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Mathematical Analysis of Random Noise-Conclusion

S. O. Rice
- 01 Jan 1945 - 
- Vol. 24, pp 46-156
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This article is published in Bell System Technical Journal.The article was published on 1945-01-01 and is currently open access. It has received 807 citations till now.

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Return Period of a Sea Storm with at Least Two Waves Higher than a Fixed Threshold

TL;DR: In this article, an analytical solution is obtained for the return period of a sea storm with at least two individual waves higher than a fixed level, based on the application of the Equivalent Triangular Storm model for the representation of actual storms.
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Statistical assessment of non‐Gaussian diffusion models

TL;DR: In human brain diffusion measurements, there are deviations from monoexponential signal decay at high values of the diffusion‐weighting factor b, known as non‐Gaussian diffusion and can provide novel kinds of image contrast and evaluate quantitatively the goodness‐of‐fit of five popular diffusion models.
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Phase autocorrelation of random wave fields

TL;DR: In this paper, a new topological theory for the limiting form of the autocorrelation function for small displacements is developed and shown to be in substantial agreement with the measurements.
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Quasielastic He atom scattering from surfaces: a stochastic description of the dynamics of interacting adsorbates

TL;DR: In this paper, the authors present an alternative way to interpret the diffusive peak with increasing coverage by means of a purely stochastic description, namely the interacting single-adsorbate approximation, where two noise sources are considered: (1) a Gaussian white noise accounting for the surface friction and temperature, and (2) a white shot noise replacing the interaction potential between adsorbates.
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The Development of a Practical, Drift-Free, Johnson-Noise Thermometer for Industrial Applications

TL;DR: In this article, a new technique that eliminates switching and thereby allows the use of much higher sense resistances and bandwidths to increase the Johnson noise signal is presented, and the signal power achieved is significantly higher than for systems using a switched correlator.