Large deviations theory | Mathematical principles | Asymptotic analysis | Probability theorems

Tilted large deviation principle

In mathematics — specifically, in large deviations theory — the tilted large deviation principle is a result that allows one to generate a new large deviation principle from an old one by "tilting", i.e. integration against an exponential functional. It can be seen as an alternative formulation of Varadhan's lemma. (Wikipedia).

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Astronomy - Ch. 7: The Solar Sys - Comparative Planetology (16 of 33) Planet's Tilt

Visit http://ilectureonline.com for more math and science lectures! In this video I will discuss the various planet inclinations of the equator to orbit in our Solar System. Next video in this series can be seen at: http://youtu.be/SNf3ppk1UY8

From playlist ASTRONOMY 7B THE SOLAR SYSTEM - COMPARATIVE PLANETOLOGY

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Gradient (2 of 3: Angle of inclination)

More resources available at www.misterwootube.com

From playlist Further Linear Relationships

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Teach Astronomy - Orbit Inclination

http://www.teachastronomy.com/ For most planets in the solar system the orbital inclination is very small. That is, the axis defined by the north and south poles of the planet is almost exactly perpendicular to the plane of the planet's orbit of the Sun. The only two exceptions to this a

From playlist 10. The Solar System

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Ex: Find the Equation of an Ellipse Given the Center, Vertex, and Eccentricity (Vertical)

This video provides an example of how to find the equation of an ellipse given the center, vertex, and eccentricity. The center is not at the origin and the ellipse has a vertical major axis. Site: http://mathispower4u.com Blog: http://mathispower4u.wordpress.com

From playlist Graphing and Writing Equations of Ellipses

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Introduction to Cylindrical Coordinates

This video introduces cylindrical coordinates and shows how to convert between cylindrical coordinates and rectangular coordinates. http://mathispower4u.yolasite.com/

From playlist Quadric, Surfaces, Cylindrical Coordinates and Spherical Coordinates

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Joscha Prochno: The large deviations approach to high-dimensional convex bodies, Lecture I

Given any isotropic convex body in high dimension, it is known that its typical random projections will be approximately standard Gaussian. The universality in this central limit perspective restricts the information that can be retrieved from the lower-dimensional projections. In contrast

From playlist Workshop: High dimensional spatial random systems

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An Introduction to Linear Regression Analysis

Tutorial introducing the idea of linear regression analysis and the least square method. Typically used in a statistics class. Playlist on Linear Regression http://www.youtube.com/course?list=ECF596A4043DBEAE9C Like us on: http://www.facebook.com/PartyMoreStudyLess Created by David Lon

From playlist Linear Regression.

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Large Deviations for the Largest Eigenvalue of Sub-Gaussian Wigner Matrices by Nicholas Cook

PROGRAM: TOPICS IN HIGH DIMENSIONAL PROBABILITY ORGANIZERS: Anirban Basak (ICTS-TIFR, India) and Riddhipratim Basu (ICTS-TIFR, India) DATE & TIME: 02 January 2023 to 13 January 2023 VENUE: Ramanujan Lecture Hall This program will focus on several interconnected themes in modern probab

From playlist TOPICS IN HIGH DIMENSIONAL PROBABILITY

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Ex: Find the Equation of an Ellipse Given the Center, Focus, and Vertex (Vertical)

This video provides an example of how to find the equation of an ellipse given the center, a focus, and a vertex. The center is not at the origin and the ellipse has a vertical major axis. Site: http://mathispower4u.com Blog: http://mathispower4u.wordpress.com

From playlist Graphing and Writing Equations of Ellipses

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Dynamical large deviations and open quantum systems - J. Garrahan - PRACQSYS 2018 - CEB T2 2018

Juan Garrahan (School of Physics and Astronomy and Centre for the Mathematics and Theoretical Physics of Quantum Non-Equilibrium Systems, University of Nottingham, Nottingham, United Kingdom) / 02.07.2018 Dynamical large deviations and open quantum systems I will explain how, in systems

From playlist 2018 - T2 - Measurement and Control of Quantum Systems: Theory and Experiments

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Least squares method for simple linear regression

In this video I show you how to derive the equations for the coefficients of the simple linear regression line. The least squares method for the simple linear regression line, requires the calculation of the intercept and the slope, commonly written as beta-sub-zero and beta-sub-one. Deriv

From playlist Machine learning

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Large deviations and quantum non- equilibrium by Juan P Garrahan

Large deviation theory in statistical physics: Recent advances and future challenges DATE: 14 August 2017 to 13 October 2017 VENUE: Madhava Lecture Hall, ICTS, Bengaluru Large deviation theory made its way into statistical physics as a mathematical framework for studying equilibrium syst

From playlist Large deviation theory in statistical physics: Recent advances and future challenges

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Current fluctuations in heat transport by Abhishek Dhar

Large deviation theory in statistical physics: Recent advances and future challenges DATE: 14 August 2017 to 13 October 2017 VENUE: Madhava Lecture Hall, ICTS, Bengaluru Large deviation theory made its way into statistical physics as a mathematical framework for studying equilibrium syst

From playlist Large deviation theory in statistical physics: Recent advances and future challenges

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Large deviations of Markov processes (Part - 1) by Hugo Touchette

Large deviation theory in statistical physics: Recent advances and future challenges DATE: 14 August 2017 to 13 October 2017 VENUE: Madhava Lecture Hall, ICTS, Bengaluru Large deviation theory made its way into statistical physics as a mathematical framework for studying equilibrium syst

From playlist Large deviation theory in statistical physics: Recent advances and future challenges

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Experimental Determination of Dynamical Lee-Yang Zeros by Kay Brandner

Large deviation theory in statistical physics: Recent advances and future challenges DATE: 14 August 2017 to 13 October 2017 VENUE: Madhava Lecture Hall, ICTS, Bengaluru Large deviation theory made its way into statistical physics as a mathematical framework for studying equilibrium syst

From playlist Large deviation theory in statistical physics: Recent advances and future challenges

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The Meaning of Eccentricity

This video was shot outside of class time because my actual lesson video turned out to be filmed almost entirely with the microphone off! So this condensed version isn't quite as good as the original, but it covers the concept in a brief way that is hopefully still helpful.

From playlist Further Work with Functions (related content)

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Quenched large deviations for random motions in degenerate random media by Chiranjib Mukherjeer

Large deviation theory in statistical physics: Recent advances and future challenges DATE: 14 August 2017 to 13 October 2017 VENUE: Madhava Lecture Hall, ICTS, Bengaluru Large deviation theory made its way into statistical physics as a mathematical framework for studying equilibrium syst

From playlist Large deviation theory in statistical physics: Recent advances and future challenges

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Srinivasa Varadhan: A Short History of Large Deviations

This lecture was held by Abel Laureate Srinivasa S.R. Varadhan at The University of Oslo, May 24, 2007 and was part of the Abel Prize Lectures in connection with the Abel Prize Week celebrations. Program for the Abel Lectures 2007 1. “A Short History of Large Deviations” by Srinivasa V

From playlist Abel Lectures

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CCSS What is the difference between Acute, Obtuse, Right and Straight Angles

👉 Learn how to define angle relationships. Knowledge of the relationships between angles can help in determining the value of a given angle. The various angle relationships include: vertical angles, adjacent angles, complementary angles, supplementary angles, linear pairs, etc. Vertical a

From playlist Angle Relationships

Related pages

Polish space | Large deviations theory | Functional (mathematics) | Integral | Bounded function | Topological space | Probability space | Mathematics | Varadhan's lemma | Exponential function | Rate function | Separable space | Complete metric space | Continuous function