Examples of exponent problems
[DOC File]Exponential Equations Practice with Word Problems 2
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Exponential Growth and Decay Problems 4 Name. 1) Which of the exponential functions below show . growth. and which show . decay? a) b) c) d) e) f)
[DOC File]Scientific Notation Worksheet
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Part C: Use the exponent function on your calculator (EE or EXP) to compute the following. 1. (6.02 x 1023) (8.65 x 104) 8. (5.4 x 104) (2.2 x 107) 4.5 x 105. 5.21 x 1028 2.6 x 106. 2. (6.02 x 1023) (9.63 x 10–2) 9. (6.02 x 1023) (–1.42 x 10–15) 6.54 x 10–6. 5.80 x 1022 –1.31 x 1014 ...
[DOC File]Properties of Exponents Worksheet Name______________
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Negative Exponent Property Zero Exponent Property Quotient of Powers Property Power of a Quotient Property Properties of Exponents. Let a and b be real numbers and let m and n be integers. Product of Powers Property Power of a Power Property Power of a Product Property Negative Exponent Property ...
[DOC File]EXPONENTS, SQUARE ROOTS AND RADICALS
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A. Exponents - An exponent is a shorthand way of writing multiplication of the same number. 10³ - 10 is the base number It is read: Ten to the third power. 3 is the exponent It means: 10 x 10 x 10 (The exponent tells how many times a number should be multiplied by . …
[DOC File]Guided notes: Scientific notation
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When changing scientific notation to standard notation, the exponent tells you if you should move the decimal: POSITIVE. exponent = move the decimal to the . RIGHT: 4.08 x 103 = 4 0 8 0 (show arrows and move decimal) *The exponent tells you how many places to move the decimal. NEGATIVE . exponent, move the decimal to the . LEFT: 4.08 x 10-3 = 4 0 8
[DOC File]Exponent Rules Review Worksheet
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Exponent Rules Review Worksheet. Product Rule: When multiplying monomials that have the same base, add the exponents. Example 1: Example 2: Power Rule: When raising monomials to powers, multiply the exponents. Example 3: (x2y3)4 = x2 ( 4 y3 ( 4 = x8y12 Example 4: (2x3yz2)3 = 23 x3 ( 3 y3 z2 ( 3 = 8x9y3z6 ...
[DOC File]Exponential Functions & Their Applications
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This looks just like our simplistic examples above except the base is now Euler’s number, the exponent is multiplied by a constant and the base is multiplied by a constant. Now let’s take a look at an exponential function that models exponential growth – namely population growth.
[DOC File]Scientific Notation
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3) If the decimal had to be moved to the right, the exponent is negative. 4) If the decimal had to be moved to the left, the exponent is positive. G. To emphasize again: the exponent counts how many places you move the decimal to the left or right. III. Practice Problems: A. Express the following in scientific notation: 1) .00012 (1.2 x 10-4)
[DOC File]LAWS OF EXPONENTS
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Examples: 1) 3x-4 = 3 · 1 = 3 2) -5m-8n2 = -5y5n2 x4 x4 x10y-5 m8x10 NOTE: Apply the negative power rule to only negative POWERS.
[DOC File]Rubric: UNIT: EXPONENTS
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UNIT: EXPONENTS. ALGEBRA 1: Criteria A. KNOWLEDGE AND UNDERSTANDING. 7-8. Consistently makes . 5. appropriate deductions Solves Challenging problems Variety / Unfamiliar Contexts
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