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The Four Corners Rule is a legal doctrine that courts use to determine the meaning of a written instrument such as a contract, will, or deed as represented solely by its textual content. The doctrine states that where there is an ambiguity of terms, the Court must rely on the written instrument solely and cannot consider extraneous evidence.
The word is derived from the Latin words quadri, a variant of four, and latus, meaning "side". It is also called a tetragon, derived from Greek "tetra" meaning "four" and "gon" meaning "corner" or "angle", in analogy to other polygons (e.g. pentagon). Since "gon" means "angle", it is analogously called a quadrangle, or 4-angle.
In mathematics, a law is a formula that is always true within a given context. [1] Laws describe a relationship , between two or more expressions or terms (which may contain variables ), usually using equality or inequality , [ 2 ] or between formulas themselves, for instance, in mathematical logic .
The propositions are placed in the four corners of a square, and the relations represented as lines drawn between them, whence the name 'The Square of Opposition'. Therefore, the following cases can be made: [6] If A is true, then E is false, I is true, O is false; If E is true, then A is false, I is false, O is true;
The Four Corners of Law is a term commonly used to refer to the intersection of Meeting and Broad Streets in Charleston, South Carolina. [1] It was coined in the 1930s by Robert Ripley, creator of Ripley's Believe it or Not! [2] and refers to the buildings occupying the four corners of the intersection:
"A1. The law of Calling". Calling twice from a state is indistinguishable from calling once. To make a distinction twice has the same effect as making it once. For example, saying "Let there be light" and then saying "Let there be light" again, is the same as saying it once. Formally: = "A2. The law of Crossing".
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Richard Kenneth Guy (30 September 1916 – 9 March 2020) was a British mathematician. He was a professor in the Department of Mathematics at the University of Calgary. [1] He is known for his work in number theory, geometry, recreational mathematics, combinatorics, and graph theory.