Scientific notation and significant digits

    • [DOC File]Scientific Notation & Significant Digits

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      Example: 30045 (5 significant figures) 3. Leftmost zeros appearing in front of nonzero digits are not significant. Example: 0.0071 (2 significant figures) 4. Zeros at the end of a number and to the right of a decimal point are . always significant. Example: 43.00 (4 significant figures) Example 4300. (4 …

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    • [DOC File]UNIT 1 Notes: Scientific Notation, Significant Figures ...

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      Scientific Notation, Metric(SI) Conversions, and Significant Figures. Scientific Notation: In chemistry we use incredibly large and small numbers. Scientific notation – a number between 1 and 10 raised to a power of 10. Each time you move the decimal to the left, you are making the number ten times smaller you make the power of 10 one time ...

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    • Units, Scientific Notation, and Significant Figures: Significant Figure…

      In scientific notation, all digits in the coefficient are significant: 8.75 × 105 has three significant digits. Zeros to the right of a significant digit but to the left of a decimal point may or may not be significant: 875,000 has at least three significant digits, but may have as many as six.

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    • [DOC File]Unit Conversions - Scientific Notation and Significant Digits

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      Aug 02, 2011 · 1. Convert each of the following to proper scientific notation, retaining the same number of significant figures. Note the number of significant figures for each measurement. The first has been done for you as an example. 3427 3.427x103 (4 SF) 0.00456 123453 172 0.000984 0.502 3100.0x102. 0.0114x104. 107.2 0.0000455 2205.2 30.0x10-2. 0.982x10-3

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    • [DOC File]Scientific Notation, Significant Figures, and GRASS NOTE

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      2. Zeros appearing between nonzero digits are significant . Example: 30045 (5 significant figures) 3. Leftmost zeros appearing in front of nonzero digits are not significant. Example: 0.0071 (2 significant figures) 4. Zeros at the end of a number and to the right of a decimal point are . always significant. Example: 43.00 (4 significant figures) 5.

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    • [DOC File]Significant Figures and Scientific Notation

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      When a value is in scientific notation, the number of significant digits it has is the number of digits it has before the “X”. Example 5.003 X 10-3 has 4 digits in front of X, thus it has 4 significant digits. Significant figures or significant digits are important for accuracy of numbers as each round number has some amount of uncertainty.

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    • [DOC File]Scientific Notation, Metric(SI) Conversions, and ...

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      Change to correct scientific notation and round to correct significant digits to get: 5.3 x 103. Note - We subtract one from the exponent because we moved the decimal one place to the right. Rule for Addition and Subtraction - when adding or subtracting in scientific notation, you must express the numbers as the same power of 10.

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    • [DOC File]SCIENTIFIC NOTATION

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      To avoid uncertainty, use scientific notation to place significant zeroes behind a decimal point: 8.200 103 has four significant digits . 8.20 103 has three significant digits . 8.2 103 has two significant digits. Significant Digits in Multiplication, Division, Trig. functions, etc.

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    • [DOC File]Significant Figures and Scientific Notation

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      If the decimal is PRESENT start counting significant digits from first non-zero on the PACIFIC side of the number. EXAMPLE: 0.0001200 is 4 significant digits. 4) For values written in scientific notation, the digits in the coefficient (mantissa) are significant.

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