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1

Jurlewicz, Agnieszka. Limit theorems for randomly coarse grained continuous-time random walks. Institute of Mathematics, Polish Academy of Sciences, 2005.

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2

Nicolas, Christian. Random walk. Architectural Association Students Union, 1998.

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3

Malkiel, Burton Gordon. A random walk down Wall Street: The time-tested strategy for successful investing. W.W. Norton, 2003.

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4

Malkiel, Burton Gordon. A random walk down Wall Street: The time-tested strategy for successful investing. W.W. Norton, 2003.

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5

Luger, Richard. Exact non-parametric tests for a random walk with unknown drift under conditional heteroscedasticity. Bank of Canada, 2001.

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6

Luger, Richard. Exact non-parametric tests for a random walk with unknown drift under conditional heteroscedasticity. Bank of Canada, 2001.

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7

Long, Richard. Dartmoor time: A continuous walk of 24 hours on Dartmoor... 55 miles, England Autumn 1995 = Dartmoor riverbed stones : river to river, stone to stone, a 2 1/2 day walk around the edge of Dartmoor. Spacex Gallery, 1996.

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8

Vanden-Eijnden, Eric, and Nawaf Bou-Rabee. Continuous-Time Random Walks for the Numerical Solution of Stochastic Differential Equations. American Mathematical Society, 2019.

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9

Zinn-Justin, Jean. From Random Walks to Random Matrices. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198787754.001.0001.

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Theoretical physics is a cornerstone of modern physics and provides a foundation for all modern quantitative science. It aims to describe all natural phenomena using mathematical theories and models and, in consequence, develops our understanding of the fundamental nature of the universe. This book offers an overview of major areas covering the recent developments in modern theoretical physics. Each chapter introduces a new key topic, and develops the discussion in a self-contained manner. At the same time, the selected topics have common themes running throughout the book, which connect the i
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10

Economic time series with random walk and other nonstationary components. Elsevier Science Publishers, 1988.

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11

Vulpiani, Angelo, Massimo Cencini, Andrea Puglisi, and Davide Vergni. Random Walk in Physics: Beyond Black Holes and Time-Travels. Springer International Publishing AG, 2021.

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12

Vulpiani, Angelo, Massimo Cencini, Andrea Puglisi, and Davide Vergni. Random Walk in Physics: Beyond Black Holes and Time-Travels. Springer International Publishing AG, 2022.

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13

Sattarhoff, Cristina. Statistical Inference in Multifractal Random Walk Models for Financial Time Series. Lang GmbH, Internationaler Verlag der Wissenschaften, Peter, 2011.

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14

Sattarhoff, Cristina. Statistical Inference in Multifractal Random Walk Models for Financial Time Series. Lang GmbH, Internationaler Verlag der Wissenschaften, Peter, 2012.

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15

Sethna, James P. Statistical Mechanics: Entropy, Order Parameters, and Complexity. 2nd ed. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198865247.001.0001.

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This text distills the core ideas of statistical mechanics to make room for new advances important to information theory, complexity, active matter, and dynamical systems. Chapters address random walks, equilibrium systems, entropy, free energies, quantum systems, calculation and computation, order parameters and topological defects, correlations and linear response theory, and abrupt and continuous phase transitions. Exercises explore the enormous range of phenomena where statistical mechanics provides essential insight — from card shuffling to how cells avoid errors when copying DNA, from th
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16

Malkiel, Burton G. Random Walk down Wall Street: The Time-Tested Strategy for Successful Investing. Norton & Company, Incorporated, W. W., 2011.

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17

Malkiel, Burton G. Random Walk down Wall Street: The Time-Tested Strategy for Successful Investing. Norton & Company, Incorporated, W. W., 2015.

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18

Malkiel, Burton G. Random Walk down Wall Street: The Time-Tested Strategy for Successful Investing. Norton & Company, Incorporated, W. W., 2007.

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19

Malkiel, Burton G. Random Walk down Wall Street: The Time-Tested Strategy for Successful Investing. Norton & Company, Incorporated, W. W., 2019.

