The average value and the standard deviation has to be determined and the number of values that fall within one standard deviation of the average value has to be given. Concept Introduction: Standard Deviation: A series of measurements is equal to the square root of the sum of the squares of the deviations for each measurement from the average, divided by one less than the number of measurements. S D = ∑ | x − μ | 2 N where , x is values in the data set, μ i s average of the data set (mean value), N is no .of data points .
The average value and the standard deviation has to be determined and the number of values that fall within one standard deviation of the average value has to be given. Concept Introduction: Standard Deviation: A series of measurements is equal to the square root of the sum of the squares of the deviations for each measurement from the average, divided by one less than the number of measurements. S D = ∑ | x − μ | 2 N where , x is values in the data set, μ i s average of the data set (mean value), N is no .of data points .
The average value and the standard deviation has to be determined and the number of values that fall within one standard deviation of the average value has to be given.
Concept Introduction:
Standard Deviation: A series of measurements is equal to the square root of the sum of the squares of the deviations for each measurement from the average, divided by one less than the number of measurements.
SD=∑|x−μ|2Nwhere,xis values in the data set,μisaverage of the data set (mean value), N is no.of data points.
Expert Solution & Answer
Answer to Problem 67RIL
The average value is 5.24 %
The standard deviation obtained is 0.0506%
Seven of the ten values fall within the region of 5.19 ≤ x ≤ 5.29.
Explanation of Solution
The average value and the standard deviation is calculated as,
SD=∑|x−μ|2Nwhere,xis values in the data set,μisaverage of the data set (mean value), N is no.of data points.Given : x = 5.22%,5.28%,5.22%,5.30%,5.19%, 5.23%,5.33%,5.26%,5.15%,5.22%.Find mean value (μ):μ=5.22%+5.28%+5.22%+5.30%+5.19%+5.23%+5.33%+5.26%+5.15%+5.22%10 = 5.24 %DeterminationMeasured valuesDifferencebetweenMeasurementandAverage(x−μ)Square of Difference|x−μ|215.22%−0.024×10−425.28%0.041.6×10−335.22%−0.024×10−445.30%0.063.6×10−355.19%−0.052.5×10−365.23%−0.011×10−475.33%0.098.1×10−385.26%0.024×10−495.15%−0.098.1×10−3105.22%−0.024×10−4∑|x−μ|2=4×10−4+1.6×10−3+4×10−4+3.6×10−3+2.5×10−3+1×10−4+8.1×10−3+4×10−4+8.1×10−3+4×10−4 = 0.0256 %SD=0.025610=0.0506%Seven of the ten values fall within the region of 5.19 ≤ x ≤ 5.29.
As shown above, the mean value of the given data and also find the standard deviation value by substituting the obtained values in the equation.
Conclusion
The average value was 5.24 %
The standard deviation obtained was 0.0506%
Seven of the ten values fall within the region of 5.19 ≤ x ≤ 5.29.
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Predict the major products of the following organic reaction:
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• Draw the major product, or products, of the reaction in the drawing area below.
• If there aren't any products, because no reaction will take place, check the box below the drawing area instead.
• Be sure to use wedge and dash bonds when necessary, for example to distinguish between major products that are enantiomers.
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Can the molecule on the right-hand side of this organic reaction be made in good yield from no more than two reactants, in one step, by moderately heating
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Can the molecule on the right-hand side of this organic reaction be made in good yield from no more than two reactants, in one step, by moderately heating
the reactants?
?A
Δ
O
• If your answer is yes, then draw the reactant or reactants in the drawing area below. You can draw the reactants in any arrangement you like.
• If your answer is no, check the box under the drawing area instead.
Explanation
Check
Click and drag to start drawing a structure.
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