Laws of Indices
If m and n are positive integers, and then (i) a m a n = a m + n [Product Law] (ii) [Quotient Law] (iii) (a m ) n = a m n [Power Law] (iv) (ab) m = a m . b m (v) (vi) a o = 1 (vii..
If m and n are positive integers, and then (i) a m a n = a m + n [Product Law] (ii) [Quotient Law] (iii) (a m ) n = a m n [Power Law] (iv) (ab) m = a m . b m (v) (vi) a o = 1 (vii..Indices
Laws of Indices: If m and n are positive integers, and then (i) a m a n = a m + n [Product Law] (ii) [Quotient Law] Surd: An irrational root of a positive rational number is called a sur..
Laws of Indices: If m and n are positive integers, and then (i) a m a n = a m + n [Product Law] (ii) [Quotient Law] Surd: An irrational root of a positive rational number is called a sur..Binary Operations
Binary Operations - Binary Operations are as given below, Commutative Law Associative Law Let S be any non-empty set. An operation * is called a binary operation on S if " a, b Î S a * b Î SLet S be any non-empty set. An operation * is called a binary operation ..
Binary Operations
binary operation: Let S be any non-empty set. An operation * is called a binary operation on S if " a, b S a * b S Commutative law: Let * be a binary operation on the set S. * is said to be associative in S if " a, b S a * b = b *..
Functions Animation
Functions Animation..
Functions Animation..Ordered Pairs and Cartesian Product
). Its usefulness is seen through emphasis on mathematising practical situations.Solving of problems depends on the ability to understand and apply mathematical analysis to different situations. In this chapter, we will study some fundamental definitions and applications..
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