Rules of sig figs

    • [DOC File]Rules For Significant Figures

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      In this case, your final answer is limited to one sig fig to the right of the . decimal or 25.3 (rounded up). C. Rules for multiplication/division problems . The number of sig figs in the final calculated value will be the same as that of the quantity with the fewest number of sig figs used in the calculation. EXAMPLE:

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    • [DOC File]Sig Figs Cheat Sheet

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      All non-zero numbers ARE significant (3492 has 4 sig figs). Any zeros that are between non-zeros are also considered significant (3,400,008 has 7 sig figs). Any zeros that follow immediately to the right of the decimal place in numbers smaller than one ARE NOT considered significant (0.000000348 has 3 sig figs).

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    • [DOC File]SIGNIFICANT FIGURES

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      Counting Significant Figures: RULES For Counting Sig. Figs: Nonzero integers- (1-9) Always count as significant figures. Zeros-There are three classes of Zeros. Leading Zeros are zeros that precede all of the nonzero digits. They never count as Sig Figs. Captive Zeros- are zeros that fall between nonzero digits. They always count as Sig Figs.

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    • Significant Figures - Definition, Rules, Precision, Accuracy & Exampl…

      Significant Figure Rules #1 All non-zero’s are significant. #2 All zero’s between non-zero’s are significant. #3 All zero’s before the first non-zero are NOT significant. #4 All zero’s after the first non-zero in a number with a decimal point are significant.

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    • [DOC File]Unit 1 Metric system, significant figures, factor label ...

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      B. Rules for Counting Sig Figs. Rule #1: Rule #2: Rule #3: Rule #4: You must memorize the rules and learn to use them or lose points throughout the year! Example 1L.2 State the number of significant figures in the following set of measurements: 1.2304 mm. 1.23400 cm. 1.200 x 105 mL. 0.0230 m. 0.02 cm. 8 ounces = 1 cup. 30 cars in the parking lot

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    • [DOC File]Guided notes on Accuracy, Precision, and significant ...

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      Math with Sig Figs. When . multiplying,your answer can only have the same number of . Sig figs as the least significant factor multiplied. 2.46 x 3.8 = 9.348 which becomes 9.3 . 2.46 is 3 SIG figs and 3.8 is only 2 sig figs, so you round the answer to . two sig figs, which is 9.3. The calculator implies that you measured . better than you ...

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    • [DOC File]Rules for Using Significant Figures in Mathematical Operations

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      Sig Figs. Rule for . Addition & Subtraction = Least number of . decimal places (highest value) Perform the following calculations and round according to the rule above. 1) 8.20 + 2 = 2) 13.59 + 23.25 + 20 = 3) 42.828 + 67.4629 = 4) 53.4028 - 14 = 5) 39.3 - 0.804 = 6) 91.68 - 19.1 =

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    • [DOC File]1)

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      However you will need to know the rules on scientific notation and sig figs. The number of sig figs comes from the number written _____ the times sign. 3.50 x 1023 = ___ sig figs; 5.0 x 10 -4 = ___ sig figs; 3 x 10-4 = ____ sig figs

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    • [DOC File]Significant Figures Practice Worksheet

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      (3 sig figs) (4 sig figs) = (3 sig. figs) (smallest) Adding and subtracting: Add or subtract the numbers. The final answer can contain only as many decimal places as found in the measurement with the . fewest number. of decimal places.

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    • [DOC File]Sig Figs

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      When multiplying or dividing, the answer will have the same amount of sig figs as the value with the least number of sig figs. If the answer has too many decimal places, round to the number of sig figs …

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