Fourier Coefficients

Fourier coefficients are numerical weights that quantify the sine and cosine components of a periodic function, allowing complex waveforms to be represented as sums of simple harmonic signals. For a function over a defined period, each coefficient is calculated by integrating the signal multiplied by the corresponding basis function, effectively projecting it onto that frequency component. In engineering, Fourier coefficients support frequency-domain analysis of electrical signals, vibrations, acoustics, and heat transfer. They help identify dominant frequencies, model system responses, design filters, and evaluate how periodic inputs propagate through mechanical and electrical systems.

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Education

JoVE Core - Statistics

Coefficient of Variation

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2023

The coefficient of variation measures the dispersion of the data points or distribution around the mean. Using the coefficient of variation, we can compare two data series with drastically different means or different units of measurement. The coefficient of variation for a sample and a population is expressed as a percentage of the ratio of standard deviation to the mean. The coefficient of variation is a practical statistical tool in finance. It allows investors to assess the volatility or...

Coefficient of Correlation

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2023

The correlation coefficient, r, developed by Karl Pearson in the early 1900s, is numerical and provides a measure of strength and direction of the linear association between the independent variable x and the dependent variable y. If you suspect a linear relationship between x and y, then r can measure how strong the linear relationship is. What the VALUE of r tells us: The value of r is always between –1 and +1: –1 ≤ r ≤ 1. The size of the correlation r indicates the strength of the linear...

Confidence Coefficient

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2023

The confidence coefficient is also known as the confidence level or degree of confidence. It is the percent expression for the probability, 1-α, that the confidence interval contains the true population parameter assuming that the confidence interval is obtained after sufficient unbiased sampling; for example, if the CL = 90%, then in 90 out of 100 samples the interval estimate will enclose the true population parameter. Here α is the area under the curve, distributed equally under both the...

Research

JoVE Journal - Engineering
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Fourier-Based Diffraction Analysis of Live Caenorhabditis elegans

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Cited by 4 •

2017

This manuscript describes how to distinguish different nematodes using far-field diffraction signatures. We compare the locomotion of 139 wild type and 108 "Roller" C. elegans by averaging frequencies associated with the temporal Fraunhofer diffraction signature at a single location using a continuous wave laser.

A Multimodal Wide-Field Fourier-Transform Raman Microscope

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2025

A wide-field Fourier-transform microscope, based on a compact and ultra-stable birefringent interferometer, allows the parallel acquisition of spectra for all pixels of a 2D detector. The time-domain approach enables the disentanglement of photoluminescence and Raman signals, and allows rapid Raman mapping (~5 ms/pixel) with ~1-µm spatial and 23-cm-1 spectral resolution.

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