Choose all answers that form a true statement: “When performing Savitzky–Golay polynomial smoothing, increasing the number of data points used to perform the smoothing can result in …”: a. spectral distortion b. noisy data c. a decrease in the number of points in the data set. d. a shift in the data points to the right. For each option above (a-d) that forms a true statement, explain why it is true and what the ramification is for using smoothed data to interpret the behavior of the chemical system under study.

Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter13: Regression And Forecasting Models
Section13.4: Multiple Regression Models
Problem 16P: Suppose that a regional express delivery service company wants to estimate the cost of shipping a...
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Choose all answers that form a true statement:

“When performing Savitzky–Golay polynomial smoothing, increasing the number of data points used to perform the smoothing can result in …”:

a. spectral distortion

b. noisy data

c. a decrease in the number of points in the data set.

d. a shift in the data points to the right.

For each option above (a-d) that forms a true statement, explain why it is true and what the ramification is for using smoothed data to interpret the behavior of the chemical system under study.

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  • Spectral distortion: True. Increasing the number of data points used to perform Savitzky-Golay polynomial smoothing can result in spectral distortion. This is because adding more data points can cause higher-order polynomials to be used in the smoothing process, which can result in excessive smoothing and distortion of the spectral features. This can lead to a loss of spectral information, making it more difficult to interpret the chemical system under study.

 

  • Noisy data: False. Increasing the number of data points used for Savitzky-Golay polynomial smoothing is likely to reduce noise in the data rather than increase it. The smoothing algorithm can help to eliminate high-frequency noise and artifacts in the data, resulting in a cleaner signal.
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