Sig fig rules for multiplication and division

    • [DOC File]adehne.weebly.com

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      Sig Fig Rules for calculated numbers. 1. Multiplication and division. The result has the same number of sig figs as the least precise data point. 4.56 x 1.4 = 6.38, the 1.4 has 2 sig figs so answer is 6.4. 2. Addition and subtraction. The result has the same number of decimal places as …

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

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      Sig Fig Packet. Measurement Unit Study Guide ... When performing a calculation that involves only multiplication or division, do the whole calculation and round at the end. ... the answer will need to be rounded to the correct number of significant figures according to the following rules. Round down whenever the digit following the last ...

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    • [DOC File]Rules for Recognizing Significant Figures

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      Rules for Rounding Numbers. If the digit to the . immediate right. of the last significant figure is ... Sig Fig Practice . Addition/Subtraction and Multiplication/Division. 1. Calculate and round to the correct number of sig figs. 4.53 x 0.01 x 700 = b) 2 x 4 x 50400 = ...

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    • [DOC File]Significant Figures Practice Worksheet

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      Multiplication & Division = Least number of . 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 =

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    • [DOC File]Significant Figures

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      A silly (correct) example of multiplication with sig figs is: 164 × 1 = 200 Mixed operations: If you have a problem with mixed addition/subtraction and multiplication/division, keep all of the digits until you’re finished, but keep track of the last sig fig in each step by putting a line over it. Once you have your final answer, round it to ...

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    • [DOC File]Sig Figs Cheat Sheet

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      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: (27.2 x 15.63) ( 1.846 = 230.3011918 (this is what you calculator spits . out) In the example - the quantity with the fewest number of ...

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    • [DOC File]Chemistry - nthurston.k12.wa.us

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      Rules: 1. 2. 3. None Zeros: #1 #2 #3. A. Determine the number of significant figures in each of the following numbers. ... E. Multiplication and division : Determine the product or quotient of the following and express the final answer with the correct number of significant figures.

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    • [DOC File]Significant Figures

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      0.6 miles / km (1 sig fig) 0.62 miles / km (2 sig figs) 7. Rules Specific for Zeroes Rule Examples Zeros appearing between nonzero digits are significant 40.7 L has three sig figs. 87 009 km has five sig figs Zeros appearing in front of nonzero digits are not significant 0.095 987 m has five sig figs

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    • [DOC File]SIGNIFICANT FIGURES

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      Rules for Multiplication and Division (think number!) The number of significant figures should NOT be greater than the number of significant figures in the least precise factor: 6.2 cm x 3.44 cm = 21 cm2. Rules for Rounding: A. If the digit to be dropped is less than …

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    • [DOC File]The number of significant figures is equal

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      SIG FIG rules for multiplication and division operations: Look at the numbers on which you are operating. Count up the number of sig figs in each. If one of the numbers has fewer sig figs than the other numbers, that number of sig figs will be the same number of sig figs in your answer.

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