the equivalent of a Pre-Algebra book) curriculum [3] is designed so that students complete assorted mental math problems, learn a new mathematical concept, practice problems relating to that lesson, and solve a variety of problems. Daily practice problems include relevant questions from the current day's lesson ...