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    Strength in Numbers

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    Brandee English 111 October 8‚ 2012 Strength in Numbers “Hi. I’m Jordan and I’m an addict slash abuser‚ I guess.” I watch my son shrug his shoulders and hunch over‚ clasping his hands in his lap after uttering these words. He speaks the words quietly‚ but his apathetic tone and body language read loud and clear. He doesn’t believe the words he’s saying and is merely being cooperative. After a loud and cheerful “Hello Jordan!” the group turns their attention to me. “Hi. I’m Brandee‚ and I’m

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    The Product

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    The Product OBJECTIVES: * Definition of Product * Product Concept * What is Branding Packaging and Labeling What is Product? A product is anything offered for sale by a firm to buyers to satisfy their wants and needs. Products may take any of the following forms: * A physical object like a toy or a kilo of pork * A service like a Ferris wheel ride or a dental check-up * A place like London or Boracay * An organization like the Knights of Columbus or the Philippine

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    Real Numbers

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    Real Numbers -Real Numbers are every number. -Therefore‚ any number that you can find on the number line. -Real Numbers have two categories‚ rational and irrational. Rational Numbers -Any number that can be expressed as a repeating or terminating decimal is classified as a rational number Examples of Rational Numbers 6 is a rational number because it can be expressed as 6.0 and therefore it is a terminating decimal. -7 ½ is a rational number because it can be expressed as -7.5 which is a

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    9.1.1 Define oxidation and reduction in terms of electron loss and gain. Oxidation: the loss of electrons Reduction: the gain of electrons 9.1.2 Deduce the oxidation number of an element in a compound. Always determine elements that never change their oxidation number then ensure the charge of whole molecule is right. N.B. Atoms in elemental state have oxidation numbers of 0 9.1.3 State the names of compounds using oxidation numbers. Example of this in iron‚ can be iron(II) or iron(III) 9.1.4 Deduce

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    Irrational Numbers

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    would be without irrational numbers? If the great Pythagorean hyppasus or any other mathematician would have not ever thought of such numbers?  Before ‚understanding the development of irrational numbers ‚we should understand what these numbers originally are and who discovered them? In mathematics‚ an irrational number is any real number that cannot be expressed as a ratio a/b‚ where a and b are integers and b is non-zero. Irrational numbers are those real numbers that cannot be represented as

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    Number 13

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    Assignment Simple Superstitions: Number “thirteen” One of the pseudoscientific claim for the Number “thirteenth” is that people think it is just a superstition when some people believe in it and some people don’t. Everyone has their own opinion and belief in particular things. The Number “thirteenth” is most likely known for its unlucky date‚ unlucky number‚ and its unlucky self. The Number “thirteenth” has so much history to it‚ to why it’s unlucky. People believe the number thirteenth is unlucky‚ and

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    Number System

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    IX Mathematics Chapter 1: Number Systems Chapter Notes Key Concepts 1. 2. 3. 4. 5. Numbers 1‚ 2‚ 3…….‚ which are used for counting are called Natural numbers and are denoted by N. 0 when included with the natural numbers form a new set of numbers called Whole number denoted by W -1‚-2‚-3……………..- are the negative of natural numbers. The negative of natural numbers‚ 0 and the natural number together constitutes integers denoted by Z. The numbers which can be represented in the form of p/q where

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    Complex Number

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    Complex Number System Arithmetic A complex number is an expression in the form: a + bi where a and b are real numbers. The symbol i is defined as √ 1. a is the real part of the complex number‚ and b is the complex part of the complex number. If a complex number has real part as a = 0‚ then it is called a pure imaginary number. All real numbers can be expressed as complex numbers with complex part b = 0. -5 + 2i 3i 10 real part –5; imaginary part 2 real part 0; imaginary part 3 real part 10; imaginary

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    Quantum Numbers

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    Quantum Numbers Quantum Numbers The Bohr model was a one-dimensional model that used one quantum number to describe the distribution of electrons in the atom. The only information that was important was the size of the orbit‚ which was described by the n quantum number. Schrödinger’s model allowed the electron to occupy three-dimensional space. It therefore required three coordinates‚ or three quantum numbers‚ to describe the orbitals in which electrons can be found. The three coordinates that

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    Prime Number

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    MATH 4 A. DIVISION of WHOLE NUMBERS B. DECIMALS a. PLACE VALUE of DECIMALS PLACE VALUE | Trillions | Billions | Millions | Thousands | Ones / Unit | Decimalpoint | .1 | .01 | .001 | HUNDRED | TEN | TRILLIONS | HUNDRED | TEN | BILLIONS | HUNDRED | TEN | MILLIONS | HUNDRED | TEN | THOUSANDS | HUNDREDS | TENS | ONES | | TENTHS | HUNDREDTHS | THOUSANDTHS | 5 | 8 | 9‚ | 6 | 1 | 2‚ | 7 | 4 | 5‚ | 6 | 1 | 8‚ | 3 | 2 | 5 | . | 1 | 6 | 2 | b. READING and WRITING DECIMALS

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