Exam 1: Some Basic Concepts of Arithmetic and Algebra

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Evaluate the algebraic expression for x=6x = - 6 and y=4y = 4 . 7x3y6\frac { 7 x - 3 y } { - 6 }

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The product of a positive integer and a negative integer will be positive if the positive integer is first in the expression.

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Find the quotient of the numbers below (divide). 568\frac { - 56 } { - 8 }

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Simplify the algebraic expression below by combining similar terms. ( p + 8) - ( p + 22) - ( p + 16) - 5( p + 26)

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Simplify the numerical expression. 3(19 + 6) - 2(8 - 2)

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Simplify the algebraic expression below by combining similar terms. 12 x + 25 c - 28 x - 3 c

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Find the quotient of the numbers below (divide). (33)÷3( - 33 ) \div 3

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Use the number line interpretation to find the sum. - 16 + 13

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Simplify the numerical expression below. (24)( - 14)( - 3)

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Evaluate the algebraic expression for x=4x = - 4 and y=2y = 2 . 3x2y4\frac { 3 x - 2 y } { - 4 }

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Add or subtract as indicated below. - 7 - ( - 1) + 9 - 6

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Use the additive inverse property to simplify the expression below. - 58 + 58

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Add or subtract as indicated below. - 10 - ( - 1) + 6 - 5

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Evaluate the algebraic expression for y = 19 and b = 14. y+10b+7yby + 10 b + 7 y b

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Subtraction can be done in vertical format. Find the difference. -18 -18

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Evaluate the algebraic expression for x = 22, e = 14 and c = 10. 6xe9xc+2ec6 x e - 9 x c + 2 e c

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State the property that justifies the statement. For example, 3+(4)=(4)+33 + ( - 4 ) = ( - 4 ) + 3 because of the commutative property for addition. [8(3)](1)=[(3)8](1)[ 8 ( - 3 ) ] ( - 1 ) = [ ( - 3 ) 8 ] ( - 1 )

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All odd numbers are also prime numbers.

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6 is divisible by 2

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Simplify the algebraic expression below, and then evaluate the resulting expression for the given values of the variables. 2 a - 17 a + 28 a - 18 a - 9 a - 4 a for a = 4

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