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20

Random Walk down Wall Street - the Time-Tested Strategy for Successful Investing. Norton & Company Limited, W. W., 2023.

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21

Random Walk down Wall Street: The Time-Tested Strategy for Successful Investing. Norton & Company, Incorporated, W. W., 2019.

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22

Malkiel, Burton G. A Random Walk Down Wall Street: The Time-Tested Strategy for Successful Investing. W. W. Norton & Company, 2020.

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23

Probability and random processes: Using MATLAB with applications to continuous and discrete time systems. Irwin, 1997.

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24

A random walk down Wall Street: The time-tested strategy for successful investing. 9th ed. W. W. Norton, 2007.

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25

A random walk down Wall Street: The time-tested strategy for successful investing. 9th ed. W. W. Norton, 2007.

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26

A random walk down Wall Street: The time-tested strategy for successful investing. W.W. Norton & Company, 2016.

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27

A random walk down Wall Street: The time-tested strategy for successful investing. W.W. Norton, 2003.

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28

A random walk down Wall Street: The time-tested strategy for successful investing. 2015.

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29

A random walk down Wall Street: The time-tested strategy for successful investing. W.W.Norton, 2004.

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30

A random walk down Wall Street: The time-tested strategy for successful investing. W.W. Norton & Co., 2011.

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31

A random walk down Wall Street: The time-tested strategy for successful investing. W.W. Norton, 2012.

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32

Malkiel, Burton Gordon. A Random Walk Down Wall Street: The Time-Tested Strategy for Successful Investing, Ninth Edition. W. W. Norton, 2007.

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33

Malkiel, Burton Gordon. A Random Walk Down Wall Street: The Time-Tested Strategy for Successful Investing, Ninth Edition. 9th ed. W. W. Norton, 2007.

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34

Childers. Solutions Manual to Accompany Probability and Random Processes: Using Matlab with Applications to Continuous and Discrete Time Systems. McGraw-Hill Education, 1996.

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35

Nosofsky, Robert M., and Thomas J. Palmeri. An Exemplar-Based Random-Walk Model of Categorization and Recognition. Edited by Jerome R. Busemeyer, Zheng Wang, James T. Townsend, and Ami Eidels. Oxford University Press, 2015. http://dx.doi.org/10.1093/oxfordhb/9780199957996.013.7.

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In this chapter, we provide a review of a process-oriented mathematical model of categorization known as the exemplar-based random-walk (EBRW) model (Nosofsky & Palmeri, 1997a). The EBRW model is a member of the class of exemplar models. According to such models, people represent categories by storing individual exemplars of the categories in memory, and classify objects on the basis of their similarity to the stored exemplars. The EBRW model combines ideas ranging from the fields of choice and similarity, to the development of automaticity, to response-time models of evidence accumulation
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36

Schehr, Grégory, Alexander Altland, Yan V. Fyodorov, Neil O'Connell, and Leticia F. Cugliandolo, eds. Stochastic Processes and Random Matrices. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198797319.001.0001.

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The field of stochastic processes and random matrix theory (RMT) has been a rapidly evolving subject during the past fifteen years where the continuous development and discovery of new tools, connections, and ideas have led to an avalanche of new results. These breakthroughs have been made possible thanks, to a large extent, to the recent development of various new techniques in RMT. Matrix models have been playing an important role in theoretical physics for a long time and they are currently also a very active domain of research in mathematics. An emblematic example of these recent advances
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37

Johansen, Bruce, and Adebowale Akande, eds. Nationalism: Past as Prologue. Nova Science Publishers, Inc., 2021. http://dx.doi.org/10.52305/aief3847.

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Nationalism: Past as Prologue began as a single volume being compiled by Ad Akande, a scholar from South Africa, who proposed it to me as co-author about two years ago. The original idea was to examine how the damaging roots of nationalism have been corroding political systems around the world, and creating dangerous obstacles for necessary international cooperation. Since I (Bruce E. Johansen) has written profusely about climate change (global warming, a.k.a. infrared forcing), I suggested a concerted effort in that direction. This is a worldwide existential threat that affects every living t
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