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Showing posts with the label mathematics

Robert Moses is empowering students in an epoch journey, sort of like that dude from the book of Numbers in the Bible.

The Book, "Dude, Can you count?" by Christian Constanda, begins in Auburn, Alabama as 'Radical Equations: Civil Rights from Mississippi to the Algebra Project' Book by Bob Moses and Charles E. Cobb Jr. begins with a Howell Hopson plantation social mobility proposal in the state of Mississippi with Luddite considerations for 'knowledge workers' at the 'college gate' with the cotton picking ENIAC Gulf state of our information age.  Economic Arena: The Delta is a fertile rural flood plain in the North West Mississippi Corner. "Society is already prepared to write you off the way sharecroppers up in the Delta have been written off. " - Radical equations There are only ten kinds of people: those who understand binary numbers and those who do not. The distance between Auburn, Alabama and Clarksdale Mississippi is 356.7 miles via US 280 W, I-22 and MS-6 W. It is 1,023.1 miles between La Grange Texas and Louisville Tennessee...

Heuristic lumped Stirling of mathematics, cardinality, induction, and the axiom of choice at Hilbert's paradox of the Grand Hotel

A heuristic technique, often called simply a heuristic, is any approach to problem solving, learning, or discovery that employs a practical method, not guaranteed to be optimal, perfect, logical, or rational, but instead sufficient for reaching an immediate goal. Good hobbit, bad hobbit math theory In mathematics, and especially in category theory, a commutative diagram is a diagram such that all directed paths in the diagram with the same start and endpoints lead to the same result. Commutative diagrams play the role in category theory that equations play in algebra . In mathematics, a hierarchy is a set-theoretical object, consisting of a preorder defined on a set. This is often referred to as an ordered set, though that is an ambiguous term that many authors reserve for partially ordered sets or totally ordered sets. The term pre-ordered set is unambiguous, and is always synonymous with a mathematical hierarchy. The term hierarchy is used to stress a hierarchical relation...